Pressing device

By coordinating the adjustment mechanism and the drive mechanism, the pressing device can simultaneously press the magnet and correct its horizontal orientation, thus solving the problem of incomplete magnet installation in the prior art and improving the installation effect.

CN120985301APending Publication Date: 2025-11-21KUNSHAN XUNTAO PRECISION MACHINERY
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202511092977.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-05
Publication Date
2025-11-21

AI Technical Summary

Technical Problem

The existing pressing mechanism cannot correct the magnet in the horizontal direction, resulting in the magnet not being installed properly and affecting the installation effect.

Method used

An adjustment mechanism and a drive mechanism are used. The relative movement between the adjustment component and the mating structure enables the first pressing component to move in the vertical direction, and the adjustment part causes it to move in the horizontal direction, thereby correcting the mounting component.

Benefits of technology

It enables horizontal alignment of the mounting components during the pressing process, ensuring that the magnets are installed in place and improving the installation effect.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120985301A_ABST
    Figure CN120985301A_ABST
Patent Text Reader

Abstract

The invention discloses a pressing device which comprises a first pressing piece, an adjusting mechanism and a driving mechanism, the adjusting mechanism comprises an adjusting piece and a matching structure, the first pressing piece is connected with the matching structure, and the adjusting piece comprises an adjusting part; the driving mechanism is connected with the adjusting mechanism, the driving mechanism can drive the first pressing piece to move in the first direction through the adjusting mechanism, under driving of the driving mechanism, the adjusting piece and the matching structure move relatively, and the first pressing piece is promoted to move in the second direction relative to the matching structure through the adjusting part. According to the press-fit device provided by the invention, the direction correction of the mounting part can be realized while the mounting part is pressed, so that the mounting part and a product shell are assembled in place.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This invention relates to a pressing device, belonging to the technical field of pressing equipment. Background Technology

[0002] A pressing mechanism is used to press magnets into mounting slots in the casing of electronic products. In related technologies, the pressing mechanism includes a cylinder and a pressing head. The cylinder controls the pressing head to move vertically to press the magnet, stabilizing it in the vertical direction. However, it cannot correct the magnet in the horizontal direction, resulting in improper installation and affecting the installation effect. Summary of the Invention

[0003] The purpose of this invention is to provide a pressing device that achieves orientation correction while pressing the mounting parts together.

[0004] To achieve the above objectives, one embodiment of the present invention adopts the following technical solution:

[0005] A pressing device, comprising:

[0006] The first pressing element is used to press the mounting component into the mounting groove of the product housing.

[0007] An adjusting mechanism, comprising an adjusting member and a mating structure, wherein the first pressing member is connected to the mating structure, and the adjusting member includes an adjusting portion; and

[0008] A driving mechanism is connected to the adjusting mechanism. The driving mechanism can drive the first pressing member to move along a first direction through the adjusting mechanism. Under the drive of the driving mechanism, the adjusting member moves relative to the mating structure, and the adjusting part causes the first pressing member to move relative to the mating structure along a second direction, which is perpendicular to the first direction.

[0009] As a further improvement of the present invention, the adjusting member includes a main body portion, and the adjusting portion protrudes from the main body portion along the second direction.

[0010] As a further improvement of the present invention, the adjustment mechanism includes a first elastic element, the two ends of which respectively abut against the first pressing element and the mating structure, and the first elastic element is configured to reset the first pressing element.

[0011] As a further improvement of the present invention, the first pressing member includes a bottom surface and a protrusion connecting the bottom surface, the protrusion being provided on the bottom surface along the first direction.

[0012] As a further improved technical solution of the present invention, the mating structure includes a mating component and a cover plate connected to the mating component. The mating component is provided with a first groove and a second groove. The adjusting component is disposed in the first groove and moves in the first groove along the first direction. The first pressing component is disposed in the second groove and moves in the second groove along the positive X-axis direction, which is parallel to the second direction. The first pressing component is provided with a third groove for receiving the first elastic component. The cover plate covers both the second groove and the third groove and is used to abut against the first elastic component.

[0013] As a further improvement of the present invention, the driving mechanism includes a driving member and a connecting frame connected to the output end of the driving member, the pressing device includes a second elastic member, the two ends of the second elastic member abutting against the adjusting member and the connecting frame respectively, the adjusting member having a fourth groove for receiving the second elastic member, and the connecting frame having a fifth groove for receiving the second elastic member.

