Carbon fiber profile processing device
By designing a carbon fiber profile processing device with limiting, moving, and transferring mechanisms, the problems of unstable fixing of carbon fiber profiles and safety hazards of manual transfer were solved, achieving stable cutting and automatic transfer.
Patent Information
- Application Number
- CN202310993636.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-08-09
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2043-08-09
AI Technical Summary
Existing methods for fixing carbon fiber profiles are unstable, prone to shifting during cutting, and require manual transfer after cutting, posing safety hazards.
A carbon fiber profile processing device was designed, which includes a limiting mechanism, a moving mechanism, an adjusting mechanism, and a transferring mechanism. The limiting mechanism fixes the profile, the moving mechanism pushes the profile to move, the adjusting mechanism adapts to the shape of the profile, and the transferring mechanism automatically transfers the cut profile.
It achieves stable fixing and automatic transfer of carbon fiber profiles, avoiding deviation during cutting and improving safety and operational efficiency.
Smart Images

Figure CN117067296B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of carbon fiber profile processing technology, and specifically to a carbon fiber profile processing device. Background Technology
[0002] Carbon fiber profiles come in various shapes. When cutting carbon fiber profiles, they need to be fixed in place. However, the existing fixing method is to directly clamp them. The surface of the carbon fiber profile is not flat. This clamping method has a small force-bearing area and is unstable. Moreover, the cut carbon fiber profiles still need to be manually transferred, which is dangerous. Therefore, a carbon fiber profile processing device is proposed. Summary of the Invention
[0003] The purpose of this invention is to address the shortcomings and deficiencies of existing technologies by proposing a carbon fiber profile processing device that can fit and limit the carbon fiber profile according to its shape, while facilitating movement and preventing the carbon fiber profile from shifting during cutting; it also facilitates the timely transfer of the cut carbon fiber profile to other containers without manual handling, thus improving safety.
[0004] To achieve the above objectives, the technical solution adopted by the present invention is as follows: it includes a support platform and legs; legs are fixed at the four bottom corners of the support platform;
[0005] It also includes:
[0006] A limiting mechanism, wherein the limiting mechanism is mounted on a support platform;
[0007] The moving mechanism consists of two parts, which are respectively located at the front and rear of the upper surface of the support platform. The moving mechanism is connected to the limiting mechanism.
[0008] The adjustment mechanism comprises two mechanisms, each located on the moving mechanism.
[0009] The transfer mechanism is located on the right side of the support platform;
[0010] The above technical solution involves placing the carbon fiber profile on a support platform, fixing the left end of the carbon fiber profile using a limiting mechanism, fixing the side of the carbon fiber profile using an adjusting mechanism, moving the carbon fiber profile to the right end using a moving mechanism for cutting, and then transferring the cut carbon fiber profile using a transfer mechanism.
[0011] Preferably, the limiting mechanism comprises:
[0012] A first limiting plate is provided on the support platform; a second limiting plate is provided above the first limiting plate.
[0013] The number of the dividing rods is several, and they are fixed at equal intervals between the first limiting plate and the second limiting plate.
[0014] The movable blocks are of several types and are respectively located between two adjacent separators. The front end of the movable block is fixed with a No. 1 internal threaded tube, and a No. 1 screw is screwed into the No. 1 internal threaded tube. The lower end of the No. 1 screw is screwed into the No. 1 limiting plate through a bearing. The upper end of the No. 1 screw is screwed through the No. 2 limiting plate through a bearing and fixed with a No. 1 hand screw. The rear end of the movable block is fixed with a limiting tube, and a No. 1 limiting rod is movably inserted into the limiting tube. The upper and lower ends of the No. 1 limiting rod are respectively fixed to the No. 2 limiting plate and the No. 1 limiting plate.
[0015] The rubber sheet is of several kinds and is respectively located on the right side of the movable block. A threaded rod is fixed to the left end of the rubber sheet. The threaded rod passes through the movable block through a bearing and is fitted with a nut through a threaded connection.
[0016] The above technical solution involves placing the processed carbon fiber profile on a support platform, rotating the first screw to rotate the first limit rod and the limit tube, causing the first internal thread tube and the moving block to descend, which in turn causes the rubber plate to descend and press against the carbon fiber profile. The nut is then unscrewed, and the rubber plate is rotated until it is in contact with the surface of the carbon fiber profile. The nut is then screwed back to fix the rubber plate, thus fixing the upper and lower sides of the carbon fiber profile.
