A tray swing jig

CN224767305UActive Publication Date: 2026-09-18深圳市典誉精密模具有限公司
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Patent Information

Application Number
CN202522334781.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-04
Publication Date
2026-09-18
Estimated Expiration
2035-11-04

AI Technical Summary

Technical Problem

[0002]随着科技的发展,摆盘治具用于对产品进行摆放,保证了产品的摆放整齐性,在现有技术中,现有的摆盘治具包括第一摆盘主体和多个第一定位块,多个第一定位块可移动地连接于第一摆盘主体,但是只能供一个吸塑盒进行摆放,导致现有的摆盘治具的工作效率较低

Benefits of technology

本实用新型提供一种摆盘治具,第一摆盘包括第一摆盘主体和多个第一定位块,第一摆盘主体设有第一容纳槽,多个第一定位块均可移动地连接于第一摆盘主体,并设置于第一容纳槽的一侧;多个第一定位块相对于第一摆盘主体移动,以定位处于第一容纳槽的第一吸塑盒;第一吸塑盒的四周被第一摆盘主体和多个第一定位块所定位;第一吸塑盒设有多个第一产品定位工位;第二摆盘设置于第一摆盘的一侧,并与第一摆盘呈间隔布置;第二摆盘包括第二摆盘主体和多个第二定位块,第二摆盘主体设有第二容纳槽,多个第二定位块均可移动地连接于第二摆盘主体,并设置于第二容纳槽的一侧;多个第二定位块相对于第二摆盘主体移动,以定位处于第二容纳槽的第二吸塑盒;第二吸塑盒的四周被第二摆盘主体和多个第二定位块所定位;第二吸塑盒设有多个第二产品定位工位;过渡支撑座处于第一摆盘主体和第二摆盘主体之间,并连接于第一摆盘主体和第二摆盘主体;过渡支撑座设有支撑支臂,该支撑支臂用于支撑经机械手转移的产品,处于支撑支臂的产品能够被转移至第一吸塑盒或者第二吸塑盒,以实现了中间过渡,从而便于集成了第一吸塑盒和第二吸塑盒,避免了只能供一个吸塑盒进行摆放,提高了摆盘治具的工作效率。

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Abstract

The application provides a tray placing jig, which comprises a first tray placing jig, a second tray placing jig and a transition support seat; the first tray placing jig positions a first blister box; the first blister box is provided with a plurality of first product positioning stations; the second tray placing jig is arranged on one side of the first tray placing jig and is spaced apart from the first tray placing jig; the second tray placing jig positions a second blister box; the second blister box is provided with a plurality of second product positioning stations; the transition support seat is between the first tray placing jig main body and the second tray placing jig main body and is connected to the first tray placing jig main body and the second tray placing jig main body; the transition support seat is provided with a support arm, which is used for supporting a product transferred by a mechanical hand; the product on the support arm can be transferred to the first blister box or the second blister box, so that intermediate transition is realized, the first blister box and the second blister box are integrated, only one blister box can be placed, and the working efficiency of the tray placing jig is improved.
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Description

Technical Field

[0001] This utility model relates to the technical field of tray setting fixtures, and in particular to a tray setting fixture. Background Technology

[0002] With the development of technology, tray display fixtures are used to place products and ensure that the products are placed neatly. In the existing technology, the existing tray display fixtures include a first tray body and multiple first positioning blocks. The multiple first positioning blocks are movably connected to the first tray body, but can only accommodate one blister box, resulting in low working efficiency of the existing tray display fixtures. Utility Model Content

