Armrest box tool

By designing a synchronous assembly tool for handrail box, the problem of inconsistent assembly of lock pins is solved, the synchronization and consistency of handrail box assembly is achieved, and the assembly quality and efficiency are improved.

CN222971412UActive Publication Date: 2025-06-13NOBLE AUTO PARTS (TIANJIN) CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202421932057.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-09
Publication Date
2025-06-13
Estimated Expiration
2034-08-09

AI Technical Summary

Technical Problem

In the prior art, the lock pins of the handrail box are not assembled, resulting in the unsmooth opening of the handrail box and the assembly tool lacks quality detection devices, resulting in poor assembly quality and low efficiency.

Method used

A handrail box workpiece is designed, which drives the synchronous movement of the synchronous arm through the driving part to drive the synchronous translation of the drive arm to ensure the synchronous assembly of the fasteners and improve assembly consistency.

Benefits of technology

The synchronization and consistency of the assembly of the armrest box is achieved, ensuring the quality and opening smoothness of the armrest box, while improving assembly efficiency.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN222971412U_ABST
    Figure CN222971412U_ABST
Patent Text Reader

Abstract

The utility model discloses an armrest box tool. The armrest box tool comprises a base, a driving part, a first synchronous arm, a second synchronous arm, a first driving arm and a second driving arm, wherein the driving part is movably arranged on the base; at least one of the first synchronous arm and the second synchronous arm is connected with the driving part, and the first synchronous arm and the second synchronous arm are linked with each other; the first driving arm and the second driving arm are arranged on the base in a translational mode so as to be suitable for driving the fastener to move, and the first driving arm and the second driving arm are connected with the first synchronous arm and the second synchronous arm correspondingly and synchronously move under driving of the first synchronous arm and the second synchronous arm correspondingly. According to the armrest box tool, the first synchronous arm and the second synchronous arm which are linked with each other are driven by the driving part to synchronously move so as to drive the first driving arm and the second driving part to synchronously translate, so that fasteners which are symmetrically arranged are synchronously assembled, the consistency during assembly of an armrest box is improved, and the quality of the armrest box is ensured.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the technical field of the assembly of an armrest box, in particular to an armrest box tooling. Background Art

[0002] The box body and the cover body of the armrest box are connected by a locking pin. During assembly, the locking pin is in interference fit with the armrest box, and the assembly force is large. In the related art, the assembly of the locking pin is pushed by a cylinder at the tail of the locking pin. Since it is difficult to ensure synchronous assembly by the two cylinders on both sides, the assembly forces of the locking pins on both sides of the armrest box may be different, resulting in unsmooth opening of the armrest box. The existing tooling for assembling the armrest box usually lacks a quality inspection device, and the quality of the assembled armrest box is poor and the assembly efficiency is low. Summary of the Utility Model

[0003] The utility model aims to at least solve one of the technical problems existing in the prior art. For this reason, an object of the utility model is to provide an armrest box tooling. According to the armrest box tooling of the utility model, the driving part drives the first synchronous arm and the second synchronous arm which are linked with each other to move synchronously, and then drives the first driving arm and the second driving part to translate synchronously, so that the assembly of the symmetrically arranged fasteners is synchronous, the consistency during the assembly of the armrest box is improved, and the quality of the armrest box is ensured.

[0004] The armrest box tooling according to the utility model comprises a base, a driving part, a first synchronous arm, a second synchronous arm, a first driving arm and a second driving arm. The driving part is movably arranged on the base; at least one of the first synchronous arm and the second synchronous arm is connected with the driving part, and the first synchronous arm and the second synchronous arm are linked with each other; the first driving arm and the second driving arm are translatably arranged on the base to be adapted to drive the fastener to move, and the first driving arm and the second driving arm are respectively connected with the first synchronous arm and the second synchronous arm and move synchronously under the driving of the first synchronous arm and the second synchronous arm respectively.

[0005] The armrest box tooling drives the first synchronous arm and the second synchronous arm which are linked with each other to move synchronously through the driving part, and then drives the first driving arm and the second driving part to translate synchronously, so that the assembly of the symmetrically arranged fasteners is synchronous, the consistency during the assembly of the armrest box is improved, and the quality of the armrest box is ensured.

[0006] According to an embodiment of the utility model, a first linkage part and a second linkage part are respectively arranged on the first synchronous arm and the second synchronous arm, and the first linkage part and the second linkage part are linked with each other.

[0007] According to an embodiment of the present utility model, the first linkage portion is configured as a first tooth portion, the second linkage portion is configured as a second tooth portion, the first tooth portion and the second tooth portion are meshed with each other and are respectively disposed at the pivot center of the first synchronous arm and the pivot center of the second synchronous arm.