[0017] Preferably, a rubber pad is fixed on the right side wall of the nut;
[0018] Through the above technical solution design, the rubber pad on the nut is pressed against the moving block, making the rubber plate stable.
[0019] Preferably, the moving mechanism comprises:
[0020] A fixing plate is fixed to the outer side of the upper surface of the support platform; a mounting plate is fixed to the bottom left and right sides of the inner side wall of the fixing plate; a motor is fixed to the left side of the mounting plate on the right side; a screw is fixed to the output shaft of the motor; the left end of the screw is screwed to the mounting plate on the left side through a bearing; a threaded tube is threaded onto the screw; and the threaded tube is fixed to the outer side of the limiting plate.
[0021] The slide rail is fixed to the upper part of the inner side wall of the fixed plate; a slider is slidably sleeved on the slide rail, and the slider is fixed to the outer side of the second limiting plate.
[0022] With the above technical solution design, starting motor number one and rotating screw number two will drive internal thread tube number two to move, causing limit plate number one, limit plate number two and separator rod to move, pushing carbon fiber profile to the right, and the slider moves on the slide rail to make the movement of limit plate number one smooth.
[0023] Preferably, each of the adjustment mechanisms comprises:
[0024] An adjusting plate is located inside the fixed plate; an adjusting tube is fixed on the outer wall of the adjusting plate.
[0025] An adjusting ball is movably mounted on an adjusting tube; a hand-tightening bolt is screwed onto the adjusting tube with equal rounded corners via threads, and the inner end of the hand-tightening bolt rests against the adjusting ball; a No. 3 internal threaded tube is fixed to the outer end of the adjusting ball, and a No. 3 screw is screwed into the No. 3 internal threaded tube via threads, and the No. 3 screw passes through the fixing plate via a bearing and is fixed with a No. 2 hand-tightening bolt.
[0026] The second limiting rod, there are two of them, and they are fixed on the annular wall of the third internal threaded tube respectively. The second limiting rod has an "L" shaped structure, and the other end of the second limiting rod is movably inserted into the fixed plate.
[0027] Through the above technical solution design, rotating the No. 2 hand screw causes the No. 3 screw to rotate. Under the action of the No. 2 limit rod, the No. 3 internal thread tube moves, causing the adjusting plate to contact the carbon fiber profile. Loosening the hand screw causes the adjusting ball to rotate. After the adjusting plate is in contact with the side of the carbon fiber profile, the hand screw is tightened to fix the adjusting plate.
[0028] Preferably, the fixing plate has operating slots at both the top and bottom, and the No. 2 hand screw is located between the upper and lower operating slots;
[0029] The above technical solution design allows for convenient operation of the adjustment plate and hand-tightening bolts via the operating slot.
[0030] Preferably, the transfer mechanism comprises:
[0031] The base is located on the right side of the support platform; the left side wall of the base is connected to the movable end of the first electric telescopic rod, which is connected to an external power source; the mounting end of the first electric telescopic rod is fixed on the second mounting plate, and the front and rear sides of the second mounting plate are fixed to the front and rear support feet on the right side.
[0032] The second motor is fixed on the base and connected to an external power source; a rotating shaft is fixed on the output shaft of the second motor.
[0033] The support plate is fixed on the rotating shaft; the upper surface of the support plate is flush with the upper surface of the support platform; baffles are fixed at both the front and rear of the upper surface of the support plate; a No. 3 mounting plate is fixed on the right side of the lower surface of the support plate, and a No. 2 electric telescopic rod is fixed on the right side wall of the No. 3 mounting plate, which is connected to an external power source.
[0034] The push plate is mounted on the support plate. A first connecting plate is fixed to the right side wall of the push plate, and a second connecting plate is fixed to the bottom of the left side wall of the first connecting plate. The second connecting plate is fixed to the movable end of the second electric telescopic rod.
[0035] Through the above technical solution design, the carbon fiber profile is pushed onto the support plate. The first and second electric telescopic rods are activated, so that the push plate abuts against the carbon fiber profile, and the length of the carbon fiber profile on the support plate meets the required length. After cutting with the cutting device, the first electric telescopic rod is activated to push the base to the right, and the second motor is activated to drive the rotating shaft to rotate, so that the support plate rotates, causing the cut carbon fiber profile to rotate. The second electric telescopic rod is activated, and the push plate pushes out the carbon fiber profile.
