CN211594369U - Frictioning equipment - Google Patents

Frictioning equipment Download PDF

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Publication number
CN211594369U
CN211594369U CN202020010449.7U CN202020010449U CN211594369U CN 211594369 U CN211594369 U CN 211594369U CN 202020010449 U CN202020010449 U CN 202020010449U CN 211594369 U CN211594369 U CN 211594369U
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China
Prior art keywords
frictioning
assembly
positioning
bearing
axis
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CN202020010449.7U
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Chinese (zh)
Inventor
杜义贤
陈德
黄付延
郤能
王志成
钟小兰
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Guangdong Lyric Robot Automation Co Ltd
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Guangdong Lyric Robot Intelligent Automation Co Ltd
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Priority to CN202020010449.7U priority Critical patent/CN211594369U/en
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Abstract

The utility model discloses a glue wiping device, which comprises a feeding positioning device, a glue wiping device and a winding and unwinding device; the feeding positioning device is arranged on the feeding side of the frictioning device, and the winding and unwinding device is adjacent to the frictioning device; the feeding positioning device is used for positioning a feeding product, the wiping device respectively receives the positioned product and the wiping cloth released by the winding and unwinding device, and the wiping cloth is controlled to wipe the product. The utility model provides a utility model discloses a material loading positioner, frictioning device and receive and release the cooperation setting of rolling up device, realize having promoted the frictioning efficiency of product to the quick frictioning of product, fix a position the material loading of product through material loading positioner moreover, guaranteed the accuracy of follow-up frictioning.

Description

Frictioning equipment
Technical Field
The utility model relates to a frictioning technical field specifically relates to a frictioning equipment.
Background
When electronic products are manufactured, related elements are often required to be attached and assembled through glue, and residual glue, such as residual glue on the periphery of a screen of a smart phone, is left behind by the assembled glue. In order to ensure the quality of electronic products, the residual glue for mounting needs to be removed. However, the automation degree of the glue wiping equipment in the prior art is low, and the overall glue wiping efficiency needs to be improved.
SUMMERY OF THE UTILITY MODEL
Not enough to prior art, the utility model provides a frictioning equipment.
The utility model discloses a glue wiping device, which comprises a feeding positioning device, a glue wiping device and a winding and unwinding device; the feeding positioning device is arranged on the feeding side of the frictioning device, and the winding and unwinding device is adjacent to the frictioning device; the feeding positioning device is used for positioning a feeding product, the wiping device respectively receives the positioned product and the wiping cloth released by the winding and unwinding device, and the wiping cloth is controlled to wipe the product.
According to an embodiment of the present invention, the feeding positioning device includes a positioning mechanism and a positioning driving mechanism; the output end of the positioning driving mechanism is connected with the positioning mechanism; the positioning mechanism positions the loaded product, the positioning driving mechanism drives the positioning mechanism, and the positioned product is transferred to the glue wiping device from the positioning mechanism.
According to the utility model relates to an embodiment, positioning mechanism includes the constant head tank, and the constant head tank is used for supporting the product and fixes a position the product.
According to an embodiment of the present invention, the winding and unwinding device includes an unwinding mechanism and a winding mechanism; the unwinding mechanism and the winding mechanism are respectively arranged on two opposite sides of the glue wiping device; the unwinding mechanism releases the wiping cloth, the released wiping cloth is firstly wound at the wiping end of the wiping device and then wound by the winding mechanism.
According to an embodiment of the present invention, the glue spreading device includes a glue spreading mechanism and a bearing mechanism; the glue wiping mechanism is adjacent to the bearing mechanism; the bearing mechanism comprises a bearing driving component and a bearing component; the output end of the bearing driving component is connected with the bearing component; the bearing component is used for receiving and bearing the positioned product, and the bearing driving component drives the bearing component to move to drive the product to move around the glue wiping end of the glue wiping mechanism, so that the glue wiping mechanism wipes the product.
According to an embodiment of the present invention, the bearing driving assembly includes an X-axis driving member and a Y-axis driving member; the output end of the X-axis driving piece is connected with the Y-axis driving piece, and the output end of the Y-axis driving piece is connected with the bearing assembly; the X-axis driving piece and the Y-axis driving piece are matched to drive the bearing assembly to move in a double-shaft mode.
According to an embodiment of the present invention, the bearing driving assembly further comprises a C-angle driving member; the output end of the Y-axis driving piece is connected with the C-angle driving piece, and the output end of the C-angle driving piece is connected with the bearing assembly; the X-axis driving piece, the Y-axis driving piece and the C-angle driving piece are matched with each other to drive the bearing assembly to move in three axes.
According to an embodiment of the present invention, the glue wiping mechanism includes a glue wiping driving assembly and a glue wiping assembly; the output end of the frictioning driving component is connected with the frictioning component; the frictioning end of the frictioning component faces the bearing end of the bearing component; the frictioning driving assembly drives the frictioning assembly to move, so that the frictioning assembly is matched with the bearing assembly to frictionize a product.
According to an embodiment of the present invention, the glue driving assembly includes a Z-axis driving member; the output end of the Z-axis driving piece is connected with the frictioning assembly, and the Z-axis driving piece drives the frictioning assembly to move in a single axis mode.
According to an embodiment of the present invention, the frictioning driving assembly further comprises an a-angle driving member; the output end of the Z-axis driving piece is connected with the A-angle driving piece, and the output end of the A-angle driving piece is connected with the frictioning assembly; the Z-axis driving piece and the A-angle driving piece are matched to drive the frictioning assembly to move in a double-axis mode.
This application sets up through material loading positioner, frictioning device and the cooperation of receiving and releasing the rolling up device, realizes having promoted the frictioning efficiency of product to the quick frictioning of product, fixes a position the material loading of product through material loading positioner moreover, has guaranteed the accuracy of follow-up frictioning.
Drawings
The accompanying drawings, which are included to provide a further understanding of the application and are incorporated in and constitute a part of this application, illustrate embodiment(s) of the application and together with the description serve to explain the application and not to limit the application. In the drawings:
FIG. 1 is a schematic structural diagram of a glue spreading device in this embodiment;
FIG. 2 is a schematic structural view of the glue wiping device and the supporting and mounting device in the present embodiment;
fig. 3 is a schematic structural view of the feeding positioning device in this embodiment;
FIG. 4 is a schematic structural diagram of the supporting mechanism in this embodiment;
FIG. 5 is a schematic structural diagram of the glue wiping mechanism in the present embodiment;
FIG. 6 is a schematic structural diagram of a glue dispensing assembly according to the present embodiment;
FIG. 7 is a schematic structural view of the winding and unwinding device and the supporting and mounting device in the present embodiment;
FIG. 8 is a schematic structural view of the unwinding shaft in the present embodiment;
fig. 9 is another schematic structural diagram of the glue wiping device in this embodiment.
