Adjustable swing clamping jaw
By designing an adjustable swing clamping jaw, the combination of rotating disc, motor, cylinder and clamping jaws can achieve left and right swing and stacking of carbon fiber wires, solving the problem that the traditional wire collection method cannot meet the new application scenarios, and achieving efficient wire collection of carbon fiber wires.
Patent Information
- Application Number
- CN202421941828.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-12
- Publication Date
- 2025-05-02
- Estimated Expiration
- 2034-08-12
AI Technical Summary
The traditional carbon fiber wire collection method cannot meet the demand for carbon fiber wires to be stacked in a box in a tow-like manner in new application scenarios.
An adjustable swing jaw is designed to achieve left and right swing and stacking of carbon fiber wires through a combination of rotating disc, motor, cylinder and jaw.
The carbon fiber wires swing left and right during the wire collection process and stacked together, thus completing the wire collection task in new application scenarios.
Smart Images

Figure CN222818933U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of carbon fiber processing equipment, in particular to an adjustable swing clamp. Background Art
[0002] Carbon fiber is a special fiber mainly composed of carbon elements. Its carbon content varies with different types, but is generally above 90%. Carbon fiber has the characteristics of general carbon materials, such as high temperature resistance, friction resistance, electrical conductivity, thermal conductivity and corrosion resistance, but unlike general carbon materials, its appearance has significant anisotropy, softness, and can be processed into various fabrics, showing high strength along the fiber axis. Carbon fiber has a small specific gravity and therefore has a high specific strength. As a new type of material, carbon fiber filament is widely used in industrial production, military industry, aerospace, home life and other aspects due to its high strength ratio, high stiffness ratio, good high temperature resistance and other excellent properties.
[0003] Traditionally, carbon fiber is collected by winding it into ingots with a core tube as the core. With the continuous expansion of the use scenarios of carbon fiber, new application scenarios require that carbon fiber filaments be collected in the form of tows and stacked into boxes in an "M" shape. The original winding method can no longer meet the collection requirements under this condition. Utility Model Content
[0004] The utility model aims to solve the technical problem of providing an adjustable swing clamp which can swing the carbon fiber wire left and right during the carbon fiber wire collection process, and the carbon fiber wires are stacked together by swinging the carbon fiber wire left and right.
[0005] In order to solve the above technical problems, the utility model provides a technical solution of an adjustable swing clamp:
[0006] It includes a rotating disk and a motor for driving the rotating disk to rotate, wherein a cylinder is installed on the rotating disk; a cylinder connecting rod is connected to the cylinder; a rocker arm sleeve in the same direction as the cylinder connecting rod is also fixed on the rotating disk; a push rod is connected to the end of the cylinder connecting rod; the end of the push rod passes through the rocker arm sleeve and is hinged with a sliding rod; one end of the rocker arm sleeve is fixed to the rotating disk, and the other end is connected to a clamping claw fixing sheet metal; the sliding rod is slidably connected to the clamping claw fixing sheet metal; clamping claws are hinged on both sides of the clamping claw fixing sheet metal, and the two clamping claws are symmetrically arranged; hinged rods corresponding to the two clamping claws are respectively hinged on both sides of the end of the sliding rod; one end of the hinged rod is hinged to the sliding rod, and the other end is hinged to the clamping claw.
[0007] The motor is connected with the rotating disk through a speed reducer.
[0008] The cylinder is fixed on the rotating disk through a supporting frame.
[0009] Among the two clamping jaws, one clamping jaw is provided with a forked clamp at the end, and the other clamping jaw is provided with a middle clamp which can enter into the forked clamp at the end.
[0010] The clamp fixing sheet metal is connected to the rocker arm sleeve through a mounting cover plate; the mounting cover plate is installed at the end of the rocker arm sleeve, and the clamp fixing sheet metal is connected to the mounting cover plate through a bolt assembly.
[0011] The technical effect that can be achieved by the utility model is as follows: during the process of collecting carbon fiber yarns, the utility model uses an adjustable swinging clamp to control the extension of the cylinder connecting rod through the cylinder to make the two clamps clamp the carbon fiber yarns, and the carbon fiber yarns are clamped between the two clamps. Then, by turning on the motor, the motor controls the rotating disk to continuously rotate forward and reverse, so that the swing arm sleeve and the two clamps swing left and right, and the carbon fiber yarn swings left and right with the left and right swing of the clamps. Therefore, the carbon fiber yarns will be stacked together during the process of collecting, thereby completing the collection. BRIEF DESCRIPTION OF THE DRAWINGS
[0012] The present invention is further described in detail below with reference to the accompanying drawings and specific embodiments:
[0013] Figure 1 This is a schematic diagram of the structure of an adjustable swing clamp of the utility model;
[0014] Figure 2 yes Figure 1 A magnified view of part A;
[0015] Figure 3 yes Figure 2 A magnified view of part B;
[0016] Figure 4 It is a connection diagram of the push rod. DETAILED DESCRIPTION
[0017] The utility model is further described in detail below in conjunction with the accompanying drawings.
[0018] See also Figures 1 to 4 .