[0014] As a further improvement of the present invention, the driving mechanism includes a sliding block, the mating structure is connected to the sliding block, a guide structure is connected to one side of the driving member, the sliding block is connected to the guide structure, the pressing device includes a third elastic member, the two ends of the third elastic member abut against the connecting frame and the sliding block, and the sliding block has a seventh groove for receiving the third elastic member.

[0015] As a further improved technical solution of the present invention, the pressing device includes a second pressing member and a fourth elastic member. The second pressing member is connected to the guide structure. The two ends of the fourth elastic member abut against the mating structure and the second pressing member, respectively. The mating structure has an eighth groove for receiving the fourth elastic member, and the second pressing member has a ninth groove for receiving the fourth elastic member.

[0016] As a further improved technical solution of the present invention, the first pressing member includes a first pressing portion and a first side surface opposite to the second pressing member. The first pressing portion extends rearward relative to the first side surface. The second pressing member includes a second pressing portion and a groove. The groove passes through the second pressing portion, and at least a portion of the first pressing portion is located in the groove.

[0017] As a further improved technical solution of the present invention, the mating structure includes a mating component and a cover plate connected to the mating component. The mating component is connected to the driving mechanism. The mating component is a shaft-shaped component. The axis of the mating component is inclined relative to the first direction. The first pressing component includes a pressing head, a movable component connected to the pressing head, and a cam connected to the movable component. The movable component has a through hole for the mating component to pass through. After the cam abuts against the adjusting part, it can drive the movable component to move along the axial direction of the mating component.

[0018] The movable component has a tenth groove for receiving the first elastic component, and the cover plate is disposed on the tenth groove, the cover plate abutting against the first elastic component.

[0019] The pressing device provided by the present invention is equipped with an adjustment mechanism. The driving mechanism drives the first pressing member to move along the first direction through the adjustment mechanism, so as to press the mounting member into the mounting groove of the product shell. The adjustment mechanism includes an adjustment member and a mating structure. Under the drive of the driving mechanism, the adjustment member and the mating structure move relative to each other, and the adjustment part causes the first pressing member to move relative to the mating structure along the second direction, so as to facilitate the correction of the mounting member in the second direction. Attached Figure Description

[0020] Figure 1 This is a perspective schematic diagram of an embodiment of the pressing device of the present invention;

[0021] Figure 2 yes Figure 1 Side view;

[0022] Figure 3 yes Figure 1 A schematic diagram of the decomposition process;

[0023] Figure 4 yes Figure 1 Detailed breakdown diagram;

[0024] Figure 5 yes Figure 3 A three-dimensional schematic diagram of the middle component;

[0025] Figure 6 yes Figure 5 A schematic diagram of the decomposition process;

[0026] Figure 7 yes Figure 3 A three-dimensional schematic diagram of the first pressing component and the adjusting mechanism;

[0027] Figure 8 yes Figure 7 A schematic diagram of the decomposition process;

[0028] Figure 9 yes Figure 7 A three-dimensional diagram from another angle;

[0029] Figure 10 yes Figure 7 A three-dimensional cross-sectional view;

[0030] Figure 11 yes Figure 9 A schematic diagram of the decomposition process;

[0031] Figure 12 yes Figure 1 A three-dimensional schematic diagram of the first and second pressing parts;

[0032] Figure 13 yes Figure 12 A schematic diagram of the decomposition process;

[0033] Figure 14 yes Figure 1 A three-dimensional schematic diagram of the intermediate pressing device pressing the mounting parts onto the product housing;

[0034] Figure 15 yes Figure 14 A three-dimensional schematic diagram of the mounting component installed in the mounting slot;

[0035] Figure 16 This is a perspective view of another embodiment of the pressing device of the present invention;

[0036] Figure 17 yes Figure 16 A three-dimensional diagram from another angle;

[0037] Figure 18 yes Figure 16 Side view;

[0038] Figure 19 yes Figure 16 A schematic diagram of the decomposition process;

[0039] Figure 20 yes Figure 19 Detailed breakdown diagram;

[0040] Figure 21 yes Figure 20 A three-dimensional schematic diagram of the first pressing component;

[0041] Figure 22 yes Figure 21 A schematic diagram of the decomposition process;

[0042] Figure 23 yes Figure 21 Another perspective of the exploded view;

[0043] Figure 24 yes Figure 23 A three-dimensional schematic diagram of a medium-pressure connector;