[0036] Preferably, each of the four corners of the base is equipped with a caster wheel;
[0037] The above-mentioned technical solution design makes it easy to move the base using omnidirectional wheels.
[0038] Compared with the prior art, the beneficial effects of the present invention are:
[0039] 1. It is equipped with a limiting mechanism and an adjustment mechanism, which can fit and limit the carbon fiber profile according to its shape, while facilitating movement and preventing the carbon fiber profile from shifting during cutting;
[0040] 2. Equipped with a transfer mechanism, it is easy to transfer the cut carbon fiber profiles to other containers in a timely manner without manual handling, thus improving safety. Attached Figure Description
[0041] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0042] Figure 1 This is a schematic diagram of the structure of the present invention.
[0043] Figure 2 yes Figure 1 Southwest isometric view.
[0044] Figure 3 yes Figure 2 Enlarged view of part A in the image.
[0045] Figure 4 yes Figure 2 Enlarged view of part B in the image.
[0046] Figure 5 yes Figure 2 Enlarged view of section C in the image.
[0047] Figure 6 yes Figure 2 Enlarged view of part D in the image.
[0048] Figure 7 yes Figure 1 Northeast isometric view.
[0049] Figure 8 yes Figure 7 Enlarged view of part E in the image.
[0050] Figure 9 yes Figure 7 Enlarged view of part F in the image.
[0051] Explanation of reference numerals in the attached figures:
[0052] Support platform 1, support leg 2, limiting mechanism 3, first limiting plate 3-1, second limiting plate 3-2, dividing rod 3-3, moving block 3-4, first internal threaded tube 3-5, first screw 3-6, first hand-tightening rod 3-7, limiting tube 3-8, first limiting rod 3-9, rubber plate 3-10, threaded rod 3-11, nut 3-12, rubber pad 3-13, moving mechanism 4, fixed plate 4-1, first mounting plate 4-2, first motor 4-3, second screw 4-4, second internal threaded tube 4-5, slide rail 4-6, slider 4-7, adjusting mechanism 5 5-1 Adjusting plate, 5-2 Adjusting pipe, 5-3 Adjusting ball, 5-4 Hand-tightening bolt, 5-5 No. 3 internal threaded pipe, 5-6 No. 2 hand-tightening bolt, 5-7 Operating slot, 5-8 No. 2 limit rod, 5-9 Transfer mechanism, 6-1 Base, 6-2 Casters, 6-3 No. 1 electric telescopic rod, 6-4 No. 2 mounting plate, 6-5 No. 2 motor, 6-6 Rotating shaft, 6-7 Support plate, 6-8 Baffle, 6-9 No. 3 mounting plate, 6-10 No. 2 electric telescopic rod, 6-11 Push plate, 6-12 No. 1 connecting plate, 6-13 No. 2 connecting plate. Detailed Implementation
[0053] The invention will now be further described with reference to the accompanying drawings.
[0054] Example 1:
[0055] Please see Figure 1 , Figure 2 and Figure 7 This embodiment 1 includes a support platform 1 and legs 2; the four bottom corners of the support platform 1 are all fixed with legs 2 by bolts;
[0056] It also includes:
[0057] The limiting mechanism 3 is mounted on the support platform 1.
[0058] The number of moving mechanisms 4 is two, and they are respectively located at the front and rear of the upper surface of the support platform 1. The moving mechanisms 4 are connected to the limiting mechanism 3.
[0059] Adjustment mechanism 5, there are two adjustment mechanisms 5, and they are respectively provided on the moving mechanism 4;
[0060] Transfer mechanism 6, which is located on the right side of support platform 1;
[0061] In Example 1, the carbon fiber profile is placed on the support platform 1, the left end of the carbon fiber profile is fixed by the limiting mechanism 3, the side of the carbon fiber profile is fixed by the adjusting mechanism 5, the carbon fiber profile is moved to the right end by the moving mechanism 4 for cutting and processing, and the carbon fiber profile that has been processed and cut is transferred by the transfer mechanism 6.
