Circular material fixing carrier

By designing a fixed carrier for round materials and adopting a floating clamping component and a multi-loading area structure, the shortcomings of existing positioning carriers in accuracy and compatibility are solved, and precise positioning of round materials and compatible positioning of materials of multiple sizes are achieved, thereby improving production efficiency.

CN223339222UActive Publication Date: 2025-09-16SUZHOU STRONG INTELLIGENT EQUIP CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422077138.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-27
Publication Date
2025-09-16
Estimated Expiration
2034-08-27

AI Technical Summary

Technical Problem

Existing positioning vehicles have deficiencies in accuracy and compatibility, making it difficult to meet the positioning processing requirements of round electronic components, and are unable to automatically adjust the positioning range according to the material size.

Method used

A fixed carrier for round materials is designed, which adopts a carrier body and a floating clamping assembly. Through the sliding of the floating clamping assembly and the deformation of the elastic part, precise positioning of round materials and compatible positioning of materials of different sizes can be achieved. Multiple loading areas are provided on the carrier body to facilitate synchronous processing.

Benefits of technology

It realizes the precise positioning of round materials and compatible positioning of materials of different sizes, improves production efficiency, has simple structure, convenient operation and strong practicality.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223339222U_ABST
    Figure CN223339222U_ABST
Patent Text Reader

Abstract

The utility model discloses a round material fixing carrier which comprises a carrier body and a floating pressing assembly, a plurality of carrying areas are arranged on the carrier body in a partitioned mode, and at least one containing bin is arranged on each carrying area. The containing bin comprises a first material bin and installation bins arranged on the two opposite side edges of the first material bin. And a floating pressing assembly is slidably connected in the mounting bin. According to the utility model, circular materials can be accurately positioned and fixed, and positioning and fixing of materials with different sizes can be compatible; and on the other hand, a plurality of carrying areas are arranged on the carrier body, each carrying area is provided with a first material bin, a second material bin and a third material bin, a set of related material parts can be placed in the same carrying area at the same time to be processed at the same time, and the production efficiency is greatly improved. The device is simple in structure, convenient to operate and high in practicability.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the technical field of jigs, and in particular to a fixing carrier for round materials. Background Art

[0002] With the continuous development of 3C industry technology, the appearance of electronic products and electronic components is becoming increasingly diverse. In the manufacturing process of electronic products and electronic components, carriers are usually required to meet the positioning and processing requirements of electronic products and electronic components.

[0003] Currently, most positioning devices on the market use pin positioning or clearance fit positioning. On one hand, their accuracy is poor and their structural types are too limited to meet the positioning needs of circular electronic components. On the other hand, their positioning compatibility is also poor, and their positioning range cannot be automatically adjusted according to the size of the material. Utility Model Content

[0004] In order to solve the above technical problems, the utility model provides a round material fixing carrier, which can accurately position and fix round materials to facilitate their processing, and is compatible with the positioning and fixation of materials of different sizes.

[0005] The technical solution of the utility model is:

[0006] A round material fixing carrier, characterized by comprising a carrier body and a floating pressing assembly;

[0007] The carrier body is divided into a plurality of loading areas, each of which is provided with a storage chamber; the storage chamber includes a first material chamber and installation chambers provided on two opposite sides of the first material chamber;

[0008] A floating pressing assembly is slidably connected in a first direction in each of the installation compartments;

[0009] The material is placed in the first material bin, one end of each floating pressing assembly is against the material, and the other end is relative to its corresponding mounting bin;

[0010] The first direction is the relative movement direction of the two floating pressing assemblies.

[0011] Furthermore, each of the loading areas is sunken to form a storage chamber, and the middle area of ​​each of the storage chambers is a first material bin, and each of the first material bins has the same contour as the material; the two installation bins are respectively located on the opposite sides of the first material bin, and each installation bin is connected to the adjacent side of the first material bin.

[0012] Furthermore, the first material bin is a circular groove, and an arc-shaped holder is provided at each of the four corners of the inner wall of the circular groove.

[0013] Furthermore, each of the floating pressing assemblies includes a rubber-coated slider and an elastic member, each rubber-coated slider is slidably placed in the installation bin along the first direction, and a top surface of each rubber-coated slider that contacts the material is provided with an arc-shaped groove portion;

[0014] One end of each elastic member abuts against the inner wall of the corresponding installation bin, and the other end abuts against the bottom surface of the rubber-coated slider, and the arc-shaped groove portion of each rubber-coated slider faces the first material bin;

[0015] When the elastic member is in a non-compressed state, the outer side surface of each arc-shaped groove portion is located within the diameter range of the first material bin.