[0008] According to an embodiment of the present utility model, the first synchronous arm and the second synchronous arm are configured in multiple groups, and each group of the first synchronous arm and the second synchronous arm respectively connect the driving portion with the first driving arm and the driving portion with the second driving arm.

[0009] According to an embodiment of the present utility model, a first pivot portion and a second pivot portion that are symmetric in the width direction are formed on the driving portion, and multiple pairs of the first pivot portion and the second pivot portion are configured to be spaced apart in the height direction; wherein, each pair of the first pivot portion and the second pivot portion are respectively correspondingly disposed with each group of the first synchronous arm and the second synchronous arm, one end of the first synchronous arm is rotatably connected to the first pivot portion, and one end of the second synchronous arm is rotatably connected to the second pivot portion.

[0010] According to an embodiment of the present utility model, a first driving end and a second driving end are respectively disposed at the top ends of the first driving arm and the second driving arm, and the first driving end and the second driving end respectively selectively drive the corresponding fastener to move.

[0011] According to an embodiment of the present utility model, a plurality of chutes that are spaced apart from each other and extend in the moving direction of the fastener are disposed on the base, and a first sliding portion and a second sliding portion are respectively disposed on the first driving arm and the second driving arm; wherein, the first driving end and the second driving end can optionally move in one of the chutes; the first sliding portion and the second sliding portion can respectively selectively move in the other one of the chutes.

[0012] According to an embodiment of the present utility model, the driving portion includes: a driving plate and a first driving member, the driving plate is movably disposed on the base, and the first pivot portion and the second pivot portion are disposed on the driving plate; the first driving member is disposed at the bottom of the driving plate and selectively drives the driving plate to move.

[0013] According to an embodiment of the present utility model, the armrest box tooling further includes: a feeding mechanism and a second driving member. The feeding mechanism is rotatably arranged on the base. A feeding area is arranged on the feeding mechanism, and the fastener is received in the feeding area. The feeding mechanism is adapted to convey the fastener to a preset position. The second driving member is connected to the feeding mechanism and selectively drives the feeding mechanism to rotate so that the feeding direction of the feeding mechanism is aligned with the preset position of the fastener.

[0014] According to an embodiment of the present utility model, the feeding mechanism includes: a carrying platform, a third driving member and a first sensor. The carrying platform is rotatably arranged on the base. The feeding area is arranged on the carrying platform. The second driving member is connected to the carrying platform and selectively drives the carrying platform to rotate. The third driving member is arranged on the base and connected to the carrying platform. The third driving member is adapted to drive the fastener to move when the feeding direction of the feeding mechanism is aligned with the preset position of the fastener. The first sensor is arranged below the feeding area. The first sensor is adapted to detect the position of the fastener and control the operation of the third driving member.

[0015] According to an embodiment of the present utility model, the armrest box tooling further includes: a detection mechanism and a fourth driving member. The detection mechanism is rotatably arranged on the base. A second sensor is arranged on the detection mechanism and selectively drives the cover to rotate to detect the force required when the cover is opened. The fourth driving member is arranged on the base and connected to the detection mechanism to selectively drive the detection mechanism to rotate.

[0016] According to an embodiment of the present utility model, the armrest box tooling further includes positioning blocks and a pressing plate. The positioning blocks are configured to be arranged on the base at intervals. The plurality of positioning blocks define an assembly area on the base, and the box body is received in the assembly area. The pressing plate is arranged on the base and spaced from the positioning blocks. The pressing plate is adapted to abut against the side wall of the box body when the box body is received in the assembly area.

[0017] According to an embodiment of the present utility model, the armrest box tooling further includes: a base and a fifth driving member. The base is arranged at the bottom of the base. A telescopic support rod is arranged on the base, and the support rod is connected to the base. The fifth driving member is arranged on the base and selectively adjusts the height of the support rod.

[0018] Additional aspects and advantages of the present utility model will be given in part in the following description, become apparent in part from the following description, or be understood through the practice of the present utility model. Description of the Drawings

[0019] The above and / or additional aspects and advantages of the present utility model will become apparent and be readily understood from the following description of the embodiments in conjunction with the accompanying drawings, wherein:

[0020] Figure 1 is a structural diagram of an armrest box tooling according to an embodiment of the present utility model;

[0021] Figure 2 is a schematic structural diagram of an armrest box tooling according to an embodiment of the present utility model;

[0022] Figure 3 is a schematic diagram of a base according to an embodiment of the present utility model;

[0023] Figure 4 is a front view of a base according to an embodiment of the present utility model;

[0024] Figure 5 is a schematic diagram of a base assembly feeding mechanism according to an embodiment of the present utility model;

[0025] Figure 6 is a schematic diagram of a base without an assembled feeding mechanism according to an embodiment of the present utility model;

[0026] Figure 7 is an assembly schematic diagram of a driving part according to an embodiment of the present utility model;

[0027] Figure 8 is an axonometric view of a base according to an embodiment of the present utility model;

[0028] Figure 9 is a schematic structural diagram of a driving part according to an embodiment of the present utility model.