[0062] Example 2:
[0063] Please see Figure 1 , Figure 2 , Figure 3 , Figure 5 , Figure 7 and Figure 9 Based on Embodiment 1, the limiting mechanism 3 includes:
[0064] The first limiting plate 3-1 is provided on the support platform 1; the second limiting plate 3-2 is provided above the first limiting plate 3-1.
[0065] The number of the dividing rods 3-3 is several, and they are fixed at equal intervals between the first limiting plate 3-1 and the second limiting plate 3-2 by bolts.
[0066] The movable blocks 3-4 are multiple in number and are respectively located between two adjacent separators 3-3. The front end of the movable block 3-4 is fixed with a first internal threaded tube 3-5 by bolts. A first screw 3-6 is screwed into the first internal threaded tube 3-5 by threads. The lower end of the first screw 3-6 is screwed onto the first limiting plate 3-1 by bearings. The upper end of the first screw 3-6 is screwed through the second limiting plate 3-2 by bearings and then fixed with a first hand-tightening 3-7 by bolts. The rear end of the movable block 3-4 is fixed with a limiting tube 3-8 by bolts. A first limiting rod 3-9 is movably inserted into the limiting tube 3-8. The upper and lower ends of the first limiting rod 3-9 are respectively fixed to the second limiting plate 3-2 and the first limiting plate 3-1 by bolts.
[0067] Rubber plate 3-10, there are several rubber plates 3-10, and they are respectively located on the right side of the movable block 3-4. The left end of the rubber plate 3-10 is fixed with a threaded rod 3-11 by bolts. The threaded rod 3-11 passes through the movable block 3-4 by bearing screwing and is fitted with a nut 3-12 by thread screwing. A rubber pad 3-13 is glued and fixed on the right side wall of the nut 3-12.
[0068] In this embodiment, the processed carbon fiber profile is placed on the support platform 1. The first hand screw 3-7 is rotated, causing the first screw 3-6 to rotate. Under the action of the first limiting rod 3-9 and the limiting tube 3-8, the first internal thread tube 3-5 and the moving block 3-4 are lowered, causing the rubber plate 3-10 to descend and press against the carbon fiber profile. The nut 3-12 is unscrewed, and the rubber plate 3-10 is rotated so that the rubber plate 3-10 is in contact with the surface of the carbon fiber profile. The nut 3-12 is then screwed back, so that the rubber pad 3-13 on the nut 3-12 abuts against the moving block 3-4, fixing the rubber plate 3-10, thereby fixing the upper and lower sides of the carbon fiber profile.
[0069] Example 3:
[0070] Please see Figure 1 , Figure 2 , Figure 4 , Figure 5 , Figure 7 and Figure 8 Based on Embodiment 2, the moving mechanism 4 includes:
[0071] The fixing plate 4-1 is fixed to the outer side of the upper surface of the support platform 1 by bolts; the bottom of the inner side wall of the fixing plate 4-1 is fixed with mounting plates 4-2 by bolts on both the left and right sides; the left side of the mounting plate 4-2 on the right side is fixed with a motor 4-3 by bolts; the output shaft of the motor 4-3 is fixed with a screw 4-4 by bolts; the left end of the screw 4-4 is screwed onto the mounting plate 4-2 on the left side by a bearing; the screw 4-4 is fitted with a threaded tube 4-5; the threaded tube 4-5 is fixed to the outer side of the limiting plate 3-1 by bolts.
[0072] The slide rail 4-6 is fixed to the upper part of the inner side wall of the fixing plate 4-1 by bolts; the slide rail 4-6 is slidably sleeved with a slider 4-7, and the slider 4-7 is fixed to the outer side of the second limiting plate 3-2 by bolts.
[0073] In this embodiment, starting motor 4-3 causes screw 4-4 to rotate, which in turn moves internal thread tube 4-5, causing limit plate 3-1, limit plate 3-2, and separator rod 3-3 to move. This pushes the carbon fiber profile to the right, and slider 4-7 moves on slide rail 4-6, allowing limit plate 3-1 to move smoothly.
[0074] Example 4:
[0075] Please see Figure 1 , Figure 2 , Figure 6 and Figure 7 Based on Embodiment 3, the adjustment mechanism 5 includes:
[0076] Adjusting plate 5-1 is located inside the fixed plate 4-1; adjusting tube 5-2 is fixed to the outer wall of adjusting plate 5-1 by bolts.
