A mechanical assembly line material transport rack
Patent Information
- Application Number
- CN202521938710.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-10
- Publication Date
- 2026-09-01
- Estimated Expiration
- 2035-09-10
AI Technical Summary
[0003]传统的运载料架通常采用固定式框架结构,即由承载杆和移动式框架组成,通过承载杆与机械流水线装载物料的悬挂绳的穿插,实现对物料的承载,但在实际使用时,料架的承载能力有限,而物料需要进行局部调整时,必须通过拉动悬挂绳才能实现运载物料的小范围移动,导致机械物料的运载效率不高,影响作业的效率
[0032]The combination of the mobile frame and positioning components in this utility model facilitates both large and small-scale movement of mechanical materials. The limiting mechanism can elastically engage with the limiting groove to ensure that the carrying mechanism will not shift unexpectedly during transportation, thus improving the stability of material transportation. Furthermore, the bottom of the slide plate is equipped with ball bearings, which allow it to roll smoothly on the mobile frame, reducing frictional resistance and facilitating manual or mechanical adjustment of its position. The engagement of the limiting block with the limiting groove further enhances the stability of the slide plate's position, ensuring stable material transport and improving the efficiency of the transportation operation.
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Figure CN224703609U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of material transport rack technology, and in particular to a mechanical assembly line material transport rack. Background Technology
[0002] In the process of machinery manufacturing, assembly, and logistics transportation, assembly line transport racks are used to carry and transport various mechanical parts to improve production efficiency and the convenience of material flow.
[0003] Traditional material handling racks typically employ a fixed frame structure, consisting of support rods and a movable frame. The support rods are connected to suspension ropes that suspend the materials on the mechanical assembly line to support the materials. However, in actual use, the load-bearing capacity of the rack is limited. When the materials need to be adjusted locally, the suspension ropes must be pulled to move the materials within a small range, resulting in low material handling efficiency and affecting operational efficiency. Utility Model Content
[0004] The purpose of this utility model is to provide a mechanical assembly line material transport rack to solve the problems mentioned in the background art.
[0005] To achieve the above objectives, this utility model provides the following technical solution: a mechanical assembly line material transport rack, comprising:
[0006] Mobile rack;
[0007] Slides, a plurality of said slides are formed on the top of the movable frame;
[0008] A support frame, which is fixed to the top of the movable frame;
[0009] A connecting hole is provided in the middle of the support frame;
[0010] A limiting mechanism, wherein multiple limiting mechanisms are slidably inserted into the inner cavity of the connecting hole;
[0011] The support mechanism comprises multiple support mechanisms disposed in the middle of the movable frame, and each of the multiple support mechanisms is slidably inserted into the inner cavity of multiple sliding grooves. The limiting mechanism is used to limit the position of the support mechanism.
[0012] Preferably, the limiting mechanism includes:
[0013] Limiting posts, a plurality of the limiting posts being slidably inserted into the inner cavity of the connecting hole;
[0014] A compression spring, wherein the compression spring is sleeved within the cavity of the limiting post;
[0015] A limiting block is fixed to the bottom of a limiting post, the bottom of a compression spring is fixed to the top of the limiting block, and the top of the compression spring is movably attached to the inner wall of the support frame.
[0016] Preferably, the load-bearing mechanism includes:
[0017] A plurality of said skateboards slide on the upper surface of the movable frame;
[0018] Ball bearings, wherein multiple balls are respectively rolled and embedded in the bottom of the end of the slide plate;
[0019] The limiting grooves are provided in the middle of the slide plate, and the limiting block is movably engaged with the inner cavity of the adjacent limiting grooves.
[0020] Support columns, multiple support columns are respectively fixed to the bottom of the slide plate, and the support columns are slidably interlocked with the inner cavity of the adjacent slide groove.
[0021] Preferably, the supporting mechanism further includes:
[0022] A support rod, wherein the support rod is slidably interlocked with the bottom of a plurality of oppositely arranged support columns;
[0023] Positioning components, wherein multiple positioning components are equidistantly disposed on the top of the support rod;
[0024] A rotating block, one end of which is rotatably inserted into one end of a bearing rod via a bearing, and the rotating block is movably engaged with one side of an adjacent bearing column.
[0025] Preferably, the ball bearings are rolled on the upper surface of the movable frame, and the bearing rod is used to support the material.
