Receiving disc structure for receiving titanium copper coil stock

By designing a support and reinforcement mechanism on the feeding plate and combining the external and internal limiting mechanism, the deformation problem caused by stress in high-temperature heat treatment is solved, and the durability of the feeding plate and the stable support of the titanium copper coil are achieved.

CN120504052AInactive Publication Date: 2025-08-19国工恒昌新材料(义乌)有限公司
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Patent Information

Application Number
CN202510826495.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-19
Publication Date
2025-08-19
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing titanium copper coil feeding trays cannot be reused due to the decrease in the yield strength of the material during the high-temperature heat treatment.

Method used

A feeding disk structure including a first support mechanism, a reinforcement mechanism, an outer limit mechanism and an inner limit mechanism is designed. Through support and reinforcement measures, the stress of the titanium copper coil is dispersed to avoid deformation, and the gravity of the titanium copper coil is used to achieve stable limits.

Benefits of technology

The load-bearing part strength of the feeding tray is improved, deformation caused by stress is avoided, the service life of the feeding tray and the stability of the titanium copper coil are ensured, and effective support and guidance of the titanium copper coil are achieved.

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Abstract

The invention discloses a material receiving disc structure for receiving titanium copper coil stock, and relates to the field of material receiving discs, the material receiving disc structure comprises a first supporting mechanism, the first supporting mechanism is connected with second supporting mechanisms, and the second supporting mechanisms are distributed at equal angles relative to the center of the first supporting mechanism; the first supporting mechanism and the second supporting mechanism make contact with the titanium copper coil stock body to achieve supporting. And the reinforcing mechanism is used for reinforcing the bearing part of the first supporting mechanism. According to the material receiving disc structure for receiving the titanium-copper coil stock, the reinforcing mechanism is additionally arranged on the bearing part of an original cross-shaped material receiving disc, so that the strength of the bearing part of the cross-shaped material receiving disc can be improved, the material receiving disc can be prevented from deforming due to the stress effect of a titanium-copper coil stock body, and the material receiving disc structure is matched with the second supporting mechanism; the number of supporting point positions of the titanium-copper coil stock body can be increased, so that stress dispersion of the titanium-copper coil stock body is achieved, damage to the material receiving disc is further avoided, and the service life of the material receiving disc is effectively guaranteed.
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Description

Technical Field

[0001] The invention relates to the technical field of a receiving tray for carrying titanium copper coils in a box-type furnace, and in particular to a receiving tray structure for receiving titanium copper coils. Background Art

[0002] After the production of titanium copper coils is completed, the titanium copper coils need to be sent into a box furnace and heat treated at about 950° to ensure the production quality of the titanium copper coils. In order to avoid direct contact between the titanium copper coils and the base plate in the box furnace, the titanium copper coils need to be supported by a receiving tray. The existing receiving trays for titanium copper coils are generally cross-shaped structures. The overall weight of the titanium copper coils is mainly supported by the contact parts of the receiving trays. After the heat treatment of the titanium copper coils is completed, it is found that as the temperature of the receiving tray increases during the heat treatment of the titanium copper coils, the material properties (yield strength) of the receiving tray itself decreases significantly. The stress when receiving the copper coils has exceeded the yield strength of the material at this temperature, so obvious plastic deformation occurs, which makes the receiving tray unable to be reused. Summary of the Invention

[0003] The object of the present invention is to provide a receiving tray structure for receiving titanium copper coils, so as to solve the problems raised in the above background technology.

[0004] To achieve the above objectives, the present invention provides the following technical solutions: a receiving tray structure for receiving titanium-copper coils, comprising a first supporting mechanism, wherein the first supporting mechanism and a second supporting mechanism are interconnected, and the second supporting mechanisms are distributed at equal angles with respect to the center of the first supporting mechanism, and the first supporting mechanism and the second supporting mechanism are in contact with the main body of the titanium-copper coil to provide support;

[0005] A reinforcement mechanism, used to reinforce the load-bearing portion of the first support mechanism, wherein the reinforcement mechanism is interconnected with the first support mechanism, and four reinforcement mechanisms are provided;

[0006] An external limiting mechanism, used to achieve limiting and guiding of the outer side of the titanium-copper coil body, the external limiting mechanism being interconnected with the first supporting mechanism;

[0007] The inner limiting mechanism is used to realize the inner limiting guidance of the titanium copper coil body. The inner limiting mechanism is interconnected with the first supporting mechanism, and the inner limiting mechanism is driven by the outer limiting mechanism.

