Alloy target material heat treatment device

By introducing a dual-axis motor-driven mesh plate vibration screening structure and a pump conveying system into the alloy target heat treatment device, the problem of uneven heating of the target caused by the uneven size of iron sand was solved, efficient screening and recycling of iron sand was achieved, and the uniformity of heat treatment and resource utilization were improved.

CN223316735UActive Publication Date: 2025-09-09DONGGUAN HENGTAI PRECIOUS METAL TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422789989.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-15
Publication Date
2025-09-09
Estimated Expiration
2034-11-15

AI Technical Summary

Technical Problem

In existing alloy target heat treatment devices, after heat treatment is completed, the target is heated unevenly due to uneven iron sand size.

Method used

The mesh plate structure is matched with a dual-axis motor, a rocker and a connector. The motor drives the rocker to drive the connector to contact the mesh plate, realizing the vibration screening of the mesh plate, screening out the fine iron sand and collecting it into the waiting bin. The remaining iron sand slides into the storage bin for recycling. At the same time, the circulation of iron sand is realized through the pump body and pipe group.

Benefits of technology

It effectively avoids the problem of uneven heating of the target material caused by uneven size of iron sand, realizes the recycling of iron sand and saves resources.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223316735U_ABST
    Figure CN223316735U_ABST
Patent Text Reader

Abstract

The utility model discloses an alloy target material heat treatment device which comprises a box body, one end of the box body is hinged with a door body, one end of the door body is connected with a screen frame, a plurality of groups of heating plates are arranged in the box body, a plate body movably penetrates through an opening which is formed in one end of the box body in advance, and a screen plate is arranged in the box body. After heat treatment of a target material is finished, the plate body is pulled out to enable iron sand to fall onto the screen plate, the double-shaft motor is started to drive the rocker to slide in the second groove body, then the connecting piece is in contact with the screen plate to drive the screen plate to slide in the first groove body, and after the connecting piece is separated from the screen plate, the screen plate is reset under the action of the spring. And the double-shaft motor continuously rotates to drive the connecting piece to intermittently make contact with the screen plate, the screen plate vibrates, screening of the iron sand is accelerated, the fine iron sand is screened into the to-be-treated bin, the other iron sand slides into the containing bin to be recycled, and the problem that due to the fact that the size of the iron sand is not uniform, the target material is heated unevenly is solved to a certain degree.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the technical field related to heat treatment equipment, and in particular to an alloy target material heat treatment device. Background Art

[0002] Heat treatment of alloy targets is one of the most important processes for improving their physical properties, chemical stability, and mechanical strength. During the heat treatment process, by controlling factors such as temperature, time, and cooling rate, the internal microstructure of the alloy material can be changed, thereby achieving the purpose of improving material properties.

[0003] The existing announcement number is: CN214937675U, a high-density alloy target heat treatment device, including a support frame, a heating plate and a pressure pump, a reaction tank is fixedly installed on the top of the support frame, iron sand is placed inside the reaction tank, the support frame is fixedly connected to the bottom plate through a control component, the bottom plate is located at the bottom of the reaction tank, and is closed with the bottom of the reaction tank, a collecting tank is placed under the reaction tank, the bottom of the collecting tank is fixedly connected to one end of the pressure pump through a collecting pipe, the other end of the pressure pump is connected to one end of the feeding pipe through a hose, the other end of the feeding pipe is fixedly connected to the dividing plate, the bottom of the feeding pipe is fixedly connected to the fixing seat, the fixing seat is detachably connected to the top of the support plate, and by heating iron sand as a medium for heat treatment, it is beneficial for the alloy target to receive heat more stably, make the micro grains after heat treatment more uniform, and help improve the quality of heat treatment.

[0004] The above-mentioned problem exists that after the heat treatment is completed, the bottom plate is opened and the iron sand falls into the collection tank and is transported for recycling by the pressure pump. However, when the iron sand falls, friction will be generated between each other, causing the volume of some iron sand to become smaller. The uneven size of the iron sand may cause uneven heating of the target material. Summary of the Invention

[0005] The purpose of the utility model is to solve the shortcomings of the prior art and to propose an alloy target material heat treatment device.

[0006] In order to achieve the above purpose, the present invention adopts the following technical solutions:

[0007] The top of the box body is provided with a first end and a second end of the box body is provided with a first trough body, and the second end of the box body is provided with a second trough body.

[0008] Preferably, a pump body is installed at one end of the box body, one end of the pump body is connected to the box body, one end of the pump body is connected to a pipe group, and one end of the pipe group passes through the door body.

[0009] Preferably, baffles are connected to one end and the other end of the mesh plate.

[0010] Preferably, an opening is provided at one end of the bin to be processed.

[0011] Preferably, a sealing gasket is adhered to the joint between the door body and the box body.

[0012] Preferably, one end of the plate is connected to a handle.

[0013] Preferably, one end and the other end of the box body are both threadedly connected with bolts, and two groups of the bolts are tightly pressed against the plate body.