Description of reference numerals:
1. a feeding positioning device; 11. a positioning mechanism; 11a, a connecting part; 11b, a first positioning portion; 11c, a second positioning part; 111. positioning a groove; 112. a lead-in groove; 113. positioning the sliding block; 12. a positioning drive mechanism; 121. a positioning drive mechanism; 1211. positioning the drive guide; 122. positioning the supporting plate; 1221. a positioning guide groove; 1222. positioning a guide slide rail; 2. a glue wiping device; 21. a glue wiping mechanism; 211. a frictioning drive assembly; 2111. a Z-axis drive member; 2112. an angle A driving piece; 21121. the A corner bearing frame; 21122. an A-angle driver; 21123. the A angle drives the transmission member; 21124. the angle A drives the rotating shaft; 212. a glue wiping component; 2120. a wipe carrier; 21201. a sliding projection; 2121. a glue wiping piece; 21211. a glue wiping head; 21212. a glue wiping seat; 2122. a wipe holder; 21221. a sliding groove; 21222. anti-skid lines; 2123. the driving piece is clamped by the wiping cloth; 2124. cleaning a liquid piece; 21241. cleaning the outlet hole; 21242. cleaning the access hole; 21243. cleaning the storage; 2125. a driving member for applying glue; 22. a carrying mechanism; 221. a load bearing drive assembly; 2211. an X-axis drive member; 2212. a Y-axis drive member; 2213. a C-angle drive member; 22131. a C-angle bearing frame; 22132. a C-angle driver; 22133. a C-angle drive transmission member; 22134. c angle drives the spindle; 222. a load bearing assembly; 2221. a bearing table; 22211. detecting the through hole; 2222. an adsorption part; 2223. carrying a detection piece; 23. a frictioning protective cover; 231. a suction port; 24. a frictioning liquid collector; 3. a coiling and uncoiling device; 31. an unwinding mechanism; 311. an unwinding driving assembly; 3111. an unwinding driving member; 312. an unwinding assembly; 3121. unwinding the reel; 31211. a shaft body; 312111, mounting shaft; 312112, an expansion shaft seat; 312112a, a regulating block mounting groove; 312112b, an adjustment hole; 31212. an adjusting block; 31213. adjusting the elastic member; 31214. a bearing member; 3122. placing the reel; 313. unwinding turning assembly; 3131. a direction-changing mounting plate; 3132. a turning rotating shaft; 3133. a transition piece; 32. a winding mechanism; 321. a winding driving component; 322. a winding component; 323. rolling a turning component; 4. a support mounting means; 41. supporting the mounting baseplate; 42. a vertical plate is arranged on the first support; 43. a vertical plate is arranged on the second support; 44. a first support mounting side plate; 441. winding and unwinding the mounting plate; 45. the second support mounts the side plate.
Detailed Description
In the following description, numerous implementation details are set forth in order to provide a more thorough understanding of the present invention. It should be understood, however, that these implementation details should not be used to limit the invention. That is, in some embodiments of the invention, details of these implementations are not necessary. In addition, some conventional structures and components are shown in simplified schematic form in the drawings.
It should be noted that all the directional indicators in the embodiments of the present invention, such as upper, lower, left, right, front and rear … …, are only used to explain the relative position relationship between the components, the motion situation, etc. in a specific posture as shown in the drawings, and if the specific posture is changed, the directional indicator is changed accordingly.
In addition, the descriptions related to "first", "second", etc. in the present invention are only for description purposes, not specifically referring to the order or sequence, and are not intended to limit the present invention, but only to distinguish the components or operations described in the same technical terms, and are not to be construed as indicating or implying any relative importance or implicit indication of the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one such feature. In addition, the technical solutions in the embodiments may be combined with each other, but it must be based on the realization of those skilled in the art, and when the technical solutions are contradictory or cannot be realized, the combination of the technical solutions should not be considered to exist, and is not within the protection scope of the present invention.
For further understanding of the contents, features and functions of the present invention, the following embodiments will be exemplified in conjunction with the accompanying drawings as follows:
referring to fig. 1, fig. 1 is a schematic structural diagram of the frictioning device in this embodiment. The glue wiping equipment in the embodiment comprises a feeding positioning device 1, a glue wiping device 2 and a winding and unwinding device 3. The feeding positioning device 1 is arranged on the feeding side of the glue wiping device 2, and the winding and unwinding device 3 is adjacent to the glue wiping device 2. The feeding positioning device 1 is used for positioning a feeding product, and the wiping device 2 respectively receives the positioned product and the wiping cloth released by the winding and unwinding device 3 and controls the wiping cloth to wipe the product.
Through the cooperation setting of material loading positioner 1, frictioning device 2 and receipts unwinding device 3, realize having promoted the frictioning efficiency of product to the quick frictioning of product, fix a position the material loading of product through material loading positioner 1 moreover, guaranteed the accuracy of follow-up frictioning. The product in this embodiment is a smart phone, for example, a full-screen, curved-screen or normal-screen cell phone, and the glue is used to wipe off the residual glue around the cell phone screen.
With continuing reference to fig. 1 and 2, fig. 2 is a schematic structural view of the glue wiping device and the supporting and mounting device in the present embodiment. Further, the frictioning device in this embodiment further includes a supporting and mounting device 4. The support mounting device 4 includes a support mounting base plate 41, a first support mounting riser 42, a second support mounting riser 43, two first support mounting side plates 44, and two second support mounting side plates 45. The first supporting installation vertical plate 42 is perpendicular to the supporting installation bottom plate 41, the first supporting installation vertical plate 42 is located at one end of the supporting installation bottom plate 41, and the longitudinal sections of the first supporting installation vertical plate 42 and the supporting installation bottom plate 41 are in an L shape. In this embodiment, a directional coordinate concept is introduced to better understand that, when a user faces the "L" shaped side faces of the first supporting and mounting vertical plate 42 and the supporting and mounting bottom plate 41, a direction parallel to the supporting and mounting bottom plate 41 and perpendicular to the first supporting and mounting vertical plate 42 is a direction of the X axis, a direction parallel to the supporting and mounting bottom plate 41 and parallel to the first supporting and mounting vertical plate 42 is a direction of the Y axis, a direction perpendicular to the supporting and mounting bottom plate 41 and parallel to the first supporting and mounting side plate 42 is a direction of the Z axis, a rotation direction parallel to a plane of the XY axis is a C angle direction, and a rotation direction parallel to a plane of the ZX axis is an a angle direction.
