Surface cleaning mechanism used after titanium ingot smelting forming

By setting a positioning frame, a lower clamping plate, and an upper clamping plate on the fixed frame, and in conjunction with the cleaning component and the water spraying component, the problem of time-consuming and labor-intensive cleaning of titanium ingot surfaces is solved, achieving rapid and efficient cleaning of titanium ingot surfaces and improving work efficiency.

CN223655575UActive Publication Date: 2025-12-12SHAANXI XINCHENYAN METAL MATERIALS CO LTD
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Patent Information

Application Number
CN202423171946.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-23
Publication Date
2025-12-12
Estimated Expiration
2034-12-23

AI Technical Summary

Technical Problem

After titanium ingots are smelted, black and gray impurities remain on their surface. Cleaning is time-consuming and labor-intensive, especially since titanium ingot plates have a large surface area, which affects work efficiency.

Method used

A surface cleaning mechanism for titanium ingots after melting and forming is designed. By setting a positioning frame, a lower clamping plate and an upper clamping plate on a fixed frame, and cooperating with a cleaning component and a water spraying component, the titanium ingot plates can be suspended and flipped for cleaning, thus cleaning the surface of the titanium ingot quickly and efficiently.

Benefits of technology

This technology enables convenient and efficient cleaning of titanium ingot surfaces, improving work efficiency and reducing manual operation time.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a surface cleaning mechanism after titanium ingot smelting forming, and particularly relates to the technical field of titanium ingots, the surface cleaning mechanism comprises a fixing frame, and a linear guide rail is arranged on one side of the fixing frame. The two sets of positioning frames, the lower clamping plates and the upper clamping plates are arranged above the fixing frame in a bilateral symmetry mode, the distance between the left set of lower clamping plates and the right set of lower clamping plates can be adjusted according to the length of the titanium ingot plate, and the end of the titanium ingot plate can be accurately placed on the lower clamping plates and abut against the positioning frames. Then, the distance between the upper clamping plate and the lower clamping plate can be adjusted to clamp and fix the titanium ingot plate, so that the titanium ingot plate can be quickly and stably erected above the fixing frame in a suspended mode, then the cleaning assembly and the water spraying assembly are matched, the surface of the titanium ingot plate erected in the suspended mode can be washed and cleaned, and after one face is cleaned, the titanium ingot plate can be controlled to be turned over; therefore, the surface cleaning can be quickly realized, the operation is convenient and efficient, and the working efficiency is greatly improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to titanium ingot technical field, concretely relates to a titanium ingot surface cleaning mechanism after smelting forming. BACKGROUND

[0002] Titanium and titanium alloy ingot can be simply referred to as titanium ingot, and the raw material for producing the titanium ingot is titanium sponge. After high-temperature smelting, the titanium ingot can be obtained in a dense form, which is beneficial for further forging and pressing processing to form titanium material. Only when the titanium sponge is made into a dense forgeable metal, can it be mechanically processed and widely used in various industrial departments. Titanium and titanium-based alloys are new structural materials, mainly used in aerospace and marine industries.

[0003] At present, after the titanium ingot is smelted, there are black ash impurities on the surface of the formed titanium ingot, which usually needs to be cleaned. When cleaning the titanium ingot, especially for titanium ingot plates, it is very troublesome to clean due to the large surface area. Not only is it time-consuming and labor-intensive, but also after one side is cleaned, the worker needs to turn the titanium ingot plate to the other side for cleaning, which greatly affects the work efficiency. UTILITARIAN CONTENT

[0004] The utility model discloses a titanium ingot surface cleaning mechanism after smelting forming, through the symmetry of two groups of positioning frame, lower batten and upper batten that are set up in the top of fixed frame, can adjust the distance between the left and right two groups of lower batten according to the length of titanium ingot plate piece, make the end of titanium ingot plate piece can be placed on the lower batten and lean on the positioning frame, then can adjust the interval between the upper batten and the lower batten and clamping fixed it, can quickly and stably set up the titanium ingot plate piece in the top of fixed frame in the air, then cooperate with the cleaning assembly and water spraying assembly, can wash the surface of the titanium ingot plate piece set up in the air, after one side is cleaned, can control the titanium ingot plate piece to turn over and change the surface, so as to clean the other side, and then the surface cleaning can be quickly realized, convenient and efficient operation, greatly improve the work efficiency, to solve the above insufficient place in the technology.

