Scrap remover of peeler
By designing a chip remover for a peeling machine, using sealed pipes and air tanks to provide compressed air, and combining it with a servo motor that automatically adjusts the blowing direction, the problems of chip backflow and scattering are solved, achieving efficient collection and centralized discharge, and improving the cleanliness of the processing environment and ease of operation.
Patent Information
- Application Number
- CN202520250103.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-17
- Publication Date
- 2025-12-23
- Estimated Expiration
- 2035-02-17
AI Technical Summary
During the processing of titanium alloy materials such as titanium rods and titanium tubes, the debris generated during cutting operations mixes with the saponification liquid and flows back into the machine body, affecting the normal operation of the peeling machine. Furthermore, the debris scatters and pollutes the environment, leading to cleaning difficulties and increased costs.
Design a chip remover for a peeling machine. It uses sealed pipes and an air tank to provide compressed air, and adjusts the blowing direction through a sealed sleeve and an extension to achieve effective collection of chips and discharge to a designated area. Combined with a servo motor, it automatically adjusts the blowing angle to avoid manual operation.
It effectively prevents debris from flowing back with the saponification liquid, ensuring the normal operation of the peeling machine, and collects the debris in a designated area, simplifying the cleaning process and reducing environmental pollution and costs.
Smart Images

Figure CN223700197U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a skinning machine technical field especially relates to a skinning machine chip cleaner. BACKGROUND
[0002] In the processing of titanium alloy materials such as titanium rod and titanium tube, the skinning treatment is a crucial process, which aims to effectively remove the oxide skin and other impurities formed on the surface of the titanium material by the skinning machine to ensure the quality of the product and the smooth progress of the subsequent processing. In this process, the cutting knife is used for precise cutting operation on the surface of the titanium material, and the cutting operation produces debris, which usually presents a spiral or flocculent form. However, these debris will mix with the saponification liquid used in the processing process and flow back into the machine body, affecting the normal operation of the skinning machine. In addition, the debris splashed along the chip outlet will also pollute the working environment, bringing great inconvenience and additional cost to the subsequent cleaning work.
[0003] Therefore, it is necessary to design a skinning machine chip cleaner that can effectively prevent debris from flowing back into the machine body with the saponification liquid and prevent debris from scattering everywhere. SUMMARY
[0004] In order to overcome the shortcomings in the above background art, the purpose of the utility model is to provide a skinning machine chip cleaner that can efficiently prevent debris from flowing back with the saponification liquid and can collect debris in a designated area.
[0005] The technical scheme is as follows: a skinning machine chip cleaner, comprising a sealing pipe and a gas tank in communication with the pipe, the pipe is provided with a first air inlet and a first air outlet; the first air outlet has multiple, which are uniformly arranged on the length direction of the pipe side wall; the pipe is externally provided with a sealing sleeve, the sealing sleeve is provided with a second air inlet in communication with the first air inlet, and a second air outlet in communication with the first air outlet, the aperture of the second air outlet is larger than that of the first air outlet, at least one end of the pipe is formed with an extension, the extension is coaxial with the pipe, the extension extends outwardly from the sealing sleeve, and the extension and the sealing sleeve are in sealing connection.
[0006] As a further preferred scheme, the side wall of the sealing sleeve is connected with a bypass pipe, the second air inlet is provided in the side wall of the sealing sleeve and is in communication with the bypass pipe.
[0007] As a further preferred scheme, the end of the bypass pipe away from the sealing sleeve is provided with a valve, the valve is connected with a hose, and the other end of the hose is connected to the gas tank.
[0008] As a further preferred scheme, the end of the sealing sleeve opposite to the extension is connected with a bypass pipe, and the second air inlet is provided in the end and is in communication with the bypass pipe.
[0009] As a further preferred embodiment, a valve is provided at the end of the bypass pipe away from the first air inlet, the valve is connected to a hose, and the other end of the hose is connected to a gas cylinder.
[0010] As a further preferred embodiment, the rotatable angle of the fitting relative to the sealing sleeve is not less than 180 degrees.