[0029] Reference numerals:

[0030] Armrest box tooling 1;

[0031] Fastener 10;

[0032] Base 11, chute 111;

[0033] Driving part 12, driving plate 121, first pivoting part 1211, second pivoting part 1212, first driving member 122;

[0034] First synchronizing arm 131, first tooth part 1311, second synchronizing arm 132, second tooth part 1321;

[0035] First driving arm 141, first driving end 1411, first sliding part 1412, second driving arm 142, second driving end 1421, second sliding part 1422;

[0036] Feeding mechanism 15, second driving member 150, carrying platform 151, feeding area 1511, third driving member 152, first sensor 153;

[0037] Detection mechanism 16, fourth driving member 160, second sensor 161;

[0038] Positioning block 171, pressing plate 172;

[0039] Base 18, support rod 181, fifth driving member 182;

[0040] Box body 101, cover body 102, circlip 103. Detailed implementation mode

[0041] The following details the embodiments of the present invention. The examples of the embodiments are shown in the drawings, where the same or similar reference numerals represent the same or similar elements or elements with the same or similar functions throughout. The embodiments described below by referring to the drawings are exemplary and are only used to explain the present invention and should not be construed as a limitation to the present invention.

[0042] The box body and the cover body of the armrest box are connected by a locking pin. During assembly, the locking pin is in interference fit with the armrest box, and the assembly force is large. In the related art, the assembly of the locking pin is carried out by a cylinder pushing at the tail of the locking pin. Since it is difficult to ensure synchronous assembly of the two cylinders on both sides, the assembly forces of the locking pins on both sides of the armrest box may be different, resulting in unsmooth opening of the armrest box. Existing tooling for assembling armrest boxes usually lacks a quality inspection device, and the assembled armrest boxes have poor quality and low assembly efficiency.

[0043] The following refers to Figures 1-9 Describe the armrest box tooling according to the embodiments of the present invention.

[0044] The armrest box tooling 1 according to the present invention includes a base 11, a driving part 12, a first synchronous arm 131, a second synchronous arm 132, a first driving arm 141 and a second driving arm 142. The driving part 12 is movably arranged on the base 11; at least one of the first synchronous arm 131 and the second synchronous arm 132 is connected to the driving part 12, and the first synchronous arm 131 and the second synchronous arm 132 are linked to each other; the first driving arm 141 and the second driving arm 142 are translatably arranged on the base 11 to be adapted to drive the fastener 10 to move, and the first driving arm 141 and the second driving arm 142 are respectively connected to the first synchronous arm 131 and the second synchronous arm 132 and move synchronously under the drive of the first synchronous arm 131 and the second synchronous arm 132 respectively.

[0045] The armrest box tooling 1 according to the present utility model is used for the assembly of the cover body 102 and the box body 101 of the armrest box. The cover body 102 and the box body 101 are connected by symmetrically arranged fasteners 10. During actual assembly, ears that cooperate with each other are respectively arranged on the cover body 102 and the box body 101. As shown in Figure 1 Figure - 9, after the ears of the cover body 102 and the ears of the box body 101 are mutually attached, they are connected by fasteners 10 (such as locking pins). The assembled fasteners 10 can be simply understood as the rotation axes when the cover body 102 is opened or closed. The armrest box tooling 1 is provided with a base 11. The base 11 is a platform for the armrest box tooling 1 to assemble the cover body 102 and the box body 101 of the armrest box. A driving part 12 is arranged at the bottom of the base 11. A first synchronous arm 131 and a second synchronous arm 132 that are linked to each other are connected to the driving part 12. Since the first synchronous arm 131 and the second synchronous arm 132 are linked to each other, the driving part 12 can drive the first synchronous arm 131 and the second synchronous arm 132 to move synchronously. The first synchronous arm 131 and the second synchronous arm 132 are respectively provided with a first driving arm 141 and a second driving arm 142, and the first driving part 12 and the second driving arm 142 are movably arranged on the base 11 in a translatable manner. When the driving part 12 drives the first synchronous arm 131 and the second synchronous arm 132 to move synchronously, the first driving arm 141 and the second driving arm 142 can translate synchronously on the base 11. When the driving part 12 moves upward, the first synchronous arm 131 and the second synchronous arm 132 respectively drive the first driving arm 141 and the second driving arm 142 to horizontally move away from each other. At this time, the first driving arm 141 and the second driving arm 142 can respectively drive a fastener 10 to move to the connection position between the box body 101 and the cover body 102, thereby realizing the assembly of the box body 101 and the cover body 102. The synchronous translation of the first driving arm 141 and the second driving arm 142 ensures the synchronous assembly of the symmetrically arranged fasteners 10, makes the assembly amounts of the fasteners 10 on both sides of the armrest box the same, thereby ensuring smooth opening and closing of the armrest box and improving the assembly quality of the armrest box.

