Abstract: An intelligent module pipeline an intelligent module helical pipeline winding machine and a winding method therefor. In the cross section of the pipeline a plurality of intelligent modules (1) are vertically clamped and helically wound to form a circular pipeline; each of the intelligent modules is an arch-shaped module which is formed by injection molding or compression molding; a reinforcing rib structure is provided in each intelligent module; a fixing device for horizontally fixing and clamping is provided on the side surface of the intelligent module; and a clamping device for vertically fixing and clamping is provided at the edge of the intelligent module. An arc-shaped chute rail is provided on the front surface of a working panel of the winding machine; the arc-shaped chute rail is provided with at least one pair of feed rollers (107) and is further provided with a locking device (108) and a parallel twisting device (106); the arc-shaped chute rail is provided with the same intelligent module units connected end to end; the intelligent module units connected end to end are locked by means of the locking device to form a semicircular pipe diameter by means of the feed rollers; then the parallel twisting device twists the semicircular pipe diameter in parallel to change the winding rail; and the intelligent module units are staggered to form helical winding pipelines.
0001]The present invention is in particular the production of plastic pipes FIELD large plastic pipes, in particular to a smart module pipe, the pipe winding machine intelligence module and spiral winding methods.
Background technique
[0002]In the prior art, a wide variety of buried plastic pipes, large diameter spiral winding pipe, PVC, PE pipes and other plastic pipe are employed worldwide extrusion molding, in transportation, the construction is very troublesome, especially large-diameter pipe, ring stiffness is difficult to increase, the pipe in this application is modularized, factory injection molding or compression molding, assembling blocks, either manually or automatically by the building site duct is formed, and in the existing pipeline, buried pipes soil, where water leakage problems, a quick check can not be achieved, thus providing a possible leaking pipe alarm and modular assembly of pipes it is very urgent; As the "central work conference urbanization" in the proposed urban drainage system design to prioritize the limited rain to stay, giving priority to greater use of natural forces drainage, construction of a natural reservoir, the natural purification of natural infiltration city sponges, sponges city is a new generation of urban stormwater management concept, the international language, is low the impact of a rainwater system construction, refers to the city brought in to deal with rain and adapt to environmental change Natural disasters such as good elasticity, likely to cause local roads water, limited drainage pipe hole area along the road, a small amount of rainwater emissions, worldwide phenomenon of urban waterlogging is a problem for the next storm, this patent application It is on the basis of the above problem, to ensure the basis of the function of piping on the pipe on both sides of the module, when it is raining by providing open pores sponge, absorbing collected rainwater, the rainwater flows into the bottom of the pipe walls on both sides of the collecting duct from slot, when more than a certain amount, rain flows into special pools, saving a lot of water. This same patent applicant's Patent Application No. 201621090609.3 modular high PVC Pipe ring stiffness helix and all piping before, extrusion molding are employed, secondary processing module need not be formed integrally with the frame to wind before the formation of the pipeline, not manual assembly, sheet metal wrapped around the border needs, higher costs.
[0003]
In the prior art, a wide variety of buried plastic pipes, large diameter spiral winding pipe, PVC, PE pipes and other plastic pipe are employed worldwide extrusion molding, in transportation, the construction is very troublesome, especially large-diameter pipe, ring stiffness is difficult to increase, the pipe in this application is modularized, and provides a modular spiral pipe winding machine.
[0004]
Multifunctional coil winding machine of the present invention, prior to the applicant, Patent Application No. CN02133755.1, relying diameter circular arc track is determined, according to the present invention by injection molding or compression molding composition into a circular arc intelligence module (Application 2017101921765, 2017.3.28 application time, the name of a modular intelligent pipeline), instead of the original track, the present invention is connected to form a circle on an arc track machine instead of through the module end to end, so that the winding machine, a winding roll both pipeline, the pipeline for the ultimate goal, i.e. wood blocks according to the drawing through the Internet as modular as winding pipes, the pipe is not achieved similar machines in the current production of the prior art, the intelligence module spiral winding machine small size, low cost and convenient site construction, improve production efficiency and production costs.