[0008] Preferably, the first supporting mechanism includes a crisscross cross-shaped U-shaped bracket, and the U-shaped bracket is evenly provided with openings, and the U-shaped bracket is also provided with a guide groove. At the same time, the guide groove and the internal limit mechanism are distributed one-to-one. The material of the U-shaped bracket is 310S stainless steel. Through the action of the U-shaped bracket, the support of the titanium copper coil body can be achieved to ensure the stability of the titanium copper coil body.

[0009] Preferably, the second supporting mechanism includes an arc-shaped plate fixed to the U-shaped bracket, and the lower end surface of the arc-shaped plate is flush with the lower end surface of the U-shaped bracket, and a support block is also fixed to the upper end surface of the arc-shaped plate, and the support block is in contact with the titanium copper coil body. Through the action of multiple support blocks, the support points of the titanium copper coil body can be increased, thereby realizing stress dispersion of the titanium copper coil body, and further avoiding deformation and damage of the U-shaped bracket due to stress concentration.

[0010] Preferably, the upper end surface of the support block is flush with the upper end surface of the U-shaped bracket, and the height of the support block is 5cm-10 side, and the material of the support block and the arc plate are both 310S stainless steel. By limiting the material of the support block, the high temperature resistance of the support block can be guaranteed, thereby ensuring the normal use of the device.

[0011] Preferably, the reinforcement mechanism includes a web fixed on the U-shaped bracket, and the web and the crossbeam are distributed vertically, and the crossbeam and the U-shaped bracket are fixed to each other, and the lower end surface of the web is flush with the lower end surface of the U-shaped bracket. Through the above structure, the load-bearing part of the U-shaped bracket can be reinforced and supported, thereby further enhancing the strength of the U-shaped bracket and avoiding deformation of the U-shaped bracket.

[0012] Preferably, the external limiting mechanism includes a rotating shaft rotatably connected to the U-shaped bracket, and an outer clamping plate is fixed on the rotating shaft, and the outer clamping plate contacts the titanium copper coil body to realize the limiting effect, and at the same time, the contact surface between the outer clamping plate and the titanium copper coil body is an arc structure. Through the above structure, the clamping and limiting of the outer wall of the titanium copper coil body can be realized, thereby avoiding the loosening of the titanium copper coil body and ensuring the normal heat treatment of the titanium copper coil body.

[0013] Preferably, a counterweight block with a fan-shaped structure is fixed on the outer splint, and the counterweight block is in contact with the U-shaped bracket to achieve positioning. Through the action of the counterweight block, a basic force can be provided for the automatic swing of the outer splint, thereby ensuring that the outer splint can be in an inclined state when not affected by external force, thereby facilitating the installation of the titanium copper coil body.

[0014] Preferably, a pressure plate is vertically fixed to the lower side of the outer splint, and the pressure plate is in contact with the limit plate to achieve positioning, and the limit plate is fixed on the U-shaped bracket. At the same time, the distance from the upper end surface of the limit plate to the upper end surface of the U-shaped bracket is equal to the thickness of the pressure plate. Through the contact between the titanium copper coil body and the pressure plate, combined with the self-neutral force of the titanium copper coil body, a basic force can be provided for the swing of the outer splint, and by limiting the thickness of the pressure plate, it can be ensured that the titanium copper coil body can be in contact with the U-shaped bracket to achieve support after placement.

[0015] Preferably, the inner limiting mechanism includes an inner splint arranged above the U-shaped bracket, and a slider is fixed to the lower end surface of the inner splint, and the slider is slidably connected to the guide groove, and at the same time, the slider and one end of the cross bar are fixed to each other, and the cross bar and the web are slidably connected. The inner splint contacts the inner wall of the titanium copper coil body to achieve support positioning, and the contact surface between the inner splint and the titanium copper coil body is an arc structure. Through the above structure, the inner wall support and limitation of the titanium copper coil body can be achieved, and the stability of the titanium copper coil body can be ensured, and the sliding action between the cross bar and the web can ensure the stability of the movement of the inner splint.

