Transfer frame for metal oxidation treatment

By designing a transfer frame with annular grooves, slots, and limiting components, the problem of the oxidation fixture shaking and causing it to detach during transfer was solved, achieving stable fixation of the fixture and improving the efficiency of the oxidation process.

CN223812832UActive Publication Date: 2026-01-20TAIXING QINGQING TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202520155185.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-23
Publication Date
2026-01-20
Estimated Expiration
2035-01-23

AI Technical Summary

Technical Problem

The existing transfer frames for oxidation are prone to shaking during the transfer process, which can cause the oxidation hangers to come off the hooks, affecting product damage and efficiency.

Method used

A transfer frame comprising an annular groove, a slot, and a limiting component is designed. The hanging fixture is fixed by the annular groove and the slot. The limiting component includes a slide, a drive plate, a limiting plate, and a spring to prevent the hanging fixture from shaking during the transfer process.

Benefits of technology

It effectively prevents the hangers from shifting left and right or up and down during transportation, avoids detachment, and improves the efficiency of oxidation treatment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a transfer frame for metal oxidation treatment. The two hooks are arranged on the two sides of the top face of the frame body in the width direction, and the upper supporting rods and the lower supporting rods are arranged at the top and the bottom in the frame body in the length direction of the frame body at intervals. The annular grooves are formed in the upper supporting rods at intervals in the length direction of the upper supporting rods and used for hooking the buckle ends of the hanging tools, and the inserting grooves are formed in the lower supporting rods at intervals in the length direction of the lower supporting rods and used for inserting one ends of protruding parts at the bottoms of the hanging tools. The limiting assembly is arranged on one side of the top surface of the frame main body in the length direction, and the limiting end is located on one side of the annular grooves and can translate to prevent the hanger from unhooking; by means of the annular groove, the inserting groove and the limiting assembly, the hanger for oxidation can be effectively limited to deviate in the left-right direction and the up-down direction, unhooking during shaking in the transferring process is prevented, damage to products is avoided, and the oxidation efficiency is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to metal oxidation treatment field especially a transfer frame for metal oxidation treatment. BACKGROUND

[0002] The transfer frame for oxidation is used for hanging a plurality of hangers for oxidation, and is convenient for batch transfer of the hangers for oxidation to oxidation treatment, but the existing transfer frame for oxidation shakes during transfer, which can cause the hangers for oxidation to be unhooked and fall off, thereby causing product damage and affecting efficiency. UTILITY MODEL CONTENTS

[0003] The utility model aims at overcoming the defects of the prior art and provides a transfer frame for metal oxidation treatment.

[0004] To achieve the above-mentioned purpose, the utility model adopts the technical scheme of a transfer frame for metal oxidation treatment, which comprises a frame main body, two hooks arranged on both sides of the frame main body in the width direction of the top surface of the frame main body, a plurality of upper support rods and a plurality of lower support rods arranged in the frame main body in the length direction of the frame main body and spaced apart from each other at the top and bottom of the frame main body, a plurality of annular grooves arranged on the plurality of upper support rods and spaced apart from each other in the length direction of the upper support rods and used for hooking the clasp end of the hanger, a plurality of insertion slots arranged on the plurality of lower support rods and spaced apart from each other in the length direction of the lower support rods and used for inserting the one end of the protruding part at the bottom of the hanger, and a limiting assembly arranged on one side of the frame main body in the length direction of the top surface of the frame main body and located on one side of the annular grooves and capable of translating to prevent the hanger from being unhooked.

[0005] Preferably, the limiting assembly comprises a plurality of first sliding channels arranged in the plurality of upper support rods respectively, a plurality of second sliding channels arranged on one side of the frame main body in the length direction of the frame main body and having one end penetrating the first sliding channels, a plurality of driving plates slidingly arranged in the first sliding channels, a plurality of first avoiding grooves arranged on the plurality of upper support rods and located on one side of the annular grooves and having the bottom penetrating the first sliding channels, a plurality of second avoiding grooves arranged on the frame main body and penetrating the plurality of second sliding channels respectively, a plurality of limiting plates slidingly arranged in the plurality of first avoiding grooves and having one end connected to two pieces of the plurality of driving plates respectively and the other end extending out of the slot opening of the plurality of first avoiding grooves and used for limiting the clasp end of the hanger to move upward in a Z shape, a plurality of push plates slidingly arranged in the plurality of second avoiding grooves and having one end connected to two pieces of the plurality of driving plates respectively and the other end extending out of the slot opening of the plurality of second avoiding grooves, a plurality of springs arranged in the plurality of second avoiding grooves and used for always pushing the plurality of driving plates toward the upper support rods, and a connecting plate connected to one end of the plurality of push plates outside the plurality of second avoiding grooves.