[0016] Furthermore, each of the floating pressing assemblies further includes a slider cover, each slider cover covers the installation chamber, and encapsulates the rubber-coated slider and the elastic member in each installation chamber.

[0017] Furthermore, a second material bin and a third material bin are provided on each of the loading areas and located outside the accommodating compartment;

[0018] A through hole is provided at the center of each of the first material bin, the second material bin and the third material bin.

[0019] Furthermore, each of the loading areas is provided with a carrier QR code.

[0020] Furthermore, it also includes a carrier bottom plate, on which a plurality of avoidance holes suitable for the loading area are provided;

[0021] The bottom surface of the carrier body is fixed on the surface of the carrier bottom plate, and each of the loading areas is placed above the corresponding avoidance hole.

[0022] Furthermore, a buffer stopper is connected to the side surfaces of the carrier body and the carrier bottom plate on the same side.

[0023] Furthermore, two lifting holes are symmetrically provided on the bottom surface of the carrier base plate along its diagonal direction.

[0024] The beneficial technical effects of the utility model are:

[0025] Compared to existing technologies, the present invention can precisely position and secure round materials, and is compatible with positioning and securing materials of different sizes. Furthermore, the present invention's carrier body is provided with multiple loading areas, each with a first material bin, a second material bin, and a third material bin. A set of related material parts can be placed in the same loading area and processed simultaneously, greatly improving production efficiency. The present invention has a simple structure, is easy to operate, and is highly practical. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] Figure 1 It is an overall schematic diagram of the utility model;

[0027] Figure 2 yes Figure 1 Schematic diagram after removing one set of floating clamping components;

[0028] Figure 3 It is a schematic diagram of the vehicle body of the utility model;

[0029] Figure 4 This is a schematic diagram of the base plate of the vehicle of the present invention;

[0030] Figure 5 This is a disassembly diagram of the floating pressing assembly of the utility model;

[0031] Figure 6 This is a schematic diagram of the disassembly of the floating pressing assembly of the utility model from another angle.

[0032] in:

[0033] 100-carrier body; 200-floating clamping assembly, 201-rubber-coated slider, 2011-arc-shaped groove, 2012-slider body, 2013-guide hole, 202-elastic part, 203-slider pressure cover, 2031-slider avoidance groove, 2032-observation hole; 300-carrier bottom plate, 301-avoidance hole, 302-buffer blocking part, 303-lifting hole; 401-first material bin, 4011-arc-shaped holder, 402-installation bin, 4021-carrier platform, 403-second material bin, 404-third material bin, 4041-inner ring rib; 500-carrier QR code. DETAILED DESCRIPTION

[0034] In order to more clearly understand the technical means of the present invention and implement it according to the contents of the specification, the specific implementation methods of the present invention are further described in detail below in conjunction with the drawings and examples. The following examples are used to illustrate the present invention but are not used to limit the scope of the present invention.

[0035] like Figures 1-6 As shown, the present invention provides a round material fixing carrier, which includes a carrier body 100, a floating pressing assembly 200 and a carrier bottom plate 300, wherein the carrier body 100 and the carrier bottom plate 300 of the present invention are both rectangular plates.

[0036] The carrier body 100 is symmetrically divided into several loading areas. In the present invention, two loading areas are provided from left to right. A set of related material parts can be placed in the same loading area to facilitate simultaneous processing of related processes.

[0037] In the present invention, each loading area is submerged to form a storage chamber. Each storage chamber includes a first material chamber 401. Two mounting chambers 402 are located on opposite sides of the first material chamber 401. Each mounting chamber 402 communicates with the adjacent side of the first material chamber 401 to facilitate the sliding movement of the floating compression assembly 200. The first material chamber 401 is used to store materials, while the mounting chamber 402 is used to house the floating compression assembly 200. The direction in which the two floating compression assemblies 200 move toward or away from each other within the two mounting chambers 402 is defined as a first direction.

[0038] In the present invention, in order to facilitate the placement of round materials, the first material bin 401 is configured as a circular groove. In actual use, the shape of the first material bin 401 can be adaptively adjusted according to the outer contour of the material.

[0039] An arc-shaped holder 4011 is provided at each of the four diagonal corners of the first material bin 401. The inner wall of each arc-shaped holder 4011 is in the shape of an arc-shaped groove that is adapted to the outer contour of the circular material.

[0040] Preferably, a through hole is provided at the center of the first material bin 401, and each arc-shaped holder 4011 is located at the outer periphery of the through hole.

[0041] The above-mentioned two installation bins 402 are both rectangular grooves, which are used to install the floating clamping assembly 200. They include a first settlement portion and a second settlement portion located above the first settlement portion. The length of the second settlement portion is greater than that of the first settlement portion, and the two side walls where the top surface of the first settlement portion and the bottom surface of the second settlement portion are connected form two supporting platforms 4021.