[0044] Figure 25 yes Figure 20 A three-dimensional schematic diagram of the adjustment component;

[0045] Figure 26 yes Figure 16 A three-dimensional schematic diagram of the intermediate pressing device pressing the mounting parts onto the product housing. Detailed Implementation

[0046] The exemplary embodiments of the present invention will now be described in detail with reference to the accompanying drawings. If several embodiments exist, features in these embodiments may be combined with each other without conflict. When the description refers to the drawings, unless otherwise stated, the same numbers in different drawings represent the same or similar elements. The descriptions in the following exemplary embodiments do not represent all embodiments consistent with the present invention; rather, they are merely examples of apparatuses, products, and / or methods consistent with some aspects of the present invention as set forth in the claims.

[0047] The terminology used in this invention is for the purpose of describing particular embodiments only and is not intended to limit the scope of protection of this invention. The singular forms “a,” “the,” or “the” as used in the specification and claims of this invention are also intended to include the plural forms unless the context clearly indicates otherwise.

[0048] It should be understood that the terms "first," "second," and similar words used in the specification and claims of this invention do not indicate any order, quantity, or importance, but are merely used to distinguish features. Similarly, the terms "an" or "a" do not indicate a quantity limitation, but rather indicate the presence of at least one. Unless otherwise stated, the terms "before," "after," "upper," "lower," and similar words appearing in this invention are for ease of explanation only and are not limited to a specific location or spatial orientation. The terms "comprising" or "including" are an open-ended expression, meaning that the element preceding "comprising" or "including" encompasses the element following "comprising" or "including" and its equivalents, but this does not preclude the element preceding "comprising" or "including" from also including other elements. In this invention, the term "several" means two or more.

[0049] Please refer to Figures 1 to 26As shown, one embodiment of the present invention discloses a pressing device, which includes a first pressing member 1, an adjusting mechanism 2 connected to the first pressing member 1, and a driving mechanism 3 connected to the adjusting mechanism 2. The first pressing member 1 is used to press the mounting member 10 into the mounting groove 201 of the product housing 20. The mounting member 10 can be a magnet. Define the first direction A1 as the Z-axis direction. The driving mechanism 3 can drive the first pressing member 1 to move along the first direction A1 through the adjusting mechanism 2 to achieve pressing or detaching of the mounting member 10. The product housing 20 includes a first side wall 2011 and a second side wall 2012 opposite to the first side wall 2011. The first side wall 2011 and the second side wall 2012 are both located on the periphery of the mounting groove 201. For ease of installation, the distance between the first side wall 2011 and the second side wall 2012 is usually set to be greater than the width of the mounting member 10. When the mounting member 10 is placed in the mounting groove 201, the mounting member 10 and the first side wall 2011 and the second side wall 2012 have a gap 2001. To ensure proper assembly of the mounting component 10, it needs to be adjusted to be close to or against the first sidewall 2011. Therefore, the present invention provides an adjustment mechanism 2 for pressing and correcting the position of the mounting component 10.

[0050] Please refer to Figure 12 or Figure 24 As shown, the first pressing member 1 includes a bottom surface 111 and a protrusion 112 connected to the bottom surface 111. The protrusion 112 extends from the bottom surface 111 along a first direction A1. The bottom surface 111 is configured to press against the mounting member 10. Please refer to... Figure 2 or Figure 18 As shown, the second direction A2 is defined as the X-axis direction, which includes the positive and negative X-axis directions. The first direction A1 is perpendicular to the second direction A2. The drive mechanism 3 can control the protrusion 112 to be installed in the gap 2001 between the second sidewall 2012 and the mounting member 10. The adjustment mechanism 2 can drive the protrusion 112 to push the mounting member 10 to move along the positive X-axis direction, so that the mounting member 10 is close to or fits against the first sidewall 2011.

[0051] Please refer to Figure 1 , Figure 6 or Figure 17 As shown, the adjustment mechanism 2 includes an adjustment element 21 and a mating structure 22, with the first pressing element 1 connected to the mating structure 22. Please refer to... Figure 6 or Figure 17As shown, the adjusting member 21 includes a main body 211 and an adjusting part 212. The adjusting part 212 protrudes from the main body 211 along the second direction A2. Under the drive of the driving mechanism 3, the adjusting member 21 and the mating structure 22 can move relative to each other. In this embodiment, the adjusting part 212 protrudes from the main body 211 along the positive X-axis direction. Since the adjusting part 212 extends along the positive X-axis direction, it can cause the first pressing member 1 to move relative to the mating structure 22 along the positive X-axis direction. This allows the first pressing member 1 to push the mounting member 10 towards the first sidewall 2011 around the mounting groove 201, thereby correcting the mounting member 10 in the positive X-axis direction and assembling the mounting member 10 with the product housing 20.

