Continuous feeding machine for pipe material processing

By designing a continuous loading machine for pipe materials processing, the matching mechanism of the stop plate and the resistor plate is used to adapt to pipe materials of different specifications, and the screw rod is driven by a dual-axis motor to make the push plates close to each other, pushing the pipe materials in the center, solving the complexity and efficiency problems of mold replacement in the prior art, and achieving continuous automatic loading and high-efficiency loading of pipe materials.

CN222860415UActive Publication Date: 2025-05-13GUANGZHOU BEUNT MACHINERY EQUIP
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Patent Information

Application Number
CN202421973009.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-14
Publication Date
2025-05-13
Estimated Expiration
2034-08-14

AI Technical Summary

Technical Problem

The existing automatic feeding method of pipe materials needs to be replaced when processing pipe materials of different sizes, which increases operational complexity and time cost, and cannot effectively deal with pipe materials with large diameter differences, and the scope of application is limited.

Method used

A continuous loading machine for pipe material processing is designed, using the matching mechanism between the material barrier plate and the material barrier plate. Through the coordination of electric push rods and screws, the position of the material barrier plates is adjusted to adapt to pipe materials of different specifications. The screw rod is driven by a dual-axis motor to make the push plates approach each other and push the pipe materials in the center.

Benefits of technology

It realizes continuous automatic loading of pipe materials, and is suitable for pipe materials of different specifications, avoids interruptions in loading operations, improves loading efficiency, and improves production consistency and quality control.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of pipe material processing and feeding, and particularly relates to a continuous feeding machine for pipe material processing, which comprises a rack, a material storage frame, a concentric-square-shaped plate, a material blocking plate, a telescopic frame, a material blocking plate and the like, the material storage frame is obliquely arranged at the top of the rack, the front side of the material storage frame is connected with the concentric-square-shaped plate, and the material blocking plate capable of moving up and down is arranged at the bottom of the concentric-square-shaped plate. A telescopic frame is connected to the lower portion of the material blocking plate, and a material blocking plate capable of moving front and back is arranged on the upper portion of the telescopic frame. According to the pipe feeding device, through cooperation of the material blocking plate and the material blocking plate, it can be ensured that pipe materials are continuously and automatically fed one by one, the position of the material blocking plate can be adjusted in the front-back direction by rotating the screw rod so as to adapt to the pipe materials of different specifications, the application range is wide, interruption of pipe material feeding operation is avoided, it can be ensured that pipe material feeding is continuously conducted, and therefore the feeding efficiency can be improved.
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Description

Technical Field

[0001] The utility model belongs to the technical field of pipe material processing and feeding, in particular to a pipe material processing continuous feeding machine. Background Art

[0002] In the processing of cutting, bending, expanding / shrinking, stamping, surface treatment, etc. of pipe materials, automatic feeding is usually adopted to automatically feed the pipe materials. The existing automatic feeding methods of pipe materials are mostly ladder-type feeding, which separates each pipe material by physical methods such as progressive layers, and gradually rises to feed the material. When it is necessary to separate pipe materials of different sizes and specifications, the existing ladder-type feeding structure usually adopts the method of replacing molds, that is, replacing the molds that bear the pipe materials. Replacing the corresponding molds according to pipe materials of different specifications will increase the complexity and time cost of the operation, and will cause the pipe material feeding operation to be interrupted, affecting the feeding efficiency. In addition, the method of replacing molds to separate pipe materials of different sizes and specifications can only process pipe materials with a small difference in diameter (usually not more than twice), and may not be able to effectively separate pipe materials with large diameter differences. It is not suitable for applications that require processing pipe materials of multiple specifications, and the scope of application is limited. Utility Model Content

[0003] The purpose of the utility model is to provide a pipe material processing continuous feeding machine which can be applicable to pipe materials of different specifications in order to solve the above-mentioned problem.

[0004] The utility model achieves the above-mentioned purpose through the following technical scheme: a continuous feeding machine for pipe material processing, comprising a frame and a material storage frame, the material storage frame is obliquely installed on the top of the frame, and also comprises an electric push rod, a return plate, a material baffle plate, a telescopic frame, a screw and a material baffle plate, the front side of the material storage frame is connected with the return plate, the bottom of the return plate is provided with a material baffle plate that can move up and down, an electric push rod is installed on the lower front side of the frame, the push rod of the electric push rod is connected to the bottom of the material baffle plate, the lower part of the material baffle plate is connected with the telescopic frame, the telescopic frame is slidably connected to the return plate, the upper part of the telescopic frame is provided with a material baffle plate that can move forward and backward, the material baffle plate is located on the rear side of the material baffle plate, the upper part of the material baffle plate is threadedly connected with the screw, and the screw is rotatably connected to the upper part of the telescopic frame.