[0046] The armrest box tooling 1 drives the first synchronous arm 131 and the second synchronous arm 132 that are linked to each other to move synchronously through the driving part 12, and then drives the first driving arm 141 and the second driving part 12 to translate synchronously, so that the assembly of the symmetrically arranged fasteners 10 is synchronous, improves the consistency during the assembly of the armrest box, and ensures the quality of the armrest box.

[0047] According to an embodiment of the present utility model, a first linkage part and a second linkage part are respectively arranged on the first synchronizing arm 131 and the second synchronizing arm 132, and the first linkage part and the second linkage part are linked with each other. By arranging the mutually linked first linkage part and second linkage part (such as tooth parts, connecting rods, etc.) on the armrest box tooling 1, it can ensure that the first synchronizing arm 131 and the second synchronizing arm 132 achieve precise synchronous movement under the drive of the drive part 12. The accuracy of the synchronous movement is crucial for alignment and fastening during the armrest box assembly process, and can effectively avoid assembly errors.

[0048] According to an embodiment of the present utility model, the first linkage part is configured as a first tooth part 1311, the second linkage part is configured as a second tooth part 1321, the first tooth part 1311 and the second tooth part 1321 mesh with each other and are respectively arranged at the pivot centers of the first synchronizing arm 131 and the second synchronizing arm 132.

[0049] During actual assembly, the first linkage part and the second linkage part can be respectively configured as the first tooth part 1311 and the second tooth part 1321. The meshing of the first tooth part 1311 and the second tooth part 1321 realizes the linkage between the first synchronizing arm 131 and the second synchronizing arm 132. Using the meshing of tooth parts to achieve synchronous movement can ensure that the first synchronizing arm 131 and the second synchronizing arm 132 always maintain a precise synchronous relationship during movement. At the same time, the meshing of tooth parts has self-locking property, which can resist external interference to a certain extent and improve the stability of synchronous movement.

[0050] According to an embodiment of the present utility model, the first synchronizing arm 131 and the second synchronizing arm 132 are configured in multiple groups, and each group of the first synchronizing arm 131 and the second synchronizing arm 132 respectively connects the drive part 12 with the first drive arm 141 and the drive part 12 with the second drive arm 142. That one first synchronizing arm 131 is linked with one second synchronizing arm 132 can be understood as one group. The cooperative action of multiple groups of the first synchronizing arm 131 and the second synchronizing arm 132 can distribute the force more evenly, reduce the risk of wear or failure caused by uneven force on a single component, and help ensure that when the drive part 12 drives the first drive arm 141 and the second drive arm 142, the actions of the first drive arm 141 and the second drive arm 142 can maintain a high degree of synchronization, improving the assembly accuracy and consistency of the armrest box.

[0051] According to an embodiment of the present utility model, a first pivot portion 1211 and a second pivot portion 1212 that are symmetric in the width direction are formed on the driving portion 12, and the first pivot portion 1211 and the second pivot portion 1212 are configured as multiple pairs that are spaced apart in the height direction; wherein, each pair of the first pivot portion 1211 and the second pivot portion 1212 are respectively arranged corresponding to each group of the first synchronizing arm 131 and the second synchronizing arm 132, one end of the first synchronizing arm 131 is rotatably connected to the first pivot portion 1211, and one end of the second synchronizing arm 132 is rotatably connected to the second pivot portion 1212.

[0052] A first pivot portion 1211 and a second pivot portion 1212 that are symmetric in the width direction are provided on the driving portion 12. Among them, one end of the first synchronizing arm 131 is rotatably connected to the first pivot portion 1211; one end of the second synchronizing arm 132 is rotatably connected to the second pivot portion 1212. The symmetric arrangement of the first pivot portion 1211 and the second pivot portion 1212 can make the linkage between the first synchronizing arm 131 and the second synchronizing arm 132 more stable, ensuring the synchronous movement of the first synchronizing arm 131 and the second synchronizing arm 132. Since the first synchronizing arm 131 and the second synchronizing arm 132 are configured as multiple groups, therefore, the first pivot portion 1211 and the second pivot portion 1212 are also configured as multiple pairs and are respectively arranged in one-to-one correspondence with the first synchronizing arm 131 and the second synchronizing arm 132. After one ends of multiple groups of the first synchronizing arm 131 and one ends of the second synchronizing arm 132 are respectively connected to the corresponding first pivot portion 1211 and the second pivot portion 1212, and multiple groups of the first synchronizing arm 131 and the second synchronizing arm 132 can be respectively connected to different positions on the first driving arm 141 and the second driving arm 142. When the driving portion 12 drives, multiple groups of the first synchronizing arm 131 and the second synchronizing arm 132 can synchronously drive the first driving arm 141 and the second driving arm 142 to translate simultaneously, improving the consistency of the movement of the first driving arm 141 and the second driving arm 142, and further enabling the assembly of the fastener 10 to be synchronous, improving the assembly quality and assembly efficiency of the armrest box.