[0005]
SUMMARY
[0006]
The present invention aims to solve the above problems of the prior art. We proposed a large diameter pipe ring stiffness higher, lower costs, intelligent monitoring and control to improve the intelligence module spiral wound pipe winding machine and method of production efficiency and production cost.
[0007]
To achieve the object of the present invention employed the following technical solutions:
[0008]
A modular intelligent a conduit end to end with each other by engagement between a plurality of smart card module unit, and by the cylindrical conduit between the smart module unit side and engaged with each other is formed in the spiral wound, wherein the intelligence module means arranged axially offset along the duct; means the intelligence module is molded by injection molding or compression molding of arched modules, wherein the reinforcing rib structure is provided within each intelligent module unit, the intelligence module unit side provided for the left and right fixing means fixed to each other, the intelligence module unit) is provided at both ends of the engagement means for engaging with each other end to end.
[0009]
Further, the engaging means comprises a convex portion, the recess and the fixing hole, the projecting portion is provided on the side surface of the head end intelligent module, opposite the recess provided on the other end side intelligence module, the said groove pin inserted and fixed by the fixing portion of the projection aperture.
[0010]
Further, the two pairs of upper and lower fixing hole, a through hole which extends inwardly to a length of more than one-half of the intelligent module.
[0011]
Further, the fixing means comprises a catching groove upper left, lower left catching groove, and a right lower right upper catching groove of the catching groove, the groove formed by spirally winding an upper left button in upper right fastener engaging groove of the other intelligent modules, catching groove formed by spirally winding a lower left up and down between the fixed engaging intelligence module in the lower right of another intelligent module snap groove.
[0012]
Further, the intelligence module arched, and by adding aliquots of n is greater than or equal to 1/2 of the helix is formed in the form of a derangement Pipe; intelligence module blocks the number of derangements include: 8.5, 16.5 and 22.5.
[0013]
Further, the reinforcing rib structure from the outer to the inner layers comprising: a first grid layer, a layer of semi-circular spiral, the spiral groove with a side plate and a second grid layer, layer, layer and the spiral arcuate spiral between groove layer is provided with a side plate may be circular switch is provided with a friction surface on the first side of the first grid layer, a second friction surface provided on the side of the second grid layer, the first friction surface and a second friction surface of another intelligence module to increase the adhesion force between the support modules.
[0014]
Further, the diameter of the circular duct is 600mm-6000mm, 2500mm or more in diameter when the pipe is, one can pass a pipe rack, placed in said tube further cables, drainage channels and stent gallery, said Gallery tube bottom reservoir can discharge stormwater and rain.
[0015]
Further, the outer tube inside the circular gallery may be a switch provided with a sponge for absorbing rainwater, when it rains, the opening of the control switch may switch absorbent inflow pipe bottom circular gallery is closed when it does not rain.
[0016]
Further, there is also placed wet in water leakage detecting chip and the diagnostic apparatus of each smart module circular duct, or the central position of the bottom position, when the water leakage or damp sound vibrations into electrical signals, transmitted to the control room , by observing a waveform diagram to determine whether there is a change leakage.
[0017]
Further, the number of pieces of intelligent modules conduit spirally winding is formed by a circular pipe assembled automatically or manually, when the pipe is not buried, the helical coil plate strip layer side groove of another intelligence module with square grooves helically wound layer formed equidistant trajectories, equidistant from the PVC profiles fitted to the engaging tracks spirally wound, so that a smooth inner and outer pipes; health room for the pipe when the helical layer may be semi-circular small spirally wound pipe, an outer Add water pump can be connected to the magnetic fluid, and then embedded in the PVC profiles equidistant track engaging spirally wound, so that a smooth inner and outer pipe, an intermediate pipe having a movable magnetic field cycle.