[0026] Preferably, the positioning component includes:
[0027] Positioning grooves, a plurality of such positioning grooves are equally spaced on the top of the bearing rod;
[0028] Positioning blocks, a plurality of the positioning blocks are fixed at equal intervals to the top of the bearing rod, and the positioning blocks are disposed on one side of the positioning groove;
[0029] A tension spring, which is fixed to the outer wall of the positioning block;
[0030] A positioning rod is sleeved in the inner cavity of the tension spring. The positioning rod is slidably inserted into the middle of the positioning block. One end of the positioning rod is fixed to one end of the tension spring. The positioning rod is inserted into the inner cavity of the positioning groove.
[0031] The technical effects and advantages of this utility model are as follows:
[0032] The combination of the mobile frame and positioning components in this utility model facilitates both large and small-scale movement of mechanical materials. The limiting mechanism can elastically engage with the limiting groove to ensure that the carrying mechanism will not shift unexpectedly during transportation, thus improving the stability of material transportation. Furthermore, the bottom of the slide plate is equipped with ball bearings, which allow it to roll smoothly on the mobile frame, reducing frictional resistance and facilitating manual or mechanical adjustment of its position. The engagement of the limiting block with the limiting groove further enhances the stability of the slide plate's position, ensuring stable material transport and improving the efficiency of the transportation operation. Attached Figure Description
[0033] Figure 1 This is a schematic diagram of the overall structure of this utility model.
[0034] Figure 2 This is a side sectional view of the skateboard section of this utility model.
[0035] Figure 3 This utility model Figure 2 A magnified schematic diagram of the structure at point A in the middle.
[0036] 100. Moving frame; 200. Slide groove; 300. Support frame; 400. Connecting hole; 500. Limiting mechanism; 501. Limiting post; 502. Compression spring; 503. Limiting block; 600. Bearing mechanism; 601. Slide plate; 602. Ball bearing; 603. Limiting groove; 604. Bearing post; 605. Bearing rod; 606. Positioning assembly; 661. Positioning groove; 662. Positioning block; 663. Tension spring; 664. Positioning rod; 607. Rotating block. Detailed Implementation
[0037] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0038] This utility model provides, for example Figure 1-3The illustrated mechanical assembly line material transport rack includes a movable frame 100, a chute 200, a support frame 300, a connecting hole 400, a limiting mechanism 500, and a carrying mechanism 600. The bottom corners of the movable frame 100 are equipped with casters to facilitate movement and transport of the mechanical assembly line. Multiple chute 200s are formed on the top of the movable frame 100. The support frame 300 is fixed to the top of the movable frame 100, and the connecting hole 400 is formed in the middle of the support frame 300. Multiple limiting mechanisms... The mechanism 500 slides through the inner cavity of the connecting hole 400. The connecting hole 400 facilitates the position limitation of multiple limiting mechanisms 500. Multiple bearing mechanisms 600 are set in the middle of the movable frame 100. The multiple bearing mechanisms 600 are all slidably connected to the inner cavity of multiple sliding grooves 200. The limiting mechanism 500 is used to limit the position of the bearing mechanism 600. The bearing mechanism 600 is used to support the mechanical parts, so that the mechanical parts can be conveniently transported by the movement of the movable frame 100.
[0039] The limiting mechanism 500 includes limiting posts 501, compression springs 502, and limiting blocks 503. Multiple limiting posts 501 are slidably inserted into the inner cavity of the connecting hole 400. Compression springs 502 are sleeved in the inner cavity of the limiting posts 501. The limiting block 503 is fixed to the bottom of the limiting posts 501. The bottom of the compression spring 502 is fixed to the top of the limiting block 503. The top of the compression spring 502 is movably attached to the inner wall of the support frame 300.
[0040] The supporting mechanism 600 includes a sliding plate 601, ball bearings 602, limiting grooves 603, supporting columns 604, supporting rods 605, positioning components 606, and rotating blocks 607. Multiple sliding plates 601 slide on the upper surface of the movable frame 100. Multiple ball bearings 602 are respectively rolled and embedded in the bottom of the ends of the sliding plates 601, and are rolled and connected to the upper surface of the movable frame 100. Multiple limiting grooves 603 are formed in the middle of the sliding plates 601, and limiting blocks 503 are movably engaged with the inner cavities of adjacent limiting grooves 603. Multiple supporting columns 604 are respectively fixed to the bottom of the sliding plates 601, and are slidably inserted into the inner cavities of adjacent sliding grooves 200. The support rod 605 is slidably inserted into the bottom of a plurality of oppositely arranged support columns 604. The support rod 605 is used to support materials. A plurality of positioning components 606 are equidistantly arranged on the top of the support rod 605. One end of the rotating block 607 is rotatably inserted into one end of the support rod 605 through a bearing. The rotating block 607 is movably engaged with one side of an adjacent support column 604. The mounting of the sliding plate 601 on the moving frame 100 facilitates the simultaneous transport of multiple mechanical materials by the moving frame 100. Furthermore, the setting of the rotating block 607 reduces the slippage of the support rod 605 between two opposite support columns 604, thereby improving the stability of material transport.