[0016] Preferably, the other end of the cross bar is fixed to the convex gear rod, and the convex gear rod is engaged with the transmission gear to realize transmission, and the transmission gear is fixed on the outer splint. When the outer splint is forced to swing, the transmission gear is synchronously driven to rotate. Through the transmission action between the transmission gear and the convex gear rod, the basic force can be provided for the movement of the cross bar, slider and inner splint to ensure the normal operation of the device.

[0017] Compared with the prior art, the present invention has the following beneficial effects:

[0018] 1. The receiving tray structure for receiving titanium copper coils increases the strength of the load-bearing part of the cross receiving tray by adding a reinforcement mechanism to the load-bearing part of the original cross receiving tray, thereby preventing the receiving tray from being deformed by the stress of the titanium copper coil body. In conjunction with the second supporting mechanism, the supporting points for the titanium copper coil body can be increased, thereby achieving stress dispersion of the titanium copper coil body, further preventing damage to the receiving tray and effectively ensuring the service life of the receiving tray.

[0019] 2. The receiving tray structure for receiving titanium-copper coils adopts a swinging external limiting mechanism, which can use the self-gravity of the titanium-copper coil body to realize the limiting effect of the outer wall of the titanium-copper coil body, thereby preventing the titanium-copper coil body from becoming loose during heat treatment. In combination with the linked internal limiting mechanism, the support and limiting of the inner wall of the titanium-copper coil body can be realized, further ensuring the stability of the installation of the titanium-copper coil body, and through the action of the external limiting mechanism and the internal limiting mechanism, the guiding effect of the placement position of the titanium-copper coil body can also be realized, ensuring that the contact part between the titanium-copper coil body and the first supporting mechanism is located directly above the reinforcement mechanism, thereby ensuring the supporting effect of the first supporting mechanism on the titanium-copper coil body. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 This is a structural schematic diagram of the first supporting mechanism and the titanium-copper coil body of the present invention in a separated state;

[0021] Figure 2 This is a schematic diagram of the overall three-dimensional structure of the device of the present invention;

[0022] Figure 3This is a schematic diagram of the overall three-dimensional structure of the device of the present invention when viewed from above;

[0023] Figure 4 For the present invention Figure 3 A in the middle is an enlarged structural diagram;

[0024] Figure 5 This is a schematic diagram of the front cross-sectional three-dimensional structure of the U-shaped bracket of the present invention;

[0025] Figure 6 This is a schematic diagram of the front three-dimensional structure of the outer limiting mechanism and the inner limiting mechanism of the present invention;

[0026] Figure 7 This is a bottom-view schematic diagram of the three-dimensional structure of the outer limiting mechanism and the inner limiting mechanism of the present invention;

[0027] Figure 8 For the present invention Figure 7 Enlarged structural diagram at point B in the middle.

[0028] In the figure: 1. First supporting mechanism; 101. U-shaped bracket; 102. Opening; 103. Guide groove; 2. Second supporting mechanism; 201. Arc plate; 202. Support block; 3. Reinforcement mechanism; 301. Web; 302. Crossbeam; 4. External limiting mechanism; 401. Rotating shaft; 402. External splint; 403. Counterweight; 404. Pressure plate; 405. Limiting plate; 5. Internal limiting mechanism; 501. Internal splint; 502. Slider; 503. Cross bar; 504. Protruding gear rod; 505. Transmission gear; 6. Titanium copper coil body. DETAILED DESCRIPTION

[0029] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0030] See also Figures 1-8 The present invention provides a technical solution: a receiving tray structure for receiving titanium copper coils, comprising a first supporting mechanism 1, wherein the first supporting mechanism 1 and the second supporting mechanism 2 are connected to each other, and the second supporting mechanism 2 is distributed at equal angles with respect to the center of the first supporting mechanism 1, and the first supporting mechanism 1 and the second supporting mechanism 2 are in contact with the titanium copper coil body 6 to achieve support;

