Abstract: In this invention, there is a concrete structure with 3D printing that includes: a 3D printing device with a capacity chamber and a printing head associated with the capacity chamber that is portable relative to a base edge; and a building up device that is versatilely arranged relative to the base edge and has a driving system for driving short rebars or short ribs to play out an addition development toward a path met with a stacking bearing of a concrete based slurry lay. In addition, he provided a system for constructing a structure using 3D printing. The mechanical properties and strength of the interlayer interface between the concrete based materials of 3D printing are genuinely improved because there is no printing hole between the concrete based slurry layer printed by the device and the embedded rebars, ensuring a tight association between the concrete slurry and the rebars.
This invention relates to the field of construction design, specifically to a device and method for constructing a structure using 3D printing. Three-dimensional printing allows for the addition of additional substance-producing processes, such as the incremental accumulation of layers of material, to create a true thing.
Summary of this invention
Digital technology material printers are commonly used for 3D printing. It is frequently used in the construction of models in sectors such as form fabrication and industrial design, and is increasingly being used for the prompt manufacture of certain objects. This idea has now been used to print a few portions. Accessories, footwear, modem plans, developments, designing and development (AEC), autos, aerospace, dentistry and medical sectors, instructions, geographic data frameworks, structural designing, firearms, and other fields all use innovation. 3D printing with concrete-based materials offers a wide range of applications in disciplines such as
reduction in development waste and a 50 to 70% reduction in creation lead times. There are a few types of innovations for the development of structures that are currently available. A few innovations make use of gantry frameworks that operate on rails and support the printer's printing top while also dividing the development zone.These are "small size" 3D printing scalings that are commonly used for printing products made of polymers or metals that are "small size." The disadvantage of this type of innovation is its mass, as well as the requirement for a massive design that includes the structure to be "printed." Another form of 3D printer for construction uses a robotic arm to tackle this problem, allowing the 3D printer to be moved in the middle of the construction zone and avoiding the need for a gantry and rails. Furthermore, in the above-mentioned construction assembly for constructing a structure using 3D printing,To adjust the horizontality or verticality of the long rebars or long ribs, the supporting device includes a fixing component with a straight entry stretching out the passage on path of the long rebars or long ribs and through which the long rebars or long ribs pass. Ideally, the fastening system in the foregoing device for building up a structure with 3D printing includes a first roller set and a following roller set that are sequentially arranged. A concrete 3D printing device, framework, and strategy based on material expansion that is expected to be connected to a lifting device with a single lifting link or chain, as well as a printing head that is modified to get and save material;Fixing refers to the adjustment of the printing head's interface to the lifting device, whereas adjustment refers to the adjustment of the printing head's position due to a gyroscopic effect. The printing device allows for the control of the printing of a construction to be printed, specifically the position of the printing head, in order to reduce labor costs and provide the ability to install such a device on a conventional crane. The device described in the current application for constructing a structure using 3D printing, which includes:a building up device, versatilely arranged comparative to the base edge and having a driving instrument for driving short rebars or short ribs to play out an addition development toward a path converged with a stacking bearing of a concrete based slurry layer; the driving component embeds the short rebars or the short ribs in the concrete based slurry layer; the driving component embeds the short rebars or the short ribs in the concrete based The following is an excerpt from the application's description^ should be noted that the orientation or positional relationship indicated by terms such as "center", "left", "right", "upper", "lower", "vertical", "horizontal", "outside", "inside" is the orientation or positional relationship shown in the drawings, and is not intended to indicate or
imply that the device or component referred to has a specific origin. As a result, it should not be interpreted as a restriction on the current application. Furthermore, the terms "1st," "2nd," and "3rd" are used solely for descriptive purposes and are not meant to infer or indicate relative importance.The 3D printing equipment, or printing head, for example, is mounted on a moving instrument and is mobile in comparison to the base case thanks to the moving system. The moving system could consist of a lift, a controller mounted on the lift, or a sliding portion, or a chamber mounted on the lift. To grasp the development of the printing top of the 3D printing device in comparison to the base casing to print a concrete-based slurry layer, the printing head is set on an adjustable shaft of the chamber. A temporary stockpiling system, a stacking component, and a driving instrument are all part of the erecting device.The impermanent stockpiling instrument stores and yields short rebars or short ribs; the stacking system stacks the short rebars or short ribs into the transitory stockpiling component; and the driving instrument drives the short rebars or short ribs to play out an inclusion development toward a path met with a stacking course of the concrete based slurry layer. The driving component, in particular, causes the short rebars or short ribs to embed into the concrete based slurry layer in a path that is opposite to the interlayer interface of the concrete based slurry layers, ensuring the strongest interlaminar connection power and shear strength possible.The driving component should ideally flow via the short rebars or ribs in a downward direction. The 3D printing technology applies the concrete-based material layer by layer in an upward direction. The driving component of the model includes a third driver who moves up and down and a subsequent driving plate who is always connected to the third driver. The third driver causes the following driving plate to drop in an upward direction.The following driving plate attaches to a top surface of the short rebars or the short ribs at its base and drives a base surface of the short rebars to embed into the concrete based slurry layer until the third driver arrives at a predefined situation. The third driver, for example, is a coordinated design of a straight aide and a chamber staged one next to the other, with the following driving plate on the same side of the chamber as the direct aide. The following driving plate is inextricably linked to the end of the chamber's cylinder bar and a slider mounted on the straight aide. The straight aide is used to ensure that the subsequent driving plate develops in a straight line, and the chamber is used to provide a force source for the driving system's upward development.
Claims:
1. Three-dimensional printing allows for the addition of additional substance-producing procedures, such as the incremental development of layers of material, to build a true item.
2. A concrete 3D printing device, framework, and strategy based on material expansion expected to be connected to a lifting device with a single lifting link or chain, including a printing head adjusted to get material and save it; fixing means adjusted to interface the printing head to the lifting device, and adjustment means adjusted to balance out the position of the printing head by a gyroscopic impact.
3. A portable 3D printing device based on the expansion of material that is expected to be connected to a lifting device with a single lifting cable or chain, the versatile 3D printing device including a printing head adjusted to get material and save it; fixing means adjusted to interface the printing head to the lifting device, as shown in that it also includes adjustment means adjusted to adjust the position of the printing head by a gyroscopic effect.
4. The third driving plate attaches to a top surface of the short rebars or the short ribs at its base and pushes a base surface of the short rebars to embed into the concrete based slurry layer until it reaches a predefined position.
5. The moving system could include a lift, a controller attached to the lift, or a sliding portion, or a chamber attached to the lift.
| # | Name | Date |
|---|---|---|
| 1 | 202211013736-Form-1-140322.pdf | 2022-03-15 |
| 1 | 202211013736-Others Patent Document-140322.pdf | 2022-03-15 |
| 2 | 202211013736-Form-2-140322.pdf | 2022-03-15 |
| 2 | 202211013736-Form-9-140322.pdf | 2022-03-15 |
| 3 | 202211013736-Form-2-140322.pdf | 2022-03-15 |
| 3 | 202211013736-Form-9-140322.pdf | 2022-03-15 |
| 4 | 202211013736-Form-1-140322.pdf | 2022-03-15 |
| 4 | 202211013736-Others Patent Document-140322.pdf | 2022-03-15 |