[0003] The purpose of this utility model is to provide a tray-setting fixture. A first tray includes a first tray body and multiple first positioning blocks. The first tray body has a first receiving groove. The multiple first positioning blocks are movably connected to the first tray body and disposed on one side of the first receiving groove. The multiple first positioning blocks move relative to the first tray body to position a first blister box located in the first receiving groove. The first blister box is positioned around its perimeter by the first tray body and the multiple first positioning blocks. The first blister box has multiple first product positioning stations. A second tray is disposed on one side of the first tray and arranged at intervals from the first tray. The second tray includes a second tray body and multiple second positioning blocks. The second tray body has a second receiving groove, and the multiple second positioning blocks are movably connected to the first tray body. The first blister pack is positioned on one side of the second receiving slot. Multiple second positioning blocks move relative to the second blister pack to position the second blister pack within the second receiving slot. The second blister pack is positioned around its perimeter by the second blister pack and the multiple second positioning blocks. The second blister pack has multiple second product positioning stations. A transition support is located between the first and second blister packs and connected to them. The transition support has a support arm for supporting products transferred by the robotic arm. Products positioned on the support arm can be transferred to either the first or second blister pack, achieving an intermediate transition. This facilitates the integration of the first and second blister packs, avoiding the limitation of only one blister pack being used for placement and improving the working efficiency of the blister pack fixture.

[0004] To achieve the above objectives, this utility model provides the following technical solution: a tray-setting fixture, comprising: The first tray includes a first tray body and a plurality of first positioning blocks. The first tray body is provided with a first receiving groove. The plurality of first positioning blocks are movably connected to the first tray body and are disposed on one side of the first receiving groove. The plurality of first positioning blocks move relative to the first tray body to position a first blister box located in the first receiving groove. The first blister box is positioned by the first tray body and the plurality of first positioning blocks. The first blister box is provided with a plurality of first product positioning stations. A second tray is disposed on one side of the first tray and spaced apart from it. The second tray includes a second tray body and a plurality of second positioning blocks. The second tray body has a second receiving groove. The plurality of second positioning blocks are movably connected to the second tray body and disposed on one side of the second receiving groove. The plurality of second positioning blocks move relative to the second tray body to position a second blister box located in the second receiving groove. The second blister box is positioned around its perimeter by the second tray body and the plurality of second positioning blocks. The second blister box has a plurality of second product positioning stations. A transition support is located between the first tray body and the second tray body, and is connected to the first tray body and the second tray body; the transition support is provided with a support arm, which is used to support the product transferred by the robot arm, and the product on the support arm can be transferred to the first blister box or the second blister box.

[0005] Optionally, the first plating body and the second plating body are arranged side by side; The first plate body is provided with a first connecting groove, and the second plate body is provided with a second connecting groove; The transition support base is provided with a transition support body, which is connected to the support arm, and the support arm is disposed on the upper side of the transition support body; The transition support body is embedded in the first connecting groove and the second connecting groove, and is connected to the first plate-slab body and the second plate-slab body.

[0006] Optionally, the first connecting groove and the second connecting groove are arranged opposite to each other; The left and right ends of the transition support body are respectively connected to the first connecting groove and the second connecting groove; the transition support body is detachably connected to the first plate-swinging body and the second plate-swinging body.

[0007] Optionally, the support arm is inserted into the transition support body along the vertical direction and is detachably connected to the transition support body.

[0008] Optionally, the bottom of the support arm is provided with a first threaded hole; The transition support body is provided with a through hole for a first screw to pass through. The first screw is screwed into the first threaded hole, so that the support arm is connected to the transition support body.

[0009] Optionally, the upper sidewall of the transition support body is provided with a groove, and the support arm is inserted into the groove and positioned in the groove; The through hole connects to the groove in the vertical direction.

[0010] Optionally, the support arm and the transition support body have a stepped structure, and the support arm is located in the middle region of the transition support body; The first blister pack and the second blister pack are located on both sides of the support arm.

[0011] Optionally, a plurality of the first positioning blocks are disposed on the periphery of the first swivel plate body, and the first swivel plate body is provided with a second threaded hole; The first positioning block is provided with a first elongated groove, which is arranged along the length of the first positioning block. The first elongated groove is used for a second screw to pass through. The second screw passes through the first elongated groove and is screwed into the second threaded hole. The second screw is located at different positions in the first elongated groove as the first positioning block moves relative to the first swivel plate body.

