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An Improved One Way Clutch Bearing And Method Of Manufacturing Thereof

Abstract: The present invention An Improved One Way Clutch Bearing and Method of Manufacturing Thereof 1 provides an improved one way clutch bearing of roller type and a method for manufacturing it, wherein said improved one way clutch bearing; is a light weight single piece assembly, which is easy to manufacture and is cost effective. Further, process of manufacturing of improved one way clutch is highly consistent and have high production rate. Said improved one way clutch bearing do not allow a roller to dislodge from its position. Fig.6

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Patent Information

Application #
Filing Date
11 July 2017
Publication Number
36/2017
Publication Type
INA
Invention Field
MECHANICAL ENGINEERING
Status
Email
info@khuranaandkhurana.com
Parent Application
Patent Number
Legal Status
Grant Date
2019-07-29
Renewal Date

Applicants

TEXSPIN Bearings Limited
B-804, Shapath-4 Opp. Karnavati Club, S.G.Highway Ahmedabad

Inventors

1. MAKWANA Vishal
B-804, Shapath-4 Opp. Karnavati Club, S.G.Highway Ahmedabad 380051

Specification

Claims:We claim,
1. Present Improved One Way Clutch Bearing And Method Of Manufacturing Thereof, wherein said improved one way clutch bearing 1 comprises of
• Outer ring 11b
• Inner ring 12
• Rollers 13
• Cam-pin 14
• Spring 15
• Top cover 16
• Bottom plate 17

wherein,

said outer ring 11b further comprises of guide surface 111, under groove 112, pockets 113 and projections 114, extended inwardly in radial direction, and holes 115 for mounting the one way clutch bearing 1;

said cam-pin 14 is to constitute said cam mechanism between rollers 13, cam-pin 14 and inner ring 12 and further comprises of outer face 142, spring seating face 143 and cam-profile 141; said outer face 142 is provided to accommodate cam-pin 14 in pockets 113, wherein said outer face 142 of cam-pin 14 has the radius R similar to the radius R of inner peripheral face 116 of pockets 113; said cam-pin 14 is further provided in alternative shape, wherein said alternative cam-pin 14a comprises of cam surface 141 and outer face 142; further an alternative cam-pins 14b is provided wherein said alternative cam-pin 14b mainly comprises of alternative cam surface 141b and outer face 142, such that said spring 15 is located between roller 13 and pocket 113a; said the inner face 116 of pocket 113 is provided at extreme inner peripheral face 117 of outer ring 11b ;the rollers 13 are tangentially spring loaded by spring 15;

said spring 15 is located between roller 13 and spring seating face 143 or pocket 113a; said rollers 13 are placed such that they are engaged by cam surface 141 or 141b of cam-pins 14, 14a or 14b and outer face 121 of inner ring 12 and there by provides a condition where the said one way clutch bearing 1 is locked in one direction;

said roller 13 and spring 15 are located between the cam-pin 14 and inner ring 12, wherein the thickness of the said projections 114 is kept 30-50% of roller length, further the projections 114 are so designed that opening of pocket 113 is 5-10% smaller than that of the roller 15 diameter, to prevent the roller 13 to dislodge radially from its position; the projection 114 prevents the spring 15 to be in contact with outer face 121 of inner ring 12, said top cover 16 made from sheet steel joined with outer ring 11b attached by methods that includes crimping, caulking or alike positive engagement method; said top cover 16 and bottom plate 17 comprises of holes 161 for mounting purpose; said bottom plate 17 consists of interference fit with guide surface 111 and have clearance fit with under groove 112, so that it can be rotatably fix in outer ring 11b; the present one way clutch bearing 1, is provided in form of a single unit which further prevents said roller 13 and spring 15 to get dislodged from its position and there by provides a one way clutch bearing; another alternative to the present one way clutch bearing is by providing a sealing to the said inner periphery of top cover 16 and bottom plate ;top cover 16 and bottom plate 17 are fixed with outer ring 11b.

2. Present Improved One Way Clutch Bearing And Method Of Manufacturing Thereof as claimed in claim 1, wherein the method for manufacturing said improved outer ring 11b comprises of steps:

a. said raw piece 11 of improved outer ring 11b, made from sheet metal working or forging process;

b. said outer ring 11 is machined by turning operation to get outer ring 11a which further comprises of guide face 111 and under groove 112; wherein outer ring 11a is alternatively made from sheet metal working;

c. after machining of outer ring 11a the pockets 113, the projections 114 and holes 115 are formed by piercing, blanking or fine blanking process;

d. after blanking, piercing or fine blanking process operation the outer ring 11b is subjected to hardening process in case of high torque transmission application.