[0005] In order to realize the above-mentioned purpose, the utility model provides the following technical scheme: a titanium ingot surface cleaning mechanism after smelting forming, comprising:

[0006] The fixed frame is provided with a linear guide rail on one side, and a drain pipe is arranged on the bottom end side wall of the fixed frame. The side wall of the linear guide rail is connected with an L-shaped fixing arm through a sliding seat. The top end of the L-shaped fixing arm is provided with a cleaning assembly and a water spraying assembly.

[0007] The top end of the fixed frame is fixedly connected with a second air cylinder through a support on both sides, the output end of the second air cylinder is connected with a support frame above the fixed frame, a second motor is fixed on the outer side of the support frame, the output end of the second motor penetrates through the support frame and is connected with a positioning frame, a lower clamping plate is fixed on the inner side bottom end of the positioning frame on both sides, a sliding cavity is formed above the lower clamping plate on both sides of the inner side of the positioning frame, movable blocks are arranged in the sliding cavities, and the end of the movable blocks extending to the outside of the sliding cavities is connected with an upper clamping plate above the lower clamping plate.

[0008] Preferably, the cleaning assembly comprises a first air cylinder fixed at the top end of the L-shaped fixed arm, and the output end of the first air cylinder is connected with a fixed plate facing the fixed frame, and the bottom side of the fixed plate is provided with a brush plate.

[0009] Preferably, the water spraying assembly comprises a water pump fixed at the top side of the L-shaped fixed arm, one end of the water pump is connected with a U-shaped connecting pipe, the other end of the water pump is connected with a water supply hose, and the two ends of the U-shaped connecting pipe are connected with spray heads on both sides of the brush plate.

[0010] Preferably, the bottom side of the upper clamping plate and the top side of the lower clamping plate are provided with rubber pads.

[0011] Preferably, the bottom side of the positioning frame is provided with a connecting frame, the inner side of the sliding cavities is rotatably connected with threaded columns through bearings, the movable blocks are connected with the threaded columns outside through threaded rotation, the bottom end of the threaded columns extends to the outside of the connecting frame and is provided with second synchronous gears, the bottom middle of the connecting frame is fixedly connected with a first motor, the output end of the first motor extends to the inside of the connecting frame and is provided with a first synchronous gear, and the first synchronous gear and the two second synchronous gears are sleeved with a synchronous gear belt.

[0012] Preferably, the bottom end of the support frame is fixedly connected with a reinforcing plate, the reinforcing plate is above the fixed frame, and a guide assembly is arranged between the reinforcing plate and the fixed frame.

[0013] Preferably, the guide assembly comprises sliding blocks fixedly arranged at both ends of the bottom side of the reinforcing plate, and sliding grooves matched with the sliding blocks are formed on both sides of the top of the fixed frame.

[0014] In the above technical scheme, the technical effects and advantages of the utility model are provided.

[0015] By symmetrically arranging two sets of positioning frames, movable blocks, lower clamping plates and upper clamping plates above the fixed frame, the distance between the left and right lower clamping plates can be adjusted according to the length of the titanium ingot plate, so that the end of the titanium ingot plate can be accurately placed on the lower clamping plate and abut against the positioning frame, then the distance between the upper clamping plate and the lower clamping plate can be adjusted, so that the two sets of upper clamping plates and lower clamping plates clamp and fix the ends of the titanium ingot plate, thereby the titanium ingot plate can be quickly and stably suspended above the fixed frame, then cooperating with the cleaning assembly and the water spraying assembly, the surface of the suspended titanium ingot plate can be washed and cleaned, after one side is cleaned, the positioning frame can drive the titanium ingot plate to rotate, so that the titanium ingot plate can be turned over to clean the other side, under the cooperation of the structure, the surface cleaning of the titanium ingot after melting and forming can be quickly realized, which is convenient and efficient, and the work efficiency is greatly improved. BRIEF DESCRIPTION OF DRAWINGS

[0016] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the drawings needed in the embodiments will be briefly introduced below. Obviously, the drawings in the following description are only some embodiments described in the present application, and other drawings can also be obtained by those skilled in the art according to these drawings.