[0012] Optionally, a plurality of second positioning blocks are disposed on the periphery of the second swivel plate body, and the second swivel plate body is provided with a third threaded hole; The second positioning block is provided with a second elongated groove, which is arranged along the length of the second positioning block. The second elongated groove is used for a third screw to pass through. The third screw passes through the second elongated groove and is screwed into the third threaded hole. The third screw is located at different positions in the second elongated groove as the second positioning block moves relative to the second swivel plate body.

[0013] Optionally, both the first and second receiving slots are square slots.

[0014] Compared with the prior art, the beneficial effects of this utility model are: This utility model provides a tray-setting fixture. A first tray includes a first tray body and multiple first positioning blocks. The first tray body has a first receiving groove. The multiple first positioning blocks are movably connected to the first tray body and disposed on one side of the first receiving groove. The multiple first positioning blocks move relative to the first tray body to position a first blister box located in the first receiving groove. The first blister box is positioned around its perimeter by the first tray body and the multiple first positioning blocks. The first blister box has multiple first product positioning stations. A second tray is disposed on one side of the first tray and arranged at intervals from the first tray. The second tray includes a second tray body and multiple second positioning blocks. The second tray body has a second receiving groove, and the multiple second positioning blocks are movably connected to the second tray body. The second blister pack is positioned on one side of the second receiving slot; multiple second positioning blocks move relative to the second swivel plate body to position the second blister pack in the second receiving slot; the second blister pack is positioned around its perimeter by the second swivel plate body and multiple second positioning blocks; the second blister pack has multiple second product positioning stations; a transition support is located between the first swivel plate body and the second swivel plate body, and is connected to the first swivel plate body and the second swivel plate body; the transition support is provided with a support arm, which is used to support the product transferred by the robot arm. The product on the support arm can be transferred to the first blister pack or the second blister pack, thus realizing an intermediate transition, which facilitates the integration of the first blister pack and the second blister pack, avoids the limitation of only being able to place one blister pack, and improves the working efficiency of the swivel plate fixture. Attached Figure Description

[0015] To more clearly illustrate the technical solutions in the embodiments of this application, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0016] To gain a more complete understanding of this application and its beneficial effects, the following description will be provided in conjunction with the accompanying drawings. In the following description, the same reference numerals denote the same parts.

[0017] Figure 1 A schematic diagram of a tray fixture according to an embodiment of this application is shown.

[0018] Figure 2 A schematic diagram of the first plate of a plate-setting fixture according to an embodiment of this application is shown.

[0019] Figure 3 A schematic diagram of the second plate of the plate-setting fixture according to one embodiment of this application is shown.

[0020] Figure 4A schematic diagram of a transition support for a plate-stacking fixture according to an embodiment of this application is shown.

[0021] Figure 5 A cross-sectional view of the transition support of a slab fixture according to an embodiment of this application is shown.

[0022] Attached Figure

[0023] 100. Plate-setting fixture; 10. First tray; 11. First tray body; 11a. First receiving groove; 11b. First connecting groove; 11c. Second threaded hole; 12. First positioning block; 12a. First elongated groove; 13. First blister box; 13a. First product positioning station; 20. Second tray; 21. Second tray body; 21a. Second receiving groove; 21b. Second connecting groove; 21c. Third threaded hole; 22. Second positioning block; 22a. Second elongated groove; 23. Second blister box; 24. Second product positioning station; 30. Transition support seat; 31. Support arm; 31a. First threaded hole; 32. Transition support body; 32a. Through hole; 32b. Groove. Detailed Implementation

[0024] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this application, and not all of them. All other embodiments obtained by those skilled in the art based on the embodiments of this application without creative effort are within the scope of protection of this application.

[0025] Please refer to the attached document. Figures 1-5 This application provides a tray arrangement fixture 100, which is used to arrange products and ensures that the products are arranged neatly.