[0018]
Two to achieve the object of the present invention employed the following technical solution:
[0019]
An intelligent module spiral pipe winding machine, comprising a frame and placed vertically on the frame work panel, said front panel is provided with a working arc chute track, on the arcuate guide path is provided with at least one pair of feed rollers, further provided with a locking means, parallel twisting means between the front and back surface of the work panel is provided, when the pipe is wound intelligent modules placed end to end on the arcuate guide path the same contact intelligence module unit, when the end to end by locking means of the locking unit intelligence module, semi-circle formed by the pipe feeding rollers, the semi-annular duct and parallel torsional twisting means by the parallel movable track change winding, wound to form a spiral wound pipe misalignment.
[0020]
Further, the through-hole of said locking means on the smart-tail twenty-two module unit are fixed by a bolt to lock.
[0021]
Further, parallel to said twisting means twisting the parallel use of pneumatic / electric / manual means to change the track.
[0022]
Further, the arc chute rail track can be adjusted according to the size of the arcuate intelligence module unit, pressing rollers and the like on the back surface of the arc of the arcuate guide path and the working panel arc fluctuation, the arcuate track rail and the arc chute arcuate back surface with a center axis of the working panel.
[0023]
Further, the twisting means is provided in parallel with a cylinder, external force is applied to the top half of the annular conduit to change track.
[0024]
Further, the back surface of the work panel is provided with at least one pair of pressing rollers for pressing the intelligence module unit.
[0025]
Further, the pressing roller is provided on the positioning ring positioning module smart unit.
[0026]
Further, further comprising power means for providing power to the pressing rollers.
[0027]
To achieve another object of the present invention employed the following technical solutions:
[0028]
An intelligent module coiled tubing winding method, comprising the steps of: when the pipe is wound intelligence module, the same intelligence module unit disposed end to end in an arcuate chute rail, the locking means through the end to end means for locking the smart module, semi-circle formed by the diameter of the feed rollers, and by the parallel semicircular ring twisting means twisting change winding diameter parallel tracks formed by winding spirally wound pipe misalignment.
[0029]
Advantages and beneficial effects of the present invention is as follows:
[0030]
Finite element modeling and software module of the present invention employs conduit practice arcuate compression analysis, different pipe ring stiffness level determined by the size of arched different modules, in the present application, intelligent module factory standardized injection molding or compression molding, material or plastic material of high pressure resistance, friction surface disposed dark stripe on both sides of the intelligent module, increases the frictional contact surface, and by setting the projecting portion, the recess and the fixing hole in the end of the module caulking fixing; and n aliquots and added by not less than one-half the intelligence module spiral wound offset each layer is connected, the arcuate snap groove disposed vertically fixed to the structure of the upper and lower side of the module, implemented integrally fixed pipe, a thrust pressure against the arcuate outwardly, so that the pipeline can carry a lot of weight, greatly enhance the ring stiffness of the pipe, pipe wall and smooth pipe outer box binding soil, the soil pipe is formed to coexist, so that the displacement of the anti-conduit good, various intelligent transportation to the construction site packaging module, the module arranged sequentially according to the drawings, a helically wound manually or automatically, Can greatly reduce the problem of high transportation costs, and longer life, the present apparatus can be suitable for large and small pipes of the pipe rack, the modular standard injection or compression molded, assembled on site. And by providing intelligent module, by providing the water leakage detecting chip, it is detected by the sound signal and the sound signal into electrical signals, transmitted to a remote control room, by observing a waveform diagram to determine whether there is a change leaking solve the buried difficult to find the problem when the pipe fails, take the lead in the intelligent detection devices used in detecting underground pipes, but also to achieve a rainwater harvesting sponges city.