[0017] Figure 1 It is one of the overall structure schematic diagram of the present application;

[0018] Figure 2 It is the second overall structure schematic diagram of the present application;

[0019] Figure 3 It is the structure schematic diagram of the reinforcing plate and the positioning frame connection of the present application;

[0020] Figure 4 It is the structure schematic diagram of the positioning frame, the upper clamping plate and the lower clamping plate connection of the present application;

[0021] Figure 5 It is the longitudinal sectional view of the positioning frame and the connecting frame of the present application.

[0022] Explanation of reference signs:

[0023] 1, fixed frame; 2, drain pipe; 3, linear guide rail; 4, L-shaped fixed arm; 5, first air cylinder; 6, fixed plate; 7, brush plate; 8, water pump; 9, water supply hose; 10, U-shaped connecting pipe; 11, spray head; 12, second air cylinder; 13, support frame; 14, reinforcing plate; 15, sliding block; 16, sliding groove; 17, positioning frame; 18, sliding cavity; 19, movable block; 20, upper clamping plate; 21, lower clamping plate; 22, connecting frame; 23, first motor; 24, first synchronous gear; 25, second synchronous gear; 26, synchronous gear belt; 27, threaded column; 28, second motor. Detailed Implementation

[0024] To enable those skilled in the art to better understand the technical solution of this utility model, the present utility model will be further described in detail below with reference to the accompanying drawings.

[0025] This utility model provides, for example Figures 1-5 The above describes a surface cleaning mechanism for titanium ingots after melting and forming, comprising:

[0026] A fixed frame 1 is provided with a linear guide rail 3 on one side, and a drain pipe 2 is provided on the bottom side wall of the fixed frame 1. An L-shaped fixed arm 4 is connected to the side wall of the linear guide rail 3 through a slide block. A cleaning component and a water spraying component are provided at the top of the L-shaped fixed arm 4.

[0027] The cleaning assembly includes a first cylinder 5 fixed to the top of an L-shaped fixed arm 4. The output end of the first cylinder 5 is connected to a fixed plate 6 facing the fixed frame 1. A brush plate 7 is provided on the bottom side of the fixed plate 6.

[0028] The water spray assembly includes a water pump 8 fixed to the top side of an L-shaped fixed arm 4. One end of the water pump 8 is connected to a U-shaped connecting pipe 10, and the other end of the water pump 8 is connected to a water supply hose 9. Both ends of the U-shaped connecting pipe 10 are connected to nozzles 11 on both sides of the brush plate 7. Therefore, one end of the water supply hose 9 can be connected to a water storage tank or a faucet.

[0029] The first cylinder 5 drives the fixed plate 6 to rise and fall, which in turn drives the brush plate 7 to rise and fall. Then, the brush plate 7 is brought close to the surface of the titanium ingot plate. After that, the linear guide rail 3 drives the L-shaped fixed arm 4 to move back and forth, which in turn drives the brush plate 7 to move back and forth. At the same time, the water pump 8 is started, and water is introduced into the U-shaped connecting pipe 10 through the water supply hose 9. Then, the water is sprayed onto the titanium ingot plate by the nozzle 11, thereby cleaning the surface of the titanium ingot plate.