3. Present Improved One Way Clutch Bearing And Method Of Manufacturing Thereof as claimed in claim 1 and claim 2, wherein the method for manufacturing said cam-pin comprises of steps:
a. said cam-pin 14 is made from rectangular strip or rectangular bar of steel by press operation or cold forging process;
b. said cam-pins 14 is further subjected to hardening process; wherein in case of low torque transmission the hardening of outer ring 11b is not needed.

Dated this 11th Day of July, 2017.
______________________
Gopi Trivedi (Ms)
Authorized agent of applicant
To,
The Controller of Patents,
The Patent office,
At Mumbai.

, Description:FORM 2
The Patent Act 1970
(39 of 1970)
&
The Patent Rules, 2005

COMPLETE SPECIFICATION
(See Section 10 and Rule 13)

“AN IMPROVED ONE WAY CLUTCH BEARING AND METHOD OF MANUFACTURING THEREOF”

TEXSPIN Bearings Limited,
A Company Incorporated under the Indian Companies Act
having address at B-804,
Shapath-4 Opp. Karnavati Club,
S.G.Highway, Ahmedabad, Gujarat, India

The following specification particularly describes and ascertains the nature of this invention and the manner in which it is to be performed.

FIELD OF INVENTION:

The present invention relates to an improved one way clutch bearing of roller type and method of manufacturing thereof. More particularly present invention relates an improved one way clutch bearing; which is a light weight single piece assembly, is easy to manufacture and is cost effective. Further, said improved one way clutch bearing do not allow a roller to dislodge from its position. Furthermore, process of manufacturing of improved one way clutch is highly consistent, have high production rate and is cost effective.

BACKGROUND OF THE INVENTION:

One way clutch of roller type widely used in automotive industry as a torque transmitting or back stop device. Majorly it is used with starter motor of engine in automobile to start the engine.

As shown in Fig.1 typically used one way clutch 1A of roller type is comprised of an outer ring 10 including pockets 103, cam surface 102, holes 101 and projections 104 disposed inwardly in a radial direction and extending toward an inner ring 12, the inner ring 12 disposed in concentric with the outer ring 10, a plurality of rollers 13 disposed between an outer surface of the inner ring 12 and cam surfaces 102 of the outer ring 10 and adapted to transmit torque. These rollers are tangentially spring loaded by accordion spring 15 or helical spring (not shown). Further, said holes 101 have counter bore to accommodate head of the mounting bolt.

As shown in Fig. 1 the one way clutch assembly 1A, the inner ring 12 can only be rotated in one direction with respect to the outer ring 10 by means of a cam mechanism constituted by the rollers 13 and the cam surfaces 102 of the outer ring 10. That is to say, the inner ring 12 is designed to idly rotate relative to the outer ring 10 in one direction, and on the other hand, it applies rotational torque to the outer ring via the cam mechanism only in an opposite direction.

In the one way clutch 1A of roller type, to obtain positive engagement, rollers 13 as torque transmitting members and springs 15 for biasing the rollers 13 are disposed in respective pockets 103 provided in the outer ring 10.

However, the conventional one way clutch imparts following disadvantages:

• Generally the outer ring 10 is made from forged steel. The internal shape is machined; which is very cumbersome process as the shape includes cam profile 102 and projections 104. Further the machining process is a time consuming process.

• Further the opening a1 of pockets 103 is larger than diameter of roller, which allows the roller 13 to dislodge radially.

• Yet further, there is a possibility of spring 15 to get in contact with inner ring 12, which wears out the spring 15 and failure of one way clutch occurs.

• Yet further the projection 104 has thickness equal to 105-110% of roller length to accommodate roller 13 and spring 15 in pockets 14, which thereby makes it bulky and expensive.

• Yet further as the thickness of projection is high the mounting hole 101 and counter bore needs to be machined, whereas the machining process is cumbersome, time consuming and expensive process.

Thus, there is a need to provide assembly that obviates the problems of the conventional assembly.