[0031]
A simple machine structure according to the present invention, by placing a head to tail contact arc chute on the same track intelligent modular unit is provided with a through hole on the smart module unit, and by a contact head and tail through the intelligent locking means the through-hole module means, to achieve two adjacent fixed intelligence module, thereby forming a semi-annular duct, and in parallel by the parallel orbit twisting apparatus is particularly critical where, unlike the conventional arcuate track formed by the ring, but arcuate intelligence module using, instead of the traditional mechanical achieved circle arc trajectory, to achieve wound pipe, and the present invention arc length according to the size of the diameter of each of the intelligence module is obtained, formula, arc length = diameter / n + y, where ny greater than equal to the diameter / 2n, where n represents the number of aliquots module diameter, diameter is known, y represents the arc length offset value is added. Here arc length offset value added is particularly critical because experiments show that, if not using the offset value is added, using only n equal diameter, and winding displacement can not be achieved, the inventors have accidentally discovered elapsed, add an offset value of the arc length can be achieved winding displacement, and the pipe ring stiffness greatly improved. The present invention further disposed arcuate guide path is a variable circular arc, outwardly pressed against the thrust ring, of different sizes can be processed in the field diameter, to achieve pipeline modular, intelligent building blocks Field Like, production of a variety of channels.
BRIEF DESCRIPTION
[0032]
FIG 1 is a preferred embodiment of the present invention to provide an intelligence module spiral pipe winding machine a front schematic structural diagram;
[0033]
FIG 2 is a schematic view of a spiral pipe winding machine intelligence module rear structure of the preferred embodiment of the present invention;
[0034]
3 is a schematic spiral pipe winding machine intelligence module side structure of the preferred embodiment of the present invention;
[0035]
FIG 4 is a schematic diagram of the intelligent module unit structure employed in the preferred embodiment of the present invention;
[0036]
FIG 5 is a schematic diagram of the present invention, the intelligent module assembly into the tube cross-section;
[0037]
FIG 6 is a preferred embodiment of the present invention provides a schematic diagram of the intelligent module assembly.
detailed description
[0038]
Below in conjunction with the accompanying drawings of the present invention in embodiments, the technical solutions in the embodiments of the present invention is clearly described in detail. The described embodiments are merely part of embodiments of the present invention.
[0039]
The present invention solves the above technical problem technical solution:
[0040]
4-6 shows a modular intelligent conduit, which cross-section of the pipe end to end by engagement between a helically wound to form a plurality of blocks intelligence module circular duct, the intelligence module 1 is formed by injection molding compression molding or arched modules through a plurality of axial misalignment between the intelligence module is formed spirally wound cylindrical channel, wherein each intelligent module is provided with a rib structure within the smart side of the module 1 is provided for the left and right fixing means fixed to each other, the intelligence module is provided at the edge of an engaging means for engaging with each other vertically.
[0041]
Preferably, the engagement means comprises a convex portion 31, the recess 32 and the fixing hole 9, the projecting portion 31 is provided on the side surface of the head end of the intelligence module 1, the recess 32 is disposed opposite to the intelligence module 1 the other end side, the recess 32 is inserted a pin 31 fixed to the projection portion 9 through the fixing holes.
[0042]
Preferably, the upper and lower fixing holes 9 two pairs of through-holes which extend inwardly to more than half the length of a smart module.
[0043]
Preferably, the fixing means comprise snap groove 41 the upper left, lower left catching groove 42, the right upper and right lower buckle clasp groove 43 groove 44 groove 41 upper left snap engagement by spirally winding another intelligent module snap groove 44 in the upper right, lower left snap engagement groove 42 for vertically between a fixed intelligent modules on the lower right of another intelligent module snap groove 44 by spirally winding a buckle.
[0044]
Preferably, the arched intelligence module 1, the number of intelligent modules of a number of derangements include: 8.5, 16.5 and 22.5, and by adding aliquots of n is greater than or equal to 1/2 parts form displacement arranged to form a spiral wound pipe. It is noted that when the block is 1/2 or greater to achieve the intelligence module misalignment between the spirally wound module.
[0045]
Preferably, the rib structure from the outer to the inner layers comprising: a first box layer 5, layer 6 is semi-circular spiral, the spiral groove with a side plate and a second grid layer 8 layer 10, the spiral arc a switch is provided with a circular hole between the 8-shaped layer 6 and the spiral strip layer side grooves 7, a first friction surface disposed on a first side surface 5 grid layer 21 is provided on the side of the second layer 10 has a square the second friction surface 22, the second friction surface 21 and the first friction surface of another intelligence module 22 to increase the adhesion force between the support modules.