[0030] The top two sides of the fixed frame 1 are fixedly connected to the second cylinder 12 by brackets. The output ends of the two second cylinders 12 are connected to the support frame 13 above the fixed frame 1. The second motor 28 is fixed to the outside of the support frame 13. The output end of the second motor 28 passes through the support frame 13 and is connected to the positioning frame 17. The bottom two sides of the inner side of the positioning frame 17 are fixed with the lower clamping plate 21. The inner two sides of the positioning frame 17 are provided with the upper side of the lower clamping plate 21. The two sliding cavities 18 are provided with movable blocks 19 inside the two sliding cavities 18. The two movable blocks 19 are connected to the upper clamping plate 20 above the lower clamping plate 21 at the end of the sliding cavity 18.

[0031] The bottom side of the positioning frame 17 is provided with a connecting frame 22, the interiors of the two slide cavities 18 are each rotationally connected with a threaded column 27 through a bearing, the movable block 19 is connected on the outside of the threaded column 27 through screwing, the bottom ends of the two threaded columns 27 each extend to the outside of the connecting frame 22 and are provided with a second synchronous gear 25, the bottom middle of the connecting frame 22 is fixed with a first motor 23, the output end of the first motor 23 extends to the inside of the connecting frame 22 and is provided with a first synchronous gear 24, and the first synchronous gear 24 and the two second synchronous gears 25 are each sleeved with a synchronous gear belt 26.

[0032] In use, the two ends of the titanium ingot plate member can be respectively placed on the two groups of left-right symmetrical lower clamping plates 21, the support frame 13 can be driven to move by the second cylinder 12, the support frame 13 can drive the lower clamping plates 21 to move through the positioning frame 17, so that the distance between the two groups of left-right symmetrical lower clamping plates 21 can be adjusted according to the length of the titanium ingot plate member, and the end of the titanium ingot plate member can be accurately placed on the lower clamping plates 21, and then the two positioning frames 17 are controlled to move close to each other, so that the end of the titanium ingot plate member can abut against the positioning frame 17;

[0033] Then the first motor 23 is started, the first motor 23 drives the first synchronous gear 24 to rotate, the first synchronous gear 24 drives the two synchronous gear belts 26 to rotate, so that the synchronous gear belts 26 drive the two second synchronous gears 25 to rotate, and then the second synchronous gears 25 drive the threaded columns 27 to rotate, so that the threaded columns 27 drive the movable blocks 19 to slide in the slide cavities 18, and then the movable blocks 19 drive the upper clamping plates 20 to move, so that the distance between the upper clamping plates 20 and the lower clamping plates 21 can be quickly adjusted, the end of the titanium ingot plate member can be effectively clamped and fixed under the action of the two groups of upper clamping plates 20 and lower clamping plates 21, and then the titanium ingot plate member can be quickly and stably suspended above the fixed frame 1, and then the surface of the suspended titanium ingot plate member can be washed and cleaned in cooperation with the cleaning assembly and the water spraying assembly, after one side is washed, the second motor 28 is started, the second motor 28 drives the positioning frame 17 to rotate, and then the positioning frame 17 drives the titanium ingot plate member to rotate through the upper clamping plates 20 and the lower clamping plates 21, so that the titanium ingot plate member can be turned over to change the surface, so that the other side can be washed, and in cooperation with the structure, the surface washing after the titanium ingot is melted and formed can be quickly realized, the operation is convenient and efficient, and the working efficiency is greatly improved.

[0034] The bottom side of the upper clamping plate 20 and the top side of the lower clamping plate 21 are each provided with a rubber pad. The rubber pad can greatly enhance the anti-skid effect.

[0035] The bottom end of the support frame 13 is fixed with a reinforcing plate 14, the reinforcing plate 14 is located above the fixed frame 1, and the reinforcing plate 14 and the fixed frame 1 are provided with a guide assembly.

[0036] The guide assembly comprises sliding blocks 15 symmetrically fixed at both ends of the bottom side of the reinforcing plate 14, and both sides of the top of the fixed frame 1 are provided with sliding grooves 16 matched with the sliding blocks 15.

[0037] The reinforcing plate 14 can further support and reinforce the support frame 13, and the reinforcing plate 14 can drive the sliding blocks 15 to slide in the sliding grooves 16, so that the stability of the movement of the reinforcing plate 14 can be greatly ensured.