[0011] As a further preferred embodiment, a servo motor is provided on the outer wall of the sealing sleeve. The servo motor's shaft is coaxial with and connected to the extension. The servo motor integrates a wireless receiving module for receiving commands from the remote controller.
[0012] This utility model has the following advantages: by installing this chip remover below the pin outlet of the peeling machine, compressed air is used to clean the backflowing titanium pins, thereby achieving the purpose of removing the pins. The pipe fittings of this chip remover can move within the sealed sleeve, thereby adjusting the direction of air blowing.
[0013] In addition, by setting a servo motor, the blowing angle can be automatically adjusted without manual operation, making adjustment more convenient. Attached Figure Description
[0014] Figure 1 This is a three-dimensional structural diagram of the present invention.
[0015] Figure 2 This is a schematic diagram of the structure of Embodiment 1 of this utility model.
[0016] Figure 3 This is a partial exploded view of Embodiment 1 of this utility model.
[0017] Figure 4 This is a structural schematic diagram of Embodiment 2 of the present invention.
[0018] Figure 5 This is a partial exploded view of Embodiment 2 of this utility model.
[0019] The labels in the diagram are as follows: 1-pipe fitting, 11-first air inlet, 12-first air outlet, 2-sealing sleeve, 21-second air inlet, 22-second air outlet, 3-extension, 4a, 4b-bypass pipe, 5a, 5b-valve, 6a, 6b-hose, 7-servo motor, 8-mounting rod, 9-extension rod. Detailed Implementation
[0020] The technical solution will be further described below with reference to specific embodiments. It should be noted that the terms "up," "down," "left," and "right" used herein refer only to the position of the illustrated structure in the corresponding drawings. The component numbers used herein, such as "first," "second," etc., are merely for distinguishing the described objects and have no sequential or technical meaning. Furthermore, terms such as "connection" and "linkage," unless otherwise specified, include both direct and indirect connections.
[0021] Example 1
[0022] like Figures 1-3 The peeling machine chip remover shown specifically includes a sealing pipe 11 and an air tank. The air tank provides compressed air to the pipe 11. The pipe 1 has a first air inlet 11 and a first air outlet 12. Multiple first air outlets 12 are provided and are evenly arranged along the length of the side wall of the pipe 1. A sealing sleeve 2 is fitted over the outside of the pipe 1. The pipe 1 and the sealing sleeve 2 are rotatably fitted and connected by a movable sealing type. A second air inlet 21 communicating with the first air inlet 11 and a second air outlet 22 communicating with the first air outlet 12 are provided on the sealing sleeve 2. The diameter of the second air outlet 22 is larger than that of the first air outlet 12, so that the second air outlet 22 of the first air outlet 12 remains connected after the pipe 1 is rotated by a certain angle.
[0023] Specifically, in this embodiment, the second air inlet 21 is formed on the side wall of the sealing sleeve 2, as shown in the reference. Figure 3 A bypass pipe 4a is connected to the side wall of the sealing sleeve 2. The second air inlet 21 is connected to the bypass pipe 4a. A valve 5a is provided at the end of the bypass pipe 4a away from the sealing sleeve 2. The valve 5a is connected to the hose 6a, and the other end of the hose 6a is connected to the air tank. The air tank provides compressed gas, which enters the pipe fitting 1 through the second air inlet 21 and the first air inlet 11 after passing through the hose 6a and the bypass pipe 4a, and is discharged through each of the first air outlets 12. When this chip remover is installed at the chip discharge port of the peeling machine, it can blow the waste chips away from the peeling machine and drop them into a designated area. In addition, an extension 3 is formed at at least one end of the pipe fitting 1. The extension 3 is coaxial with the pipe fitting 1 and extends outward from the sealing sleeve 2. By rotating the extension, the pipe fitting 1 can be rotated, thereby adjusting the direction and position of the first air inlet 11 and realizing the adjustment of the blowing direction. It should be noted that the extension 3 and the sealing sleeve 2 are sealed to prevent air leakage at the connection and affect the blowing effect.
