Fixing base for textile equipment

By integrating positioning, buffering, and leveling mechanisms into the base of the textile equipment, the vibration problem of high-speed rotating textile equipment has been solved, achieving full-frequency vibration suppression and equipment stability, and improving the service life and processing accuracy of the equipment.

CN121497773AActive Publication Date: 2026-02-10FUJIAN CHARME TEXTILE
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Patent Information

Application Number
CN202610043721.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-01-14
Publication Date
2026-02-10
Estimated Expiration
2046-01-14

AI Technical Summary

Technical Problem

Existing textile equipment generates high-frequency vibrations during high-speed rotation, leading to fabric defects and wear on equipment parts. Furthermore, the lack of effective cushioning and vibration reduction structures affects equipment stability and service life.

Method used

A fixed base including a positioning mechanism, a buffer mechanism, and a leveling mechanism is designed. The installation position is adjusted by a telescopic cylinder, the arc-shaped buffer plate disperses vibration energy, the airbag ball and buffer spring absorb vibration, and the leveling mechanism adapts to the ground elevation difference, thereby achieving full-frequency vibration suppression and equipment stability.

Benefits of technology

It effectively reduces vibration and noise in textile equipment, extends the replacement cycle of equipment parts, improves equipment installation efficiency and processing accuracy, and reduces maintenance costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of equipment bases, and discloses a fixing base for textile equipment, which structurally comprises a base, a buffer base plate, a positioning mechanism, supporting legs and a buffer mechanism, and is characterized in that a piston rod on a telescopic cylinder stretches out and draws back to drive a connected mounting plate and a sliding block connected with the mounting plate to move back and forth on a guide rail; the installation position of the textile equipment can be adjusted according to the installation positions and sizes of the textile equipment of different sizes, the installation efficiency of the equipment is improved, then a buffering mechanism is arranged in a base of the textile equipment, vibration energy is dispersed through a first-stage buffering plate, and high-frequency vibration can be absorbed through a buffering spring and an air bag ball; and the secondary buffer springs absorb low and medium frequency vibration, so that graded suppression of full-band vibration of the textile equipment is achieved, vibration of core parts such as a main shaft bearing of the equipment is buffered and reduced, the abrasion rate of the parts of the equipment is reduced, the replacement period is prolonged, and the effect of reducing noise of the textile equipment can be achieved.
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Description

TECHNICAL FIELD

[0001] The application belongs to the field of equipment base, and particularly relates to a fixed base for textile equipment. BACKGROUND

[0002] Textile equipment is a general term for various mechanical equipment for processing natural fibers or chemical fibers into textiles, and is a production means and material basis for the textile industry, and the technical level thereof directly affects the development of the textile industry.

[0003] Among them, high-speed air-jet looms, high-yield carding machines, rapier looms and other equipment have become the mainstream equipment in textile workshops due to high running speed and large power load. The core working components of such equipment include main shaft bearings, cam transmission mechanisms, weft detectors and the like. These components need to maintain high-precision cooperation during equipment operation, and the working stability thereof directly determines the forming quality and production efficiency of the fabric.

[0004] The existing high-speed air-jet loom equipment generates high-frequency vibration during operation due to the high speed of the main shaft, which can reach 1000-1800r / min. With the high-speed rotation of the main shaft, the equipment generates high-frequency vibration, which causes the jet airflow to deviate, resulting in defects such as weft breakage, weft shrinkage and density deviation. On the other hand, long-term vibration of the equipment can accelerate the wear of internal components, reducing the service life of the equipment.

[0005] The existing equipment base lacks a targeted damping structure, which makes the equipment prone to horizontal displacement due to long-term vibration, further amplifying processing errors.

[0006] Therefore, the application provides a fixed base for textile equipment to improve the above defects. SUMMARY

[0007] The application aims to overcome the shortcomings of the prior art and provide a fixed base for textile equipment that can dampen the textile equipment.

[0008] To solve the above technical problems, the application adopts the following technical solutions:

[0009] A fixed base for textile equipment, which comprises a base, a buffer base plate, a positioning mechanism, a supporting leg and a buffer mechanism. The bottom of the base is arrayed with a plurality of supporting legs. The buffer mechanism is built into the interior of the base. The top of the buffer mechanism is connected with the buffer base plate. The top of the buffer base plate is installed with the positioning mechanism. The top of the positioning mechanism is connected and installed with the bottom of the textile equipment.

[0010] In an embodiment, the positioning mechanism comprises guide rails, sliding blocks, mounting plates, telescopic cylinders, the guide rails are symmetrically provided with two groups and are mounted on the buffer base plate, the sliding blocks are slidingly fitted on the two groups of guide rails, the mounting plates are fixed on the two sides of the sliding blocks, the bottom of the mounting plate is connected with the piston end of the telescopic cylinder, and the telescopic cylinder is fixed on the buffer base plate.