[0038] The above only describes some exemplary embodiments of the present application by way of illustration, without doubt, for ordinary skilled in the art, without departing from the spirit and scope of the present application, the described embodiments can be modified in various ways. Therefore, the above drawings and description are illustrative in nature and should not be construed as limiting the scope of protection of the present application.

Claims

1. A surface cleaning mechanism for titanium ingots after melting and forming, characterized in that, include: A fixed frame (1) is provided with a linear guide rail (3) on one side, and a drain pipe (2) is provided on the bottom side wall of the fixed frame (1). An L-shaped fixed arm (4) is connected to the side wall of the linear guide rail (3) through a slide block. A cleaning component and a water spraying component are provided at the top of the L-shaped fixed arm (4). The top two sides of the fixed frame (1) are fixedly connected to the second cylinder (12) by brackets. The output ends of the two second cylinders (12) are connected to the support frame (13) above the fixed frame (1). The second motor (28) is fixed to the outside of the support frame (13). The output end of the second motor (28) passes through the support frame (13) and is connected to the positioning frame (17). The bottom two sides of the inner side of the positioning frame (17) are fixed with the lower clamping plate (21). The two sides of the inner side of the positioning frame (17) are provided with the upper side of the lower clamping plate (21). The two sliding cavities (18) are provided with movable blocks (19) inside the two sliding cavities (18). The two movable blocks (19) are connected to the upper clamping plate (20) above the lower clamping plate (21) at the end of the two sliding blocks (19) extending to the outside of the sliding cavity (18).

2. The surface cleaning mechanism for titanium ingots after melting and forming according to claim 1, characterized in that: The cleaning assembly includes a first cylinder (5) fixed to the top of an L-shaped fixed arm (4), the output end of the first cylinder (5) is connected to a fixed plate (6) facing the fixed frame (1), and a brush plate (7) is provided on the bottom side of the fixed plate (6).

3. The surface cleaning mechanism for titanium ingots after melting and forming according to claim 2, characterized in that: The water spray assembly includes a water pump (8) fixed on the top side of the L-shaped fixed arm (4). One end of the water pump (8) is connected to a U-shaped connecting pipe (10), and the other end of the water pump (8) is connected to a water supply hose (9). Both ends of the U-shaped connecting pipe (10) are connected to nozzles (11) on both sides of the brush plate (7).

4. The surface cleaning mechanism for titanium ingots after melting and forming according to claim 1, characterized in that: Rubber pads are provided on the bottom side of the upper clamping plate (20) and the top side of the lower clamping plate (21).

5. The surface cleaning mechanism for titanium ingots after melting and forming according to claim 1, characterized in that: The bottom side of the positioning frame (17) is provided with a connecting frame (22). The interior of the two sliding cavities (18) is rotatably connected to threaded columns (27) through bearings. The movable block (19) is connected to the outside of the threaded columns (27) by threaded engagement. The bottom ends of the two threaded columns (27) extend to the outside of the connecting frame (22) and are provided with second synchronous gears (25). The bottom middle of the connecting frame (22) is fixed with a first motor (23). The output end of the first motor (23) extends into the connecting frame (22) and is provided with a first synchronous gear (24). Synchronous toothed belts (26) are sleeved between the first synchronous gear (24) and the two second synchronous gears (25).

6. The surface cleaning mechanism for titanium ingots after melting and forming according to claim 1, characterized in that: The bottom end of the support frame (13) is fixed with a reinforcing plate (14), which is located above the fixed frame (1), and a guide component is provided between the reinforcing plate (14) and the fixed frame (1).

7. The surface cleaning mechanism for titanium ingots after melting and forming according to claim 6, characterized in that: The guide assembly includes sliders (15) symmetrically fixed at both ends of the bottom side of the reinforcing plate (14), and the top two sides of the fixing frame (1) are provided with grooves (16) that match the sliders (15).