[0024] In addition, a mounting rod 8 is fixed on the first air outlet 12. The mounting rod 8 is used to install the chip remover on the peeling machine.
[0025] Example 2
[0026] This implementation is basically the same as Example 1, except that...
[0027] like Figure 1 and Figures 4-5 As shown, in this embodiment, the second air inlet 21 is opened on the sealing sleeve 2 at the end opposite to the extension 3, and the first air inlet 11 is also opened at the same end. The bypass pipe 4b is installed at and communicates with the second air inlet 21. A valve 5b is provided on the bypass pipe 4b, and one end of the hose 6b is connected to the valve 5b, while the other end is connected to the gas tank. Unlike the side air supply in Embodiment 1, this embodiment uses end air supply. In addition, an extension rod 9 is fixed on the sealing sleeve 2, and an installation rod 8 is fixed at the lower end of the extension rod 9.
[0028] It should be noted that in the above embodiments, the rotatable angle of the pipe 1 relative to the sealing sleeve 2 is not less than 180 degrees. This allows the first air inlet 11 to blow air in at least two opposite directions.
[0029] In addition, a servo motor 7 is installed on the outer wall of the sealing sleeve 2. The rotating shaft of the servo motor 7 is coaxial with and connected to the extension 3. The servo motor 7 integrates a wireless receiving module for receiving commands from the remote control. By installing the servo motor 7, the operator can remotely control the direction of air blowing without manual adjustment.
[0030] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that variations may be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A chip remover for a peeling machine, comprising a sealed pipe (1) and an air tank communicating with said pipe (1), characterized in that, The pipe fitting (1) is provided with a first air inlet (11) and a first air outlet (12); There are multiple first air outlets (12), which are evenly arranged along the length direction on the side wall of the pipe fitting (1); a sealing sleeve (2) is fitted on the outside of the pipe fitting (1), and a second air inlet (21) communicating with the first air inlet (11) and a second air outlet (22) communicating with the first air outlet (12) are opened on the sealing sleeve (2). The diameter of the second air outlet (22) is larger than that of the first air outlet (12). At least one end of the pipe fitting (1) is formed with an extension (3). The extension (3) is coaxial with the pipe fitting (1). The extension (3) extends outward from the sealing sleeve (2), and the extension (3) and the sealing sleeve (2) are sealed together.
2. The chip remover for a peeling machine according to claim 1, characterized in that, The side wall of the sealing sleeve (2) is connected to a bypass pipe (4a), and the second air inlet (21) is opened on the side wall of the sealing sleeve (2) and communicates with the bypass pipe (4a).
3. The chip remover for a peeling machine according to claim 2, characterized in that, A valve (5a) is provided at one end of the bypass pipe (4a) away from the sealing sleeve (2). The valve (5a) is connected to the hose (6a), and the other end of the hose (6a) is connected to the gas cylinder.
4. The chip remover for a peeling machine according to claim 1, characterized in that, A bypass pipe (4b) is connected to one end of the sealing sleeve (2) opposite to the extension (3), and the second air inlet (21) is opened at this end and communicates with the bypass pipe (4b).
5. The chip remover for a peeling machine according to claim 4, characterized in that, A valve (5b) is provided at one end of the bypass pipe (4b) away from the first air inlet (11). The valve (5b) is connected to a hose (6b), and the other end of the hose (6b) is connected to a gas cylinder.
6. The chip remover for a peeling machine according to any one of claims 1-5, characterized in that, The rotatable angle of the pipe fitting (1) relative to the sealing sleeve (2) is not less than 180 degrees.
7. The chip remover for a peeling machine according to any one of claims 1-5, characterized in that, A servo motor (7) is provided on the outer wall of the sealing sleeve (2). The rotating shaft of the servo motor (7) is coaxial with and connected to the extension (3). The servo motor (7) is equipped with a wireless receiving module for receiving commands issued by the remote controller.