The second support mounting riser 43 is located on the side of the first support mounting riser 42 away from the support mounting base plate 41, and the second support mounting riser 43 is parallel to the first support mounting riser 42. The second supporting and mounting vertical plate 43 and the first supporting and mounting vertical plate 42 are fixedly connected through two first supporting and mounting side plates 44 respectively. Specifically, the two first supporting installation side plates 44 are parallel to each other, and the two sides of the second supporting installation vertical plate 43 and the two sides of the first supporting installation vertical plate 42 are respectively fixedly connected with the opposite side walls of the two first supporting installation side plates 44, so that the cross sections of the first supporting installation vertical plate 42, the second supporting installation vertical plate 43 and the two first supporting installation side plates 44 form a rectangular frame structure. Preferably, the winding and unwinding mounting plates 441 are respectively disposed at the upper ends of the first supporting and mounting side plates 44, and the winding and unwinding mounting plates 441 are located at the upper ends of the first supporting and mounting side plates 44 and extend from the first supporting and mounting vertical plate 42 to a side far away from the second supporting and mounting vertical plate 43. Preferably, the winding and unwinding mounting plate 441 and the first supporting and mounting side plate 44 are integrally formed, and preferably, the winding and unwinding mounting plate 441 and the first supporting and mounting side plate 44 are approximately L-shaped plates. The two second supporting installation side plates 45 are respectively vertically arranged on the surface of the supporting installation bottom plate 41, the two second supporting installation side plates 45 are parallel to each other, the second supporting installation side plates 45 are parallel to the first supporting installation side plates 44, and preferably, the two second supporting installation side plates 45 are respectively positioned on the outer sides of the two first supporting installation side plates 44.
With continuing reference to fig. 1 and 3, fig. 3 is a schematic structural diagram of the feeding positioning device in this embodiment. Further, the feeding positioning device 1 is disposed on the support mounting bottom plate 41 and between the two second support mounting side plates 45, and the feeding end of the feeding positioning device 1 faces the first support mounting vertical plate 42. Preferably, the loading fixture 1 is adjacent to the side of the support mounting floor 41 remote from the first support mounting riser 42. The feeding positioning device 1 includes a positioning mechanism 11 and a positioning driving mechanism 12. The output end of the positioning driving mechanism 12 is connected with the positioning mechanism 11. The positioning mechanism 11 positions the loaded product, and the positioning driving mechanism 12 drives the positioning mechanism 11 to transfer the positioned product from the positioning mechanism 11 to the glue wiping device 2. Preferably, the positioning mechanism 11 includes a positioning groove 111, and the positioning groove 111 is used for supporting and positioning the product. Specifically, the positioning mechanism 11 is a U-shaped structure, and includes a connecting portion 11a, a first positioning portion 11b and a second positioning portion 11c, where the connecting portion 11a is connected to an execution end of the positioning driving mechanism 12, the first positioning portion 11b and the second positioning portion 11c are parallel to each other and disposed on two sides of the connecting portion 11a, the positioning groove 111 is disposed on one side where the first positioning portion 11b and the second positioning portion 11c are close to each other, and has a length smaller than that of the first positioning portion 11b and the second positioning portion 11c, and a distance between the positioning groove 111 disposed on the first positioning portion 11b and the positioning groove 111 disposed on the second positioning portion 11c is adapted to a width of the product, so that two sides of the product are just supported by the positioning grooves 111 on the first positioning portion 11b and the second positioning portion 11c, and the product is limited by the first positioning portion 11b and the second positioning portion. Preferably, the positioning mechanism 11 is further provided with an introduction groove 112, the introduction groove 112 is disposed above the positioning groove 111 and is communicated with the positioning groove 111, and the inner wall of the introduction groove 112 is obliquely disposed, so that the width of the end of the introduction groove 112 far away from the positioning groove 111 is larger than the width of the connecting end of the introduction groove 112 and the positioning groove 111. When the product is placed toward the positioning groove 111, the product enters the positioning groove 111 through the introduction groove 112. The introduction groove 112 makes it easier for the product to enter the positioning groove 111. In specific application, the product can be loaded and placed in the positioning groove 111 through the cooperation of the external linear module and the manipulator. Preferably, in order to facilitate the product to be placed into the positioning groove 111, the introduction groove 112 extends upward and penetrates the upper surfaces of the first positioning portion 11b and the second positioning portion 11 c.
Referring to fig. 1 and fig. 3 again, further, the positioning driving assembly 12 includes a positioning driving mechanism 121 and a positioning supporting plate 122, the positioning driving mechanism 121 is disposed on the positioning supporting plate 122, an actuating end of the positioning driving mechanism 121 is connected to the positioning mechanism 11 to drive the positioning mechanism 11 to ascend or descend, and when the positioning mechanism 11 descends, the product on the positioning mechanism 11 is blanked. The positioning driving mechanism 121 adopts a driving cylinder, the driving cylinder is arranged on the positioning supporting plate 122, and the execution end is connected with the positioning mechanism 11. When the driving cylinder is started, the positioning mechanism 11 ascends or descends along with the execution end of the driving cylinder, and the product is discharged when the positioning mechanism descends. Preferably, the positioning support plate 122 is provided with a positioning guide slot 1221, an execution end of the positioning driving mechanism 121 is connected with a positioning driving guide 1211, the positioning driving mechanism 121 is arranged at one side of the positioning support plate 122, and the positioning driving guide 1211 passes through the positioning guide slot 1221 and is connected with the positioning mechanism 11. When the positioning drive mechanism 121 is activated, the positioning drive guide 1211 slides along the positioning guide groove 1221, and moves the positioning mechanism 11. Preferably, the positioning support plate 122 is provided with a positioning guide rail 1222, the positioning mechanism 11 is provided with a positioning slider 113, and the positioning slider 113 is slidably connected to the positioning guide rail 1222. When the positioning driving mechanism 121 drives the positioning mechanism 11 to move, the positioning slider 113 slides along the positioning guide rail 1222, so that the positioning mechanism 11 moves smoothly.
With continuing reference to fig. 2 and 4, fig. 4 is a schematic structural diagram of the carrying mechanism in this embodiment. Further, the glue spreading device 2 includes a glue spreading mechanism 21 and a carrying mechanism 22. The glue wiping mechanism 21 is adjacent to the bearing mechanism 22. The bearing mechanism 22 includes a bearing driving assembly 221 and a bearing assembly 222. The output end of the carrier driving assembly 221 is connected with the carrier assembly 222. The bearing assembly 222 is used for receiving and bearing the positioned product, and the bearing driving assembly 221 drives the bearing assembly 222 to move, so as to drive the product to move around the glue wiping end of the glue wiping mechanism 21, so that the glue wiping mechanism 21 wipes the product. The bearing component 222 driven by the bearing driving component 221 moves around the glue wiping end of the glue wiping mechanism 21, so that the glue wiping end of the glue wiping mechanism 21 can be fully wiped around a product, the glue wiping quality is ensured, and the product quality is further ensured.