[0046]
Preferably, the diameter of the circular duct is 600mm-6000mm, 2500mm or more in diameter when the pipe is, one can pass a pipe rack, placed in said tube further cables, drainage channels and stent gallery, said Gallery tube bottom reservoir can discharge stormwater and rain.
[0047]
Preferably, the switch may be a circular hole in the outer pipe gallery 7 is provided with a sponge for absorbing rainwater, when it rains, the switching control of the opening may be circular bottom switch absorbent inflow pipe rack 7, the rain is not closed.
[0048]
Preferably, each of the central circular duct of the position or the bottom position into the intelligence module 1 further has a leakage diagnosis apparatus detecting chip and humidity, water leakage or humid when sound vibrations into electrical signals, transmitted to control room, by observing a waveform diagram to determine whether there is a change leakage.
[0049]
Preferably, the number of pieces of pipe 1 helically wound intelligence module is formed by a circular pipe assembled automatically or manually, when the pipe is not buried, the helical coil plate strip layer 8 and the side groove of another intelligence module 1 8 with square grooves helically wound layer formed equidistant trajectories, equidistant from the PVC profiles fitted to the engaging tracks spirally wound, so that a smooth inner and outer pipes; health room for the pipe when the helical layer 6 may be semi-circular spiral small wound conduit, the pump can be connected to the external magnetic fluid was added, and then the PVC profiles fitted equidistant track engaging spirally wound, so that a smooth inner and outer pipe, an intermediate pipe having a movable magnetic field cycle.
[0050]
Working principle: pipe module of the present invention, finite element analysis software modeling and Practice of arcuate compression, different pipe ring stiffness of the level determined by the size of arched modules, this application intelligence module in the factory or the injection pressure normalized molding, or plastic material of high compressive strength material, the friction surface disposed dark stripe on both sides of the intelligent module, increases the frictional contact surface, and by providing the protruding portions at both ends of the module, and the recess fixing hole fixed by crimping; spiral wound and offset connections, snap arcuate grooves provided vertically fixed to the structure of the upper and lower sides of the module n in each layer by adding aliquots and not less than one-half the intelligent module, conduit integrally fixed, arcuate pressed against an outward thrust, is able to carry the great weight of the pipe, the pipe ring stiffness greatly improved, smooth pipe outer pipe wall checker and binding soil, the soil pipe is formed to coexist, so that the pipe good resistance to displacement, the kinds of intelligent transport packaging modules to the construction site, in order for the module according to the drawings, manually or automatically Spirally wound, can greatly reduce the problem of high transportation costs, and longer life, the present apparatus can be suitable for large and small pipes of the pipe rack, the modular standard injection or compression molded, assembled on site. And by providing intelligent module, by providing the water leakage detecting chip, it is detected by the sound signal and the sound signal into electrical signals, transmitted to a remote control room, by observing a waveform diagram to determine whether there is a change leaking solve the buried difficult to find the problem when the pipe fails, take the lead in the intelligent detection devices used in detecting underground pipes, but also to achieve a rainwater harvesting sponges city.
[0051]
1-3 is shown an intelligent module spiral pipe winding machine includes a frame 101 and a vertically disposed work panel, the front panel 101 is provided with a working arc chute rails 105, the arcuate provided with at least one pair of feed rollers 107 slide on rails 105, wherein there is further provided a locking means 108, the operating panel 101 is provided on top of the parallel twisting apparatus 106, the arc chute same intelligence module units are placed end to end on a rail 105, the intelligent modules end to end by a locking means when the locking means 108, 107 form a semi-circle diameter by the feed rollers, and by the parallel semicircular ring twisting apparatus 106 will change diameter parallel track twist back the operating panel 101 is provided with at least one pair of pressing rollers 102 for pressing a work unit intelligent modules, intelligent module unit 1 the pressing rollers 102 is positioned on an arc of revolution about an intelligence module unit engaging the pressing, the intelligence module unit 1 is formed helically wound pipe misalignment.