[0031] The reinforcement mechanism 3 is used to reinforce the load-bearing part of the first support mechanism 1. The reinforcement mechanism 3 is connected to the first support mechanism 1, and four reinforcement mechanisms 3 are provided;

[0032] The outer limiting mechanism 4 is used to realize the outer limiting guide of the titanium copper coil body 6, and the outer limiting mechanism 4 is interconnected with the first supporting mechanism 1;

[0033] The inner limiting mechanism 5 is used to achieve inner limiting guidance of the titanium-copper coil body 6 . The inner limiting mechanism 5 is interconnected with the first supporting mechanism 1 , and the inner limiting mechanism 5 is driven by the outer limiting mechanism 4 .

[0034] The outer limiting mechanism 4 includes a rotating shaft 401 rotatably connected to the U-shaped bracket 101, and an outer splint 402 is fixed on the rotating shaft 401, and the outer splint 402 contacts the titanium copper coil body 6 to achieve a limiting effect, and at the same time, the contact surface between the outer splint 402 and the titanium copper coil body 6 is an arc structure; a counterweight block 403 with a fan-shaped structure is also fixed on the outer splint 402, and the counterweight block 403 contacts the U-shaped bracket 101 to achieve positioning; a pressure plate 404 is vertically fixed to the lower side of the outer splint 402, and the pressure plate 404 contacts the limiting plate 405 to achieve positioning, and the limiting plate 405 is fixed on the U-shaped bracket 101, and at the same time, the distance between the upper end face of the limiting plate 405 and the upper end face of the U-shaped bracket 101 is the same as that of the pressure plate The thickness of 404 is equal; the inner limiting mechanism 5 includes an inner plywood 501 arranged above the U-shaped bracket 101, and a slider 502 is fixed to the lower end surface of the inner plywood 501, and the slider 502 is slidably connected to the guide groove 103, and the slider 502 is fixed to one end of the cross bar 503, and the cross bar 503 is slidably connected to the web 301. The inner plywood 501 contacts the inner wall of the titanium copper coil body 6 to achieve support positioning, and the contact surface between the inner plywood 501 and the titanium copper coil body 6 is an arc-shaped structure; the other end of the cross bar 503 is fixed to the convex gear rod 504, and the convex gear rod 504 is engaged with the transmission gear 505 to achieve transmission, and the transmission gear 505 is fixed to the outer plywood 402;

[0035] When using the receiving tray structure for receiving titanium copper coils, Figures 1-8As shown, first install the titanium copper coil body 6 that needs heat treatment and the receiving tray, and use a crane to lift the titanium copper coil body 6 to the top of the U-shaped bracket 101 and slowly lower it. At this time, due to the gravity of the counterweight block 403, the outer plywood 402 is in an inclined state, and at this time the distance between the outer plywood 402 and the inner plywood 501 is the largest. When the titanium copper coil body 6 is lifted down, ensure that the outer plywood 402 is located on the outside of the titanium copper coil body 6 and the inner plywood 501 is located on the inside of the titanium copper coil body 6. During the downward movement of the titanium copper coil body 6, when the titanium copper coil body 6 contacts the pressing plate 404, the pressing plate 404 swings through the rotating shaft 401 under the action of the gravity of the titanium copper coil body 6 until the titanium copper coil body 6 contacts the U-shaped bracket 101, and the pressing plate 404 is just in contact with the limit plate 405 When the outer splint 402 rotates to a vertical state and contacts the outer wall of the titanium copper coil body 6, the outer side of the titanium copper coil body 6 is limited, and when the limit plate 405 rotates and swings, the transmission gear 505 is synchronously driven to rotate, and the transmission action between the transmission gear 505 and the convex tooth rod 504 can make the cross bar 503 move under force, thereby driving the slider 502 and the inner splint 501 to move, and the sliding guide action between the cross bar 503 and the web 301 can ensure the stability of the movement of the slider 502 and the inner splint 501. When the outer splint 402 rotates to a vertical state and contacts the outer wall of the titanium copper coil body 6, the inner splint 501 just moves to contact the inner wall of the titanium copper coil body 6, thereby realizing the automatic limiting effect of the titanium copper coil body 6 and ensuring the stability of the titanium copper coil body 6.