Referring back to fig. 2 and 4, further, the carriage drive assembly 221 includes an X-axis drive 2211 and a Y-axis drive 2212. The output end of the X-axis driver 2211 is connected to the Y-axis driver 2212, and the output end of the Y-axis driver 2212 is connected to the carrier assembly 222. The X-axis driver 2211 cooperates with the Y-axis driver 2212 to drive the carriage assembly 222 in a bi-axial motion. Specifically, the X-axis driving element 2211 is laid on the surface of the supporting and mounting bottom plate 41 along the X-axis direction and located between the two second supporting and mounting side plates 45, one end of the X-axis driving element 2211 is opposite to the feeding positioning device 1, and the other end of the X-axis driving element 2211 is opposite to the first supporting and mounting vertical plate 42. The X-axis driving component 2211 in this embodiment may adopt a linear module, or adopt the cooperation of a motor, a driving wheel, a synchronous belt, a driven wheel, a screw rod, a sliding rail and a sliding table. The Y-axis driving member 2212 is disposed on the sliding table of the X-axis driving member 2211 along the Y-axis direction, and the structure and the operation principle of the Y-axis driving member 2212 are the same as those of the X-axis driving member 2211, and are not described herein again. The carrier assembly 222 is disposed on a slide of the Y-axis drive 2212. Thus, when the X-axis driving component 2211 and the Y-axis driving component 2212 are driven in a matching manner, the bearing component 222 can perform biaxial movement in two directions of the X-axis and the Y-axis, that is, linear movement in the plane of the XY-axis, so as to adjust the position of the mobile phone screen borne on the bearing component 222, and the periphery of the mobile phone screen moves around the glue wiping end of the glue wiping mechanism 1, thereby realizing comprehensive glue wiping, and preferably adapting to a common rectangular screen mobile phone. When the bearing assembly 222 bears the product, the X-axis driving element 2211 and the Y-axis driving element 2212 are firstly matched with each other to drive the bearing assembly 222 to move to the position below the positioning groove 111 of the positioning mechanism 11, then the positioning driving mechanism 121 drives the positioning mechanism 11 to descend, so that the product in the positioning groove 111 accurately falls on the bearing assembly 222, the bearing assembly 222 carries out adsorption on the product, the positioning and feeding process is completed, and the accuracy of subsequent glue wiping is ensured.
Referring back to fig. 2 and 4, further, the carrier drive assembly 221 further includes a C-angle drive 2213. The output of the Y-axis drive 2212 is connected to the C-angle drive 2213, and the output of the C-angle drive 2213 is connected to the carrier assembly 222. The three of the X-axis driver 2211, the Y-axis driver 2212 and the C-angle driver 2213 cooperate to drive the carrier assembly 222 to move in three axes. Specifically, the C-angle driver 2213 is disposed on a sliding table of the Y-axis driver 2212. The C-angle drive 2213 includes a C-angle carrier 22131, a C-angle driver 22132, a C-angle drive transmission 22133, and a C-angle drive spindle 22134. The C-angle carriage 22131 is provided on a slide table of the Y-axis driver 2212. The C-angle driver 22132 is disposed on the C-angle bearing frame 22131, an output end of the C-angle driver 22132 is connected to the C-angle driving rotating shaft 22134 through the C-angle driving transmission member 22133, the C-angle driving transmission member 22133 in this embodiment is a driving wheel, a synchronous belt and a driven wheel, the C-angle driver 22132 is a motor, the driving wheel is coaxially connected to an output shaft of the motor, the driven wheel is disposed on one side of the driving wheel, the driven wheel is sleeved outside the C-angle driving rotating shaft 22134 and synchronously wound around the driving wheel and the driven wheel, respectively, so as to achieve linkage between the driving wheel and the driven wheel, the C-angle driving rotating shaft 22134 is rotatably connected to the bearing frame 2132, the bearing assembly 222 is disposed above an upper end of the C-angle bearing frame 22131 and is parallel to the supporting. C angle driver 22132 drives C angle driving transmission member 22133 to rotate C angle driving shaft 22134, which in turn drives bearing assembly 222 to rotate along a direction parallel to supporting and mounting base plate 41, i.e. bearing assembly 222 rotates in C angle direction. Thus, when the X-axis driver 2211, the Y-axis driver 2212 and the C-angle driver 2213 are driven in a matching manner, the bearing assembly 222 can perform three-axis motion along three directions of the X-axis, the Y-axis and the C-angle, that is, linear motion and rotation in the plane of the XY-axis, so as to adjust the position of the mobile phone screen borne on the bearing assembly 222, so that the periphery of the mobile phone screen moves around the glue wiping end of the glue wiping mechanism 21, thereby realizing full glue wiping, and preferably adapting to a rectangular screen mobile phone with an R-angle.
Preferably, the carrier assembly 222 includes a carrier 2221 and an absorption portion 2222 disposed on the carrier 2221. The plummer 2221 is parallel to the support mounting base plate 41, and the middle portion thereof is connected to the upper end of the C-angle driving rotation shaft 22134. The specific shape of the supporting platform 2221 in this embodiment can be adapted to the shape of the product to be supported, and the supporting platform 2221 in this embodiment is rectangular block-shaped. The absorption portion 2222 is a plurality of vacuum suction cups embedded in the supporting platform 2221, and can absorb and fix the product supported on the supporting platform 2221, and preferably, the plurality of vacuum suction cups are uniformly distributed on the surface of the supporting platform 2221. Preferably, the bearing assembly 222 further comprises a bearing detector 2223. The bearing detection piece 2223 is disposed on the C-angle bearing frame 22131 and located below the bearing table 2221, the detection end of the bearing detection piece 2223 is opposite to the bearing table 2221, the bearing table 2221 is provided with a detection through hole 22211 at a position corresponding to the bearing detection piece 2223, and the detection light of the bearing detection piece 2223 can penetrate through the detection through hole 22211 to detect whether the bearing table 2221 bears a product. The load detector 2223 in this embodiment may employ a photoelectric sensor.
