Finished product warehousing transfer support matched with a forklift

CN224782628UActive Publication Date: 2026-09-22TANGHE COUNTY XINHAO MACHINERY CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202522464868.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-20
Publication Date
2026-09-22
Estimated Expiration
2035-11-20

AI Technical Summary

Technical Problem

[0003]现根据授权公告号为CN214777320U的一种六位转运托盘可知,该专利为已知的现有技术,且该专利虽然具备第一叉车托举到位时与第二叉车九十度对接,便于上仓储架,当需要货物从托盘上卸载再摆放,可以使用推出器直接插入托条间卸料叉位,把货物拖出或推出脱离托盘,实现货物无间隙的堆叠,方便货物脱离托盘的堆叠,提高了货物的转运效率,但是该专利的技术方案在实际使用的过程中,还存在以下缺陷:即托盘设置的中转运叉位较宽,在叉车插入叉位时,因宽度余量过大,操作人员仅能通过视觉判断叉臂插入位置,难以确保叉臂沿叉位中轴线居中分布,尤其在承载重型成品时,叉车叉臂若未居中,会导致叉臂与叉位内壁单侧接触面积增大,使得支架整体重心偏移

Benefits of technology

该配合叉车使用的成品入库转运支架,通过在第一中转运叉位和第二中转运叉位中对称设置可滑动的叉臂导向件,可根据叉车叉臂实际宽度灵活调节叉位宽度,消除现有技术中叉位宽度余量过大的问题,确保叉车叉臂沿叉位中轴线居中分布,避免承载重型成品时因叉臂单侧接触导致的重心偏移,降低成品倾斜、倾倒风险;

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224782628U_ABST
    Figure CN224782628U_ABST
Patent Text Reader

Abstract

The utility model discloses a finished product warehousing transfer support that cooperates with the use of forklift belongs to transfer equipment field, including bracket, the bracket is rectangular open -work structure, and first transfer fork position and second transfer fork position are equipped with in the bracket both sides and are penetrated, this finished product warehousing transfer support that cooperates with the use of forklift, through setting up the slidable fork arm guide in first transfer fork position and second transfer fork position, can adjust the fork width according to the actual width of forklift fork arm, eliminate the problem that the fork width margin is too big in the prior art, ensure that forklift fork arm is along the central distribution of fork position center axis, avoid the gravity deviation caused by the unilateral contact of fork arm when bearing heavy finished product, reduce the finished product inclination, dump risk, simultaneously, the common support surface that is formed through first support rod, protrusion and second support rod, and the top surface of three people keeps the same level height, can scatter the weight of heavy finished product to the whole bracket.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model belongs to the field of transfer equipment technology, specifically relating to a finished product warehousing transfer bracket used in conjunction with a forklift. Background Technology

[0002] In industrial production, finished products need to be transported to warehouses for storage via transfer trays after processing. Since the finished products placed on the trays are relatively heavy, forklifts are generally used to transfer the trays containing the finished products.

[0003] According to the patent announcement number CN214777320U, a six-position transfer pallet is known prior art. Although the patent allows for a 90-degree docking between the first forklift and the second forklift when the pallet is in place, facilitating loading onto storage racks, and allows for the use of pushers to directly insert into the unloading fork positions between the pallet bars to pull or push the goods out of the pallet, achieving gapless stacking of goods and improving the efficiency of goods transfer, the technical solution of this patent still has the following defects in actual use: the transfer fork positions set in the pallet are relatively wide. When the forklift inserts into the fork positions, due to the excessive width margin, the operator can only visually judge the insertion position of the fork arms, making it difficult to ensure that the fork arms are centered along the central axis of the fork positions. Especially when carrying heavy finished products, if the forklift fork arms are not centered, it will lead to an increase in the contact area between the fork arms and the inner wall of the fork positions on one side, causing the overall center of gravity of the support to shift. Utility Model Content

[0004] The purpose of this utility model is to provide a finished product warehousing and transfer bracket for use with forklifts, so as to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a finished product warehousing and transfer bracket for use with a forklift, comprising a bracket, the bracket having a rectangular hollow structure, and a first central transfer fork position and a second central transfer fork position passing through both sides of the bracket, wherein fork arm guides are symmetrically slidably installed in both the first central transfer fork position and the second central transfer fork position, and the fork arm guides are used to adjust the fork position width of the first central transfer fork position and the second central transfer fork position.