[0053] According to an embodiment of the present utility model, a first driving end 1411 and a second driving end 1421 are respectively provided at the tops of the first driving arm 141 and the second driving arm 142, and the first driving end 1411 and the second driving end 1421 can respectively and selectively drive the corresponding fastener 10 to move. The first driving end 1411 and the second driving end 1421 that protrude towards the box body 101 are respectively provided at the tops of the first driving arm 141 and the second driving arm 142. When the first driving arm 141 and the second driving arm 142 translate synchronously, the first driving end 1411 and the second driving end 1421 can synchronously drive the corresponding fastener 10 to move, thereby realizing the assembly of the armrest box cover 102 and the box body 101.

[0054] According to an embodiment of the present utility model, a plurality of chutes 111 which are spaced apart from each other and extend in the moving direction of the fastener 10 are provided on the base 11. The first driving arm 141 and the second driving arm 142 are respectively provided with a first sliding portion 1412 and a second sliding portion 1422. Among them, the first driving end 1411 and the second driving end 1421 can optionally move in one of the chutes 111. The first sliding portion 1412 and the second sliding portion 1422 can respectively selectively move in the other chute 111.

[0055] Since the first driving arm 141 and the second driving arm 142 translate on the base 11, as Figure 7 shown, a plurality of chutes 111 which are spaced apart from each other are provided on the base 11 (which can be three chutes 111 in the Figure 7 shown embodiment). The chutes 111 extend in the moving direction during the assembly of the fastener 10. The first driving end 1411 and the second driving end 1421 are arranged in one of the chutes 111 to ensure the stability when the first driving end 1411 and the second driving end 1421 translate synchronously. The first driving arm 141 and the second driving arm 142 are respectively provided with a first sliding portion 1412 and a second sliding portion 1422. The first sliding portion 1412 and the second sliding portion 1422 can be a plurality of corresponding ones. The first sliding portion 1412 and a corresponding second sliding portion 1422 can slide in the same chute 111, improving the stability when the first driving arm 141 and the second driving arm 142 translate.

[0056] According to an embodiment of the present utility model, the driving portion 12 includes: a driving plate 121 and a first driving member 122. The driving plate 121 is movably arranged on the base 11. A first pivoting portion 1211 and a second pivoting portion 1212 are provided on the driving plate 121. The first driving member 122 is arranged at the bottom of the driving plate 121 and can selectively drive the driving plate 121 to move. The driving plate 121 is movably arranged on the base 11. The provision of the first pivoting portion 1211 and the second pivoting portion 1212 on the driving plate 121 realizes the connection between the first synchronizing arm 131 and the second synchronizing arm 132 and the driving portion 12. After the first synchronizing arm 131 and the second synchronizing arm 132 are connected to the driving plate 121, the first driving member 122 drives the driving plate 121 to move, and the driving plate 121 drives the first synchronizing arm 131 and the second synchronizing arm 132 to move synchronously, thereby realizing the synchronous movement of the first driving arm 141 and the second driving arm 142. The provision of the driving plate 121 can improve the smoothness and consistency when the first driving member 122 drives the first synchronizing arm 131 and the second synchronizing arm 132 to move.

[0057] According to an embodiment of the present utility model, the armrest box tooling 1 further includes: a feeding mechanism 15 and a second driving member 150. The feeding mechanism 15 is rotatably arranged on the base 11. A feeding area 1511 is arranged on the feeding mechanism 15. The fastener 10 is received in the feeding area 1511. The feeding mechanism 15 is adapted to convey the fastener 10 to a preset position. The second driving member 150 is connected to the feeding mechanism 15 and selectively drives the feeding mechanism 15 to rotate so that the feeding direction of the feeding mechanism 15 is directly opposite to the preset position of the fastener 10.