With continuing reference to fig. 2 and 5, fig. 5 is a schematic structural diagram of the glue wiping mechanism in the present embodiment. Further, the glue wiping mechanism 21 includes a glue driving member 211 and a glue wiping assembly 212. The output end of the frictioning driving piece 211 is connected with a frictioning assembly 212. The frictioning end of frictioning assembly 212 faces the load end of load bearing assembly 222. The frictioning driving member 211 drives the frictioning assembly 212 to move, so that the frictioning assembly 212 cooperates with the carrying assembly 222 to frictionize the product. The frictioning assembly 212 is driven by the frictioning driving piece 211, so that the frictioning assembly 212 moves and is matched with a product borne by the bearing assembly 222, the frictioning end of the frictioning assembly 212 can rub the frictioning end of the product around the to-be-frictioning position of the product through multi-axis linkage, and the completeness and the frictioning quality of the frictioning are further improved. Specifically, the wipe driving member 211 includes a Z-axis driving member 2111. The output end of the Z-axis driving member 2111 is connected to the frictioning assembly 212, which drives the frictioning assembly 212 to move in a single axis. The Z-axis driving component 2111 is laid on the side of the first supporting and mounting vertical plate 42 facing the supporting and mounting bottom plate 41 along the Z-axis direction, and drives the frictioning component 212 to move along the Z-axis direction. Thus, when the X-axis driver 2211, the Y-axis driver 2212 and the C-angle driver 2213 are matched to drive the carrier assembly 222, the Z-axis driver 2111 is synchronously matched to drive the frictioning assembly 212, so that the product carried by the carrier assembly 222 and the frictioning assembly 212 move relatively, and four-axis movement in four directions of the X-axis, the Y-axis, the Z-axis and the C-angle is realized, that is, the mobile phone screen carried by the carrier assembly 222 moves linearly and rotates in the plane of the XY-axis, and the frictioning end of the frictioning assembly 212 moves in the Z-axis direction, so as to adjust the positions of the mobile phone screen carried by the carrier assembly 222 and the frictioning end of the frictioning assembly 212, thereby realizing full frictioning, and preferably adapting to a rectangular screen mobile phone. Preferably, the wipe driving member 211 further includes an a-angle driving member 2112. The output of the Z-axis drive 2111 is connected to the A-angle drive 2112, and the output of the A-angle drive 2112 is connected to the frictioning assembly 212. The Z-axis drive 2111 cooperates with the A-angle drive 2112 to drive the wipe assembly 212 in a bi-axial motion. Specifically, the a-angle driving member 2112 is provided on the slide table of the Z-axis driving member 2111. The A angle drive 2112 includes an A angle carriage 21121, an A angle drive 21122, an A angle drive transmission 21123, and an A angle drive shaft 21124. The A-angle bearing frame 21121 is arranged on a sliding table of the Z-axis driving element 2111 and is vertical to the first supporting and mounting vertical plate 42. The a-angle carriage 21121 in this embodiment is approximately "U" shaped in cross section. The A-angle driver 21122 is provided on the A-angle carriage 21121, and the output end thereof is connected to the A-angle drive shaft 21124 through an A-angle drive transmission 21123. Two ends of the a-angle driving rotating shaft 21124 are rotatably connected to the open end of the a-angle carrier 21121, the a-angle driving rotating shaft 21124 is parallel to the first supporting and mounting riser 42 and the supporting and mounting base plate 41, one end of the a-angle driving rotating shaft 21124 passes through the open end of the a-angle carrier 21121 and then is connected to one end of the a-angle driving transmission member 21123, and the other end of the a-angle driving transmission member 21123 is connected to the output end of the a-angle driver 21122 passing through the a-angle carrier 1121. The angle a driver 21122 in this embodiment is a motor, and the structure and the operation principle of the angle a driving transmission member 21123 are the same as those of the angle C driving transmission member 2133, and are not described herein again. The frictioning assembly 212 is connected to the angle a driving shaft 21124, so that the angle a driving member 21123 is driven by the angle a driving member 2112 to rotate the angle a driving shaft 21124, and further the frictioning assembly 212 is driven to rotate in the angle a direction. Thus, through the matching drive of the Z-axis driving component 2111 and the a-angle driving component 2112, the biaxial movement of the frictioning component 212 in the Z-axis and a-angle directions is realized, and then the frictioning component is matched with the bearing component 222 which is driven by the X-axis driving component 2211, the Y-axis driving component 2212 and the C-angle driving component 2213 to perform the triaxial movement, so that the five-axis movement of the product relative to the frictioning component 212 in five directions of the X-axis, the Y-axis, the Z-axis, the C-angle and the a-angle is realized, that is, the mobile phone screen borne by the bearing component 222 linearly moves and rotates in the plane of the XY-axis, and the frictioning end of the frictioning component 212 linearly moves and rotates in the plane of the ZX-axis to match, so as to adjust the positions of the mobile phone screen borne on the bearing component 222 and the frictioning end of the frictioning component 212.
With continuing reference to fig. 5 and 6, fig. 6 is a schematic structural diagram of the frictioning assembly in this embodiment. Further, the rubbing assembly 212 includes a rubbing member 2121 and a rubbing-cloth holding member 2122 disposed at both sides of the rubbing member 2121. The rubbing cloth covers the surface of the rubbing rubber 2121, and the rubbing cloth holding member 2122 holds the rubbing cloth. Preferably, the wipe assembly 212 further includes a wipe gripping drive 2123. The output end of the wiper holding driving member 2123 is connected to the wiper holding member 2122, and drives the wiper holding member 2122 to hold or release the wiper. Preferably, the frictioning assembly 212 also includes a cleaning fluid 2124. The cleaning liquid 2124 is used to add cleaning liquid to the wipe prior to gripping. Specifically, the frictioning assembly 212 further includes a frictioning carrier 2120. The rubbing bearing 2120 is disposed on the angle a driving rotating shaft 21124, the rubbing bearing 2120 in this embodiment is block-shaped, and both ends of the angle a driving rotating shaft 21124 respectively penetrate through the rubbing bearing 2120 and then are connected to the angle a bearing 21121. The rubbing member 2121 is located below the rubbing carrier 2120, and preferably, the rubbing member 2121 is rotatably connected to the rubbing carrier 2120. The number of the wiper holders 2122 is two, and the two wiper holders 2122 are respectively located on opposite sides of the wiper 2121 and are both located below the wiper carrier 2120. The lower end of the wipe carrier 2120 is provided with a sliding protrusion 2120 corresponding to the two wipe holders 2122, and a sliding groove 21221 corresponding to the sliding protrusion 21201 is provided on the wipe holder 2122. The sliding protrusion 2120 is slidably coupled with the sliding groove 21221, and the wiper holder 2122 is spaced apart from the lower end of the wiper carrier 2120 to facilitate passing of the wiper. The wiper driving member 2123 is disposed on one side of the wiper bearing 2120, and its output end is respectively connected to the two wiper clamping members 2122, which drives the two wiper clamping members 2122 to move linearly relative to the lower end of the wiper bearing 