[0026] Please refer to the attached document. Figures 1-5In this embodiment, the tray fixture 100 includes a first tray 10, a second tray 20, and a transition support 30. The first tray 10 includes a first tray body 11 and a plurality of first positioning blocks 12. The first tray body 11 is provided with a first receiving groove 11a. The plurality of first positioning blocks 12 are movably connected to the first tray body 11 and disposed on one side of the first receiving groove 11a. The plurality of first positioning blocks 12 move relative to the first tray body 11 to position a first blister box 13 located in the first receiving groove 11a. The first blister box 13 is positioned around its perimeter by the first tray body 11 and the plurality of first positioning blocks 12. The first blister box 13 is provided with a plurality of first product positioning stations 13a. The second tray 20 is disposed on one side of the first tray 10 and is arranged at intervals from the first tray 10. The second tray 20 includes a second tray body 21 and a plurality of second positioning blocks 22. The second tray body 21 is provided with a second receiving groove 21a, and the plurality of second positioning blocks 22 are movably connected to the first tray body 11 and disposed on one side of the first tray 10. The first blister pack 11 is movably connected to the second blister pack body 21 and is located on one side of the second receiving groove 21a. Multiple second positioning blocks 22 move relative to the second blister pack body 21 to position the second blister pack 23 located in the second receiving groove 21a. The second blister pack 23 is positioned around its perimeter by the second blister pack body 21 and multiple second positioning blocks 22. The second blister pack 23 has multiple second product positioning stations 23a. A transition support 30 is located between the first blister pack body 11 and the second blister pack body 21 and is connected to both. The transition support 30 has a support arm 31 for supporting products transferred by the robotic arm. Products located on the support arm 31 can be transferred to either the first blister pack 13 or the second blister pack 23, thus achieving an intermediate transition. This facilitates the integration of the first blister pack 13 and the second blister pack 23, avoiding the limitation of only one blister pack being used for placement and improving the working efficiency of the blister pack fixture 100.

[0027] Please refer to the attached document. Figures 1-5In this embodiment, the first tray 10 includes a first tray body 11 and a plurality of first positioning blocks 12. The first tray body 11 is provided with a first receiving groove 11a, which is recessed from top to bottom by the first tray body 11. The plurality of first positioning blocks 12 are movably connected to the first tray body 11 and are disposed on one side of the first receiving groove 11a to facilitate adjustment of the position of the plurality of first positioning blocks 12 relative to the first tray body 11, thereby facilitating adjustment of the area of ​​the first receiving groove 11a. The plurality of first positioning blocks 12 move relative to the first tray body 11 to position the first blister box 13 located in the first receiving groove 11a. The first blister box 13 is positioned around its perimeter by the first tray body 11 and the plurality of first positioning blocks 12 to limit the range of motion around the first blister box 13 and ensure the positional accuracy of the first blister box 13 relative to the first receiving groove 11a. The first blister box 13 is provided with multiple first product positioning stations 13a to enable the positioning of multiple products. When the first blister box 13 is full of products, the first blister box 13 to be placed is replaced.

[0028] The second tray 20 is disposed to the right of the first tray 10 and is spaced apart from the first tray 10. The second tray 20 includes a second tray body 21 and a plurality of second positioning blocks 22. The second tray body 21 is provided with a second receiving groove 21a. The plurality of second positioning blocks 22 are movably connected to the second tray body 21 and disposed on one side of the second receiving groove 21a, so as to facilitate the adjustment of the plurality of second positioning blocks 22 relative to the second tray body 21, thereby facilitating the adjustment of the area of ​​the second receiving groove 21a. The plurality of second positioning blocks 22 move relative to the second tray body 21 to position the second blister box 23 located in the second receiving groove 21a. The second blister box 23 is positioned around its perimeter by the second tray body 21 and the plurality of second positioning blocks 22 to limit the range of motion around the second blister box 23 and ensure the positional accuracy of the second blister box 23 relative to the second receiving groove 21a. The second blister box 23 is provided with multiple second product positioning stations 23a to enable the positioning of multiple products. When the second blister box 23 is full of products, the second blister box 23 to be placed is replaced.

[0029] The transition support 30 is located between the first tray body 11 and the second tray body 21, and is connected to the first tray body 11 and the second tray body 21. The transition support 30 is provided with a support arm 31, which is used to support the products transferred by the robot arm. The products on the support arm 31 can be transferred to the first blister box 13 or the second blister box 23 to achieve intermediate transition, thereby facilitating the integration of the first blister box 13 and the second blister box 23, avoiding the limitation of only one blister box for placement, and improving the working efficiency of the tray fixture 100.