[0042] Each floating pressing assembly 200 includes a rubber-coated slider 201 , an elastic member 202 and a slider pressure cover 203 .

[0043] Each rubber-coated slider 201 includes a rectangular slider body 2012, a guide hole 2013 is provided at one top of each slider body 2012, and an arc-shaped groove portion 2011 is provided at the other top of each slider body 2012. The inner wall of each arc-shaped groove portion 2011 facing the material is an arc-shaped groove that is adapted to the outer contour of the circular material.

[0044] Each rubber-coated slider 201 slides along a first direction and is placed within the first depression of each mounting bin 402, with its arcuate groove portion 2011 facing the first material bin 401. One end of the elastic member 202 is placed within the guide hole 2013, and the other end abuts against the inner wall of the first depression area. When the elastic member 202 is in a non-compressed state, the outer edge of the arcuate groove portion 2011 of each rubber-coated slider 201 is within the diameter range of the first material bin 401. When a circular material is placed in the first material bin 401, the two opposing arcuate groove portions 2011 are squeezed by the material, and the two arcuate groove portions 2011 simultaneously drive their corresponding slider bodies 2012 to slide along the first direction and away from each other. At this time, the two elastic members 202 are also compressed and deformed, thereby applying a deformation holding force to the material, thereby positioning and fixing the material within the first material bin 401. When the material is removed, the squeezing force acting on the two arc-shaped grooves 2011 and the elastic member 202 disappears, and the deformation resilience of each elastic member 202 drives the corresponding rubber-coated slider 201 to return to its original position.

[0045] The degree of deformation of each elastic member 202 can be automatically adjusted according to the diameter of the material. Therefore, the floating pressing assembly 200 of the present invention can automatically adjust the positioning distance between the two rubber-coated sliders 201 according to the different material diameters, thereby being compatible with the positioning requirements of materials of different sizes.

[0046] The elastic member 202 of the present invention is a spring.

[0047] Preferably, a slider pressure cover 203 is provided in the second sedimentation area of ​​each installation chamber 402, and its bottom surface is detachably fixed on the above-mentioned two supporting platforms 4021, which is used to encapsulate the rubber-coated slider 201 and the elastic part 202 in the first sedimentation area to prevent them from falling.

[0048] Each slider cover 203 is provided with a slider avoidance groove 2031 facing the first material bin 401. Each slider cover 203 is also provided with an observation hole 2032 opposite the slider avoidance groove 2031. The slider cover 203 is placed above each rubber-coated slider 201, with the arc-shaped groove 2011 of each rubber-coated slider 201 located outside the slider avoidance groove 2031. The observation hole 2032 is located above the elastic member 202, allowing observation of the operation or damage of the elastic member 202.

[0049] Preferably, a rubber layer is provided on the arc-shaped groove portion 2011 of each rubber-coated slider 201 to prevent the material from being crushed.

[0050] Preferably, the inner wall of the first material bin 401 is covered with a rubber layer to prevent the material from being crushed or scratched.

[0051] Furthermore, to enhance the practicality of the present invention, each loading area is further submerged to form a second material bin 403 and a third material bin 404. Both the second and third material bins 403, 404 are located outside the storage compartment. A set of related parts can be placed in the first, second, and third material bins 401, 403, 404 of the same loading area, allowing for simultaneous processing.

[0052] The specific locations of the second material bin 403 and the third material bin 404 in each loading area can be set according to actual needs and are not particularly limited. In one loading area of ​​the present invention, the second material bin 403 and the third material bin 404 are located on two opposite sides of the first material bin 401 where the bin 402 is not installed, and the second material bin 403 and the first material bin 401 are designed to communicate with each other on the side adjacent to the first material bin 401. In another loading area, the second material bin 403 and the third material bin 404 are located on two opposite sides of the first material bin 401 where the bin 402 is not installed, and the third material bin 404 and the first material bin 401 are designed to communicate with each other on the side adjacent to the first material bin 401.

[0053] The shapes of the second and third material bins 403, 404 can be designed based on the shape of the parts to be stored, and are not particularly limited. In the present invention, the second material bin 403 is a rectangular recess with a circular arc recess at the end facing the first material bin 401. The third material bin 404 has the same shape as the second material bin 403 and is symmetrically provided with two arc-shaped inner ring ribs 4041 within its circular arc recess.

[0054] Preferably, the second material bin 403 and the third material bin 404 are provided with a through hole at the center thereof, like the first material bin 401, to facilitate subsequent further fixation of material parts. For example, suction cups on other equipment can contact the material parts through the through hole.