[0052] Please refer to Figure 3 or Figure 19 As shown, the adjusting mechanism 2 includes a first elastic element 23, the two ends of which abut against the first pressing element 1 and the mating structure 22, respectively. When the first pressing element 1 moves along the positive X-axis, the first elastic element 23 is compressed; when the first pressing element 1 disengages from the mounting part 10, the first elastic element 23 rebounds, causing the first pressing element 1 to return to its original position along the negative X-axis.

[0053] In one embodiment, please refer to Figure 4 As shown, the first pressing member 1 includes a first base 13, a first pressing portion 11 connected to one end of the first base 13, and a first connecting portion 14 connected to the other end of the first base 13. Please refer to... Figure 11 As shown, the first base 13 includes a first side surface 131, and the first pressing portion 11 extends rearward relative to the first side surface 131. The first pressing portion 11 includes a bottom surface 111, and the first pressing member 1 has a notch 15 that penetrates the first pressing portion 11 and divides the first pressing portion 11 into two parts. The first connecting portion 14 includes a second side surface 141 and two extension portions 142 extending rearward from the second side surface 141. The second side surface 141 is configured to abut against the adjusting member 21, and the adjusting member 21 presses the second side surface 141 through the adjusting portion 212 to drive the first pressing member 1 to move. It should be noted that all instances of "rearward" refer to the negative X-axis direction.

[0054] Adjusting component 21 is a wedge block; please refer to [reference needed]. Figure 6 As shown, the main body 211 of the adjusting member 21 and the adjusting part 212 are connected by a slope 213. The second side 141 of the first pressing member 1 is gradually pressed by the slope 213. On the one hand, it is used to transition the pressing of the first pressing member 1 by the adjusting part 212; on the other hand, it can realize the first pressing member 1 moving different distances, which is suitable for adjustment when there are different distances between the mounting member 10 and the second side wall 2012 of the product housing 20.

[0055] Please refer to Figure 4 and Figure 6As shown, the adjustment mechanism 2 includes a fifth elastic element 25. The end of the adjustment element 21 away from the connecting frame 32 is provided with a sixth groove 214, and the fifth elastic element 25 is at least partially disposed in the sixth groove 214. The fifth elastic element 25 serves as a buffer and rebound effect.

[0056] Please refer to Figure 3 As shown, the mating structure 22 includes a mating component 221 and a cover plate 222 connected to the mating component 221. The cover plate 222 is bolted to the mating component 221, facilitating installation and disassembly. The mating component 221 is approximately cuboid in shape; please refer to [reference needed]. Figure 4 As shown, the mating part 221 has a first groove 2211 and a second groove 2212, with the first groove 2211 communicating with the second groove 2212. The adjusting part 21 is located in the first groove 2211 and moves within it along a first direction A1. (See reference...) Figure 8 As shown, the first groove 2211 includes a hole portion 2201 and a groove portion 2202. The hole portion 2201 serves as a guide for limiting the position of the adjusting member 21, and the adjusting portion 212 of the adjusting member 21 can pass through the hole portion 2201. The main body portion 211 of the adjusting member 21 hardly protrudes outside the groove portion 2202, while a portion of the adjusting portion 212 of the adjusting member 21 protrudes outside the groove portion 2202. Since the first connecting portion 14 of the first pressing member 1 is provided in the second groove 2212, when only the main body portion 211 of the adjusting member 21 is located in the groove portion 2202, the adjusting member 21 does not press the second side surface 141 of the first pressing member 1. When the adjusting portion 212 of the adjusting member 21 moves to the groove portion 2202, since a portion of the adjusting portion 212 can protrude outside the groove portion 2202, the adjusting portion 212 presses the second side surface 141 of the first pressing member 1, causing the first pressing member 1 to move in the second groove 2212 along the positive X-axis direction. In this embodiment, the second side 141 is distributed rearward relative to the first side 131, so that the second side 141 corresponds to the adjustment part 212.