[0005] Preferably, the telescopic frame includes a telescopic rod, a horizontal plate, a guide rod II and an elastic member. The lower parts of the left and right sides of the material blocking plate are connected with telescopic rods. The telescopic rods pass through the bottom of the Hui-shaped plate. A horizontal plate is connected between the two telescopic rods. The horizontal plate is located inside the Hui-shaped plate. An elastic member is connected between the horizontal plate and the telescopic rod. The horizontal plate is connected with guide rod II. The material blocking plate is slidably connected to the guide rod II, and the screw is rotatably connected to the horizontal plate.

[0006] Preferably, the thickness of the material blocking plate gradually decreases from top to bottom.

[0007] Preferably, it also includes a guide rod I, a push plate and a driving member, the bottom front side of the material storage frame is connected to the guide rod I, two left and right push plates are slidably connected to the guide rod I, the push plate is slidably connected to the bottom of the material storage frame, and the bottom rear side of the material storage frame is provided with a driving member for driving the two push plates to move closer to and away from each other.

[0008] Preferably, the driving member includes a double-axis motor and a screw rod. The double-axis motor is installed on the bottom rear side of the storage frame. The output shafts on both sides of the double-axis motor are connected to screw rods, and the two screw rods are respectively threadedly connected to the two push plates.

[0009] Preferably, a buffer plate is connected to each other on one side of the two push plates that are close to each other.

[0010] Preferably, a lifting rod is also included, and two guide sleeves are symmetrically connected to the front side of the frame, and the lifting rods are slidably connected in the two guide sleeves, and the top of the lifting rod is connected to the bottom of the baffle plate.

[0011] The beneficial effects of the utility model are:

[0012] 1. By utilizing the cooperation of the baffle plate and the blocking plate, it is possible to ensure that the pipes are fed automatically and continuously one by one. The position of the blocking plate can be adjusted in the front and rear directions by rotating the screw rod to adapt to pipes of different specifications. It has a wide range of applications and avoids interruptions in the feeding operation of the pipes. It can ensure the continuity of the feeding of the pipes, thereby improving the feeding efficiency. It solves the problem in the prior art that the corresponding molds need to be replaced according to the pipes of different specifications, which increases the complexity of the operation and the time cost, causes the interruption of the feeding operation of the pipes, and affects the feeding efficiency.

[0013] 2. The dual-axis motor can drive the two screws to rotate synchronously, so that the two push plates can be close to each other to push the tube to the center, so as to avoid the tube from tilting when loading, which helps to keep the tube in the correct position and ensure that the tube is in the same position each time it is loaded, which helps to improve production consistency and quality control and reduce the need for manual adjustment. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 It is a three-dimensional structural schematic diagram of the utility model.

[0015] Figure 2 The utility model is a connection diagram of the material storage frame, the double-axis motor, the lead screw, the push plate and the guide rod I.

[0016] Figure 3 The utility model is a three-dimensional structural schematic diagram of a double-axis motor, a lead screw, a push plate and a guide rod I.

[0017] Figure 4 It is a schematic diagram of the connection between the telescopic frame and the baffle plate of the utility model.

[0018] Figure 5 It is a schematic diagram of the connection between the telescopic frame and the material blocking plate of the utility model.

[0019] The markings in the accompanying drawings are: 1-frame, 2-material storage frame, 3-dual-axis motor, 4-screw, 5-push plate, 6-guide rod I, 7-electric push rod, 8-lifting rod, 9-return plate, 10-material blocking plate, 11-telescopic rod, 12-cross plate, 13-screw, 14-guide rod II, 15-material blocking plate, 16-elastic part. DETAILED DESCRIPTION

[0020] The present application is further described in detail below in conjunction with the accompanying drawings. It is necessary to point out here that the following specific implementation methods are only used to further illustrate the present application and cannot be understood as limiting the scope of protection of the present application. Technical personnel in this field can make some non-essential improvements and adjustments to the present application based on the above application content.