2120, so that the wiper clamping members 2122 and the wiper bearing 2120 form a clamping fit, and further clamp the wiper. The wiper holder 2122 in this embodiment is plate-shaped. In a specific application, one end of the wiper penetrates through the gap between one of the wiper holders 2122 and the lower end of the wiper carrier 2120, then is wound around the surface of the wiper 2121, and then penetrates through the gap between the other wiper holder 2122 and the lower end of the wiper carrier 2120, and the wiper holder driving member 2123 drives the two wiper holders 2122 to hold the wiper, so that the wiper is tightened and forms an approximate "V" shape for wiping. The driving member 2123 for holding the wiping cloth in this embodiment may be an air cylinder, and the wiping cloth may be a dust-free cloth. Preferably, a surface of the wipe holder 2122 facing the lower end of the wipe carrier 2120 is provided with an anti-slip pattern 21222 to increase a friction force between the lower end of the wipe carrier 2120 and the wipe holder 2122, thereby ensuring stable gripping of the wipe. The rubbing member 2121 includes a rubbing head 21211 and a rubbing base 21212. The glue holder 21212 is located at the lower end of the glue bearing member 2120, and is a base with an arc-shaped groove, preferably a base with a semicircular groove, and the glue head 21211 is in a roller shape and forms a rotational connection relationship with the arc-shaped groove of the glue holder 21212 through the cooperation of the rotating shaft and the support, so that the glue head 21211 can rotate. Of course, the squeegee head 21211 may also be in the form of a block that is directly set into a fixed position by the squeegee base 21212. The rubbing head 21211 in this embodiment is made of a soft material, so that the rubbing head itself can deform, and when the rubbing head is used for a mobile phone screen, the rubbing head can sink into the mobile phone screen to form a wrapping shape on the periphery of the mobile phone screen, thereby further increasing the comprehensiveness of the rubbing. The cleaning liquid 2124 is disposed on the scrub pad 21212. Specifically, the cleaning liquid piece 2124 includes a cleaning outlet hole 21241 and a cleaning inlet hole 21242, and the cleaning outlet hole 1241 is connected to the cleaning inlet hole 21242. The cleaning outlet 21241 is arranged on the wall of the arc groove of the rubber seat 21212 and faces the wiping cloth; the cleaning inlet 21242 is formed on the base of the rubber seat 21212, and the cleaning inlet 21242 is used for the inlet of a cleaning liquid, which is alcohol in this embodiment. Preferably, the frictioning assembly 212 also includes a frictioning drive 2125. The output end of the wiping driving member 2125 is connected to the wiping member 2121, and the wiping driving member 2125 drives the wiping member 2121 to linearly move in a direction perpendicular to and supporting the mounting substrate 41. Specifically, the rubbing driving member 2125 is disposed on the other side of the rubbing carrier 2120, and its output end is connected to the rubbing base 21212. The wiping driving member 2125 in this embodiment may be an air cylinder. After the wiping cloth is clamped, the wiping driving member 2125 drives the wiping head 21211 to move downwards, so as to ensure the tight state of the wiping cloth.
With continuing reference to fig. 1 and 7, fig. 7 is a schematic structural view of the winding and unwinding device and the supporting and mounting device in the present embodiment. Further, the winding and unwinding device 3 includes an unwinding mechanism 31 and a winding mechanism 32. The unwinding mechanism 31 and the winding mechanism 32 are respectively disposed on two opposite sides of the glue spreading device 2. The unwinding mechanism 31 releases the wiping cloth, and the released wiping cloth is firstly wound at the wiping end of the wiping device 2 and then wound by the winding mechanism 32. The unwinding mechanism 31 and the winding mechanism 32 are respectively arranged on two sides of the frictioning device 2, so that the frictioning device 2 matched with the unwinding mechanism 3 in an adaptive mode can release the frictioning cloth, the size of the whole frictioning device is saved, and the occupied area is reduced. Specifically, the unwinding mechanism 31 and the winding mechanism 32 are respectively disposed on the two first supporting and mounting side plates 44. The unwinding mechanism 31 includes an unwinding driving assembly 311, an unwinding assembly 312, and an unwinding direction changing assembly 313. The output end of the unwinding driving assembly 311 is connected to the unwinding assembly 312. Unwinding direction changing assembly 313 is located at one side of unwinding assembly 312, and preferably, unwinding direction changing assembly 313 is located below unwinding assembly 312. The coiled wipe is sleeved on the unreeling component 312, the unreeling driving component 311 drives the unreeling component 312 to rotate, so that the coiled wipe is released, and the released wipe turns backward through the unreeling turning component 313 and extends towards the direction of the gap between the wipe clamping piece 2122 and the lower end of the wipe carrier 2120. Specifically, the unwinding driving assembly 311 includes an unwinding driving member 3111 and an unwinding linkage (not shown), the unwinding driving member 3111 is disposed on the upper end of the second supporting and mounting vertical plate 43, the unwinding linkage is disposed on the inner wall of the first supporting and mounting side plate 44, and the unwinding assembly 312 is rotatably connected to the outer wall of the unwinding mounting plate 441. The output end of the unwinding driving member 3111 is connected to the unwinding assembly 312 through an unwinding linkage member. The unreeling driving member 3111 in this embodiment adopts a motor, and the unreeling linkage member is a cooperation of a driving wheel, a synchronous belt and a driven wheel. The unwinding assembly 312 includes an unwinding shaft 3121 and an unwinding reel 3122. One end of the unreeling shaft 3121 vertically penetrates through the reeling and unreeling mounting plate 441 and then is connected with the unreeling linkage piece, the unreeling disc 3122 is sleeved at the other end of the unreeling shaft 3121, the unreeling shaft 3121 is rotatably connected with the reeling and unreeling mounting plate 441, and the unreeling disc 3122 is parallel to the reeling and unreeling mounting plate 441. The unwinding direction changing assembly 313 includes a direction changing mounting plate 3131 and a direction changing rotation shaft 3132. The direction-changing mounting plate 3131 is disposed on an outer wall of the first support mounting side plate 44 and below the unwinding reel 3122, one end of the direction-changing rotating shaft 3132 is rotatably connected to the direction-changing mounting plate 3131, and the other end thereof extends obliquely toward the lower side of the unwinding reel 3122 and continues to extend above the first support mounting vertical plate 42. Preferably, the angle between the direction-changing rotating shaft 3132 and the first supporting and mounting vertical plate 42 is 45 degrees. The direction-changing rotation shaft 3132 in the present embodiment may employ a roller. Preferably, unwinding direction changing assembly 313 further includes transition element 3133. The transition 3133 serves to transition the wipe passing through the direction-changing rotation shaft 3132 so that the wipe smoothly passes through the space between the wipe holder 2122 and the lower end of the wipe carrier 2120. The transition part 3133 in this embodiment includes a plurality of staggered transition rollers, which are located between the glue wiping mechanism 21 and the direction-changing rotating shaft 3132, and are vertically and rotatably connected to the surface of the first supporting and mounting riser 42.