[0052]
Preferably, the hole 108 of the locking device 1 by the bolt head to tail unit fixed intelligence module lock.
[0053]
Preferably parallel, said parallel twist twisting apparatus 106 with pneumatic / electric / manual means to change the track.
[0054]
Preferably, the arcuate guide path rail 105 may be adjusted according to the size of the arcuate intelligence module unit 1, the pressing roller 102 and the like on the back surface of the arcuate panel 101 work arcuate guide path 105 arc fluctuation, the arc chute with the central axis of the circular arc track 105 of the arcuate tracks and the back panel 101 of the work.
[0055]
Preferably, the arc length of the intelligence module unit according to the diameter determined, formula, arc length = diameter / n + y, where ny greater than equal to the diameter / 2n, where n represents the number of aliquots diameter module , is a known diameter, y represents the arc length offset value is added.
[0056]
Preferably, the compression ring 103 is positioned on the spiral rollers 102 are arranged.
[0057]
Preferably, further comprising a power means pressing rollers 102 to 104 for providing power.
[0058]
An intelligent module coiled tubing winding method, comprising the steps of: placing the same intelligent modular unit in end to end of the arcuate chute rails 105, 108 of the end to end by locking means intelligence module unit 1 be locked 107 is formed by a semi-circle diameter feed rollers, and by the parallel semicircular ring twisting apparatus 106 will change the diameter twist parallel tracks, an intelligence module unit of pressing rollers 102 on the arc positioning, after the rotation about an intelligence module unit engaging the pressing, the intelligence module unit 1 is formed helically wound pipe misalignment.
[0059]
Preferably, the twisting means of the parallel semi-circular ring diameter 106 changes twisting parallel tracks may be formed by a rotation duct intelligence module unit, or the inner pipe / outer pipe may be formed of plastic profiles other winding misalignment multilayer pipes. Preferably, the twisting means is parallel to the parallel twist angle of 5 degrees or 10 degrees (specifically adjusted according to the diameter size), formed by winding a helically wound pipe misalignment.
[0060]
These embodiments should be understood as merely illustrative of the invention and are not intended to limit the scope of the present invention. After having read the description of the present invention, the art can make various changes or modifications of the present invention, such equivalent variations and modifications are also within the claims of the invention defined in the scope.
Claims
[Claim 1]A modular intelligent conduit, wherein the conduit by a number of intelligent modules unit engaged with each other end to end between (1), and an intelligence module which is formed by means engage with each other between the side edges of the spirally wound cylindrical channel, wherein the intelligence module unit is arranged axially offset along the duct; the intelligence module unit (1) is by injection or compression molding arched modules, wherein each intelligent modular unit (1) is provided with reinforcing rib structures , sides of the intelligence module unit (1) is provided with a fastening means fixed to each other right and left, both ends of the intelligence module unit (1) is provided with engagement means for engaging with each other end to end.
[Claim 2]
The intelligent modular conduit according to claim 1, wherein said means comprises a convex engagement portion (31), the groove (32) and the fixed hole (9), the projection (31) one end of the first side surface disposed in the intelligent module unit (1), said recess (32) disposed opposite to the other end side intelligent modular units (1), said recess (32) is inserted through the fixing hole (9) another pinning intelligent modular unit (1) of the projection (31).
[Claim 3]
The intelligent modular conduit according to claim 2, wherein the fixing hole (9) for the upper and lower pair of through holes extending inwardly thereof to a length exceeding the intelligent modular unit (1) is one-half.
[Claim 4]
The intelligent modular conduit according to any one of claims 1-3, characterized in that said fixing means comprises an upper left snap groove (41), a lower left catching groove (42), the upper right catching groove (43) and the lower right button grooves (44), the upper left catching groove (41) by spirally winding a snap buckle in upper right of another intelligence module slot (44), a lower left catching groove (42) formed by spirally winding a lower right engaging another intelligent module snap between the upper and lower fixing (1) on the groove intelligent module unit (44).