[0021] A continuous feeding machine for pipe processing, see Figure 1 , Figure 4 and Figure 5, including a frame 1, a material storage frame 2, an electric push rod 7, a lifting rod 8, a back plate 9, a material blocking plate 10, a telescopic frame, a screw 13 and a material blocking plate 15, a material storage frame 2 is installed on the top of the frame 1, and the material storage frame 2 is installed in an inclined manner with a low front and a high rear, and a back plate 9 is connected to the front side of the material storage frame 2, and a slide groove is opened at the bottom of the back plate 9, and a material blocking plate 10 that can move up and down is slidably connected in the slide groove at the bottom of the back plate 9, and the shape of the material blocking plate 10 is an inverted T shape, and an electric push rod 7 is installed at the lower front side of the frame 1 The push rod of the electric push rod 7 is connected to the bottom of the baffle plate 10. Two guide sleeves are symmetrically connected to the front side of the frame 1. The two guide sleeves are slidably connected with lifting rods 8. The top of the lifting rod 8 is connected to the bottom of the baffle plate 10. Through the cooperation of the guide sleeve and the lifting rod 8, the baffle plate 10 can be guided to move up and down, so that the baffle plate 10 can be lifted and lowered smoothly. The lower part of the baffle plate 10 is connected with a telescopic frame, which is slidably connected to the return plate 9. The telescopic frame includes a telescopic rod 11, The lower part of the left and right sides of the baffle plate 10 are connected to the telescopic rod 11, the telescopic rod 11 passes through the bottom of the Hui-shaped plate 9, and the two telescopic rods 11 are connected to the transverse plate 12. The transverse plate 12 is located in the Hui-shaped plate 9. The inner rod of the telescopic rod 11 is sleeved with an elastic member 16, the top of the elastic member 16 is connected to the bottom of the transverse plate 12, and the bottom end of the elastic member 16 is connected to the top of the outer rod of the telescopic rod 11. The elastic member 16 is a spring, and the bottom of the transverse plate 12 is symmetrically connected to two A guide rod Ⅱ14 is provided, and a material blocking plate 15 is slidably connected to the guide rod Ⅱ14. The material blocking plate 15 is located at the rear side of the material blocking plate 10. The thickness of the material blocking plate 15 gradually decreases from top to bottom, ensuring that the material blocking plate 15 can be smoothly inserted between two adjacent pipe materials when it moves downward, thereby effectively separating the two adjacent pipe materials and ensuring that the pipe materials are put in one by one. The upper part of the material blocking plate 15 is threadedly connected with a screw rod 13, and the screw rod 13 is rotatably connected to the bottom of the cross plate 12. The screw rod 13 is located between the two guide rods Ⅱ14.

[0022] Put the pipe material into the inclined material storage frame 2 horizontally, the pipe material slides forward under the action of its own gravity and contacts the material blocking plate 10, and is blocked by the material blocking plate 10, and the push rod contraction and extension of the electric push rod 7 can drive the material blocking plate 10 to move downward and upward, and the material blocking plate 10 moves downward to drive the telescopic rod 11 to move downward, and the telescopic rod 11 moves downward through the elastic member 16 to pull the cross plate 12 to move downward, so that the material blocking plate 15 can be driven to move downward and insert between the frontmost pipe material and the next pipe material, and the material blocking plate 15 blocks the next pipe material, so as to realize the material loading one by one. When the material blocking plate 15 moves down to contact the inner bottom of the material storage frame 2, the material blocking plate 15 cannot continue to move down, and the cross plate 12 also stops moving down, so that the telescopic rod 11 continues to move down to stretch the elastic member 16, and the telescopic rod 11 is extended accordingly, and when the material blocking plate 10 moves downward to separate from the frontmost pipe material, the frontmost pipe material falls to the processing equipment of the pipe material, so as to realize the automatic material loading. The material blocking plate 10 moves upward to drive the telescopic rod 11 to move upward, and the telescopic rod 11 is shortened and reset accordingly, and the elastic member 16 is restored to its original state. After the elastic member 16 is restored to its original state, the telescopic rod 11 continues to move upward, and the cross plate 12 is pushed by the elastic member 16 to move the material blocking plate 15 upward and reset, and the material blocking plate 15 moves upward to remove the blocking of the pipe material, and the material blocking plate 10 moves upward to block the pipe material again, thereby ensuring that the pipe material can be continuously and automatically fed one by one. The material blocking plate 15 can be adjusted backward to a suitable position according to the diameter of the pipe material, and the material blocking plate 15 can be moved backward by rotating the screw 13, and the material blocking plate 15 can be moved forward by rotating the screw 13 in the opposite direction, so as to adapt to pipe materials of different specifications, and the application range is wide, and the interruption of the pipe material feeding operation is avoided, and the continuous feeding of the pipe material can be ensured, thereby improving the feeding efficiency; it solves the problem that the corresponding mold needs to be replaced according to the pipe materials of different specifications in the prior art, which leads to the complexity of the operation and the increase of the time cost, causes the interruption of the pipe material feeding operation, and affects the feeding efficiency.

