CN-224213026-U - Textile fabric production shearing equipment
Abstract
The utility model discloses a textile fabric production cutting equipment belongs to surface fabric processing technology field, including the bottom plate, be fixed with two second mounting panels that are symmetric distribution on the top side of bottom plate, be provided with the cutter roller that parallels with the guide roll between two second mounting panels, be provided with the cutter on the side of cutter roller, be provided with the installation component on the cutter roller, be provided with on one of them first mounting panel and drive the adjustment subassembly; the utility model discloses a drive and transfer the subassembly and drive the guide roll and rotate and adjust certain angle to through the eccentric design of first end axostylus axostyle and guide roll, make the guide roll be close to the cutter on the cutter roller at the in-process of rotating and adjusting certain angle, the clearance constantly reduces between guide roll and the cutter, when the guide roll rotates the angle of setting, make the cutter extrude the surface fabric on the guide roll side and cut, thereby cut fast through the surface fabric that the cutter will be on the guide roll side, the surface fabric cuts efficiently, it is simpler to cut the structure.
Inventors
- JIA YOUBING
Assignees
- 上海小蓝象服装有限公司
Dates
- Publication Date
- 20260508
- Application Date
- 20250515
Claims (7)
- 1. The utility model provides a textile fabric production shearing equipment, includes bottom plate (4), its characterized in that, be fixed with two first mounting panels (5) that are symmetrical distribution on the top side of bottom plate (4), two be provided with between first mounting panels (5) guide roll (3), guide roll (3) both ends all are fixed with first end axostylus axostyle (10) and first mounting panels (5) rotation connection with the deflection of guide roll (3), be fixed with two second mounting panels (6) that are symmetrical distribution on the top side of bottom plate (4), be provided with between two second mounting panels (6) cutter roller (7) that are parallel arrangement with guide roll (3), be provided with cutter (8) on the side of cutter roller (7), cutter (8) are provided with a plurality of and a plurality of cutters (8) and are annular distribution, be provided with on cutter roller (7) and carry out spacing installation component (1) to cutter (8), both ends of roller (7) are fixed with second axostylus axostyle (11) and second axostyle (11) rotation connection with the second axostylus axostyle (11) of the second mounting panel, one of the second support plates (6) is fixed with a motor (9) on the side face, the output end of the motor (9) is fixed with a second end shaft lever (11) at one end of the cutter roller (7), and one of the first support plates (5) is provided with a driving and adjusting assembly (2) for driving the guide roller (3) to rotate.
- 2. The textile fabric production shearing apparatus as recited in claim 1, wherein the mounting assembly (1) comprises a T-shaped slot (106) which is arranged on the side surface of the cutter roller (7) and along the length direction of the cutter roller (7), one end of the T-shaped slot (106) is arranged in an opening manner, the T-shaped slot (106) is provided with a plurality of T-shaped slots (106) and a plurality of cutters (8) which are arranged in a one-to-one correspondence manner, and the cutters (8) are appropriately matched with the T-shaped slots (106).
- 3. The textile fabric production shearing apparatus as recited in claim 2, wherein a thread (105) is provided on a side surface of the second end shaft lever (11) on the cutter roller (7) far away from one end of the motor (9), the second end shaft lever (11) is connected with a mounting sleeve (103) through the thread (105) in a threaded manner, and a baffle plate (101) attached to the side surface of the end of the cutter roller (7) is fixed on the mounting sleeve (103).
- 4. A textile fabric production shearing apparatus as claimed in claim 3, wherein the side of the baffle plate (101) is provided with a plurality of extraction notches (102), and the extraction notches (102) are arranged in a one-to-one correspondence with the plurality of T-shaped slots (106).
- 5. A textile fabric production cutting apparatus according to claim 3, wherein a handle bar (104) is fixed on the outer side wall of the mounting sleeve (103), and a rubber sleeve is fitted on the surface of the handle bar (104).
- 6. The textile fabric production shearing apparatus as recited in claim 1, wherein the adjustment assembly (2) comprises a large gear (201) fixed on a first end shaft (10) at one end of the guide roller (3), a servo motor (202) is fixed on a side surface of one of the first support plates (5), and a small gear (203) in meshed connection with the large gear (201) is fixed on an output end of the servo motor (202).