[0036] The first support mechanism 1 includes a cross-shaped U-shaped bracket 101 that is crisscrossed, and the U-shaped bracket 101 is evenly provided with openings 102, and the U-shaped bracket 101 is also provided with a guide groove 103, and the guide groove 103 and the inner limit mechanism 5 are distributed one-to-one. The material of the U-shaped bracket 101 is 310S stainless steel; the second support mechanism 2 includes an arc-shaped plate 201 fixed to the U-shaped bracket 101, and the lower end surface of the arc-shaped plate 201 is flush with the lower end surface of the U-shaped bracket 101, and the upper end surface of the arc-shaped plate 201 is also fixed with a support groove. The support block 202 is in contact with the titanium copper coil body 6; the upper end surface of the support block 202 is flush with the upper end surface of the U-shaped bracket 101, and the height of the support block 202 is 5 cm-10 side, and the material of the support block 202 and the arc plate 201 are both 310S stainless steel; the reinforcement mechanism 3 includes a web 301 fixed on the U-shaped bracket 101, and the web 301 and the crossbeam 302 are vertically distributed, and the crossbeam 302 and the U-shaped bracket 101 are fixed to each other, and the lower end surface of the web 301 is flush with the lower end surface of the U-shaped bracket 101;

[0037] When the titanium copper coil body 6 is installed in contact with the U-shaped bracket 101, Figures 1-8As shown, at this time, through the limiting effect of the inner splint 501 and the outer splint 402, the contact part between the titanium copper coil body 6 and the U-shaped bracket 101 is just above the reinforcement mechanism 3, and the load-bearing part of the U-shaped bracket 101 is reinforced by the web 301 and the crossbeam 302, which can ensure the compressive strength of the U-shaped bracket 101, and when the titanium copper coil body 6 is installed and in contact with the U-shaped bracket 101, the titanium copper coil body 6 is in contact with the support block 202 at this time, and the support points of the titanium copper coil body 6 can be effectively increased through multiple support blocks 202, thereby realizing the gravity dispersion of the titanium copper coil body 6, effectively avoiding the deformation and damage of the U-shaped bracket 101 due to the decrease in the yield strength of the U-shaped bracket 101 caused by high temperature during subsequent processing, and effectively ensuring the service life of the U-shaped bracket 101. This is the working principle of the receiving tray structure for receiving titanium copper coils.

[0038] It should be noted that, in this article, the terms "comprises", "includes" or any other variations thereof are intended to cover non-exclusive inclusion, so that a process, method, article or apparatus that includes a series of elements includes not only those elements, but also includes other elements not explicitly listed, or also includes elements that are inherent to such process, method, article or apparatus.

[0039] This article uses specific examples to illustrate the principles and implementation methods of the present invention. The above examples are only used to help understand the method of the present invention and its core ideas. The above is only a preferred implementation method of the present invention. It should be pointed out that due to the limitations of textual expression, there are objectively infinite specific structures. For ordinary technicians in this technical field, without departing from the principles of the present invention, they can make several improvements, modifications or changes, and can also combine the above technical features in an appropriate manner; these improvements, modifications, changes or combinations, or the direct application of the inventive concept and technical solution to other occasions without improvement, should be regarded as the scope of protection of the present invention.

Claims

1. A receiving tray structure for receiving titanium copper coils, comprising a first supporting mechanism (1), characterized in that: The first supporting mechanism (1) and the second supporting mechanism (2) are connected to each other, and the second supporting mechanism (2) is distributed at equal angles with respect to the center of the first supporting mechanism (1); the first supporting mechanism (1), the second supporting mechanism (2) and the titanium copper coil body (6) are in contact to achieve support; A reinforcement mechanism (3) is used to reinforce the load-bearing portion of the first support mechanism (1), wherein the reinforcement mechanism (3) and the first support mechanism (1) are interconnected, and four reinforcement mechanisms (3) are provided; An external limiting mechanism (4) is used to achieve external limiting guidance of the titanium-copper coil body (6), the external limiting mechanism (4) being interconnected with the first supporting mechanism (1); The inner limiting mechanism (5) is used to realize inner limiting guidance of the titanium copper coil body (6); the inner limiting mechanism (5) is interconnected with the first supporting mechanism (1), and the inner limiting mechanism (5) is driven by the outer limiting mechanism (4).