[0019] A kind of adjustable swing clamp comprises a rotating disk 1 and a motor 2 for driving the rotating disk 1 to rotate, specifically, the motor 2 is connected to the rotating disk 1 through a reducer 11; a cylinder 3 is installed on the rotating disk 1, and the cylinder 3 is fixed to the rotating disk 1 through a support frame 12; a cylinder connecting rod 4 is connected to the cylinder 3, and a rocker arm sleeve 5 in the same direction as the cylinder connecting rod 4 is also fixed to the rotating disk 1; a push rod 6 is connected to the end of the cylinder connecting rod 4, and a slide rod 7 is hinged to the end of the push rod 6 through the rocker arm sleeve 5; one end of the rocker arm sleeve 5 is fixed to the rotating disk 1, and the other end is connected to a clamp fixing sheet metal 8; at the connection of the clamp fixing sheet metal 8, the clamp fixing sheet metal 8 of the utility model is connected to the rocker arm sleeve 5 through an installation cover plate 31, the installation cover plate 31 is installed at the end of the rocker arm sleeve 5, and the clamp fixing sheet metal 8 is connected to the installation cover plate 31 through a bolt assembly.
[0020] The slide bar 7 is slidably connected to the clamp fixing sheet metal 8, and the clamp fixing sheet metal 8 is hinged with clamps 9 on both sides, and the two clamps 9 are symmetrically arranged; one of the two clamps 9 has a forked clamp 21 at the end, and the other clamp 9 has a middle clamp 22 that can enter the forked clamp 21 at the end (refer to Figure 1 , 2 , 3); The ends of the slide rod 7 are respectively hinged with hinged rods 10 corresponding to the two clamping claws 9, one end of the hinged rod 10 is hinged to the slide rod 7, and the other end is hinged to the clamping claw 9.
[0021] When the utility model is in use, the carbon fiber filaments are first grasped. Specifically, the cylinder 3 is opened, and the cylinder 3 controls the extension and retraction of the cylinder connecting rod 4, thereby controlling the push rod 6 and the slide rod 7 to move along the rocker sleeve 5. When the push rod 6 and the slide rod 7 move toward the end of the cylinder 3, the two clamping jaws 9 are opened, and when the push rod 6 and the slide rod 7 move away from the end of the cylinder 3, the two clamping jaws 9 are closed; therefore, when it is necessary to clamp the carbon fiber filaments, the cylinder connecting rod 4 is controlled to extend by the cylinder 3. At this time, the push rod 6 and the slide rod 7 move away from the end of the cylinder 3, and the carbon fiber filaments are clamped between the two clamping jaws, specifically, the carbon fiber filaments are clamped between the forked chuck 21 and the middle chuck 22, and then the motor 2 is turned on, and the motor 2 drives the rotating disk 1 to rotate left and right, so that the rocker sleeve 5 and the two clamping jaws 9 swing left and right, so that in the process of collecting the filaments, the carbon fiber filaments will be stacked together.
Claims
1. An adjustable swing jaw, characterized in that: The invention comprises a rotating disk (1) and a motor (2) for driving the rotating disk (1) to rotate, wherein a cylinder (3) is mounted on the rotating disk (1); a cylinder connecting rod (4) is connected to the cylinder (3); a swing arm sleeve (5) in the same direction as the cylinder connecting rod (4) is also fixed to the rotating disk (1); a push rod (6) is connected to the end of the cylinder connecting rod (4); the end of the push rod (6) passes through the swing arm sleeve (5) and is hingedly connected to a slide rod (7); one end of the swing arm sleeve (5) is fixed to the swing arm sleeve (5) The sliding rod (7) is fixed on the rotating disk (1), and the other end is connected to a clamping plate (8); the sliding rod (7) is slidably connected to the clamping plate (8); the clamping plate (8) is hinged with clamping jaws (9) on both sides, and the two clamping jaws (9) are symmetrically arranged; the two ends of the sliding rod (7) are respectively hinged with hinged rods (10) corresponding to the two clamping jaws (9); one end of the hinged rod (10) is hinged to the sliding rod (7), and the other end is hinged to the clamping jaw (9).
2. The adjustable swing clamp according to claim 1, characterized in that: The motor (2) is connected to the rotating disk (1) via a reducer (11).
3. The adjustable swing clamp according to claim 1, characterized in that: The cylinder (3) is fixed on the rotating disk (1) via a support frame (12).
4. The adjustable swing clamp according to claim 1, characterized in that: Among the two clamping jaws (9), one clamping jaw (9) is provided with a forked clamp (21) at the end thereof, and the other clamping jaw (9) is provided with a middle clamp (22) which can enter into the forked clamp (21) at the end thereof.
5. The adjustable swing clamp according to claim 1, characterized in that: The clamping jaw fixing sheet metal (8) is connected to the rocker arm sleeve (5) via a mounting cover plate (31); the mounting cover plate (31) is mounted on the end of the rocker arm sleeve (5), and the clamping jaw fixing sheet metal (8) is connected to the mounting cover plate (31) via a bolt assembly.