[0055] Preferably, each loading area is further provided with a carrier QR code 500. The carrier QR code 500 is used to record information about the carrier and the materials on the carrier for easy traceability.

[0056] Furthermore, the present invention also includes a carrier base plate 300, which is provided with two avoidance holes 301 corresponding to the loading areas. The bottom surface of the carrier body 100 is fixed on the surface of the carrier base plate 300, and each loading area is placed above its corresponding avoidance hole 301.

[0057] Preferably, a plurality of positioning pins are symmetrically provided on the carrier base plate 300, and a plurality of positioning holes are provided on the bottom surface of the carrier body 100. The carrier body 100 and the carrier base plate 300 are positioned and connected with each other through the positioning holes and the positioning pins.

[0058] Preferably, a buffer stop 302 is attached to the same side of the carrier body 100 and the carrier base 300. The buffer stop 302 is designed to protrude from the side surface. When the carrier body 100 and the carrier base 300 are placed on the assembly line and need to be stopped, the buffer stop 302 contacts the stop plate on the assembly line to prevent the stop plate from directly colliding with the carrier body 100 and the carrier base 300.

[0059] Preferably, two lifting holes 303 are symmetrically provided on the bottom surface of the carrier base plate 300 along its diagonal direction.

[0060] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. It should be pointed out that ordinary technicians in this technical field can make several improvements and modifications without departing from the technical principles of the present invention. These improvements and modifications should also be regarded as within the scope of protection of the present invention.

Claims

1. A round material fixing carrier, characterized in that: It comprises a carrier body (100) and a floating pressing assembly (200); The carrier body (100) is divided into a plurality of loading areas, and each loading area is provided with a storage chamber; the storage chamber includes a first material chamber (401) and installation chambers (402) provided on two opposite sides of the first material chamber (401); A floating pressing assembly (200) is slidably connected in a first direction in each of the installation compartments (402); The material is placed in the first material bin (401), one end of each floating pressing assembly (200) is against the material, and the other end is relative to its corresponding installation bin (402); The first direction is the relative movement direction of the two floating pressing assemblies (200).

2. The round material fixing carrier according to claim 1, characterized in that: Each of the loading areas is sunken to form a storage chamber, and the middle area of ​​each of the storage chambers is a first material bin (401), and each of the first material bins (401) has the same outline as the material; the two installation bins (402) are respectively located on two opposite sides of the first material bin (401), and each installation bin (402) is connected to the adjacent side of the first material bin (401).

3. The round material fixing carrier according to claim 2, characterized in that: The first material bin (401) is a circular groove, and an arc-shaped holder (4011) is provided at each of the four corners of the inner wall of the circular groove.

4. The round material fixing carrier according to claim 3, characterized in that: Each of the floating pressing assemblies (200) comprises a rubber-coated slider (201) and an elastic member (202); each of the rubber-coated sliders (201) is slidably placed in the installation bin (402) along a first direction, and a top surface of each of the rubber-coated sliders (201) in contact with the material is provided with an arc-shaped groove portion (2011); One end of each elastic member (202) abuts against the inner wall of the corresponding installation bin (402), and the other end abuts against the bottom surface of the rubber-coated slider (201), and the arc-shaped groove portion (2011) of each rubber-coated slider is arranged facing the first material bin (401); When the elastic member (202) is in a non-compressed state, the outer side surface of each arc-shaped groove portion (2011) is located within the diameter range of the first material bin (401).

5. The round material fixing carrier according to claim 4, characterized in that: Each of the floating pressing assemblies (200) further comprises a slider pressure cover (203), each slider pressure cover (203) covers the installation chamber (402), and encapsulates the rubber-coated slider (201) and the elastic member (202) in each installation chamber (402).

6. The round material fixing carrier according to claim 1, characterized in that: A second material bin (403) and a third material bin (404) are provided on each of the loading areas and outside the accommodating compartments; A through hole is provided at the center of each of the first material bin (401), the second material bin (403) and the third material bin (404).

7. The round material fixing carrier according to claim 6, characterized in that: Each of the loading areas is provided with a loading QR code (500).

8. The round material fixing carrier according to claim 1, characterized in that: It also includes a carrier bottom plate (300), wherein the carrier bottom plate (300) is provided with a plurality of avoidance holes (301) suitable for the loading area; The bottom surface of the carrier body (100) is fixed on the surface of the carrier bottom plate (300), and each of the loading areas is placed above its corresponding avoidance hole (301).

9. The round material fixing carrier according to claim 8, characterized in that: The carrier body (100) and the carrier base plate (300) are connected to a buffer stopper (302) on the same side.

10. The round material fixing carrier according to claim 8, characterized in that: The bottom surface of the carrier bottom plate (300) is symmetrically provided with two lifting holes (303) along its diagonal direction.