- 7. The textile fabric production shearing apparatus as recited in claim 6, wherein a mounting plate (204) is fixed on a side surface of the first support plate (5), and the servo motor (202) is fixed on a top end of the mounting plate (204).
Description
Textile fabric production shearing equipment Technical Field The utility model relates to the technical field of fabric processing, in particular to a shearing device for textile fabric production. Background The textile fabric is taken as an indispensable part of daily life of human beings, from soft cotton and hemp to glossy silk to diversified synthetic fibers, and meets different wearing requirements of people by virtue of rich materials and various textures of the textile fabric. Natural fabrics such as cotton, hemp, wool and the like are deeply favored by consumers due to good air permeability and comfort. Synthetic fabrics such as polyester fiber and nylon occupy a place in outdoor and sportswear due to the characteristics of wear resistance and easy treatment. Along with the progress of technology, modern textile technology is innovated continuously, so that the fabric has a qualitative leap in functionality. Functional fabrics such as waterproof, breathable, sun-proof, antibacterial and the like are generated, and more convenience is brought to the life of people. Textile fabric generally needs to use cutting equipment to cut the fabric in the production process, the structure of the existing special cutting equipment is too complex in the process of cutting the textile fabric, the input use and maintenance cost are high, the fabric is pressed and fixed by using a pressing plate, the fabric is cut by a cutter, wrinkles are easily generated, the operation steps are complicated, the overall processing efficiency is influenced, the cutter replacement frequency is high, and the replacement is inconvenient. Therefore, it is necessary to provide a cutting device for textile fabric production to solve the above technical problems. Disclosure of utility model The utility model aims to provide a textile fabric production shearing device for solving the problems in the background technology. In order to achieve the aim, the technical scheme includes that the textile fabric production shearing equipment comprises a bottom plate, two symmetrically distributed first support plates are fixed on the top side surface of the bottom plate, guide rollers are arranged between the two first support plates, first end shaft rods which are eccentrically arranged with the guide rollers are fixed at two ends of the guide rollers and are rotatably connected with the first support plates, two symmetrically distributed second support plates are fixed on the top side surface of the bottom plate, cutter rollers which are arranged in parallel with the guide rollers are arranged between the two second support plates, cutters are arranged on the side surface of each cutter roller, a plurality of cutters are distributed in an annular mode, mounting assemblies for limiting the cutters are arranged on each cutter roller, second end shaft rods which are coaxially arranged with each cutter roller are fixedly arranged at two ends of each cutter roller and are rotatably connected with the second support plates, a motor is fixedly arranged on the side surface of one second support plate, an output end of the motor is fixedly connected with a second shaft at one end of each roller, and one of the first support plates is rotatably driven by one drive assembly is arranged on each first support plate. As a further scheme of the utility model, the mounting assembly comprises T-shaped slots which are arranged on the side face of the cutter roller and are arranged along the length direction of the cutter roller, one end of each T-shaped slot is provided with an opening, a plurality of T-shaped slots are arranged in one-to-one correspondence with the cutters, and the cutters are properly matched with the T-shaped slots in an inserting way. As a further scheme of the utility model, threads are arranged on the side surface of the second end shaft lever, which is far away from one end of the motor, of the cutter roller, the second end shaft lever is connected with a mounting sleeve through threads, and a baffle plate which is attached to the side surface of the cutter roller end is fixed on the mounting sleeve. As a further scheme of the utility model, the side surface of the baffle is provided with a plurality of taking-out notches, and the taking-out notches are arranged in a one-to-one correspondence with the T-shaped slots. As a further scheme of the utility model, a handle rod is fixed on the outer side wall of the mounting sleeve, and a rubber sleeve is sleeved on the surface of the handle rod in a fitting way. As a further scheme of the utility model, the driving and adjusting assembly comprises a large gear fixed on a first end shaft lever at one end of the guide roller, wherein a servo motor is fixed on the side surface of one first support plate, and a small gear meshed with the large gear is fixed on the output end of the servo motor. As a further scheme of the utility model, the side surface of the first support plate is fixed with a moun