[0014] The beneficial effects of the utility model are:

[0015] 1. Through the cooperation between the dual-axis motor, rocker and connecting piece, after the heat treatment of the target material is completed, the plate body is pulled out to make the iron sand fall onto the screen plate, and the dual-axis motor is started to drive the rocker to slide in the second trough body, and then the screen plate is driven to slide in the first trough body through the contact between the connecting piece and the screen plate. After the connecting piece is out of contact with the screen plate, the screen plate is reset under the action of the spring, and the dual-axis motor continues to rotate to drive the connecting piece to intermittently contact the screen plate, and the screen plate vibrates, which speeds up the screening of iron sand. The fine iron sand is screened into the waiting bin, and the rest of the iron sand slides into the placement bin for recycling. To a certain extent, the problem of uneven heating of the target material due to uneven size of iron sand is avoided;

[0016] 2. Through the coordination between the pump body, pipe group and door body, open the door body to place the target material in the mesh frame, start the pump body to transport the iron sand into the box body, start the heating plate, and heat the target material by transferring heat through the iron sand, thus realizing the recycling of iron sand and saving resources to a certain extent. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 This is a schematic structural diagram of an alloy target heat treatment device proposed in the present invention;

[0018] Figure 2 for Figure 1 Schematic diagram of the structure of the middle wheel body, dual-axis motor and rocker;

[0019] Figure 3 for Figure 1 Schematic diagram of the structure of the middle bolt, handle and plate;

[0020] Figure 4 for Figure 1 Schematic diagram of the structure of the middle box, door and mesh panel;

[0021] Figure 5 for Figure 4 Schematic diagram of the structure of the middle tube group, sealing gasket and screen frame.

[0022] In the figure: 1. Box body; 2. Door body; 3. Screen frame; 4. Heating plate; 5. Plate body; 6. Screen plate; 7. First trough body; 8. Spring; 9. Wheel body; 10. Connector; 11. Second trough body; 12. Dual-axis motor; 13. Rocker; 14. Storage bin; 15. Waiting bin; 16. Baffle; 17. Sealing gasket; 18. Pump body; 19. Pipe group; 20. Handle; 21. Bolt. DETAILED DESCRIPTION

[0023] The technical solutions in the embodiments of the present invention will be described clearly and completely below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.

[0024] Example 1, with reference to Figures 1 to 5A device for heat treating alloy targets includes a box body 1, a door body 2 is hinged at one end of the box body 1, a mesh frame 3 is connected to one end of the door body 2, and an opening is opened at one end of the mesh frame 3 for placing the target. A plurality of heating plates 4 are installed inside the box body 1, and the heating plates 4 heat treat the target through the heat transfer of the iron sand. A plate body 5 is movable through the opening pre-opened at one end of the box body 1, and the iron sand slides onto the mesh plate 6 when the plate body 5 is pulled. The mesh plate 6 is provided in the box body 1, and the mesh plate 6 screens the iron sand that has become smaller due to wear to be processed. In the warehouse 15, a first groove body 7 is opened at one end and the other end of the box body 1, and two groups of first groove bodies 7 are slidingly connected to the mesh plate 6. The first groove body 7 guides the mesh plate 6. One end of the two groups of first groove bodies 7 is connected to a spring 8, and the spring 8 gives the mesh plate 6 a downward force. One end of the two groups of springs 8 is connected to the mesh plate 6. One end and the other end of the mesh plate 6 are rotatably connected to a wheel body 9. The wheel body 9 can rotate, which to a certain extent avoids the problem of wear caused by frequent contact with the connecting piece 10. One end and the other end of the box body 1 are rotatably connected to the connecting piece 10. The connecting piece 10 drives the mesh plate 6 to move, and the two sets of connecting pieces 10 are respectively fitted with the corresponding wheel bodies 9. A dual-axis motor 12 is installed at one end of the box body 1. The model of the dual-axis motor 12 can be selected according to actual conditions. One end and the other end of the dual-axis motor 12 are connected to a rocker 13. The dual-axis motor 12 drives the rocker 13 to rotate. A second groove 11 is opened on the two sets of connecting pieces 10. The two sets of rockers 13 are respectively connected to the corresponding second groove 11 for sliding. The rocker 13 slides in the second groove 11 to drive the connecting piece 10 to move. The connecting piece 10 The contact with the mesh plate 6 drives the mesh plate 6 to move. After the contact is broken, the mesh plate 6 is reset under the action of the spring 8, and the dual-axis motor 12 continues to rotate. The purpose of vibrating the mesh plate 6 is achieved through the connecting piece 10, thereby accelerating the screening process of the iron sand. The bottom of the box body 1 is divided into a placement bin 14 and a waiting bin 15. The placement bin 14 is used to place the iron sand to be recycled, and the waiting bin 15 is used to place the screened fine iron sand. The screening of the iron sand by the mesh plate 6 can avoid the problem of uneven heating of the target material due to the different sizes of the iron sand to a certain extent.