[0030] Please refer to the attached document. Figures 1-4In this embodiment, the first plate-mounting body 11 and the second plate-mounting body 21 are arranged side by side; the first plate-mounting body 11 is provided with a first connecting groove 11b, and the second plate-mounting body 21 is provided with a second connecting groove 21b; the transition support base 30 is provided with a transition support body 32, which is connected to a support arm 31, and the support arm 31 is disposed on the upper side of the transition support body 32; the transition support body 32 is embedded in the first connecting groove 11b and the second connecting groove 21b, and is connected to the first plate-mounting body 11 and the second plate-mounting body 21, so as to realize that the transition support body 32 is engaged with the first plate-mounting body 11 and the second plate-mounting body 21, thereby facilitating the connection between the transition support base 30 and the first plate-mounting body 11 and the second plate-mounting body 21 through the transition support body 32, and ensuring the connection stability between the first plate-mounting body 11 and the second plate-mounting body 21.

[0031] Please refer to the attached document. Figures 1-5 In this embodiment, the first connecting groove 11b and the second connecting groove 21b are arranged opposite to each other; the left and right ends of the transition support body 32 are respectively connected to the first connecting groove 11b and the second connecting groove 21b; the transition support body 32 is detachably connected to the first plate body 11 and the second plate body 21, so that the transition support body 32 can be connected to or detached from the first plate body 11 and the second plate body 21, thereby improving the ease of replacement of the first plate body 11 and the second plate body 21.

[0032] Please refer to the attached document. Figures 4-5 In this embodiment, the support arm 31 is inserted into the transition support body 32 along the vertical direction and is detachably connected to the transition support body 32, so that the support arm 31 can be connected to or detached from the transition support body 32, which improves the ease of installation and removal of the support arm 31 and facilitates the replacement of different support arms 31.

[0033] Please refer to the attached document. Figures 4-5 In this embodiment, the bottom of the support arm 31 is provided with a first threaded hole 31a; the transition support body 32 is provided with a through hole 32a, which is used for the first screw to pass through. The first screw is screwed into the first threaded hole 31a, so that the support arm 31 is connected to the transition support body 32, so that the support arm 31 can be detachably connected to the transition support body 32 by the first screw.

[0034] Please refer to the attached document. Figures 4-5In this embodiment, the upper sidewall of the transition support body 32 is provided with a groove 32b, and the support arm 31 is inserted into and positioned in the groove 32b. This ensures the installation accuracy of the support arm 31 relative to the transition support body 32 and facilitates the alignment of the support arm 31 with the groove 32b to connect with the transition support body 32. The through hole 32a connects to the groove 32b in the vertical direction, so that the first screw can extend from bottom to top through the hole 32a and the groove 32b to the first threaded hole 31a, thereby facilitating the concealment of the end of the first screw.

[0035] Please refer to the attached document. Figures 4-5 In this embodiment, the support arm 31 and the transition support body 32 have a stepped structure, with the support arm 31 located in the middle region of the transition support body 32. This facilitates the positioning of the product relative to the middle region of the transition support body 32 by the support arm 31. The first blister box 13 and the second blister box 23 are arranged on both sides of the support arm 31, so that the product on the support arm 31 can be transferred to the first blister box 13 or the second blister box 23 under the action of the robot, thus achieving an intermediate transition. This facilitates the integration of the first blister box 13 and the second blister box 23, avoiding the limitation of only one blister box for placement and improving the working efficiency of the tray fixture 100.

