Automatic processing equipment for glass fiber reinforced plastic extruded and pulled profile
By designing an automated fiberglass pultrusion profile processing equipment, and utilizing the cooperation of a positioning plate and a pusher plate, combined with a motor drive and a moving lead screw, automated cutting and blanking of fiberglass pipes has been achieved. This solves the problem of low automation in existing technologies and improves production efficiency and cutting stability.
Patent Information
- Application Number
- CN202520120979.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-17
- Publication Date
- 2026-01-30
- Estimated Expiration
- 2035-01-17
AI Technical Summary
The low level of automation in the production of fiberglass pipes leads to low production efficiency.
An automated processing device was designed, comprising a body, a cutting mechanism, a feeding table, a positioning plate, a pushing plate, and a driving mechanism. Through the cooperation of the positioning plate and the pushing plate, the pipe is clamped and cut. Combined with the drive of the moving screw and the motor, the cutting distance and clamping are automatically adjusted to achieve automated cutting and unloading.
It has improved the production efficiency of FRP pipes, increased the degree of automation, simplified the operation process, and improved the stability and efficiency of cutting.
Smart Images

Figure CN223850052U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to glass fiber reinforced plastic processing technical field, especially a kind of glass fiber reinforced plastic extrusion profile automatic processing equipment. BACKGROUND
[0002] Glass fiber reinforced plastic is a kind of fiber reinforced plastic, generally refers to the unsaturated polyester, epoxy resin and phenolic resin matrix with glass fiber reinforcement, with glass fiber or its product as reinforcing material, reinforced plastic, or called glass fiber reinforced plastic.
[0003] In the production process of glass fiber reinforced plastic pipe, after glass fiber reinforced plastic pipe is extruded and formed, workers need to position and cut glass fiber reinforced plastic pipe according to the required pipe length, which has low automation degree and low production efficiency. UTILITY MODEL CONTENT
[0004] The utility model aims at providing a kind of glass fiber reinforced plastic extrusion profile automatic processing equipment, with the effect of improving production efficiency.
[0005] The above technical purpose of the utility model is realized by the following technical scheme: including machine body, cutting mechanism and setting on the material placing table of machine body, the first material placing groove of circular arc is horizontally opened in the material placing table, the positioning plate is vertically arranged on the side of machine body, the material pushing plate is arranged on the other side of machine body along the direction parallel to positioning plate, the bottom of material pushing plate is movably attached to the first material placing groove, first drive mechanism for pushing material pushing plate to approach or away from positioning plate is arranged on machine body, discharge hole is opened on machine body, discharge hole is located between positioning plate and material placing table, cutting mechanism is located above discharge hole, second drive mechanism for driving cutting mechanism to approach or away from positioning plate is arranged on machine body.
[0006] The utility model further provides that: the second drive mechanism includes first moving screw rod rotatably arranged on the machine body along the direction parallel to the central axis of the first material placing groove and first moving block cooperatively arranged on the first moving screw rod, first motor for driving the rotation of the first moving screw rod is arranged on the machine body, and the cutting mechanism is fixedly connected with the first moving block.
[0007] The further setting of the utility model discloses: cutting mechanism includes the second mobile screw rod that rotates and sets on the first mobile block along the vertical direction, the second mobile block that cooperatively sets on the second mobile screw rod and the cutting piece that rotates and sets on the second mobile block along the direction parallel with the locating plate, be provided with the second motor for driving the second mobile screw rod rotation on the first mobile block, be provided with the third motor for driving the cutting piece rotation on the second mobile block, the cutting piece is located the direct above of blanking hole.
[0008] The further setting of the utility model discloses: the first drive mechanism includes the drive cylinder that sets on the machine body and the drive rod that sets on the output end of the drive cylinder, and the end of the drive rod is fixedly connected with the side of the material pushing plate away from the locating plate.