[0006] In a preferred embodiment, the fork arm guide includes a fork arm guide beam, and a side support beam is fixedly mounted on one end face of the fork arm guide beam. The side support beam has an internal threaded hole that is threadedly engaged with a stud, and one end of the stud extends to and connects to the side wall of the fork arm guide beam.

[0007] In one preferred embodiment, two sets of positioning rods are welded into the rectangular hollow cavity of the bracket, and the side support beam is welded between the two sets of positioning rods.

[0008] In a preferred embodiment, the sidewall of the fork arm guide beam is provided with two rectangular cavities spaced apart along its length. The two rectangular cavities are symmetrically distributed. Two sets of positioning rods that match the two rectangular cavities pass through the corresponding rectangular cavities along the sidewall of the fork arm guide beam and abut against the inner wall of the rectangular cavity.

[0009] In a preferred embodiment, the first and second intermediate transfer forks are provided with sliding grooves, and the fork arm guide beam has sliders formed at both ends. The fork arm guide beam slides within the range of the sliding groove in cooperation with the sliders at both ends.

[0010] In a preferred embodiment, a first support rod is welded to the middle position of the bracket, and a protrusion extends upward from the support end of the fork arm guide beam, the protrusion being flush with the first support rod.

[0011] In a preferred embodiment, multiple sets of slots are symmetrically provided on the side beams on both sides of the bracket, and the slots on both side beams are distributed in a one-to-one correspondence. Each set of opposite slots is detachably installed with a set of second support rods by means of a snap-fit ​​mechanism. At the same time, the top surface of the first support rod, the raised top surface of the fork arm guide beam, and the top surface of the second support rod are at the same horizontal height, and the three work together to form a support surface for supporting the finished product.

[0012] Compared with the prior art, the beneficial effects of this utility model are: This finished product warehousing and transfer bracket, used in conjunction with a forklift, features symmetrically arranged sliding fork arm guides in the first and second transfer fork positions. This allows for flexible adjustment of the fork width according to the actual width of the forklift fork arm, eliminating the problem of excessive fork width margin in existing technologies. It ensures that the forklift fork arm is centered along the fork position axis, preventing the center of gravity from shifting due to one-sided contact of the fork arm when carrying heavy finished products, and reducing the risk of finished products tilting or tipping over. This finished product warehousing and transfer bracket, used in conjunction with a forklift, utilizes a common support surface formed by the first support rod, the protrusion of the fork arm guide beam, and the second support rod. Since the top surfaces of all three are at the same horizontal height, the weight of heavy finished products can be distributed throughout the entire bracket structure. Furthermore, the second support rod is detachable via a slot, allowing for flexible adjustment of its quantity and position according to the size of the finished product. Combined with the intermediate support of the first support rod and the auxiliary load-bearing capacity of the protrusion, this bracket offers higher load-bearing strength compared to existing technologies that rely solely on support bars. Attached Figure Description

[0013] Figure 1 This is a schematic diagram of the overall structure of this utility model; Figure 2 This is a schematic diagram of the installation structure of the second support rod of this utility model. Figure 3This is a schematic diagram of the installation structure of the fork arm guide component of this utility model; Figure 4 This is a schematic diagram of the bracket structure of this utility model.

[0014] In the diagram: 1. Bracket; 11. First intermediate transfer fork position; 12. Second intermediate transfer fork position; 13. Slide groove; 14. Slot; 15. First support rod; 2. Fork arm guide; 21. Fork arm guide beam; 211. Slider; 22. Rectangular cavity; 23. Protrusion; 3. Side support beam; 4. Stud; 5. Positioning rod; 6. Second support rod. Detailed Implementation

[0015] The present invention will be further described below with reference to the embodiments.

[0016] The following embodiments are used to illustrate the present invention, but should not be used to limit the scope of protection of the present invention. The conditions in the embodiments can be further adjusted according to specific conditions, and simple improvements to the method of the present invention under the premise of the concept of the present invention are all within the scope of protection claimed by the present invention.

[0017] Please see Figures 1-4 This utility model provides a finished product warehousing and transfer bracket for use with a forklift, including a bracket 1. The bracket 1 has a rectangular hollow structure, and a first central transfer fork position 11 and a second central transfer fork position 12 are provided through both sides of the bracket 1. Fork arm guides 2 are symmetrically slidably installed in the first central transfer fork position 11 and the second central transfer fork position 12. The fork arm guides 2 are used to adjust the fork width of the first central transfer fork position 11 and the second central transfer fork position 12.