[0036] Please refer to the attached document. Figures 1-3 In this embodiment, multiple first positioning blocks 12 are disposed around the periphery of the first swivel plate body 11. The first swivel plate body 11 has a second threaded hole 11c. Each first positioning block 12 has a first elongated groove 12a, which is arranged along the length of the first positioning block 12. The first elongated groove 12a is used for a second screw to pass through. The second screw passes through the first elongated groove 12a and is screwed into the second threaded hole 11c. The second screw is positioned at different positions in the first elongated groove 12a as the first positioning block 12 moves relative to the first swivel plate body 11, so that the multiple first positioning blocks 12 can move relative to the first swivel plate body 11 through the space of the first elongated groove 12a. When the first positioning block 12 moves to a designated position relative to the first swivel plate body 11, the second screw locks the first positioning block 12, ensuring that the first positioning block 12 is stationary relative to the first swivel plate body 11. Specifically, there are three first positioning blocks 12.

[0037] Please refer to the attached document. Figures 1-3In this embodiment, multiple second positioning blocks 22 are disposed around the periphery of the second swivel plate body 21, and the second swivel plate body 21 is provided with a third threaded hole 21c. Each second positioning block 22 is provided with a second elongated groove 22a, which is arranged along the length of the second positioning block 22. The second elongated groove 22a is used for a third screw to pass through. The third screw passes through the elongated groove and is screwed into the third threaded hole 21c. The third screw is positioned at different locations in the second elongated groove 22a as the second positioning block 22 moves relative to the second swivel plate body 21, allowing the multiple second positioning blocks 22 to move relative to the second swivel plate body 21 through the space of the second elongated groove 22a. When a second positioning block 22 moves to a designated position relative to the second swivel plate body 21, the third screw locks the second positioning block 22, ensuring that the second positioning block 22 is stationary relative to the second swivel plate body 21. Specifically, there are three second positioning blocks 22.

[0038] Please refer to the attached document. Figures 1-3 In this embodiment of the application, the first receiving groove 11a and the second receiving groove 21a are both square grooves, so that the first receiving groove 11a and the second receiving groove 21a can respectively accommodate the square first blister box 13 and the square second blister box 23, thereby facilitating the first receiving groove 11a and the second receiving groove 21a to be adapted to the first blister box 13 and the second blister box 23 respectively.

[0039] Compared with the prior art, the beneficial effects of this utility model are: This utility model provides a tray arrangement fixture 100. A first tray 10 includes a first tray body 11 and multiple first positioning blocks 12. The first tray body 11 has a first receiving groove 11a. The multiple first positioning blocks 12 are movably connected to the first tray body 11 and disposed on one side of the first receiving groove 11a. The multiple first positioning blocks 12 move relative to the first tray body 11 to position a first blister box 13 located in the first receiving groove 11a. The first blister box 13 is positioned around its perimeter by the first tray body 11 and the multiple first positioning blocks 12. The first blister box 13 has multiple first product positioning stations 13a. A second tray 20 is disposed on one side of the first tray 10 and is spaced apart from the first tray 10. The second tray 20 includes a second tray body 21 and multiple second positioning blocks 22. The second tray body 21 has a second receiving groove 21a, and the multiple second positioning blocks 22 are movably connected to the first tray body 11. The first blister pack 21 is positioned on one side of the second receiving groove 21a. Multiple second positioning blocks 22 move relative to the second blister pack 21 to position the second blister box 23 located in the second receiving groove 21a. The second blister box 23 is positioned around its perimeter by the second blister pack 21 and the multiple second positioning blocks 22. The second blister box 23 has multiple second product positioning stations 23a. A transition support 30 is located between the first blister pack 11 and the second blister pack 21, and is connected to both. The transition support 30 has a support arm 31, which supports products transferred by the robotic arm. Products positioned on the support arm 31 can be transferred to either the first blister box 13 or the second blister box 23, achieving an intermediate transition. This facilitates the integration of the first blister box 13 and the second blister box 23, avoiding the limitation of only one blister box being used for placement and improving the working efficiency of the blister pack fixture 100.

[0040] In the above embodiments, the descriptions of each embodiment have different focuses. For parts not described in detail in a certain embodiment, please refer to the relevant descriptions in other embodiments.

[0041] In the description of this application, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, features defined with "first" and "second" may explicitly or implicitly include one or more features.