[0057] Please refer to Figure 11 As shown, the mating part 221 also has two first holes 2214, both of which communicate with the second groove 2212. The two extensions 142 of the first pressing part 1 are movably disposed within the two first holes 2214. The walls of the first holes 2214 support the two extensions 142 to prevent the first pressing part 1 from dislodging from the mating part 221 in the Z-axis direction. A cover plate 222 covers the second groove 2212 to prevent the first pressing part 1 from dislodging from the mating part 221 in the positive X-axis direction. For details, please refer to... Figure 8As shown, the first pressing member 1 has a first groove 100 and a third groove 12 for receiving the first elastic member 23. The third groove 12 is recessed inward from the bottom wall of the first groove 100. A cover plate 222 is simultaneously provided on the second groove 2212 and the third groove 12. The cover plate 222 is used to support the first elastic member 23 and can be used to encapsulate the first elastic member 23 in the third groove 12.

[0058] Please refer to Figure 1 and Figure 2 As shown, the drive mechanism 3 includes a drive member 31 and a connecting frame 32 connected to the output end of the drive member 31. The drive member 31 can be a cylinder. The pressing device includes a second elastic member 4, with both ends of the second elastic member 4 abutting against the adjusting member 21 and the connecting frame 32, respectively. Since the output end of the drive member 31 is located at the upper end, the connecting frame 32 is connected to the upper end of the drive member 31. When the drive member 31 controls the drive rod to retract, it drives the connecting frame 32 to compress the second elastic member 4 first, and the second elastic member 4 drives the adjusting member 21 to move downward. The second elastic member 4 serves as a buffer and rebound effect. For details, please refer to [reference needed]. Figures 6 to 8 As shown, the adjusting member 21 has a fourth groove 210 for receiving the second elastic member 4, and the connecting frame 32 has a fifth groove 321 for receiving the second elastic member 4, so that the two ends of the second elastic member 4 are stably located in the fourth groove 210 and the fifth groove 321 respectively.

[0059] Please refer to Figure 4 As shown, the drive mechanism 3 includes a sliding block 33, which is connected to the connecting frame 32. The sliding block 33 has a first side groove 331. The mating structure 22 includes a second connecting part 223, which is installed in the first side groove 331 and locked in the first side groove 331 by bolts, thus achieving a fixed connection between the mating structure 22 and the sliding block 33. A guide structure 34 is connected to the side of the drive member 31 facing the sliding block 33. The sliding block 33 is connected to the guide structure 34, which provides positioning and guidance for the movement of the sliding block 33. The pressing device also includes a third elastic element 5, with both ends of the third elastic element 5 abutting against the connecting frame 32 and the sliding block 33. When the drive member 31 controls the drive rod to retract, it drives the connecting frame 32 to compress the third elastic element 5. The third elastic element 5 drives the sliding block 33 to move downward, and the sliding block 33 drives the mating part 221 and the first pressing part 1 to move downward, thus achieving the downward pressing of the first pressing part 1 onto the mounting part 10. The third elastic element 5 provides a buffering and rebound effect. Specifically, the sliding block 33 has a seventh groove 330 for receiving the third elastic element 5.

[0060] Please refer to Figure 3 As shown, the connecting frame 32 includes a top frame 323 and a connector 324 connected to one side of the top frame 323. Please refer to... Figure 5 and Figure 6As shown, the connector 324 includes a top 3241 connected to the top frame 323, a vertical portion 3242 vertically connected to the top 3241, and a hook portion 3243 vertically connected to the vertical portion 3242. A fifth groove 321 is provided in the vertical portion 3242. The sliding block 33 is provided with a second hole 332, and the hook portion 3243 is movably disposed in the second hole 332. After the protrusion 112 of the first pressing member 1 moves downward into the gap 2001 between the second side wall 2012 and the mounting member 10, the first pressing member 1 no longer moves downward, and the driving member 31 continues to control the driving rod to retract. At this time, the sliding block 33 moves a small amplitude. Since the hook portion 3243 can move vertically in the second hole 332, the connecting frame 32 compresses the second elastic member 4 to make the adjusting member 21 move downward, thereby realizing the relative movement between the adjusting member 21 and the mating structure 22.

[0061] Please refer to Figure 4 As shown, the guide structure 34 includes a slide rail 341 and a first slide block 342, with the first slide block 342 slidably connected to the slide rail 341. The slide rail 341 is connected to the drive member 31, and the sliding block 33 is connected to the first slide block 342, enabling the sliding block 33 to move along the slide rail 341.