[0041] Specifically, the positioning component 606 includes a positioning groove 661, a positioning block 662, a tension spring 663, and a positioning rod 664. Multiple positioning grooves 661 are equidistantly located on the top of the support rod 605. Multiple positioning blocks 662 are equidistantly fixed to the top of the support rod 605. The positioning blocks 662 are located on one side of the positioning groove 661. The tension spring 663 is fixed to the outer wall of the positioning block 662. The positioning rod 664 is sleeved within the inner cavity of the tension spring 663. The positioning rod 664 is slidably inserted into the middle of the positioning block 662. One end of the positioning rod 664 is fixed to one end of the tension spring 663. The positioning rod 664 is inserted into the inner cavity of the positioning groove 661. The positioning rod 664 is angled, facilitating the attachment of the suspension rope for loading materials on the mechanical assembly line into the inner cavity of the positioning groove 661. Furthermore, pushing the positioning rod 664 facilitates the easy installation and removal of the suspension rope on the support rod 605, improving the stability of the support rod 605 in carrying materials.
[0042] Finally, it should be noted that the above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A mechanical assembly line material transport rack, characterized in that, include: Mobile frame (100); Slides (200), a plurality of said slides (200) are formed on the top of the movable frame (100); A support frame (300) is fixed to the top of the movable frame (100); A connecting hole (400) is provided in the middle of the support frame (300); A limiting mechanism (500), wherein multiple limiting mechanisms (500) are slidably inserted into the inner cavity of the connecting hole (400); The support mechanism (600) is located in the middle of the movable frame (100). The support mechanism (600) is slidably inserted into the inner cavity of the sliding groove (200). The limiting mechanism (500) is used to limit the position of the support mechanism (600).
2. The mechanical assembly line material transport rack according to claim 1, characterized in that, The limiting mechanism (500) includes: Limiting posts (501), a plurality of the limiting posts (501) are slidably inserted into the inner cavity of the connecting hole (400); Compression spring (502), the compression spring (502) is sleeved in the inner cavity of the limiting post (501); The limiting block (503) is fixed to the bottom of the limiting post (501), the bottom of the compression spring (502) is fixed to the top of the limiting block (503), and the top of the compression spring (502) is movably attached to the inner wall of the support frame (300).
3. The mechanical assembly line material transport rack according to claim 2, characterized in that, The bearing mechanism (600) includes: Slides (601), a plurality of said slides (601) slide on the upper surface of the movable frame (100); Ball bearings (602), a plurality of said ball bearings (602) are respectively rolled and embedded in the bottom of the end of the slide plate (601); A limiting groove (603) is provided in the middle of the slide plate (601), and the limiting block (503) is movably engaged with the inner cavity of the adjacent multiple limiting grooves (603). Supporting columns (604), a plurality of the supporting columns (604) are respectively fixed to the bottom of the slide plate (601), and the supporting columns (604) are slidably inserted into the inner cavity of the adjacent slide groove (200).
4. The mechanical assembly line material transport rack according to claim 3, characterized in that, The supporting mechanism (600) also includes: The support rod (605) is slidably interlocked with the bottom of a plurality of oppositely arranged support columns (604); Positioning components (606), a plurality of said positioning components (606) are equidistantly disposed on the top of the support rod (605); A rotating block (607) is inserted into one end of a bearing rod (605) by means of a bearing. The rotating block (607) is movably engaged with one side of an adjacent bearing column (604).
5. A mechanical assembly line material transport rack according to claim 4, characterized in that, The ball bearing (602) is rolled on the upper surface of the movable frame (100), and the bearing rod (605) is used to carry the material.
6. A mechanical assembly line material transport rack according to claim 4, characterized in that, The positioning component (606) includes: Positioning grooves (661), a plurality of the positioning grooves (661) are equally spaced on the top of the support rod (605); Positioning blocks (662), a plurality of the positioning blocks (662) are fixed at equal intervals to the top of the bearing rod (605), and the positioning blocks (662) are disposed on one side of the positioning groove (661); A tension spring (663) is fixed to the outer wall of the positioning block (662); Positioning rod (664) is sleeved in the inner cavity of tension spring (663). Positioning rod (664) is slidably inserted into the middle of positioning block (662). One end of positioning rod (664) is fixed to one end of tension spring (663). Positioning rod (664) is inserted into the inner cavity of positioning groove (661).