[0009] The further setting of the utility model discloses: the mobile platform is movably arranged on the side of the material discharging platform close to the locating plate along the horizontal direction, a second material discharging groove is formed on the mobile platform along the direction coinciding with the central axis of the first material discharging groove, the radius of the second material discharging groove is not less than the radius of the first material discharging groove, a moving groove matched with the mobile platform is formed in the material discharging platform, and one end of the mobile platform away from the locating plate is clamped in the moving groove.
[0010] The further setting of the utility model discloses: one side of the mobile platform is fixedly connected with the first mobile block, and the cutting piece is movably attached to one end of the mobile platform close to the locating plate.
[0011] The further setting of the utility model discloses: a limiting groove is vertically formed on the first mobile block, and one side of the second mobile block close to the first mobile block is movably attached to the limiting groove.
[0012] The further setting of the utility model discloses: a material receiving frame is movably arranged on the machine body, and the material receiving frame can be located directly below the blanking hole.
[0013] The further setting of the utility model discloses: a material receiving frame is movably arranged on the machine body, and the material receiving frame can be located directly below the blanking hole.
[0014] The further setting of the utility model discloses: a guide rod is arranged on the machine body along the direction parallel with the central axis of the first mobile screw rod, and the guide rod movably penetrates through the first mobile block.
[0015] The utility model discloses the beneficial effect is:
[0016] 1. By setting the positioning plate, push plate and first drive mechanism, etc., when the glass steel pipe (hereinafter referred to as pipe) needs to be cut, first, according to the length of the pipe required, open the second drive mechanism, adjust the distance between the cutting mechanism and the positioning plate, then place the pipe in the first feeding groove of the feeding table, open the first drive mechanism, push the end of the pipe close to the positioning plate through the push plate until it touches the positioning plate, at this time the bottom of the pipe is attached to the inner wall of the first feeding groove, and the two ends of the pipe are clamped between the push plate and the positioning plate, then the cutting mechanism can be opened to cut the pipe, and the cut pipe is automatically discharged through the discharge hole; therefore, by setting the positioning plate, push plate, etc., the worker only needs to open the second drive mechanism to adjust the distance between the cutting mechanism and the positioning plate according to the length of the pipe required, then open the first drive mechanism and the cutting mechanism in turn, the pipe can be clamped, cut and automatically discharged, the degree of automation is high, and the purpose of improving production efficiency is achieved.
[0017] 2. By setting the moving table, the second feeding groove, etc., the first motor drives the first moving block to move close to or away from the positioning plate, while driving the moving table to move, realizing the automatic adjustment of the distance between the moving table and the positioning plate, and by setting the moving table and the second feeding groove, the contact area of the pipe with the first feeding groove and the second feeding groove is increased (it should be noted that the radius of the second feeding groove is slightly larger than that of the first feeding groove), thereby increasing the stability of the pipe during cutting by the cutting piece.
[0018] 3. By setting the drive cylinder and the drive rod, the drive cylinder pushes the push plate to move, thereby clamping the pipe between the push plate and the positioning plate, realizing the clamping and fixing of the pipe, the structure is simple and the operation is convenient. BRIEF DESCRIPTION OF DRAWINGS
[0019] In order to more clearly illustrate the technical scheme in the embodiments of the present application, the following will briefly introduce the drawings needed to be used in the embodiment description, obviously, the drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained according to these drawings without creating labor.
[0020] Figure 1 is a structural schematic view of one embodiment of the glass steel extruded profile automatic processing equipment of the present application;
[0021] Figure 2 is Figure 1 the enlarged schematic view of A in the figure;
[0022] Figure 3 is Figure 1 the enlarged schematic view of B in the figure.