[0058] Since the cover 102 and the box body 101 of the armrest box are connected by the fastener 10, the armrest box tooling 1 is provided with a feeding mechanism 15 to facilitate the transportation of the fastener 10. Specifically, the feeding mechanism 15 is rotatably arranged on the base 11 to facilitate the adjustment of the feeding direction. A feeding area 1511 is arranged on the feeding mechanism 15. The feeding area 1511 can accommodate the fastener 10. A second driving member 150 can be arranged below the feeding mechanism 15. The second driving member 150 is used to drive the feeding mechanism 15 to rotate. When assembling the box body 101 and the cover 102, the fastener 10 can be placed on the feeding mechanism 15. At this time, the second driving member 150 drives the feeding mechanism 15 to rotate, adjusts the feeding direction of the feeding mechanism 15 and makes the feeding direction directly opposite to the preset position of the fastener 10, which is convenient for the feeding mechanism 15 to convey the fastener 10 to the preset position for assembling the cover 102 and the box body 101. The preset position of the fastener 10 here can be understood as the position where the fastener 10 is located when the first driving end 1411 and the second driving end 1421 drive the corresponding fastener 10 to move. The setting of the feeding mechanism 15 can realize the automation of the fastener 10 feeding and improve the assembly efficiency of the armrest box.

[0059] According to an embodiment of the present utility model, the feeding mechanism 15 includes: a carrying platform 151, a third driving member 152 and a first sensor 153. The carrying platform 151 is rotatably arranged on the base 11. A feeding area 1511 is arranged on the carrying platform 151. The second driving member 150 is connected to the carrying platform 151 and selectively drives the carrying platform 151 to rotate. The third driving member 152 is arranged on the base 11 and connected to the carrying platform 151. The third driving member 152 is adapted to drive the fastener 10 to move when the feeding direction of the feeding mechanism 15 is directly opposite to the preset position of the fastener 10. The first sensor 153 is arranged below the feeding area 1511. The first sensor 153 is adapted to detect the position of the fastener 10 and control the operation of the third driving member 152.

[0060] Since the feeding mechanism 15 is a device for transporting the fasteners 10, the structure of the feeding mechanism 15 will affect the assembly of the armrest box. Specifically, the feeding mechanism 15 is provided with a third driving member 152 and a carrying platform 151. The carrying platform 151 is rotatably arranged on the base 11. A feeding area 1511 is arranged on the carrying platform 151. The fasteners 10 can be received in the feeding area 1511. The third driving member 152 is arranged on the carrying platform 151 for transporting the fasteners 10. When assembling the armrest box, the fasteners 10 are placed in the feeding area 1511. The second driving member 150 drives the carrying platform 151 to rotate and aligns the fasteners 10 with the preset position. At this time, the third driving member 152 drives the fasteners 10 to move to the preset position to facilitate the assembly of the fasteners 10 to the box body 101 and the cover body 102. The setting of the feeding mechanism 15 improves the efficiency of the armrest box tooling 1 in assembling the box body 101 and the cover body 102.

[0061] In addition, a first sensor 153 is arranged below the feeding area 1511. The first sensor 153 can detect the position information of the fasteners 10. When the fasteners 10 are placed in the feeding area 1511, the first sensor 153 can detect the position of the fasteners 10 and judge whether the fasteners 10 are placed correctly, so as to avoid the position deviation of the fasteners 10 affecting the assembly of the box body 101 and the cover body 102. The setting of the first sensor 153 enables the feeding mechanism 15 to have an anti-mistake function and improves the quality of the armrest box tooling 1 in assembling the armrest box.

[0062] According to an embodiment of the present invention, the armrest box tooling 1 further includes: a detection mechanism 16 and a fourth driving member 160. The detection mechanism 16 is rotatably arranged on the base 11. A second sensor 161 is arranged on the detection mechanism 16 and can selectively drive the cover body 102 to rotate to detect the force required when the cover body 102 is opened; the fourth driving member 160 is arranged on the base 11 and is connected to the detection mechanism 16 to selectively drive the detection mechanism 16 to rotate.

[0063] The armrest box tooling 1 is also provided with a detection mechanism 16, which can be used to detect whether the opening force of the assembled armrest box meets the requirements of the product. Specifically, the detection mechanism 16 is rotatably arranged on the base 11, a fourth driving member 160 is arranged below the detection mechanism 16, the fourth driving member 160 can drive the detection mechanism 16 to rotate, and a second sensor 161 is arranged on the detection mechanism 16. When the armrest box is assembled, the fourth driving member 160 works, the detection mechanism 16 rotates and opens the cover body 102. At this time, the second sensor 161 can detect the force required to open the cover body 102, and can display the magnitude of the force through structures such as a display screen, so as to judge whether the force to open the cover body 102 is within the preset range. If the force to open the cover body 102 is within the preset range, it means that the armrest box is qualified; otherwise, it means that the armrest box is unqualified and needs to be reassembled. The setting of the detection mechanism 16 enables the armrest box tooling 1 to have the function of inspecting the product quality, and improves the quality of the armrest box assembled by the armrest box tooling 1.