[0018] In this embodiment, by symmetrically sliding the fork arm guide 2 in the first central transfer fork position 11 and the second central transfer fork position 12, the width of the fork position can be flexibly adjusted according to the actual size of the fork arm. When the forklift needs to be inserted, the width margin of the first central transfer fork position 11 and the second central transfer fork position 12 can be reduced by sliding the fork arm guide 2, so that the width of the fork position is adapted to the size of the fork arm. Compared with the design of the prior art where the width of the fork position is fixed and the margin is too large, this structure can guide the forklift fork arm to be inserted in the center along the central axis of the first central transfer fork position 11 and the second central transfer fork position 12, avoiding the unilateral displacement of the fork arm caused by visual judgment deviation, and effectively preventing the overall center of gravity of the bracket 1 from shifting.

[0019] Please see Figures 1-4 The fork arm guide component 2 includes a fork arm guide beam 21. A side support beam 3 is fixedly assembled on one end face of the fork arm guide beam 21. The side support beam 3 has an internal threaded hole, which is threadedly engaged with a stud 4. One end of the stud 4 extends to and connects to the side wall of the fork arm guide beam 21. Two sets of positioning rods 5 are welded in the rectangular hollow cavity of the bracket 1. The side support beam 3 is welded between the two sets of positioning rods 5.

[0020] In this embodiment, the connection between the stud 4 and the side wall of the fork arm guide beam 21 forms a linkage adjustment structure of the side support beam 3, the stud 4, and the fork arm guide beam 21. When the stud 4 is rotated, the fork arm guide beam 21 can be driven to slide in a preset direction by utilizing the thread transmission principle, thereby adjusting the width of the first intermediate transfer fork position 11 and the second intermediate transfer fork position 12, ensuring that the fork position width is compatible with the fork arm size, and solving the centering problem caused by the fixed fork position width in the prior art.

[0021] Please see Figures 2-4 The sidewall of the fork arm guide beam 21 is provided with two rectangular cavities 22 spaced apart along its length. The two rectangular cavities 22 are symmetrically distributed. Two sets of positioning rods 5, which are matched with the two rectangular cavities 22, pass through the corresponding rectangular cavities 22 along the sidewall of the fork arm guide beam 21 and abut against the inner wall of the rectangular cavity 22.

[0022] In this embodiment, the positioning rod 5 is made an auxiliary support for the fork arm guide beam 21 by the through-fitting of the symmetrically distributed rectangular cavity 22. When the bracket 1 carries heavy finished products, the pressure transmitted by the fork arm is distributed to the positioning rod 5 through the fork arm guide beam 21. The two sets of positioning rods 5 transmit the force to the main structure of the bracket 1 by abutting against the inner wall of the rectangular cavity 22, so as to avoid the fork arm guide beam 21 from bending and deforming due to excessive force.

[0023] Please see Figure 1 and Figure 3 The first intermediate transfer fork 11 and the second intermediate transfer fork 12 are provided with a sliding groove 13. The fork arm guide beam 21 has sliders 211 formed at both ends. The fork arm guide beam 21 slides within the range of the sliding groove 13 in cooperation with the sliders 211 at both ends.

[0024] Please see Figures 1-4 A first support rod 15 is welded to the middle of the bracket 1. A protrusion 23 extends upward from the support end of the fork arm guide beam 21. The protrusion 23 is flush with the first support rod 15. Multiple sets of slots 14 are symmetrically opened on the side beams on both sides of the bracket 1. The slots 14 on both side beams are distributed in a one-to-one correspondence. A set of second support rods 6 can be detachably installed in each set of opposite slots 14 by means of a snap-fit. At the same time, the top surface of the first support rod 15, the top surface of the protrusion 23 of the fork arm guide beam 21, and the top surface of the second support rod 6 are at the same horizontal height. The three work together to form a support surface for bearing the finished product.