[0042] This document uses specific examples to illustrate the principles and implementation methods of this application. The descriptions of the above embodiments are only for the purpose of helping to understand the methods and core ideas of this application. At the same time, for those skilled in the art, there will be changes in the specific implementation methods and application scope based on the ideas of this application. Therefore, the content of this specification should not be construed as a limitation of this application.

Claims

1. A tray positioning jig characterized by comprising: include: The first tray includes a first tray body and a plurality of first positioning blocks. The first tray body is provided with a first receiving groove. The plurality of first positioning blocks are movably connected to the first tray body and are disposed on one side of the first receiving groove. The plurality of first positioning blocks move relative to the first tray body to position a first blister box located in the first receiving groove. The first blister box is positioned by the first tray body and the plurality of first positioning blocks. The first blister box is provided with a plurality of first product positioning stations. A second tray is disposed on one side of the first tray and spaced apart from it. The second tray includes a second tray body and a plurality of second positioning blocks. The second tray body has a second receiving groove. The plurality of second positioning blocks are movably connected to the second tray body and disposed on one side of the second receiving groove. The plurality of second positioning blocks move relative to the second tray body to position a second blister box located in the second receiving groove. The second blister box is positioned around its perimeter by the second tray body and the plurality of second positioning blocks. The second blister box has a plurality of second product positioning stations. A transition support is located between the first tray body and the second tray body, and is connected to the first tray body and the second tray body; the transition support is provided with a support arm, which is used to support the product transferred by the robot arm, and the product on the support arm can be transferred to the first blister box or the second blister box.

2. The turntable jig of claim 1, wherein The first and second plating bodies are arranged side by side. The first plate body is provided with a first connecting groove, and the second plate body is provided with a second connecting groove; The transition support base is provided with a transition support body, which is connected to the support arm, and the support arm is disposed on the upper side of the transition support body; The transition support body is embedded in the first connecting groove and the second connecting groove, and is connected to the first plate-slab body and the second plate-slab body.

3. The turntable jig of claim 2, wherein, The first connecting groove and the second connecting groove are arranged opposite to each other; The left and right ends of the transition support body are respectively connected to the first connecting groove and the second connecting groove; the transition support body is detachably connected to the first plate-swinging body and the second plate-swinging body.

4. The turntable jig of claim 3, wherein The support arm is inserted into the transition support body along the vertical direction and is detachably connected to the transition support body.

5. The turntable jig of claim 4, wherein, The bottom of the support arm is provided with a first threaded hole; The transition support body is provided with a through hole for a first screw to pass through. The first screw is screwed into the first threaded hole, so that the support arm is connected to the transition support body.

6. The turntable jig of claim 5, wherein, The upper side wall of the transition support body is provided with a groove, and the support arm is inserted into the groove and positioned in the groove; The through hole connects to the groove in the vertical direction.

7. The turntable jig of claim 6, wherein, The supporting arm and the transition supporting body have a stepped structure, and the supporting arm is located in the middle area of ​​the transition supporting body; The first blister pack and the second blister pack are located on both sides of the support arm.

8. The turntable jig of claim 1, wherein, Multiple first positioning blocks are disposed on the periphery of the first swivel plate body, and the first swivel plate body is provided with second threaded holes; The first positioning block is provided with a first elongated groove, which is arranged along the length of the first positioning block. The first elongated groove is used for a second screw to pass through. The second screw passes through the first elongated groove and is screwed into the second threaded hole. The second screw is located at different positions in the first elongated groove as the first positioning block moves relative to the first swivel plate body.

9. The turntable jig of claim 1, wherein, Multiple second positioning blocks are disposed on the periphery of the second swing plate body, and the second swing plate body is provided with a third threaded hole; The second positioning block is provided with a second elongated groove, which is arranged along the length of the second positioning block. The second elongated groove is used for a third screw to pass through. The third screw passes through the second elongated groove and is screwed into the third threaded hole. The third screw is located at different positions in the second elongated groove as the second positioning block moves relative to the second swivel plate body.

10. The turntable jig of claim 1, wherein, Both the first and second receiving slots are square slots.