[0077] An adjusting ball 5-3 is movably mounted on an adjusting tube 5-2. Hand-tightening bolts 5-4 are threaded onto the adjusting tube 5-2 with equal rounded corners. The inner end of the hand-tightening bolts 5-4 abuts against the adjusting ball 5-3. A third-order internally threaded tube 5-5 is bolted to the outer end of the adjusting ball 5-3. A third-order screw 5-6 is threaded into the third-order internally threaded tube 5-5. The third-order screw 5-6 passes through a fixed plate 4-1 via a bearing and is bolted to a second-order hand-tightening bolt 5-7. Operating grooves 5-8 are provided on both the upper and lower surfaces of the fixed plate 4-1, and the second-order hand-tightening bolt 5-7 is positioned between the upper and lower operating grooves 5-8.
[0078] The second limiting rod 5-9, there are two of them, and they are respectively fixed to the annular wall of the third internal thread tube 5-5 by bolts. The second limiting rod 5-9 has an "L" shaped structure, and the other end of the second limiting rod 5-9 is movably inserted into the fixing plate 4-1.
[0079] In this embodiment, rotating the second hand screw 5-7 causes the third screw 5-6 to rotate. Under the action of the second limit rod 5-9, the third internal thread tube 5-5 moves, causing the adjusting plate 5-1 to contact the carbon fiber profile. Loosening the hand screw 5-4 causes the adjusting ball 5-3 to rotate, and after the adjusting plate 5-1 is in contact with the side of the carbon fiber profile, tightening the hand screw 5-4 fixes the adjusting plate 5-1.
[0080] Example 5:
[0081] Please see Figure 1 , Figure 2 and Figure 7 Based on Embodiment 1, the transfer mechanism 6 includes:
[0082] The base 6-1 is located on the right side of the support platform 1. All four corners of the bottom of the base 6-1 are connected to casters 6-2. The left side wall of the base 6-1 is bolted to the movable end of the first electric telescopic rod 6-3. The first electric telescopic rod 6-3 is connected to an external power source. The specific model of the first electric telescopic rod 6-3 is purchased directly from the market according to actual usage requirements. The mounting end of the first electric telescopic rod 6-3 is bolted to the second mounting plate 6-4. The front and rear sides of the second mounting plate 6-4 are bolted to the front and rear support legs 2 on the right side.
[0083] The second motor 6-5 is fixed to the base 6-1 by bolts. The second motor 6-5 is connected to an external power source. The specific model of the second motor 6-5 is purchased and installed directly from the market according to actual usage requirements. The output shaft of the second motor 6-5 is fixed with a rotating shaft 6-6 by bolts.
[0084] Support plate 6-7 is fixed to the rotating shaft 6-6 by bolts; the upper surface of support plate 6-7 is flush with the upper surface of support platform 1; baffles 6-8 are fixed to the front and rear of the upper surface of support plate 6-7 by bolts; a third mounting plate 6-9 is fixed to the right side of the lower surface of support plate 6-7 by bolts; a second electric telescopic rod 6-10 is fixed to the right side wall of the third mounting plate 6-9 by bolts; the second electric telescopic rod 6-10 is connected to an external power source; the specific model of the second electric telescopic rod 6-10 is purchased and installed directly from the market according to actual usage requirements.
[0085] Push plate 6-11, which is set on support plate 6-7, the right side wall of push plate 6-11 is fixed with a first connecting plate 6-12 by bolts, the bottom of the left side wall of the first connecting plate 6-12 is fixed with a second connecting plate 6-13 by bolts, and the second connecting plate 6-13 is fixed with the movable end of the second electric telescopic rod 6-10 by bolts.
[0086] In this embodiment, the carbon fiber profile is pushed onto the support plate 6-7. The first electric telescopic rod 6-3 and the second electric telescopic rod 6-10 are activated, causing the push plate 6-11 to abut against the carbon fiber profile. The length of the carbon fiber profile on the support plate 6-7 meets the required length. After cutting with the cutting device, the first electric telescopic rod 6-3 is activated to push the base 6-1 to the right. The second motor 6-5 is activated, driving the rotating shaft 6-6 to rotate, causing the support plate 6-7 to rotate, which in turn drives the cut carbon fiber profile to rotate. The second electric telescopic rod 6-10 is activated, and the push plate 6-11 pushes the carbon fiber profile out.