[Claim 5]
The intelligent modular duct according to claim 4, wherein the intelligence module unit (1) is arched, spiral wound formed by derangement aliquots plus n is greater than or equal to 1/2 of the form tube.
[Claim 6]
The intelligent modular conduit according to claim 1, wherein said rib structure from the outer to the inner layers comprising: a first grid layer (5), semi-circular spiral layer (6), the coil disposed between the side plates with slotted layer (8) and a second grid layer (10), the arcuate helical layer (6) and a helical groove side layer strip (8) with a switchable circular hole (7), the a grid layer is provided with a first friction surface (21), is provided with a second friction surface (22) on the side of the second grid layer (10) on a side (5), the first friction surface (21) and a second friction surface of another intelligence module (22) to increase the adhesion force between the support modules.
[Claim 7]
A modular intelligent pipe or 3 or 5 or according to claim 1 or 2, wherein the diameter of the circular duct is 600mm-6000mm, 2500mm or more in diameter when the conduit is the person can pass the gallery pipe, said pipe rack placed further cables, drainage channels and stent, the tube can be bottom gallery rainwater reservoir and rainwater.
[Claim 8]
The intelligent modular conduit according to claim 7, wherein the switchable circular hole (7) within said outer tube is provided with a gallery sponge rainwater, when it rains, the opening of said control switch switch circular hole (7) Water absorption inflow pipe gallery bottom, is closed when it does not rain.
[Claim 9]
The intelligent modular pipeline or 1 or 2 or 3 or according to claim 568 or claim wherein each of said further into the circular duct means intermediate position or bottom position of the intelligent module (1) moisture and water leakage detecting chip diagnostic device, when moisture or water leakage sound vibrations into electrical signals, transmitted to the control room, by observing a waveform diagram to determine whether there is a change leakage.
[Claim 10]
The intelligent modular duct according to claim 6, wherein the plurality of block units of the smart module pipe (1) helically winding a circular duct is formed by assembling automatically or manually, when the pipe is not buried, the said coil plate with square spiral groove board layer (8) with another intelligent modular unit (1) with side slot layer (8) wound spirally formed equidistant trajectories, equidistant from the PVC profiles fitted to the engaging tracks spirally wound , smooth inside and outside the pipe so that; when ducts for health room, the semi-circular coil layer (6) may be spirally wound small pipe, the pump can be connected to the external magnetic fluid was added, and then the PVC profiles fitted equidistant helical tracks engaging the winding, so that smooth inner and outer pipe, an intermediate pipe having a movable magnetic field cycle.
[Claim 11]
An intelligent module spiral pipe winding machine, comprising a vertically disposed frame and panel work (101), the working front panel (101) is provided with an arcuate guide path (105), the arc chute is provided on the rail (105) has at least one pair of feed rollers (107), wherein there is further provided a locking means (108), the operating panel (101) is provided with a parallel top twisting means (106) , the same intelligent modular units (1) placed end to end on the arcuate guide path (105) in contact, through locking means (108) a head to tail intelligent modular unit (1) for locking , (107) is formed by a semi-circle diameter of the feed roller, and then the semi-circle diameter parallel tracks by the parallel changes twist twisting means (106), the back surface of the working panel (101) is provided with at least one pair of pressing rollers (102), for intelligent modular unit (1) pressing work, the intelligent modular unit (1) in the arcuate pressing rollers (102) positioning, rotation intelligence module units (1 ) engaging around the pressing, the intelligent modular unit (1) is formed helically wound pipe misalignment.
[Claim 12]
The intelligence module spiral pipe winding machine according to claim 11, characterized in that said locking means (108) to the holes on (1) a head to tail intelligence module unit is fixed by the locking bolt.