PRIOR ARTS AND ITS DISADVANTAGES:

To overcome the issue of roller dislodging, to reduce weight, to minimize the complexity of machining and to increase productivity many attempts has been made;

• US patent 8931609 describes a method of manufacturing one way clutch such that roller do not dislodged from its position. Said invention comprises of cylindrical cage with windows to accommodate rollers.
• However, said device includes machining of pockets which is time consuming and expensive process. Further as the thickness of projection is higher, the mounting holes and counter bore of the hole needs to be machined which is cumbersome, time consuming and expensive process.

• US patent 2011/0108382 describes a method of manufacturing one way clutch such that machining complexity reduced by providing pillars, in place of projections, on one of the flange.
• However, said method comprises of spot-welding and complex machining of pillars, which is not desirable for mass production.

• US patent 2002/0148696 describes the device to manufacture one way clutch by stacking piece of blanked sheets to reduce machining complexity and to reduce total size of product.
• However, said device fails to prevent dislodging of roller from its position. It fails to provide adequate dimensional accuracy of sheet stacking and thus is not used in general practice.

• US patent 4106602 describes a method of manufacturing the one way clutch such that product is economical as material saved by gripping elements. By providing gripping element the projections are eliminated.
• However, said device fails to prevent the roller from falling out of one way clutch assembly.

Therefore, available prior arts teaches about the one way clutch that suffers from the disadvantages of dimensional inaccuracy and non-positive engagement, which leads one way clutch bearing to deteriorate from its functioning and that are manufactured produced by means of relatively complex and expensive manufacturing processes.

OBJECTS OF THE PRESENT INVENTION:

The main object of present invention is to provide an improved one way clutch bearing; which is a light weight single piece assembly, is easy to manufacture and is cost effective.

Another object of present invention is to provide an improved one way clutch bearing as a single piece assembly; wherein the outer ring made from sheet metal working, cold forging or hot forging process.

Still another object of the present invention is to provide an improved one way clutch bearing, wherein said pockets are made from press operation like piercing, blanking or fine blanking which is highly consistent, have high production rate and is cost effective.

Still another object of present invention is to provide an improved one way clutch bearing as a single piece assembly; wherein pockets are so designed that rollers do not dislodged radially.

Still another object of the present invention is to provide an improved one way clutch bearing, wherein top cover and bottom plate are positively locked with outer ring such that rollers and spring do not dislodged axially.

Still another object of the present invention is to provide an improved one way clutch bearing, wherein said cam mechanism is provided by cam-pin and rollers.

Still another object of the present invention is to provide an improved one way clutch; wherein said cam-pin is made by sheet metal working or cold forging operation which is highly consistent, have high production rate and is cost effective.

Still further object of the present invention is to provide an improved one way clutch bearing, wherein projection prevents the spring to be in contact with rotating inner ring thereby prevents it from being wear-out.

Yet the object of the present invention is to provide an improved one way clutch bearing; which is light weight single piece assembly, do not have issue of roller dislodging, easy to manufacture, highly consistent, have high production rate and is cost effective.

BRIEF DESCRIPTION OF THE DRAWINGS:

Fig. 1 discloses the top view of conventional one way clutch bearing.

Fig. 2 discloses the fragmentary view of present invention of improved one way clutch bearing.

Fig. 3 discloses sectional the first step of manufacturing of outer ring of improved one way clutch bearing.

Fig. 4 discloses sectional the second step of manufacturing of outer ring of improved one way clutch bearing.

Fig. 5 discloses the final step of manufacturing of outer ring of improved one way clutch bearing.

Fig. 6 discloses the top view of present invention of improved one way clutch bearing.

Fig. 7 discloses the sectional view of present invention of improved one way clutch bearing.

Fig. 8 discloses the sectional view of second embodiment of present invention showing cam-pin, roller, spring and pockets.

Fig. 9 discloses the sectional view of third embodiment of present invention showing cam-pin, roller, spring and pockets.