With continuing reference to fig. 7 and 8, fig. 8 is a schematic structural view of the unwinding shaft in the present embodiment. Further, the unreeling shaft 3121 includes a shaft body 31211 and an adjusting block 31212. The shaft body 31211 includes a mounting shaft 312111 and an expansion shaft seat 312112. The expansion shaft seat 312112 is sleeved on the mounting shaft 312111, preferably, the two are integrally formed. The expansion shaft seat 312112 is provided with an adjusting block mounting groove 312112a, and the adjusting block mounting groove 312112a is a strip-shaped groove axially arranged on the surface of the expansion shaft seat 312112 along the expansion shaft seat 312112. The number of the adjusting block mounting grooves 312112a in this embodiment is three, three adjusting block mounting grooves 312112a are sequentially arranged at intervals along the radial direction of the expansion shaft seat 312112, and the distance between two adjacent adjusting block mounting grooves 312112a is the same. Each adjusting block mounting groove 312112a is correspondingly provided with an adjusting block 31212 with a shape adapted, the height of the adjusting block 31212 is greater than the depth of the adjusting block mounting groove 312112a, so that when the adjusting block 31212 is arranged in the adjusting block mounting groove 312112a, the upper end thereof is exposed in the adjusting block mounting groove 312112 a. The adjusting block mounting groove 312112a is provided with an adjusting hole 312112b, the adjusting holes 312112b are blind holes radially opened along the mounting shaft 312111, the adjusting holes 312112c in the embodiment are two arranged side by side, and the bottom of the adjusting hole 312112c is provided with a thread. The adjusting hole 312112c is provided inside with an adjusting elastic member 31213, and the adjusting elastic member 31213 in this embodiment is a spring. A fastening member (not shown) is disposed in the adjusting hole 312112c, the adjusting elastic member 31213 is sleeved outside the fastening member, and the fastening member abuts against the adjusting elastic member 31213, in this embodiment, the fastening member is a screw. Expand axle seat 312112 is located to the inner circle cover of unreeling dish 3122 to with regulating block 31212 butt, when concrete application, through the degree of depth of adjustment fastener screw in regulation hole 312112c, and then the height that regulating block mounting groove 312112a was exposed to the upper end of regulating block 31212, so, can realize carrying out compatibly to the inner circle of unreeling dish 3122 unidimensional, increase its suitability. Preferably, the mounting shaft 312111 is further sleeved with a bearing member 31214, the bearing member 31214 is adjacent to the expansion shaft base 312112, the bearing member 31214 is used for rotatably connecting the unwinding shaft 3121 and the unwinding and winding mounting plate 441, and the bearing member 31214 is a bearing. On the side of the bearing member 31214 away from the expansion shaft seat 312112, the mounting shaft 312111 is sleeved with a driven wheel of the unwinding linkage member.
Referring back to fig. 1 and fig. 7, further, the winding mechanism 32 includes a winding driving component 321, a winding component 322 and a winding direction-changing component 323. The output end of the winding driving component 321 is connected with the winding component 322, the winding direction changing component 323 is located at one side of the winding component 322, and preferably, the winding direction changing component 323 is located below the winding component 322. In this embodiment, the winding driving component 321, the winding component 322, and the winding direction changing component 323 are respectively symmetrically disposed with the unwinding driving component 311, the unwinding component 312, and the unwinding direction changing component 313, and the structures and actuation principles of the winding driving component 321, the winding component 322, and the winding direction changing component 323 are respectively consistent with those of the unwinding driving component 311, the unwinding component 312, and the unwinding direction changing component 313, and are not further described herein.
The winding and unwinding process in this embodiment is as follows: the unreeling driving member 3111 drives the unreeling linkage member, the unreeling linkage member drives the unreeling disc 3122 to rotate through the unreeling shaft 3121, so that the wiping cloth is released, the released wiping cloth is firstly turned by the turning rotating shaft 3132, then is stably transited by the transition member 3133, and then passes through the interval between the wiping cloth clamping member 2122 and the lower end of the wiping cloth bearing member 2120, and then is wound on the wiping head 21211, and then passes through the interval between the other wiping cloth clamping member 2122 and the lower end of the wiping cloth bearing member 2120, and is turned by the reeling member 322 after passing through the reeling turning member 323. Before the rubber is wiped, outside alcohol is firstly sprayed to the dust-free cloth between one of the rubber clamping pieces 2122 and the rubber head 21211 through the cleaning holes 21241, at the moment, the alcohol can permeate the dust-free cloth to moisten the dust-free cloth, then the dust-free cloth is folded and unfolded for a certain length, so that the dust-free cloth section of the humid alcohol moves to the surface of the rubber head 21211, then the rubber clamping driving piece 2123 drives the rubber clamping pieces 2122 to clamp and fix the dust-free cloth, the rubber driving piece 2125 drives the rubber head 21211 to move downwards, the dust-free cloth in a moist state is tightly stretched on the rubber head 21211, and then the rubber wiping action is carried out. After the rubber is wiped, alcohol is sprayed again, and then the dust-free cloth is put in and taken off for a certain length, so that the new wet dust-free cloth can be moved to the surface of the rubber head 21211, and the dust-free cloth which is just wiped is moved to a position between the other rubber clamping piece 2122 and the rubber head 21211. The dust-free cloth after being rubbed with the glue can be rolled up by reciprocating.
Fig. 9 is another schematic structural diagram of the glue wiping device in this embodiment. Further, the cleaning fluid 2124 further comprises a cleaning reservoir 21243, wherein the cleaning reservoir 21243 is disposed on the first support mounting riser 42 and above the glue wiping mechanism 21. The cleaning reservoir 21243 is a vessel for storing alcohol, which communicates with the cleaning inlet 21242 through a pipe to supply alcohol cleaning liquid for cleaning. Preferably, the frictioning device 2 further comprises a frictioning protection cover 23. The frictioning protective cover 23 is arranged on the first supporting installation vertical plate 42 and covers the frictioning mechanism 21, and one side of the frictioning protective cover 23 facing the bearing mechanism 22 is in an open shape. The sidewall of the frictioning protective cover 23 is opened with a suction port 231, and the suction port 231 is communicated with an external negative pressure air suction device. The frictioning protection cover 23 is used for being sleeved on a frictioning working area, and the outside negative pressure air suction device sucks out volatile alcohol in the frictioning process, so that the pollution of the alcohol to equipment or products is avoided. Preferably, the frictioning device 2 further comprises a frictioning fluid collector 24. Frictioning liquid collector 24 is rectangular shape basin form, and it locates first support installation riser 42 and is located frictioning safety cover 23 under, and it is used for receiving the alcohol cleaning solution that rubs the workspace and drip, avoids the pollution of alcohol to equipment or product.