[0025] In this embodiment, a pump 18 is mounted on one end of the housing 1. Pump 18 is a sand pump. The model of pump 18 can be selected based on actual conditions. One end of pump 18 is connected to housing 1. A pipe assembly 19 is connected to one end of pump 18. One end of pipe assembly 19 passes through door 2. The portion of pipe assembly 19 located horizontally above door 2 is a flexible hose, facilitating the opening and closing of door 2. When pump 18 is activated, the iron sand in storage bin 14 is transported to housing 1 via pipe assembly 19, thereby recycling the iron sand and saving resources to a certain extent. Baffles 16 are connected to one and the other ends of mesh plate 6 to prevent the iron sand from slipping out of first trough 7 to a certain extent. An opening is provided at one end of the storage bin 15 to be processed, through which the fine iron sand in storage bin 15 can be removed. A sealing gasket 17 is adhered to the joint between door 2 and housing 1 to prevent air from entering housing 1 to a certain extent, thereby preventing the iron sand from oxidizing and reacting with air, which could cause the iron sand to adhere to the target material. One end of the plate 5 is connected to a handle 20, which is made of heat-insulating material. The handle 20 makes it easier to pull out the plate 5. Bolts 21 are threadedly connected to one end and the other end of the box 1. Two sets of bolts 21 are tightly pressed against the plate 5. Screwing in the bolts 21 fixes the plate 5, preventing the plate 5 from slipping due to external factors to a certain extent.

[0026] The working principle of this embodiment is as follows: when in use, the door body 2 is opened, the target material is placed in the mesh frame 3, the pump body 18 is started to transport the iron sand in the placement bin 14 into the box body 1 through the pipe group 19, and the heating plate 4 is started to heat-treat the target material through the heat transfer of the iron sand. After the heat treatment of the target material is completed, the plate body 5 is pulled out, and the iron sand slides onto the mesh plate 6, and the dual-axis motor 12 is started to drive the rocker 13 to rotate. The rocker 13 slides in the second trough body 11 and drives the connecting member 10 to rotate and contact the wheel body 9, driving the mesh plate 6 to slide in the first trough body 7, and the connecting member 10 is out of contact with the mesh plate 6. The mesh plate 6 is reset under the action of the spring 8, and the dual-axis motor 12 drives the connecting member 10 to intermittently contact the mesh plate 6, vibrating the mesh plate 6 to speed up the screening of the iron sand. The fine part of the iron sand is screened into the waiting bin 15, and the rest of the iron sand slides to the placement bin 14 for recycling, avoiding the problem of uneven size of iron sand to a certain extent.

[0027] The above is only a preferred specific implementation method of the present invention, but the protection scope of the present invention is not limited to this. Any technician familiar with the technical field within the technical scope disclosed by the present invention can make equivalent replacements or changes based on the technical solution and utility model concept of the present invention, which should be covered by the protection scope of the present invention.

Claims

1. An alloy target heat treatment device, comprising a box (1), characterized in that: One end of the box body (1) is hinged with a door body (2), and one end of the door body (2) is connected to a screen frame (3). A plurality of groups of heating plates (4) are installed inside the box body (1). A plate body (5) is movably passed through an opening pre-opened at one end of the box body (1). A screen plate (6) is provided inside the box body (1). One end and the other end of the box body (1) are provided with a first slot body (7). Two groups of the first slot bodies (7) are slidably connected to the screen plate (6). One end of each of the two groups of the first slot bodies (7) is connected to a spring (8). One end of each of the two groups of the springs (8) is connected to the screen plate (6). The screen plate (6) One end and the other end are both rotatably connected to a wheel body (9), one end and the other end of the box body (1) are both rotatably connected to a connecting piece (10), two groups of the connecting pieces (10) are respectively fitted with the corresponding wheel bodies (9), a dual-axis motor (12) is installed at one end of the box body (1), one end and the other end of the dual-axis motor (12) are both connected to a rocker (13), a second groove body (11) is opened on the two groups of the connecting pieces (10), and the two groups of the rocker (13) are respectively slidably connected to the corresponding second groove body (11), and the bottom of the box body (1) is divided into a placement bin (14) and a waiting bin (15).

2. The alloy target heat treatment device according to claim 1, characterized in that: A pump body (18) is installed at one end of the box body (1), one end of the pump body (18) is connected to the box body (1), one end of the pump body (18) is connected to a pipe group (19), and one end of the pipe group (19) passes through the door body (2).

3. The alloy target heat treatment device according to claim 1, characterized in that: One end and the other end of the mesh plate (6) are both connected to a baffle (16).

4. The alloy target heat treatment device according to claim 1, characterized in that: One end of the storage bin (15) to be processed is provided with an opening.

5. The alloy target heat treatment device according to claim 1, characterized in that: A sealing gasket (17) is adhered to the joint between the door body (2) and the box body (1).

6. The alloy target heat treatment device according to claim 1, characterized in that: One end of the plate body (5) is connected to a handle (20).

7. The alloy target heat treatment device according to claim 1, characterized in that: One end and the other end of the box body (1) are both threadedly connected with bolts (21), and two groups of the bolts (21) are tightly pressed against the plate body (5).