[0023] In the diagram, 1. Machine body; 2. Cutting mechanism; 2a. Second moving lead screw; 2b. Second moving block; 2c. Cutting blade; 3. Feeding platform; 4. First feeding trough; 5. Positioning plate; 6. Pushing plate; 7. First drive mechanism; 7a. Drive cylinder; 7b. Drive rod; 8. Feeding hole; 9. Second drive mechanism; 9a. First moving lead screw; 9b. First moving block; 10. First motor; 11. Second motor; 12. Third motor; 13. Moving platform; 14. Second feeding trough; 15. Moving groove; 16. Limiting groove; 17. Receiving frame; 18. Pull handle; 19. Guide rod. Detailed Implementation
[0024] The technical solution of this utility model will now be clearly and completely described with reference to specific embodiments. Obviously, the described embodiments are only a part of the embodiments of this utility model, and not all of them. All other embodiments obtained by those skilled in the art based on the embodiments of this utility model without creative effort are within the scope of protection of this utility model.
[0025] This utility model provides an automatic processing equipment for fiberglass pultruded profiles, such as... Figures 1 to 3 As shown, the device includes a body 1, a cutting mechanism 2, and a feeding platform 3 mounted on the body 1. The feeding platform 3 has a horizontally formed arc-shaped first feeding groove 4. A positioning plate 5 is vertically mounted on one side of the body 1, and a pusher plate 6 is mounted on the other side of the body 1 in a direction parallel to the positioning plate 5. The bottom of the pusher plate 6 is movably attached to the first feeding groove 4. A first driving mechanism 7 is provided on the body 1 to push the pusher plate 6 closer to or away from the positioning plate 5. A discharge hole 8 is provided on the body 1, located between the positioning plate 5 and the feeding platform 3. The cutting mechanism 2 is located above the discharge hole 8. A second driving mechanism 9 is provided on the body 1 to drive the cutting mechanism 2 closer to or away from the positioning plate 5.
[0026] Furthermore, the second driving mechanism 9 includes a first movable lead screw 9a rotatably mounted on the machine body 1 in a direction parallel to the central axis of the first feeding trough 4, and a first movable block 9b cooperatingly mounted on the first movable lead screw 9a. The machine body 1 is provided with a first motor 10 for driving the first movable lead screw 9a to rotate, and the cutting mechanism 2 is fixedly connected to the first movable block 9b.
[0027] Further, the cutting mechanism 2 comprises a second moving screw rod 2a arranged on the first moving block 9b in a vertical direction, a second moving block 2b arranged on the second moving screw rod 2a in cooperation, and a cutting piece 2c arranged on the second moving block 2b in a direction parallel to the positioning plate 5, the first moving block 9b is provided with a second motor 11 for driving the second moving screw rod 2a to rotate, the second moving block 2b is provided with a third motor 12 for driving the cutting piece 2c to rotate, and the cutting piece 2c is located directly above the discharging hole 8.
[0028] Further, the first driving mechanism 7 comprises a driving cylinder 7a arranged on the machine body 1 and a driving rod 7b arranged at the output end of the driving cylinder 7a, and the end of the driving rod 7b is fixedly connected to the side of the pushing plate 6 away from the positioning plate 5.
[0029] Further, the discharging table 3 is movably arranged on the side close to the positioning plate 5 in a horizontal direction, and a moving table 13 is arranged on the discharging table 3, a second discharging groove 14 is arranged on the moving table 13 in a direction coinciding with the central axis of the first discharging groove 4, the radius of the second discharging groove 14 is not less than that of the first discharging groove 4, a moving groove 15 is arranged in the discharging table 3 in cooperation with the moving table 13, and the end of the moving table 13 away from the positioning plate 5 is clamped in the moving groove 15.
[0030] Further, one side of the moving table 13 is fixedly connected to the first moving block 9b, and the cutting piece 2c is movably attached to the end of the moving table 13 close to the positioning plate 5.
[0031] Further, a limiting groove 16 is vertically arranged on the first moving block 9b, and the side of the second moving block 2b close to the first moving block 9b is movably attached to the limiting groove 16.
[0032] Further, a receiving frame 17 is movably arranged on the machine body 1, and the receiving frame 17 can be located directly below the discharging hole 8.