The rubbing process in this example is as follows: the dust-free cloth is first wetted with alcohol and then tightened on the rubbing head 21211. After the mobile phone is positioned and arranged on the carrying platform 2221, the Z-axis driving component 2111 and the a-angle driving component 2112 drive the rubber wiping head 21211 to adhere to the periphery of the mobile phone screen, and at this time, the rubber wiping head 21211 is in a deformed state, so that the dust-free cloth covers the periphery of the mobile phone screen. If the mobile phone screen is a non-curved-surface screen mobile phone, the Z-axis driving component 2111 and the a-angle driving component 2112 are kept unchanged, and the X-axis driving component 2211, the Y-axis driving component 2212 and the C-angle driving component 2213 are matched with the bearing table 2221 to move along the peripheral track of the mobile phone screen, so that the peripheral edge of the mobile phone screen always moves around the glue wiping head 21211, the joint state of the glue wiping head 21211 and the peripheral edge of the mobile phone screen is kept, and the glue wiping on the peripheral edge of the mobile phone screen is completed. If the mobile phone screen is a curved-surface screen mobile phone, when passing through the curved-surface track of the mobile phone screen, the Z-axis driving component 2111 and the a-angle driving component 2112 are synchronously matched with each other to drive the glue wiping head 21211 to move up and down and swing while the X-axis driving component 2211, the Y-axis driving component 2212 and the C-angle driving component 2213 are matched with each other to make the glue wiping head 21211 and the curved edge of the mobile phone screen in a fit state, so that the glue wiping of the mobile phone screen is completed.
In conclusion, the product is accurately fed and positioned on the bearing table through the feeding positioning device, three-axis linkage of the product in the directions of an X axis, a Y axis and a C angle is realized through the bearing mechanism, double-axis linkage of the glue wiping head in the two directions of the Z axis and the A angle is realized through the glue wiping mechanism, five-axis linkage is realized through cooperation of the three mechanisms, the glue wiping head is always attached to the track position of the product to be wiped, the comprehensiveness and the glue wiping quality of the glue are guaranteed, in the glue wiping process, the winding and unwinding device flexibly winds and unwinds the glue, the smooth proceeding of the glue wiping is kept, and the glue wiping efficiency is improved.
The above is only an embodiment of the present invention, and is not intended to limit the present invention. Various modifications and changes may occur to those skilled in the art. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present invention should be included in the scope of the claims of the present invention.

Claims (10)

1. The frictioning equipment is characterized by comprising a feeding positioning device (1), a frictioning device (2) and a winding and unwinding device (3); the feeding positioning device (1) is arranged on the feeding side of the frictioning device (2), and the winding and unwinding device (3) is adjacent to the frictioning device (2); the feeding positioning device (1) is used for positioning a feeding product, and the wiping device (2) respectively receives the positioned product and wiping cloth released by the winding and unwinding device (3) and controls the wiping cloth to wipe the product.
2. The frictioning device according to claim 1, characterized in that said feeding positioning device (1) comprises a positioning mechanism (11) and a positioning driving mechanism (12); the output end of the positioning driving mechanism (12) is connected with the positioning mechanism (11); the positioning mechanism (11) positions the loaded product, the positioning driving mechanism (12) drives the positioning mechanism (11), and the positioned product is transferred to the glue wiping device (2) from the positioning mechanism (11).
3. The frictioning device according to claim 2, characterized in that said positioning mechanism (11) comprises a positioning slot (111), said positioning slot (111) being used to support and position said product.
4. The frictioning device according to claim 1, characterized in that said winding and unwinding means (3) comprises an unwinding mechanism (31) and a winding mechanism (32); the unwinding mechanism (31) and the winding mechanism (32) are respectively arranged on two opposite sides of the glue wiping device (2); the unwinding mechanism (31) releases the wiping cloth, and the released wiping cloth is wound at the wiping end of the wiping device (2) and then wound by the winding mechanism (32).
5. The frictioning device according to any of claims 1-4, characterized in that said frictioning device (2) comprises a frictioning mechanism (21) and a carrying mechanism (22); the glue wiping mechanism (21) is adjacent to the bearing mechanism (22); the bearing mechanism (22) comprises a bearing driving component (221) and a bearing component (222); the output end of the bearing driving component (221) is connected with the bearing component (222); the bearing component (222) is used for receiving and bearing the positioned product, the bearing driving component (221) drives the bearing component (222) to move, the product is driven to move around the glue wiping end of the glue wiping mechanism (21), and the glue wiping mechanism (21) wipes the product.
6. The frictioning apparatus of claim 5, characterized in that the carrier drive assembly (221) comprises an X-axis drive (2211) and a Y-axis drive (2212); the output end of the X-axis driving piece (2211) is connected with the Y-axis driving piece (2212), and the output end of the Y-axis driving piece (2212) is connected with the bearing assembly (222); the X-axis driving piece (2211) and the Y-axis driving piece (2212) are matched to drive the bearing assembly (222) to move in a double-axis mode.
7. The frictioning apparatus according to claim 6, characterized in that said carrier drive assembly (221) further comprises a C-angle drive (2213); the output end of the Y-axis driving piece (2212) is connected with the C-angle driving piece (2213), and the output end of the C-angle driving piece (2213) is connected with the bearing assembly (222); the X-axis driving piece (2211), the Y-axis driving piece (2212) and the C-angle driving piece (2213) are matched with each other to drive the bearing assembly (222) to move in three axes.
8. The frictioning device according to claim 5, characterized in that said frictioning mechanism (21) comprises a frictioning drive assembly (211) and a frictioning assembly (212); the output end of the frictioning driving component (211) is connected with the frictioning component (212); the frictioning end of the frictioning assembly (212) faces the bearing end of the bearing assembly (222); the frictioning driving assembly (211) drives the frictioning assembly (212) to move, so that the frictioning assembly (212) is matched with the bearing assembly (222) to frictionize the product.
9. The frictioning apparatus according to claim 8, characterized in that said frictioning drive assembly (211) comprises a Z-axis drive (2111); the output end of the Z-axis driving piece (2111) is connected with the frictioning assembly (212), and the Z-axis driving piece drives the frictioning assembly (212) to move in a single axis.
10. The frictioning apparatus according to claim 9, characterized in that said frictioning drive assembly (211) further comprises an a-angle drive (2112); the output end of the Z-axis driving piece (2111) is connected with the A-angle driving piece (2112), and the output end of the A-angle driving piece (2112) is connected with the frictioning assembly (212); the Z-axis driving piece (2111) and the A-angle driving piece (2112) are matched to drive the frictioning assembly (212) to move in a double-axis mode.
CN202020010449.7U 2020-01-03 2020-01-03 Frictioning equipment Active CN211594369U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020010449.7U CN211594369U (en) 2020-01-03 2020-01-03 Frictioning equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020010449.7U CN211594369U (en) 2020-01-03 2020-01-03 Frictioning equipment

Publications (1)

Publication Number Publication Date
CN211594369U true CN211594369U (en) 2020-09-29

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020010449.7U Active CN211594369U (en) 2020-01-03 2020-01-03 Frictioning equipment

Country Status (1)

Country Link
CN (1) CN211594369U (en)

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