Reference numerals used for various parts of the invention:

1 : Present improved one way clutch bearing
1A : Conventional One way clutch assembly
10 : Conventional outer ring
101 : Holes
102 : Cam profile
103 : Pockets
104 : Projections
11 : Raw piece of Improved outer ring
11a : Semi finish improved outer ring
11b : Improved outer ring
111 : Guide surface
112 : Under groove
113 : Pockets
113a : Pockets of second embodiment
113b : Pockets of third embodiment
114 : Projections
115 : Holes
116 : Inner peripheral face of pockets
117 : Peripheral face
12 : Inner ring
121 : Outer face of inner ring
13 : Rollers
14 : Cam-pin
14a : Cam-pin of second embodiment
14b : Cam-pin of third embodiment
141 : Cam profile
141a : Cam profile of second embodiment
141b : Cam profile of third embodiment
142 : Outer face
143 : Spring seating face
15 : Spring
16 : Top cover
161 : Holes of top cover
17 : Bottom plate
171 : Holes of bottom plate

DETAILED DESCRIPTION OF THE PRESENT INVENTION:

The present invention An Improved One Way Clutch Bearing and Method of Manufacturing Thereof 1 provides an improved one way clutch bearing of roller type and a method for manufacturing it, wherein said improved one way clutch bearing; is a light weight single piece assembly, which is easy to manufacture and is cost effective. Further, process of manufacturing of improved one way clutch is highly consistent and have high production rate.

Referring to Fig. 1 to Fig. 9 an embodiment of the present invention provides an improved one way clutch bearing wherein said improved one way clutch bearing 1 mainly comprises of:
• Outer ring 11b
• Inner ring 12
• Rollers 13
• Cam-pin 14
• Spring 15
• Top cover 16
• Bottom plate 17

Said outer ring 11b further comprises of guide surface 111, under groove 112, pockets 113 and projections 114, extended inwardly in radial direction, and holes 115 for mounting the one way clutch bearing 1 on rotor (not shown).

Said cam-pin 14 is provided to constitute said cam mechanism between roller 13, cam-pin 14 and inner ring 12 and further comprises of outer face 142, spring seating face 143 and cam-profile 141. Said outer face 142 is provided to accommodate cam-pin 14 in pockets 113, wherein said outer face 142 of cam-pin 14 has the radius R similar to the radius R of inner peripheral face 116 of pockets 113. Said the inner face 116 of pocket 113 is provided at extreme inner peripheral face 117 of outer ring 11b to provide full support to the outer face 142 of cam-pin 14. The rollers 13 are tangentially spring loaded by spring 15.

Referring to fig.6, said spring 15 is provided for biasing the roller 13 and is located between roller 13 and spring seating face 143 of cam-pin 14 in respective pockets 113 of outer ring 11b. Said rollers 13 are placed such that they are engaged by cam surfaces 141 of cam-pins 14 and outer face 121 of inner ring 12 and there by provides a condition where the said one way clutch bearing 1 is locked in one direction.

Referring to Fig.7, said roller 13 and spring 15 are located between the cam-pin 14 and inner ring 12, wherein the thickness of the said projections 114 is kept 30-50% of the roller length, which thereby reduces the weight and cost of the present one way clutch bearing. Further, the projections 114 are so designed that opening of pocket 113 is 5-10% smaller than that of the roller 13 diameter, as shown in Fig. 6, to prevent the roller 13 to dislodge radially from its position. Moreover, the projection 114 prevents the spring 15 to be in contact with outer face 121 of inner ring 12, which thereby prevents said spring 15 from any wear. Said top cover 16 made from sheet steel joined with outer ring 11b attached by methods that includes crimping, caulking or alike positive engagement method. Said top cover 16 and bottom plate 17 comprises of holes 161 and 171 for mounting purpose. Said bottom plate 17 consists of interference fit with guide surface 111 and have clearance fit with under groove 112, so that it can be fix in outer ring 11b. Further, the bottom plate 17 can be mechanically locked with outer ring 11b.

Referring to Fig. 6 and Fig. 7, the present one way clutch bearing 1, is provided in form of a single unit which further prevents said roller 13 and spring 15 to get dislodged from its position and there by provides a one way clutch bearing. Another alternative to the present one way clutch bearing is by providing a sealing to the said inner periphery of top cover 16 and bottom plate 17 to reduce the accumulation of foreign particles in pockets 114 as top cover 16 and bottom plate 17 are fixed with outer ring 11b.

Present embodiment serves all the aspects of one way clutch of roller type yet is light in weight, easy to manufacture, highly consistent, have high production rate and is cost effective.