[0033] Further, a pulling handle 18 is arranged on one side of the receiving frame 17.
[0034] Further, a guide rod 19 is arranged on the machine body 1 in a direction parallel to the central axis of the first moving screw rod 9a, and the guide rod 19 movably passes through the first moving block 9b.
[0035] When the pipe needs to be cut, first, according to the length of the pipe required, the first motor 10 is opened, the first moving screw rod 9a is driven to rotate, the first moving block 9b, the cutting piece 2c and the like are driven to move, so that the distance between the cutting piece 2c and the positioning plate 5 is adjusted, then the pipe is placed in the first feeding groove 4 of the feeding table 3, the driving cylinder 7a is opened, the driving rod 7b pushes the end of the pipe through the pushing plate 6 to approach the positioning plate 5 until it touches the positioning plate 5, at this time, the bottom of the pipe is attached to the inner wall of the first feeding groove 4, and the two ends of the pipe are clamped between the pushing plate 6 and the positioning plate 5, then the second motor 11 and the third motor 12 can be opened to drive the cutting piece 2c to rotate and approach the pipe, so as to cut the pipe, and the cut pipe is automatically discharged through the discharge hole 8; therefore, by arranging the positioning plate 5, the pushing plate 6 and the like, the worker only needs to open the second driving mechanism 9 to adjust the distance between the cutting mechanism 2 and the positioning plate 5 according to the length of the pipe required, then the driving cylinder 7a, the second motor 11 and the third motor 12 are opened in turn, so as to realize the clamping, cutting and automatic discharging of the pipe, the degree of automation is high, and the purpose of improving the production efficiency is achieved.
[0036] By arranging the first moving screw rod 9a, the first moving block 9b and the like, the first motor 10 can be opened to drive the first moving screw rod 9a to rotate, so as to drive the cutting piece 2c to approach or move away from the positioning plate 5, and the distance between the cutting piece 2c and the positioning plate 5 is adjusted, the structure is simple, and the operation is convenient.
[0037] By arranging the second moving screw rod 2a, the second moving block 2b and the like, the second motor 11 can be opened to drive the second moving screw rod 2a to rotate, so as to drive the cutting piece 2c to approach the pipe for cutting.
[0038] By arranging the moving table 13 and the second feeding groove 14, the first motor 10 is opened to drive the first moving block 9b to move along the first moving screw rod 9a to approach or move away from the positioning plate 5 at the same time, so as to drive the moving table 13 to move, the distance between the moving table 13 and the positioning plate 5 is automatically adjusted, the moving table 13 and the second feeding groove 14 are arranged, the contact area of the pipe with the first feeding groove 4 and the second feeding groove 14 is increased (it should be noted that the radius of the second feeding groove 14 is slightly larger than that of the first feeding groove 4), and then the stability of the pipe in the cutting process of the cutting piece 2c is increased.
[0039] By arranging the driving cylinder 7a, the driving rod 7b and the like, the driving cylinder 7a drives the pushing plate 6 to move, so as to clamp the pipe between the pushing plate 6 and the positioning plate 5, the pipe is clamped and fixed, the structure is simple, and the operation is convenient.
[0040] By arranging the limiting groove 16, the second moving block 2b is limited, and the stability of the second moving block 2b, the cutting piece 2c and the like in the lifting process is increased.
[0041] By setting the guide rod 19, the first moving block 9b is limited, and the stability of the first moving block 9b in the moving process is increased.
[0042] By setting the material receiving frame 17 and the dragging handle 18, the automatic collection of the pipe material can be realized, and the transfer of the pipe material is facilitated.
[0043] It should be noted that the embodiments in the specification are described in a progressive manner, and each embodiment focuses on the differences from other embodiments. The same or similar parts between the embodiments can be mutually referred to.
[0044] The above description is only a description of the preferred embodiments of the present application, and does not limit the scope of the present application. Any modification or modification made by a person skilled in the art according to the above disclosure is within the protection scope of the claims.