[0062] Please refer to Figure 4 As shown, the drive unit 31 is fixed to the base frame 8. The base frame 8 includes a base plate 81 and a side plate 82 perpendicularly connected to the base plate 81. The drive unit 31 is connected to both the base plate 81 and the side plate 82. The slide rail 341 is connected to the side of the side plate 82 facing away from the drive unit 31.

[0063] Please refer to Figure 4 As shown, the pressing device includes a second pressing member 6 and a fourth elastic member 7. The second pressing member 6 is used for vertically pressing the mounting member 10. The second pressing member 6 is opposite to the first side 131 of the first pressing member 1. The guide structure 34 includes a second slide 343, which is slidably connected to the slide rail 341. The second pressing member 6 is connected to the second slide 343 of the guide structure 34. The two ends of the fourth elastic member 7 abut against the mating structure 22 and the second pressing member 6, respectively. The fourth elastic member 7 provides a buffering and rebounding effect. Specifically, the mating structure 22 has an eighth groove 2213 for receiving the fourth elastic member 7, and the second pressing member 6 has a ninth groove 630 for receiving the fourth elastic member 7.

[0064] Please refer to Figure 12 As shown, the second pressing member 6 includes a body portion 63 and a pressing head 64 connected to the body portion 63. The body portion 63 and the pressing head 64 are detachably connected by bolts, or the body portion 63 and the pressing head 64 are integral parts. The second pressing part 61 is connected to the pressing head 64. Please refer to... Figure 13As shown, the second pressing member 6 has a second groove 62 that penetrates the second pressing portion 61. The first pressing portion 11 extends rearward relative to the first side surface 131, allowing at least a portion of the first pressing portion 11 to be located within the second groove 62, so that the first pressing portion 11 and the second pressing portion 61 are arranged in a row and together press the mounting member 10. In this embodiment, the second pressing member 6 has two second grooves 62, and the two portions of the first pressing portion 11 are disposed within the corresponding two second grooves 62.

[0065] In this embodiment, the first elastic element 23, the second elastic element 4, the third elastic element 5, and the fourth elastic element 7 are all springs.

[0066] In one embodiment, the operation of the pressing device is as follows:

[0067] During pressing, the drive unit 31 controls the drive rod to retract, causing the first pressing part 1 and the second pressing part 6 to move downwards simultaneously, compressing the third elastic part 5 and the fourth elastic part 7. After the first pressing part 1 is in place, it no longer moves downwards. At this time, the protrusion 112 of the first pressing part 1 is already in the gap 2001 between the second side wall 2012 and the mounting part 10. The drive unit 31 continues to control the drive rod to retract, and the connecting frame 32 compresses the second elastic part 4, causing the adjusting part 21 to move downwards. The adjusting part 212 of the adjusting part 21 squeezes the first pressing part 1, and the first elastic part 23 is compressed, causing the first pressing part 1 to move along the positive X-axis direction and push the mounting part 10 towards the first side wall 2011, thereby achieving the correction of the mounting part 10 in the positive X-axis direction.

[0068] After pressing is completed, the drive member 31 controls the drive rod to extend, the second elastic member 4 rebounds and causes the adjusting member 21 to move upward, releasing the pressure on the first elastic member 23. Under the action of the rebound of the first elastic member 23, the first pressing member 1 moves and resets along the negative X-axis direction. The drive member 31 continues to control the drive rod to extend, the third elastic member 5 and the fourth elastic member 7 rebound, and the first pressing member 1 and the second pressing member 6 move upward at the same time, so that the first pressing member 1 and the second pressing member 6 are disengaged from the mounting groove 201 of the product housing 20.

[0069] The above content is a detailed description of one embodiment of the present invention. Another embodiment will be described below.

[0070] The difference from one embodiment is that, in another embodiment, please refer to... Figure 17 and Figure 18 As shown, the first pressing member 1 includes a pressing head 16, a movable member 17 connected to the pressing head 16, and a cam 18 connected to the movable member 17. Please refer to... Figure 22 As shown, the pressing head 16 includes a second base 161 and a third connecting portion 162 connected to the second base 161. Please refer to... Figure 24As shown, the second base 161 includes a bottom surface 111 and a protrusion 112 connected to the bottom surface 111. The protrusion 112 includes a first portion 1121 and a second portion 1122. The first portion 1121 protrudes from the bottom surface 111, and the second portion 1122 extends to both sides of the second base 161 and protrudes from the two third side surfaces 1611 of the second base 161. By extending the protrusion 112 to form the second portion 1122, the contact area with the mounting member 10 is increased. The second portion 1122 has an arc-shaped surface 1120, which can cover more of the mounting member 10, making it less likely for the mounting member 10 to tilt during the pushing process.