METHOD OF MANUFACTURING IMPROVED OUTER RING:

Referring to Fig.3 the present one way clutch bearing 1 consists of an improved outer ring 11b made from sheet steel or forged steel, wherein the best method for manufacturing the improved outer ring is as follows:

a. Referring to Fig.3, said raw piece 11 of improved outer ring 11b, and is made from sheet metal working or forging process.

b. Said outer ring 11 is machined by turning operation, as shown in Fig. 4, to get outer ring 11a which further comprises of guide face 111 and under groove 112 to fix bottom plate 17. Said outer ring 11a alternatively made from sheet metal working, eliminating the first step, which is highly consistent, and has high production rate and is cost-effective process.

c. After machining of outer ring 11a the pockets 113, the projections 114 and holes 115 are formed by piercing, blanking or fine blanking process. Wherein due to piercing, blanking or fine blanking process, forming of complex shape is done reliably and quickly, which further improves consistency and production rate. Thereby machining of mounting holes and counter bore is eliminated.

d. After blanking, piercing or fine blanking process operation the outer ring 11b is subjected to hardening process in case of high torque transmission application.

METHOD OF MANUFACTURING CAM-PIN:

Said cam-pin 14 is provided to constitute said cam mechanism between rollers 13, cam-pin 14 and inner ring 12, wherein the best method to manufacture the cam-pin 14 of the present one way clutch bearing 1 is through:

a. said cam-pin 14 is made from rectangular strip or rectangular bar of steel by press operation or cold forging process, thereby achieving high consistency and high production rate;

b. said cam-pins 14 is further subjected to hardening process; wherein in case of low torque transmission the hardening of outer ring 11b is not needed thereby reduces the manufacturing cost.

OTHER EMBODIMENTS OF PRESENT INVENTION:

i) Second embodiment of present invention:

Another embodiment of present invention is as shown in Fig. 8. This embodiment comprises of:

• Outer ring 11b
• Inner ring 12
• Rollers 13
• Cam-pin 14a
• Spring 15
• Top cover 16
• Bottom plate 17,

Wherein,

Said outer ring 11b further comprises of guide surface 111, under groove 112, pockets 113a, modified as per cam-pin 14a, and projections 114, extended inwardly in radial direction, and mounting holes 115.

Said cam-pin 14a comprises of outer face 142 and cam-profile 141. Said cam-pin 14a does not consists of spring seating face 143 like as described in main embodiment. Said outer face 142 is same as described in main embodiment. The rollers 13 are tangentially spring loaded by spring 15. Said spring 15 is accommodated between roller 13 and pockets 113a, wherein the opening of pocket 113a is kept 5-10% smaller than that of roller length to prevent the roller 13 to dislodge from its position. Also, the top cover 16 and bottom plate 17 are fixed with outer ring 11b as described in main embodiment, which thereby provides a single piece assembly of one way clutch bearing.

ii) Third embodiment of present invention:

Another embodiment of present invention is as shown in Fig. 9. This embodiment comprises of:

• Outer ring 11b
• Inner ring 12
• Rollers 13
• Cam-pin 14b
• Spring 15
• Top cover 16
• Bottom plate 17,

Wherein,
Said outer ring 11b further comprises of guide surface 111, under groove 112, pockets 113b, modified as per cam-pin 14b, and projections 114, extended inwardly in radial direction, and mounting holes 115.
Said cam-pin 14b comprises of outer face 142 and cam-profile 141b. Said cam-pin 14b consists of alternative of cam profile 141b as shown in Fig. 9. Said outer face 142 is same as described in main embodiment. The rollers 13 are tangentially spring loaded by spring 15. Said spring 15 is accommodated between roller 13 and pockets 113b, wherein the opening of pocket 113b is kept 5-10% smaller than that of roller length to prevent the roller 13 to dislodge from its position. Also, the top cover 16 and bottom plate 17 are fixed with outer ring 11b as described in main embodiment, which thereby provides a single piece assembly of one way clutch bearing.
The foregoing description of the specific embodiments will so fully reveal the general nature of the embodiments herein that others can, by applying current knowledge, readily modify and/or adapt for various applications such specific embodiments without departing from the generic concept, and, therefore, such adaptations and modifications should and are intended to be comprehended within the meaning and range of equivalents of the disclosed embodiments. It is to be understood that the phraseology or terminology employed herein is for the purpose of description and not of limitation. Therefore, while the embodiments herein have been described in terms of preferred embodiments, those skilled in the art will recognize that the embodiments herein can be practiced with modification within the spirit and scope of the embodiments as described herein.

ADVANTAGES OF THE INVENTION:
There are many advantages of the present invention over prior art and conventional:
1. Present invention provides improved one way clutch bearing in single unit.
2. Present invention provides improved one way clutch bearing; in which the problem of dislodging of roller and spring is eliminated.
3. Present invention provides improved one way clutch bearing; wherein the problem of spring wear is eliminated.
4. Present invention provides improved one way clutch bearing which is light in weight, easy to manufacture, highly consistent, have high production rate and is cost effective.