[0087] In use, the processed carbon fiber profile is placed on the support platform 1. Rotating the second hand-tightening screw 5-7 causes the third screw 5-6 to rotate. Under the action of the second limiting rod 5-9, the third internal threaded tube 5-5 moves, causing the adjusting plate 5-1 to contact the carbon fiber profile. Loosening the hand-tightening bolt 5-4 causes the adjusting ball 5-3 to rotate, bringing the adjusting plate 5-1 into contact with the side of the carbon fiber profile. Tightening the hand-tightening bolt 5-4 then fixes the adjusting plate 5-1 in place. Rotating the first... Tighten screw 3-7 by hand to rotate screw 3-6. Under the action of limit rod 3-9 and limit tube 3-8, internal thread tube 3-5 and moving block 3-4 descend, causing rubber plate 3-10 to descend and press against the carbon fiber profile. Unscrew nut 3-12, rotate rubber plate 3-10 until it is in contact with the surface of carbon fiber profile, then screw nut 3-12 back on, so that rubber pad 3-13 on nut 3-12 abuts against moving block 3-4, fixing the rubber... The adhesive plate 3-10 fixes the upper and lower sides of the carbon fiber profile; starting motor 4-3 rotates screw 4-4, causing internal thread tube 4-5 to move, which in turn moves limiting plate 3-1, limiting plate 3-2, and separator rod 3-3, pushing the carbon fiber profile to the right. Slider 4-7 moves on slide rail 4-6, allowing limiting plate 3-1 to move smoothly; pushing the carbon fiber profile onto support plate 6-7, starting electric telescopic rod 6-3 and electric telescopic rod 6-2... Rod 6-10 causes push plate 6-11 to abut against the carbon fiber profile, and the length of the carbon fiber profile on support plate 6-7 meets the required length. After cutting with the cutting device, start electric telescopic rod 6-3 to push base 6-1 to the right, start motor 6-5 to drive shaft 6-6 to rotate, causing support plate 6-7 to rotate, which in turn drives the cut carbon fiber profile to rotate. Start electric telescopic rod 6-10 and push plate 6-11 to push out the carbon fiber profile.
[0088] The beneficial effects of this specific embodiment after adopting the above structure are as follows:
[0089] 1. It is equipped with a limiting mechanism 3 and an adjusting mechanism 5, which can fit and limit the carbon fiber profile according to its shape, while facilitating movement and preventing the carbon fiber profile from shifting during cutting;
[0090] 2. Equipped with a transfer mechanism 6, it facilitates the timely transfer of cut carbon fiber profiles to other containers without manual handling, thus improving safety.
[0091] The above description is only used to illustrate the technical solution of the present invention and is not intended to limit it. Any other modifications or equivalent substitutions made by those skilled in the art to the technical solution of the present invention, as long as they do not depart from the spirit and scope of the technical solution of the present invention, should be covered within the scope of the claims of the present invention.
Claims
1. A carbon fiber profile processing device, comprising a support platform (1) and legs (2); the four corners of the bottom of the support platform (1) are all fixed with legs (2); Its features are, It also includes: A limiting mechanism (3) is provided on the support platform (1); the limiting mechanism (3) includes: A first limiting plate (3-1) is provided on the support platform (1); a second limiting plate (3-2) is provided above the first limiting plate (3-1); The number of the partition rods (3-3) is several, and they are fixed at equal intervals between the first limiting plate (3-1) and the second limiting plate (3-2). The movable blocks (3-4) are of several types and are respectively located between two adjacent separators (3-3). The front end of the movable block (3-4) is fixed with a first internal threaded tube (3-5). A first screw (3-6) is screwed into the first internal threaded tube (3-5) through a thread. The lower end of the first screw (3-6) is screwed onto the first limiting plate (3-1) through a bearing. The upper end of the first screw (3-6) is screwed through the second limiting plate (3-2) through a bearing and then fixed with a first hand screw (3-7). The rear end of the movable block (3-4) is fixed with a limiting tube (3-8). A first limiting rod (3-9) is movably inserted into the limiting tube (3-8). The upper and lower ends of the first limiting rod (3-9) are respectively fixed onto the second limiting plate (3-2) and the first limiting plate (3-1). Rubber plate (3-10), there are several rubber plates (3-10) and they are respectively located on the right side of the movable block (3-4). A threaded rod (3-11) is fixed to the left end of the rubber plate (3-10). The threaded rod (3-11) passes through the movable block (3-4) through a bearing and is fitted with a nut (3-12) through a threaded connection. The number of the moving mechanism (4) is two, and they are respectively located on the front and back of the upper surface of the support platform (1). The moving mechanism (4) is connected to the limiting mechanism (3). Adjustment mechanism (5), there are two adjustment mechanisms (5), and they are respectively provided on the moving mechanism (4); A transfer mechanism (6) is located on the right side of the support platform (1); the transfer mechanism (6) comprises: The base (6-1) is located on the right side of the support platform (1); the left side wall of the base (6-1) is connected to the movable end of the first electric telescopic rod (6-3), which is connected to an external power source; the mounting end of the first electric telescopic rod (6-3) is fixed on the second mounting plate (6-4), and the front and rear sides of the second mounting plate (6-4) are fixed to the front and rear support legs (2) on the right side; The second motor (6-5) is fixed on the base (6-1) and connected to an external power source; a rotating shaft (6-6) is fixed on the output shaft of the second motor (6-5); A support plate (6-7) is fixed on a rotating shaft (6-6); the upper surface of the support plate (6-7) is flush with the upper surface of the support platform (1); baffles (6-8) are fixed at both the front and rear of the upper surface of the support plate (6-7); a third mounting plate (6-9) is fixed on the right side of the lower surface of the support plate (6-7); a second electric telescopic rod (6-10) is fixed on the right side wall of the third mounting plate (6-9); and the second electric telescopic rod (6-10) is connected to an external power source. Push plate (6-11) is mounted on support plate (6-7). A first connecting plate (6-12) is fixed to the right side wall of push plate (6-11). A second connecting plate (6-13) is fixed to the bottom of the left side wall of the first connecting plate (6-12). The second connecting plate (6-13) is fixed to the movable end of the second electric telescopic rod (6-10).
2. The carbon fiber profile processing device according to claim 1, characterized in that: A rubber pad (3-13) is fixed on the right side wall of the nut (3-12).
3. The carbon fiber profile processing device according to claim 1, characterized in that: The aforementioned moving mechanism (4) all include: A fixing plate (4-1) is fixed to the outer side of the upper surface of the support platform (1); a mounting plate (4-2) is fixed to the bottom left and right sides of the inner side wall of the fixing plate (4-1); a motor (4-3) is fixed to the left side of the mounting plate (4-2) on the right side; a screw (4-4) is fixed to the output shaft of the motor (4-3); the left end of the screw (4-4) is screwed to the mounting plate (4-2) on the left side through a bearing; a threaded tube (4-5) is threaded onto the screw (4-4); the threaded tube (4-5) is fixed to the outer side of the limiting plate (3-1); The slide rail (4-6) is fixed to the upper part of the inner side wall of the fixing plate (4-1); the slide rail (4-6) is slidably sleeved with a slider (4-7), and the slider (4-7) is fixed to the outer side of the second limiting plate (3-2).
4. The carbon fiber profile processing device according to claim 3, characterized in that: The aforementioned adjustment mechanisms (5) all include: An adjusting plate (5-1) is located inside the fixed plate (4-1); an adjusting tube (5-2) is fixed on the outer wall of the adjusting plate (5-1). An adjusting ball (5-3) is movably mounted on an adjusting tube (5-2). A hand-tightening bolt (5-4) is screwed onto the adjusting tube (5-2) via threads arranged with equal rounded corners. The inner end of the hand-tightening bolt (5-4) abuts against the adjusting ball (5-3). A third-order internally threaded tube (5-5) is fixed to the outer end of the adjusting ball (5-3). A third-order screw (5-6) is threaded into the third-order internally threaded tube (5-5). The third-order screw (5-6) passes through a fixed plate (4-1) via a bearing and is then fixed with a second-order hand-tightening bolt (5-7). The second limiting rod (5-9) consists of two rods, which are fixed to the annular wall of the third internal threaded tube (5-5). The second limiting rod (5-9) has an "L" shaped structure, and the other end of the second limiting rod (5-9) is movably inserted into the fixing plate (4-1).
5. The carbon fiber profile processing device according to claim 1, characterized in that: The four corners of the base (6-1) are each connected to a caster wheel (6-2).
Citation Information
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