[0071] Please refer to Figure 22 As shown, the movable member 17 has a second side groove 174, and the third connecting part 162 is installed in the second side groove 174 and fixedly connected to the movable member 17 by bolts. In addition, the movable member 17 has a tenth groove 172 for receiving the first elastic member 23.

[0072] Please refer to Figure 22 and Figure 23 As shown, the movable part 17 is provided with a protrusion 173, and the protruding direction of the protrusion 173 is perpendicular to the axial direction of the mating part 221. The cam 18 is mounted on the protrusion 173, the protrusion 173 is a follower block, and the adjusting part 21 is a path plate. The protrusion 173 moves along the trajectory of the path plate with the cam 18, so as to realize the movement of the pressing head 16 in the second direction A2.

[0073] The main body 211 of the adjusting member 21 has a flat plate structure, and the adjusting part 212 protrudes from the main body 211 along the positive X-axis direction. Please refer to... Figure 25 As shown, the main body 211 of the adjusting member 21 and the adjusting part 212 are connected by two inclined surfaces 213. The cam 18 is a rotating wheel, and the inclined surfaces 213 facilitate the cam 18 rolling through the adjusting part 212. Specifically, the main body 211 includes a first main body 2111 above the adjusting part 212 and a second main body 2112 below the adjusting part 212. The thickness of the first main body 2111 is less than the thickness of the second main body 2112. By thinning the first main body 2111, the friction between it and the cam 18 is reduced.

[0074] Please refer to Figure 20As shown, the mating structure 22 includes a mating member 221 and a cover plate 222 connected to the mating member 221. The mating member 221 is connected to the drive mechanism 3. In this embodiment, the mating member 221 is a shaft-shaped component, and the axis of the mating member 221 is inclined relative to the first direction A1 and also inclined relative to the second direction A2. The movable member 17 has a through hole 171 for the mating member 221 to pass through, and the cover plate 222 acts as a block for the movable member 17. The cover plate 222 covers the tenth groove 172 and is used to hold the first elastic member 23 and encapsulate the first elastic member 23 in the tenth groove 172. After the cam 18 abuts against the adjusting part 212 of the adjusting member 21, it can drive the movable member 17 to move along the axial direction of the mating member 221, so that the pressing head 16 moves along the positive X-axis direction and also moves upward. After the cam 18 passes the adjustment section 212, the movable part 17 returns to its original position under the action of the first elastic element 23, causing the pressing head 16 to move along the negative X-axis direction while also moving downwards. This configuration enables the pressing head 16 to press in the Z-axis direction, correct in the X-axis direction, and avoid interference problems in the pressing path.

[0075] Please refer to Figure 20 As shown, the connecting frame 32 of the drive mechanism 3 includes a vertical plate 325 connected to the drive member 31, two support plates 326 connected to both sides of the vertical plate 325, and a mounting plate 327 connected to the two support plates 326. The mating part 221 is fixed to the mounting plate 327.

[0076] Please refer to Figure 20 As shown, the drive unit 31 is fixed to the base frame 8. The base frame 8 includes a base plate 81 and a side plate 82 perpendicularly connected to the base plate 81. The drive unit 31 is connected to both the base plate 81 and the side plate 82. The adjusting member 21 is fixed to the base plate 81 and passes through the space enclosed by the vertical plate 325, the two support plates 326, and the mounting plate 327.

[0077] In another embodiment, the pressing device operates as follows:

[0078] During pressing, the drive member 31 controls the drive rod to retract, causing the first pressing member 1 to move downwards; when the cam 18 abuts against the adjustment part 212 of the adjustment member 21, it causes the movable member 17 to move along the axis of the mating member 221. The movable member 17 causes the pressing head 16 to move upwards while moving along the positive X-axis; after the cam 18 passes the adjustment part 212, the movable member 17 is reset under the action of the rebound of the first elastic member 23. The movable member 17 causes the pressing head 16 to move downwards while moving along the negative X-axis, pushing the mounting member 10 towards the first side wall 2011 while pressing the mounting member 10, and realizing the correction of the mounting member 10 in the negative X-axis direction, so that the mounting member 10 is assembled in place.