[0064] According to an embodiment of the present invention, the armrest box tooling 1 further includes positioning blocks 171 and a pressing plate 172. The positioning blocks 171 are configured to be multiple and spaced apart on the base 11, and the multiple positioning blocks 171 define an assembly area on the base 11; the box body 101 is received in the assembly area; the pressing plate 172 is arranged on the base 11 and spaced apart from the positioning blocks 171, and the pressing plate 172 is adapted to abut against the side wall of the box body 101 when the box body 101 is received in the assembly area.

[0065] The armrest box tooling 1 is provided with multiple positioning blocks 171 on the base 11. The multiple positioning blocks 171 are spaced apart from each other and define an assembly area. Placing the box body 101 in the assembly area can improve the efficiency of placing the box body 101 on the armrest box tooling 1 and the stability during the assembly of the armrest box, and reduce the assembly error of the armrest box. A pressing plate 172 is arranged on the outer periphery of the assembly area, and the pressing plate 172 can cooperate with the side wall of the box body 101 to abut against it, restricting the movement of the box body 101, and further improving the stability during the assembly process of the armrest box.

[0066] According to an embodiment of the present invention, the armrest box tooling 1 further includes: a base 18 and a fifth driving member 182. The base 18 is arranged at the bottom of the base 11, a telescopic support rod 181 is arranged on the base 18, and the support rod 181 is connected to the base 11; the fifth driving member 182 is arranged on the base 18 and can selectively adjust the height of the support rod 181. A base 18 is further arranged at the bottom of the base 11, and multiple support rods 181 that are spaced apart from each other and can be telescopic in the height direction are arranged on the base 18. The multiple support rods 181 support the base 11, and the fifth driving member 182 side can drive the base 11 to move so as to adjust the height of the base 11, enabling the armrest box tooling 1 to be applicable to different working environments.

[0067] In some embodiments, at least one of the box body 101 and the cover body 102 may be provided with a snap spring 103. The fastener 10 may be a locking pin. When the locking pin connects the box body 101 and the cover body 102, it can abut against the snap spring 103, reducing the risk of the locking pin falling off and improving the stability of the armrest box after assembly.

[0068] In the description of the present utility model, it should be understood that the orientation or positional relationship indicated by the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation to the present utility model.

[0069] In the description of the present utility model, the "first feature" and "second feature" may include one or more of such features.

[0070] In the description of the present utility model, the meaning of "a plurality" is two or more.

[0071] In the description of the present utility model, the first feature being "above" or "below" the second feature may include the first and second features being in direct contact, or may include the first and second features not being in direct contact but being in contact through additional features therebetween.

[0072] In the description of the present utility model, the first feature being "above", "over" and "on" the second feature includes the first feature being directly above and obliquely above the second feature, or merely indicating that the first feature has a higher horizontal height than the second feature.

[0073] In the description of this specification, the description with reference to terms such as "one embodiment", "some embodiments", "schematic embodiments", "examples", "specific examples", or "some examples", etc. means that the specific features, structures, materials, or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present utility model. In this specification, the schematic descriptions of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described can be combined in a suitable manner in any one or more embodiments or examples.

[0074] Although embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the claims and their equivalents.

Claims

1. An armrest box tooling, the armrest box is provided with a cover body (102) and a box body (101), the cover body (102) and the box body (101) are connected by symmetrically arranged fasteners (10), characterized in that: include: Base (11); A driving unit (12), wherein the driving unit (12) is movably disposed on the base (11); A first synchronization arm (131) and a second synchronization arm (132), at least one of the first synchronization arm (131) and the second synchronization arm (132) is connected to the driving part (12), and the first synchronization arm (131) and the second synchronization arm (132) are linked to each other; A first driving arm (141) and a second driving arm (142), wherein the first driving arm (141) and the second driving arm (142) are translationally arranged on the base (11) so as to be suitable for driving the fastener (10) to move, and the first driving arm (141) and the second driving arm (142) are respectively connected to the first synchronization arm (131) and the second synchronization arm (132) and move synchronously under the drive of the first synchronization arm (131) and the second synchronization arm (132).

2. The armrest box tooling according to claim 1, characterized in that: The first synchronization arm (131) and the second synchronization arm (132) are respectively provided with a first linkage part and a second linkage part, and the first linkage part and the second linkage part are linked to each other.

3. The armrest box tooling according to claim 2, characterized in that: The first linkage portion is configured as a first tooth portion (1311), and the second linkage portion is configured as a second tooth portion (1321). The first tooth portion (1311) and the second tooth portion (1321) are meshed with each other and are respectively arranged at the pivot center of the first synchronization arm (131) and the pivot center of the second synchronization arm (132).