Claims
1. A glass fiber reinforced plastic pultruded profile automatic processing equipment, characterized in that: The utility model relates to a cutting mechanism and a first drive mechanism for driving the cutting mechanism to move close to or away from the positioning plate, a discharging hole is formed in the body, the discharging hole is located between the positioning plate and the feeding table, the cutting mechanism is located above the discharging hole, a second drive mechanism for driving the cutting mechanism to move close to or away from the positioning plate is arranged on the body.
2. The automatic processing equipment for glass fiber reinforced plastic pultrusion profiles according to claim 1, characterized in that: The second drive mechanism (9) comprises a first moving screw rod (9a) rotatably arranged on the body along a direction parallel to the central axis of the first feeding groove (4) and a first moving block (9b) cooperatively arranged on the first moving screw rod (9a), a first motor (10) for driving the first moving screw rod (9a) to rotate is arranged on the body, and the cutting mechanism (2) is fixedly connected with the first moving block (9b).
3. The automatic processing equipment for glass fiber reinforced plastic pultrusion profiles according to claim 2, characterized in that: The cutting mechanism (2) comprises a second moving screw rod (2a) rotatably arranged on the first moving block (9b) along a vertical direction, a second moving block (2b) cooperatively arranged on the second moving screw rod (2a) and a cutting piece (2c) rotatably arranged on the second moving block (2b) along a direction parallel to the positioning plate (5), a second motor (11) for driving the second moving screw rod (2a) to rotate is arranged on the first moving block (9b), a third motor (12) for driving the cutting piece (2c) to rotate is arranged on the second moving block (2b), and the cutting piece (2c) is located directly above the discharging hole (8).
4. The automatic processing equipment for glass fiber reinforced plastic pultrusion profiles according to claim 1, characterized in that: The first drive mechanism (7) comprises a driving cylinder (7a) arranged on the body and a driving rod (7b) arranged at the output end of the driving cylinder (7a), and the end of the driving rod (7b) is fixedly connected with the side of the pushing plate (6) away from the positioning plate (5).
5. The automatic processing equipment for glass fiber reinforced plastic pultrusion profiles according to claim 3, characterized in that: The feeding table (3) is movably provided with a moving table (13) on the side close to the positioning plate (5) along the horizontal direction, a second feeding groove (14) is formed in the moving table (13) along a direction coinciding with the central axis of the first feeding groove (4), the radius of the second feeding groove (14) is not less than that of the first feeding groove (4), a moving groove (15) matched with the moving table (13) is formed in the feeding table (3), and the end of the moving table (13) away from the positioning plate (5) is clamped in the moving groove (15).
6. The automatic processing equipment for glass fiber reinforced plastic pultrusion profiles according to claim 5, characterized in that: One side of the mobile station (13) is fixedly connected with the first mobile block (9b), and the cutting piece (2c) is movably attached to one end of the mobile station (13) close to the positioning plate (5).
7. The automatic processing equipment for glass fiber reinforced plastic pultrusion profiles according to claim 3, characterized in that: A limiting groove (16) is vertically formed on the first mobile block (9b), and one side of the second mobile block (2b) close to the first mobile block (9b) is movably attached to the limiting groove (16).
8. The automatic processing equipment for glass fiber reinforced plastic pultrusion profiles according to claim 1, characterized in that: A material receiving frame (17) is movably arranged on the machine body (1), and the material receiving frame (17) can be located directly below the discharging hole (8).
9. The automatic processing equipment for glass fiber reinforced plastic pultrusion profiles according to claim 8, characterized in that: One side of the material receiving frame (17) is provided with a pulling handle (18).
10. The automatic processing equipment for glass fiber reinforced plastic pultrusion profiles according to claim 2, characterized in that: A guide rod (19) is arranged on the machine body (1) in a direction parallel to the central axis of the first mobile lead screw (9a), and the guide rod (19) movably penetrates the first mobile block (9b).