[0006] Preferably, the plurality of limiting plates and the plurality of driving plates are connected by bolts.

[0007] Preferably, a connecting rod is arranged between the two hooks.

[0008] Preferably, both ends of the plurality of upper support rods and the plurality of lower support rods are welded to the frame body.

[0009] Thanks to the above technical scheme, the present application has the following advantages over the prior art:

[0010] The annular groove, the insertion slot and the limiting assembly can effectively limit the left-right and up-down multiple direction deviation of the hanging tool for oxidation, prevent the hanging tool from being unhooked when shaking during the transfer process, avoid the damage of products, and improve the oxidation efficiency. BRIEF DESCRIPTION OF DRAWINGS

[0011] The technical scheme of the present application will be further described below in combination with the drawings:

[0012] ATTACHED Fig. 1 It is a top view structural schematic diagram of the transfer frame for metal oxidation treatment.

[0013] ATTACHED Fig. 2 It is an end face cross-sectional structural schematic diagram of the transfer frame for metal oxidation treatment.

[0014] ATTACHED Fig. 3 It is a side view structural schematic diagram of the transfer frame for metal oxidation treatment.

[0015] Wherein: 1, frame body; 2, hook; 3, upper support rod; 4, lower support rod; 5, annular groove; 6, insertion slot; 7, limiting assembly; 71, first sliding channel; 72, second sliding channel; 73, driving plate; 74, first avoiding slot; 75, second avoiding slot; 76, limiting plate; 77, push plate; 78, spring; 79, connecting plate; 8, connecting rod. DETAILED DESCRIPTION

[0016] The present application will be further described below in combination with the drawings and specific embodiments.

[0017] ATTACHED Figs. 1-3The utility model discloses a transfer frame for metal oxidation treatment contains frame main body 1, set up two hooks 2 on the width direction both sides of frame main body 1 top, the upper support rod 3 and the lower support rod 4 of interval setting in the top and bottom of frame main body 1 along frame main body 1 length direction respectively, a plurality of annular grooves 5 are set up on the upper support rod 3 and interval setting along the length direction of upper support rod 3 for the hook buckle end hooking, a plurality of insertion slots 6 are set up on the lower support rod 4 and interval setting along the length direction of lower support rod 4 for the insertion of the one end of the hanger bottom protruding part, the limiting assembly 7 of length direction one side of frame main body 1 top and limiting end is located one side of a plurality of annular grooves 5 can translate for preventing the unhooking of hanger, the limiting assembly 7 includes a plurality of first slide 71 respectively in a plurality of upper support rods 3, a plurality of second slide 72 are set up on the length direction one side of frame main body 1 and one end with the first slide 71 through, a plurality of drive plates 73 are slidably arranged in the first slide 71, a plurality of first avoiding slots 74 are set up on a plurality of upper support rods 3 and are located on one side of annular groove 5 and the bottom with the first slide 71 through respectively, a plurality of second avoiding slots 75 are set up on frame main body 1 and respectively with a plurality of second slide 72 through, a plurality of limit plates 76 are slidably arranged in a plurality of first avoiding slots 74 one end respectively with a plurality of drive plates 73 two pieces and the other end extends out the slot of a plurality of first avoiding slots 74 for limiting the upward movement of the hook buckle end Z-shaped, a plurality of shift plates 77 are slidably arranged in a plurality of second avoiding slots 75 one end respectively with a plurality of drive plates 73 two pieces and the other end extends out the slot of a plurality of second avoiding slots 75, a plurality of springs 78 are set up in a plurality of second avoiding slots 75 always for pushing a plurality of drive plates 73 towards the direction of upper support rod 3, and the connecting plate 79 of one end connection with a plurality of shift plates 77 located outside a plurality of second avoiding slots 75.