[0025] In this embodiment, the common support surface formed by the first support rod 15, the protrusion 23 of the fork arm guide beam 21, and the second support rod 6, with the top surfaces of the three maintaining the same horizontal height, can distribute the weight of the heavy finished product to the overall structure of the bracket 1. Furthermore, the second support rod 6 can be detachably installed via the slot 14, and its quantity and position can be flexibly adjusted according to the size of the finished product. Combined with the intermediate support of the first support rod 15 and the auxiliary bearing of the protrusion 23, the load-bearing strength is higher than that of the support method that relies solely on the support strip in the prior art.

[0026] Working principle and usage process of this utility model: In use, according to the size of the forklift fork arm, the rotating stud 4 drives the fork arm guide 2 to adjust the fork position width. The stud 4, through its threaded engagement with the side support beam 3, drives the fork arm guide beam 21 to slide along the slide groove 13. The sliders 211 at both ends of the stud 4 are limited along the slide groove 13. At the same time, the rectangular cavity 22 moves along the positioning rod 5, so that the width of the first intermediate transfer fork position 11 and the second intermediate transfer fork position 12 is adapted to the fork arm, guiding the fork arm to be inserted in the center. Before the finished product is loaded, the required number of second support rods 6 are installed by engaging the slot 14. These support rods, along with the first support rod 15 and the protrusion 23 of the fork arm guide beam 21, form a support surface on the same horizontal plane. After the finished product is placed, the weight is distributed to the entire bracket 1 through the support surface. The positioning rod 5 abuts against the rectangular cavity 22 to reinforce the structural support and prevent deformation under heavy load. After the fork arm of the forklift is inserted into the centrally positioned fork position, the finished product can be stably transported to the warehouse.

[0027] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A finished product warehousing and transfer bracket for use with a forklift, comprising a bracket (1) and a stud (4), characterized in that: The bracket (1) is a rectangular hollow structure, and a first central transfer fork (11) and a second central transfer fork (12) are provided through both sides of the bracket (1). Fork arm guides (2) are symmetrically slidably installed in the first central transfer fork (11) and the second central transfer fork (12). The fork arm guides (2) are used to adjust the fork width of the first central transfer fork (11) and the second central transfer fork (12).

2. The finished product warehousing and transfer bracket for use with a forklift as described in claim 1, characterized in that: The fork arm guide (2) includes a fork arm guide beam (21), and a side support beam (3) is fixedly assembled on one side end face of the fork arm guide beam (21). The side support beam (3) has an internal threaded hole, which is threadedly engaged with a stud (4). One end of the stud (4) extends to and connects with the side wall of the fork arm guide beam (21).

3. The finished product warehousing and transfer bracket for use with a forklift as described in claim 2, characterized in that: Two sets of positioning rods (5) are welded into the rectangular hollow cavity of the bracket (1), and the side support beam (3) is welded between the two sets of positioning rods (5).

4. The finished product warehousing and transfer bracket for use with a forklift as described in claim 2, characterized in that: The sidewall of the fork arm guide beam (21) is provided with two rectangular cavities (22) spaced apart along its length. The two rectangular cavities (22) are symmetrically distributed. Two sets of positioning rods (5) that match the two rectangular cavities (22) pass through the corresponding rectangular cavities (22) along the sidewall of the fork arm guide beam (21) and abut against the inner wall of the rectangular cavity (22).

5. A finished product warehousing and transfer bracket for use with a forklift as described in claim 4, characterized in that: The first intermediate transfer fork (11) and the second intermediate transfer fork (12) are provided with a sliding groove (13). The fork arm guide beam (21) has sliders (211) formed at both ends. The fork arm guide beam (21) and the sliders (211) at both ends slide within the range of the sliding groove (13).

6. A finished product warehousing and transfer bracket for use with a forklift, as described in claim 2, characterized in that: The bracket (1) has a first support rod (15) welded in the middle position, and the fork arm guide beam (21) has a protrusion (23) extending upward from the support end, and the protrusion (23) is flush with the first support rod (15).

7. A finished product warehousing and transfer bracket for use with a forklift as described in claim 6, characterized in that: Multiple sets of slots (14) are symmetrically opened on the side beams on both sides of the bracket (1), and the slots (14) on both side beams are distributed in a one-to-one correspondence. Each set of opposite slots (14) is detachably installed with a set of second support rods (6) by means of snap-fit. At the same time, the top surface of the first support rod (15), the top surface of the protrusion (23) of the fork arm guide beam (21), and the top surface of the second support rod (6) are at the same horizontal height. The three work together to form a support surface for bearing the finished product.