[Claim 13]
The intelligence module spiral pipe winding machine according to claim 11, wherein said parallel parallel twisting means (106) twist with pneumatic / electric / manual means to change the track.
[Claim 14]
The intelligence module spiral pipe winding machine according to claim 11, wherein said arcuate track guide path (105) may be adjusted according to the intelligence module unit (1) the size of the arc, the arc-shaped slide groove track (105) and the working panel (101) of pressing rollers (102) or the like on the back surface of the arcuate arc fluctuation, the arcuate guide path (105) with an arcuate track work panel (101) of the back surface arcuate with the center axis.
[Claim 15]
The intelligence module spiral pipe winding machine according to one of claims 1 to 4, wherein the arc length of the intelligence module unit (1) is determined according to the diameter, formula, arc length = diameter / n + y, where ny greater than equal to the diameter / 2n, where n represents the number of aliquots module diameter, diameter is known, y represents the arc length offset value is added.
[Claim 16]
The intelligence module spiral pipe winding machine according to claim 11, wherein said pressing rollers on the positioning ring (102) (103) according to a spiral arrangement.
[Claim 17]
Intelligence module according to claim spiral pipe winding machine of claim 11, wherein further comprising a power means (104) for pressing a roller (102) powered.
[Claim 18]
An intelligent module coiled tubing winding method, characterized by comprising the steps of: placing the same intelligent modular units (1) end to end on the arcuate guide path (105) by locking means (108) when head to tail intelligence module unit (1) for locking, semi-circle formed by the diameter of the feed roller (107), then the semi-circle diameter parallel twisting means twisting changed by the parallel rails (106) intelligence module unit (1) in the arcuate pressing rollers (102) on the positioning, the intelligence module after the rotation means (1) engaging around the pressing, the intelligent modular unit (1) is formed helically wound pipe misalignment.
[Claim 19]
The smart module pipe spiral winding method according to claim 18, wherein said parallel twisting means (106) parallel to the semicircular ring diameter after twisting track change, through the intelligent modular unit (1) rotation pipe is formed, the inner and / or outer pipe conduit may be offset to form a multilayer plastic profiles other wound pipe.
| # | Name | Date |
|---|---|---|
| 1 | 201917043626.pdf | 2019-10-26 |
| 2 | 201917043626-TRANSLATIOIN OF PRIOIRTY DOCUMENTS ETC. [26-10-2019(online)].pdf | 2019-10-26 |
| 3 | 201917043626-STATEMENT OF UNDERTAKING (FORM 3) [26-10-2019(online)].pdf | 2019-10-26 |
| 4 | 201917043626-PRIORITY DOCUMENTS [26-10-2019(online)].pdf | 2019-10-26 |
| 5 | 201917043626-NOTIFICATION OF INT. APPLN. NO. & FILING DATE (PCT-RO-105) [26-10-2019(online)].pdf | 2019-10-26 |
| 6 | 201917043626-FORM 1 [26-10-2019(online)].pdf | 2019-10-26 |
| 7 | 201917043626-FIGURE OF ABSTRACT [26-10-2019(online)].pdf | 2019-10-26 |
| 8 | 201917043626-DRAWINGS [26-10-2019(online)].pdf | 2019-10-26 |
| 9 | 201917043626-DECLARATION OF INVENTORSHIP (FORM 5) [26-10-2019(online)].pdf | 2019-10-26 |
| 10 | 201917043626-COMPLETE SPECIFICATION [26-10-2019(online)].pdf | 2019-10-26 |
| 11 | abstract.jpg | 2019-10-28 |
| 12 | 201917043626-Proof of Right (MANDATORY) [20-11-2019(online)].pdf | 2019-11-20 |
| 13 | 201917043626-FORM-26 [20-11-2019(online)].pdf | 2019-11-20 |
| 14 | 201917043626-FORM 18 [24-03-2021(online)].pdf | 2021-03-24 |
| 15 | 201917043626-FER.pdf | 2022-01-24 |
| 1 | 201917043626E_19-01-2022.pdf |