[0018] Further, the plurality of limit plates 76 and the plurality of drive plates 73 are connected by bolts, facilitating replacement.

[0019] Further, the two hooks 2 are provided with a connecting rod 8, facilitating workers to take.

[0020] Further, the upper support rods 3 and the lower support rods 4 are welded to the frame main body 1 at both ends, making the connection more firm.

[0021] In use: first, dial the connecting plate 79, the connecting plate 79 then drives the shift plate 77 to move, the shift plate 77 then drives the drive plate 73 to move towards the second slide 72 direction, immediately the drive plate 73 drives the limiting plate 76 to move, make the limiting plate 76 top horizontal one end far away from the above of annular recess 5, then the hanger hook buckle is buckled on the annular recess 5 on the upper support rod 3, then the bottom protruding part of the hanger is inserted into the slot 6 on the lower support rod 4, thereby the left and right translation of the hanger is limited, then loosen the connecting plate 79, then the spring 78 loses the resistance and pushes the drive plate 73 to move towards the first slide 71, the drive plate 73 then drives the limiting plate 76 to move towards the hanger hook direction, when the limiting plate 76 top horizontal one end moves to the hanger top hook above one side and stops, immediately the limiting plate 76 to the hanger towards the hook 2 direction of frame main body 1 movement is limited, effectively avoid the risk of shaking and causing unhooking, finally the worker holds the connecting rod 8 and lifts the frame main body 1, frame main body 1 is transported to the next oxidation process.

[0022] The above is only the specific application example of the utility model, and does not constitute any limitation on the protection scope of the utility model. Any technical scheme formed by equivalent transformation or equivalent replacement falls within the protection scope of the utility model.

Claims

1. A transfer frame for metal oxide processing, characterized by: The frame body, two hooks arranged on both sides of the top surface of the frame body in the width direction, a plurality of upper support rods and a plurality of lower support rods arranged in the frame body at the top and bottom respectively in the length direction of the frame body, a plurality of annular grooves arranged on the plurality of upper support rods and spaced in the length direction of the upper support rods for hooking the buckle end of the hanger, a plurality of insertion slots arranged on the plurality of lower support rods and spaced in the length direction of the lower support rods for inserting one end of the protruding part at the bottom of the hanger, a limiting assembly arranged on one side of the top surface of the frame body in the length direction and having a limiting end located on one side of the plurality of annular grooves to prevent the hanger from being unhooked.

2. The metal oxide treatment transfer frame of claim 1, wherein: The limiting assembly includes a plurality of first sliding channels arranged in the plurality of upper support rods respectively, a plurality of second sliding channels arranged on one side of the frame body in the length direction and having one end penetrating the first sliding channels, a plurality of driving plates slidingly arranged in the first sliding channels, a plurality of first avoiding grooves arranged on the plurality of upper support rods on one side of the annular grooves and having the bottom penetrating the first sliding channels, a plurality of second avoiding grooves arranged on the frame body and penetrating the plurality of second sliding channels respectively, a plurality of limiting plates slidingly arranged in the plurality of first avoiding grooves, one end of each of the plurality of limiting plates being connected to two pieces of the plurality of driving plates respectively and the other end of each of the plurality of limiting plates extending out of the slot of the plurality of first avoiding grooves for limiting the upward movement of the buckle end of the hanger in a Z shape, a plurality of push plates slidingly arranged in the plurality of second avoiding grooves, one end of each of the plurality of push plates being connected to two pieces of the plurality of driving plates respectively and the other end of each of the plurality of push plates extending out of the slot of the plurality of second avoiding grooves, a plurality of springs arranged in the plurality of second avoiding grooves for always pushing the plurality of driving plates in the direction of the upper support rods, and a connecting plate connected to one end of the plurality of push plates outside the plurality of second avoiding grooves.

3. The metal oxide treatment transfer frame of claim 2, wherein: The plurality of limiting plates and the plurality of driving plates are connected by bolts.

4. The metal oxide treatment transfer frame of claim 1, wherein: A connecting rod is arranged between the two hooks.

5. The metal oxide treatment transfer frame of claim 1, wherein: Both ends of the plurality of upper support rods and the plurality of lower support rods are welded to the frame body.