Documents

Application Documents

# Name Date
1 Power of Attorney [11-07-2017(online)].pdf 2017-07-11
2 Form 5 [11-07-2017(online)].pdf 2017-07-11
3 Form 3 [11-07-2017(online)].pdf 2017-07-11
4 Form 1 [11-07-2017(online)].pdf 2017-07-11
5 Drawing [11-07-2017(online)].pdf 2017-07-11
6 Description(Complete) [11-07-2017(online)].pdf_99.pdf 2017-07-11
7 Description(Complete) [11-07-2017(online)].pdf 2017-07-11
8 201721024460-FORM-9 [20-07-2017(online)].pdf 2017-07-20
9 201721024460-FORM 18 [19-03-2018(online)].pdf 2018-03-19
10 201721024460-RELEVANT DOCUMENTS [31-05-2018(online)].pdf 2018-05-31
11 201721024460-Changing Name-Nationality-Address For Service [31-05-2018(online)].pdf 2018-05-31
12 201721024460-MARKED COPIES OF AMENDEMENTS [04-07-2018(online)].pdf 2018-07-04
13 201721024460-AMMENDED DOCUMENTS [04-07-2018(online)].pdf 2018-07-04
14 201721024460-Amendment Of Application Before Grant - Form 13 [04-07-2018(online)].pdf 2018-07-04
15 ABSTRACT1.jpg 2018-08-11
16 201721024460-OTHERS(ORIGINAL UR 6(1A) FORM 26)-270618.pdf 2018-09-24
17 201721024460-FORM 18A [29-11-2018(online)].pdf 2018-11-29
18 201721024460-FER.pdf 2018-12-18
19 201721024460-OTHERS [06-06-2019(online)].pdf 2019-06-06
20 201721024460-FORM 3 [06-06-2019(online)].pdf 2019-06-06
21 201721024460-FER_SER_REPLY [06-06-2019(online)].pdf 2019-06-06
22 201721024460-DRAWING [06-06-2019(online)].pdf 2019-06-06
23 201721024460-CORRESPONDENCE [06-06-2019(online)].pdf 2019-06-06
24 201721024460-COMPLETE SPECIFICATION [06-06-2019(online)].pdf 2019-06-06
25 201721024460-CLAIMS [06-06-2019(online)].pdf 2019-06-06
26 201721024460-Annexure [06-06-2019(online)].pdf 2019-06-06
27 201721024460-ABSTRACT [06-06-2019(online)].pdf 2019-06-06
28 201721024460-REQUEST FOR ADJOURNMENT OF HEARING UNDER RULE 129A [02-07-2019(online)].pdf 2019-07-02
29 201721024460-Response to office action (Mandatory) [10-07-2019(online)].pdf 2019-07-10
30 201721024460-ExtendedHearingNoticeLetter_17-07-2019.pdf 2019-07-17
31 201721024460-HearingNoticeLetter18-07-2019.pdf 2019-07-18
32 201721024460-Written submissions and relevant documents (MANDATORY) [23-07-2019(online)].pdf 2019-07-23
33 201721024460-PETITION UNDER RULE 137 [23-07-2019(online)].pdf 2019-07-23
34 201721024460-Annexure (Optional) [23-07-2019(online)].pdf 2019-07-23
35 201721024460-PatentCertificate29-07-2019.pdf 2019-07-29
36 201721024460-IntimationOfGrant29-07-2019.pdf 2019-07-29
37 201721024460-Request Letter-Correspondence [09-01-2020(online)].pdf 2020-01-09
38 201721024460-REQUEST FOR CERTIFIED COPY [09-01-2020(online)].pdf 2020-01-09
39 201721024460-CORRESPONDENCE(IPO)-(CERTIFIED COPY OF WIPO DAS)-(9-1-2020).pdf 2020-01-10
40 201721024460-CORRESPONDENCE(IPO)-(CERTIFIED COPY)-(10-1-2020).pdf 2020-01-14
41 201721024460-RELEVANT DOCUMENTS [30-09-2021(online)].pdf 2021-09-30
42 201721024460-RELEVANT DOCUMENTS [03-07-2023(online)].pdf 2023-07-03

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