4. The armrest box tooling according to claim 3, characterized in that: The first synchronization arm (131) and the second synchronization arm (132) are constructed into a plurality of groups, and each group of the first synchronization arm (131) and the second synchronization arm (132) respectively connects the driving part (12) and the first driving arm (141), and the driving part (12) and the second driving arm (142).

5. The armrest box tooling according to claim 4, characterized in that: The driving part (12) is formed with a first pivot part (1211) and a second pivot part (1212) which are symmetrical in the width direction, and the first pivot part (1211) and the second pivot part (1212) are configured as a plurality of pairs which are spaced apart in the height direction; wherein Each pair of the first pivoting portion (1211) and the second pivoting portion (1212) is respectively arranged corresponding to each group of the first synchronization arm (131) and the second synchronization arm (132); one end of the first synchronization arm (131) is rotatably connected to the first pivoting portion (1211), and one end of the second synchronization arm (132) is rotatably connected to the second pivoting portion (1212).

6. The armrest box tooling according to claim 1, characterized in that: The top end of the first driving arm (141) and the top end of the second driving arm (142) are respectively provided with a first driving end (1411) and a second driving end (1421), and the first driving end (1411) and the second driving end (1421) can respectively selectively drive the corresponding fastener (10) to move.

7. The armrest box tooling according to claim 6, characterized in that: The base (11) is provided with a plurality of slide grooves (111) which are spaced apart from each other and extend in the moving direction of the fastener (10); the first driving arm (141) and the second driving arm (142) are respectively provided with a first sliding portion (1412) and a second sliding portion (1422); wherein The first driving end (1411) and the second driving end (1421) can be optionally moved in one of the slide grooves (111); the first sliding part (1412) and the second sliding part (1422) can be optionally moved in another one of the slide grooves (111).

8. The armrest box tooling according to claim 5, characterized in that: The driving unit (12) comprises: A driving plate (121), the driving plate (121) being movably disposed on the base (11), and the driving plate (121) being provided with the first pivoting portion (1211) and the second pivoting portion (1212); A first driving member (122), wherein the first driving member (122) is disposed at the bottom of the driving plate (121) and can selectively drive the driving plate (121) to move.

9. The armrest box tooling according to claim 1, characterized in that: Also includes: A feeding mechanism (15), the feeding mechanism (15) being rotatably arranged on the base (11), the feeding mechanism (15) being provided with a feeding area (1511), the fastener (10) being accommodated in the feeding area (1511), and the feeding mechanism (15) being suitable for conveying the fastener (10) to a preset position; A second driving member (150) is connected to the feeding mechanism (15) and can selectively drive the feeding mechanism (15) to rotate so that the feeding direction of the feeding mechanism (15) is aligned with the preset position of the fastener (10).

10. The armrest box tooling according to claim 9, characterized in that: The feeding mechanism (15) comprises: A carrying platform (151), the carrying platform (151) is rotatably disposed on the base (11), the loading area (1511) is disposed on the carrying platform (151), and the second driving member (150) is connected to the carrying platform (151) and can selectively drive the carrying platform (151) to rotate; a third driving member (152), the third driving member (152) being arranged on the base (11) and connected to the carrying platform (151), the third driving member (152) being adapted to drive the fastener (10) to move when a feeding direction of the feeding mechanism (15) is aligned with a preset position of the fastener (10); A first sensor (153), wherein the first sensor (153) is disposed below the loading area (1511), and the first sensor (153) is suitable for detecting the position of the fastener (10) and controlling the operation of the third driving member (152).

11. The armrest box tooling according to claim 1, characterized in that: Also includes: a detection mechanism (16), the detection mechanism (16) being rotatably disposed on the base (11), the detection mechanism (16) being provided with a second sensor (161) and being capable of selectively driving the cover body (102) to rotate so as to detect a force required for opening the cover body (102); A fourth driving member (160), wherein the fourth driving member (160) is disposed on the base (11) and connected to the detection mechanism (16) so as to selectively drive the detection mechanism (16) to rotate.

12. The armrest box tooling according to claim 1, characterized in that: Also includes: A positioning block (171), the positioning block (171) being structured as a plurality of positioning blocks (171) arranged at intervals on the base (11), the plurality of positioning blocks (171) defining an assembly area on the base (11), and the box (101) being accommodated in the assembly area; A pressing plate (172), the pressing plate (172) being arranged on the base (11) and spaced apart from the positioning block (171), the pressing plate (172) being adapted to abut against a side wall of the box body (101) when the box body (101) is accommodated in the assembly area.

13. The armrest box tooling according to claim 1, characterized in that: Also includes: A base (18), the base (18) being arranged at the bottom of the base (11), the base (18) being provided with a retractable support rod (181), the support rod (181) being connected to the base (11); A fifth driving member (182), wherein the fifth driving member (182) is disposed on the base (18) and can selectively adjust the height of the support rod (181).