[0023] See also Figure 1-Figure 3 The utility model also includes a guide rod Ⅰ6, a push plate 5 and a driving member. The front side of the bottom of the material storage frame 2 is connected with a guide rod Ⅰ6, and the guide rod Ⅰ6 is slidably connected with two left and right push plates 5. The shape of the push plate 5 is an inverted U shape. The bottom of the material storage frame 2 is provided with a slide groove for the inverted U-shaped push plate 5 to slide left and right. The bottom rear side of the material storage frame 2 is provided with a driving member for driving the two push plates 5 to approach and move away from each other. The driving member includes a double-axis motor 3 and a screw rod 4. The double-axis motor 3 is installed on the rear side of the bottom of the material storage frame 2. The output shafts on both sides of the double-axis motor 3 are connected with screw rods 4. The two screw rods 4 are respectively threadedly connected to the two push plates 5. The sides of the two push plates 5 close to each other are connected with buffer plates. The buffer plates can be used to buffer and protect the pipe materials to avoid the push plates 5 from being directly squeezed by the pipe materials, thereby reducing damage to the pipe materials. The material of the buffer plates is silicone. The buffer plates made of silicone have good flexibility and elasticity, and at the same time, the friction coefficient is low, which will not prevent the normal movement of the pipe materials.

[0024] After the pipe material is placed into the storage frame 2, the dual-axis motor 3 is controlled to drive the two screws 4 to rotate synchronously, so that the two push plates 5 can approach each other. The two push plates 5 approaching each other can push the pipe material to move to the center, so as to avoid the pipe material from tilting when loading, which helps to keep the pipe material in the correct position and ensure that the pipe material is in the same position each time it is loaded, which helps to improve production consistency and quality control and reduce the need for manual adjustment.

[0025] The above-mentioned embodiments only express the preferred implementation of the utility model, and the description is relatively specific and detailed, but it cannot be understood as limiting the scope of the patent of the utility model. It should be pointed out that for ordinary technicians in this field, several modifications, improvements and substitutions can be made without departing from the concept of the utility model, which all belong to the protection scope of the utility model.

Claims

1. A continuous feeding machine for pipe material processing, comprising a frame (1) and a material storage frame (2), wherein the material storage frame (2) is installed on the top of the frame (1) in an inclined manner, characterized in that: The machine also comprises an electric push rod (7), a return plate (9), a material blocking plate (10), a telescopic frame, a screw rod (13) and a material blocking plate (15); the front side of the material storage frame (2) is connected with the return plate (9); the bottom of the return plate (9) is provided with a material blocking plate (10) which can move up and down; the front lower part of the frame (1) is equipped with an electric push rod (7); the push rod of the electric push rod (7) is connected with the bottom of the material blocking plate (10); the lower part of the material blocking plate (10) is connected with the telescopic frame; the telescopic frame is slidably connected with the return plate (9); the upper part of the telescopic frame is provided with a material blocking plate (15) which can move forward and backward; the material blocking plate (15) is located at the rear side of the material blocking plate (10); the upper part of the material blocking plate (15) is threadedly connected with the screw rod (13); the screw rod (13) is rotatably connected to the upper part of the telescopic frame.

2. A continuous feeding machine for pipe material processing according to claim 1, characterized in that: The telescopic frame comprises a telescopic rod (11), a transverse plate (12), a guide rod II (14) and an elastic member (16). The lower parts of the left and right sides of the material blocking plate (10) are both connected with the telescopic rods (11). The telescopic rods (11) penetrate the bottom of the circular plate (9). The transverse plate (12) is connected between the two telescopic rods (11). The transverse plate (12) is located in the circular plate (9). The elastic member (16) is connected between the transverse plate (12) and the telescopic rod (11). The guide rod II (14) is connected to the transverse plate (12). The material blocking plate (15) is slidably connected to the guide rod II (14). The screw rod (13) is rotatably connected to the transverse plate (12).

3. The continuous feeding machine for pipe material processing according to claim 1, characterized in that: The thickness of the material blocking plate (15) gradually decreases from top to bottom.

4. The continuous feeding machine for pipe material processing according to claim 1, characterized in that: The material storage frame (2) further comprises a guide rod I (6), a push plate (5) and a driving member. The front bottom side of the material storage frame (2) is connected to the guide rod I (6). The guide rod I (6) is slidably connected to two left and right push plates (5). The push plates (5) are slidably connected to the bottom of the material storage frame (2). The rear bottom side of the material storage frame (2) is provided with a driving member for driving the two push plates (5) to move toward or away from each other.

5. The continuous feeding machine for pipe material processing according to claim 4, characterized in that: The driving member comprises a double-shaft motor (3) and a screw rod (4). The double-shaft motor (3) is installed at the rear side of the bottom of the material storage frame (2). The output shafts on both sides of the double-shaft motor (3) are connected to the screw rods (4). The two screw rods (4) are respectively threadedly connected to the two push plates (5).

6. A continuous feeding machine for pipe material processing according to claim 5, characterized in that: The two push plates (5) are both connected with a buffer plate on one side close to each other.

7. The continuous feeding machine for pipe material processing according to claim 1, characterized in that: It also includes a lifting rod (8), two guide sleeves are symmetrically connected to the front side of the frame (1), the lifting rod (8) is slidably connected to the two guide sleeves, and the top of the lifting rod (8) is connected to the bottom of the material blocking plate (10).