[0079] After pressing, the drive member 31 controls the drive rod to extend, causing the first pressing member 1 to move upward; when the cam 18 abuts against the adjustment part 212 of the adjustment member 21, it causes the movable member 17 to move along the axis of the mating member 221. The movable member 17 causes the pressing head 16 to move along the positive X-axis while also moving upward, so that the first pressing member 1 is disengaged from the mounting groove 201.

[0080] The above embodiments are only used to illustrate the present invention and are not intended to limit the technical solutions described in the present invention. The understanding of the present invention should be based on those skilled in the art. Although the present invention has been described in detail with reference to the above embodiments, those skilled in the art should understand that they can still make modifications or equivalent substitutions to the present invention. All technical solutions and improvements that do not depart from the spirit and scope of the present invention should be covered within the scope of the claims of the present invention.

Claims

1. A pressing device, characterized in that, include: The first pressing component is used to press the mounting component into the mounting groove of the product housing; An adjusting mechanism, comprising an adjusting member and a mating structure, wherein the first pressing member is connected to the mating structure, and the adjusting member includes an adjusting portion; and A driving mechanism is connected to the adjusting mechanism. The driving mechanism can drive the first pressing member to move along a first direction through the adjusting mechanism. Under the drive of the driving mechanism, the adjusting member moves relative to the mating structure, and the adjusting part causes the first pressing member to move relative to the mating structure along a second direction, which is perpendicular to the first direction.

2. The pressing device as described in claim 1, characterized in that, The adjusting member includes a main body portion, which protrudes from the main body portion along the second direction.

3. The pressing device as described in claim 1 or 2, characterized in that, The adjustment mechanism includes a first elastic element, the two ends of which abut against the first pressing element and the mating structure, respectively. The first elastic element is configured to drive the first pressing element to reset.

4. The pressing device as described in claim 1 or 2, characterized in that, The first pressing member includes a bottom surface and a protrusion connecting the bottom surface, the protrusion extending along the first direction from the bottom surface.

5. The pressing device as described in claim 3, characterized in that, The mating structure includes a mating component and a cover plate connected to the mating component. The mating component has a first groove and a second groove. The adjusting component is disposed in the first groove and moves within the first groove along the first direction. The first pressing component is disposed in the second groove and moves within the second groove along the positive X-axis direction, which is parallel to the second direction. The first pressing component has a third groove for receiving the first elastic component. The cover plate covers both the second groove and the third groove, and the cover plate abuts against the first elastic component.

6. The pressing device as described in claim 5, characterized in that, The driving mechanism includes a driving member and a connecting frame connected to the output end of the driving member. The pressing device includes a second elastic member, the two ends of which abut against the adjusting member and the connecting frame respectively. The adjusting member has a fourth groove for receiving the second elastic member, and the connecting frame has a fifth groove for receiving the second elastic member.

7. The pressing device as described in claim 6, characterized in that, The driving mechanism includes a sliding block, the mating structure is connected to the sliding block, a guide structure is connected to one side of the driving member, the sliding block is connected to the guide structure, the pressing device includes a third elastic member, the two ends of the third elastic member abut against the connecting frame and the sliding block, and the sliding block has a seventh groove for receiving the third elastic member.

8. The pressing device as described in claim 7, characterized in that, The pressing device includes a second pressing member and a fourth elastic member. The second pressing member is connected to the guide structure. The two ends of the fourth elastic member abut against the mating structure and the second pressing member, respectively. The mating structure has an eighth groove for receiving the fourth elastic member, and the second pressing member has a ninth groove for receiving the fourth elastic member.

9. The pressing device as described in claim 8, characterized in that, The first pressing member includes a first pressing portion and a first side surface opposite to the second pressing member. The first pressing portion extends rearward relative to the first side surface. The second pressing member includes a second pressing portion and a groove, the groove penetrating the second pressing portion. At least a portion of the first pressing portion is located in the groove.

10. The pressing device as described in claim 3, characterized in that, The mating structure includes a mating component and a cover plate connected to the mating component. The mating component is connected to the driving mechanism. The mating component is a shaft-shaped part. The axis of the mating component is inclined relative to the first direction. The first pressing component includes a pressing head, a movable component connected to the pressing head, and a cam connected to the movable component. The movable component has a through hole for the mating component to pass through. After the cam abuts against the adjusting part, it can drive the movable component to move along the axial direction of the mating component. The movable component has a tenth groove for receiving the first elastic component, and the cover plate is disposed on the tenth groove, the cover plate abutting against the first elastic component.