2. The receiving tray structure for receiving titanium copper coils according to claim 1, characterized in that: The first supporting mechanism (1) comprises a U-shaped bracket (101) in a cross-shaped manner, and the U-shaped bracket (101) is evenly provided with openings (102). The U-shaped bracket (101) is also provided with a guide groove (103), and the guide groove (103) and the inner limit mechanism (5) are distributed in a one-to-one correspondence. The material of the U-shaped bracket (101) is 310S stainless steel.

3. The receiving tray structure for receiving titanium copper coils according to claim 2, characterized in that: The second supporting mechanism (2) comprises an arc-shaped plate (201) fixed to the U-shaped bracket (101), wherein the lower end surface of the arc-shaped plate (201) is flush with the lower end surface of the U-shaped bracket (101), and a supporting block (202) is also fixed to the upper end surface of the arc-shaped plate (201), and the supporting block (202) is in contact with the titanium copper coil body (6).

4. The receiving tray structure for receiving titanium copper coils according to claim 3, characterized in that: The upper end surface of the support block (202) is flush with the upper end surface of the U-shaped bracket (101), and the height of the support block (202) is 5 cm-10 side, and the material of the support block (202) and the arc plate (201) are both 310S stainless steel.

5. The receiving tray structure for receiving titanium copper coils according to claim 4, characterized in that: The reinforcement mechanism (3) comprises a web (301) fixed on the U-shaped bracket (101), wherein the web (301) and the crossbeam (302) are vertically distributed, and the crossbeam (302) and the U-shaped bracket (101) are fixed to each other, and the lower end surface of the web (301) is flush with the lower end surface of the U-shaped bracket (101).

6. The receiving tray structure for receiving titanium copper coils according to claim 5, characterized in that: The external limiting mechanism (4) comprises a rotating shaft (401) rotatably connected to the U-shaped bracket (101), an external clamping plate (402) is fixed on the rotating shaft (401), and the external clamping plate (402) contacts the titanium copper coil body (6) to achieve a limiting effect, and the contact surface between the external clamping plate (402) and the titanium copper coil body (6) is an arc-shaped structure.

7. The receiving tray structure for receiving titanium copper coils according to claim 6, characterized in that: A counterweight block (403) with a fan-shaped structure is also fixed on the outer clamping plate (402), and the counterweight block (403) contacts the U-shaped bracket (101) to achieve positioning.

8. The receiving tray structure for receiving titanium copper coils according to claim 7, characterized in that: A pressing plate (404) is vertically fixed to the lower side of the outer clamping plate (402), and the pressing plate (404) contacts the limiting plate (405) to achieve positioning, and the limiting plate (405) is fixed on the U-shaped bracket (101), and the distance from the upper end surface of the limiting plate (405) to the upper end surface of the U-shaped bracket (101) is equal to the thickness of the pressing plate (404).

9. The receiving tray structure for receiving titanium copper coils according to claim 8, characterized in that: The inner limiting mechanism (5) includes an inner clamping plate (501) arranged above the U-shaped bracket (101), and a slider (502) is fixed to the lower end surface of the inner clamping plate (501), and the slider (502) is slidably connected to the guide groove (103), and the slider (502) and one end of the cross bar (503) are fixed to each other, and the cross bar (503) is slidably connected to the web (301). The inner clamping plate (501) contacts the inner wall of the titanium copper coil body (6) to achieve support positioning, and the contact surface between the inner clamping plate (501) and the titanium copper coil body (6) is an arc structure.

10. The receiving tray structure for receiving titanium copper coils according to claim 9, characterized in that: The other end of the crossbar (503) is fixed to the convex gear rod (504), and the convex gear rod (504) is engaged with the transmission gear (505) to realize transmission, and the transmission gear (505) is fixed on the outer clamping plate (402).