[0011] In an embodiment, the buffer mechanism comprises a partition plate, a primary buffer plate, a U-shaped seat, a push rod, a secondary buffer box and a buffer sleeve, the partition plate is located inside the base and is in contact with the inner wall of the base, the top of the partition plate is provided with a plurality of primary buffer plates, the primary buffer plates are arrayed at equal distances, the two sides of the partition plate are symmetrically provided with a plurality of U-shaped seats, the push rods are rotatably fitted on the U-shaped seats, the other end of the push rod is connected with the secondary buffer box, the secondary buffer box is mounted on the bottom of the base, the bottom of the partition plate is connected with the buffer sleeve, and the buffer sleeve is located on the base.

[0012] In an embodiment, the primary buffer plates are arc-shaped members with the same structure, the mechanical properties of the arc-shaped structure are used, when an external force acts on the arc-shaped surface, the impact force is decomposed along the curved surface and is transmitted to a larger area, local concentration is avoided, and the arc-shaped design can be elastically deformed when subjected to stress, part of the energy is stored and released, and stability is improved.

[0013] In an embodiment, the secondary buffer box comprises a sliding groove, a push block, a buffer spring and an airbag ball, the inner walls of the secondary buffer box are provided with the sliding grooves on the two sides, the push blocks are slidingly fitted in the sliding grooves, the top of the push block is fixed with the push rod, the front end of the push block is provided with the buffer spring, the other end of the buffer spring is fixed with the inner wall of the secondary buffer box, the tail end spring joint of the buffer spring is provided with the airbag ball, and the airbag ball is a rubber elastic airbag.

[0014] In an embodiment, when the textile equipment is mounted on the mounting plate of the positioning mechanism, under the action of the gravity of the equipment, the buffer mechanism is extruded downward, and the buffer base plate is driven to move downward until the bottom of the textile equipment is in contact with the top of the base.

[0015] In an embodiment, the buffer sleeve comprises an outer cylinder, a buffer column and a secondary buffer spring, the buffer column is slidingly fitted in the inner part of the outer cylinder, the buffer column is inserted into the inner part of the outer cylinder, and the secondary buffer spring is mounted between the bottom of the buffer column and the outer cylinder.

[0016] In one specific implementation, the foot comprises a leveling mechanism, a motor and a top plate, the top of the foot is provided with the leveling mechanism, the outer side of the leveling mechanism is provided with the motor, the motor is electrically connected with an external control unit, and the top of the leveling mechanism is connected with the top plate connected with the base.

[0017] In one specific implementation, the leveling mechanism comprises a worm, a limiting seat, a worm wheel, a rotating seat, a pull rod, a roller, an L-shaped slot and a lifting rod, the worm is rotatably connected to the leveling mechanism and one end of the worm is connected with the output end of the motor, the worm is rotatably connected with the limiting seat, the limiting seat is fixed to the leveling mechanism, the bottom of the worm is engaged with the worm wheel, the worm wheel is rotatably connected to the rotating seat, the rotating seat is fixed to the leveling mechanism, one side of the worm wheel is rotatably connected with the pull rod, the pull rod is provided with the rollers at both ends, the rollers are located in the L-shaped slot, the L-shaped slot is installed on the side wall of the leveling mechanism, and one side of the pull rod is connected with the lifting rod.

[0018] In one specific implementation, the leveling accuracy of the leveling mechanism is ±0.1mm, the motor drives the lifting rod to lift through the worm and the worm wheel, the lifting stroke is 0-50mm, and the ground height difference of 0-50mm is adapted to the working condition.

[0019] In one specific implementation, the two groups of rollers installed at both ends of the pull rod are located in the two sliding grooves of the L-shaped slot in the horizontal direction and the vertical direction, respectively, and can slide in the sliding grooves to drive the pull rod to change the inclination angle.

[0020] According to the technical scheme, the fixing base for the textile equipment has the following advantages:

[0021] (1) The positioning mechanism is arranged on the base of the textile equipment, the piston rod of the telescopic cylinder is telescoped to drive the mounting plate connected therewith and the sliding block connected with the mounting plate to move forward and backward on the guide rail, so that the installation position of the textile equipment is adjusted, the installation position can be adjusted according to the installation position size of the textile equipment of different sizes, the applicability is strong, and the installation efficiency of the equipment is improved.

[0022] (2) The buffer mechanism is arranged in the base of the textile equipment, the first buffer plate disperses vibration energy, the buffer spring and the air bag ball can absorb high-frequency vibration, the second buffer spring absorbs medium and low-frequency vibration, the first buffer plate and the second buffer box are matched with each other to realize the graded suppression of the full-band vibration of the textile equipment, the vibration of the core parts such as the main shaft bearing of the equipment is buffered and damped, the wear rate of the parts of the equipment is reduced, the replacement cycle is prolonged, and the noise of the textile equipment is also reduced.

[0023] (3) The leveling mechanism is arranged on the supporting legs of the equipment base, the worm is rotated by the motor, the worm gear at the bottom is rotated, and the pull rod on one side is synchronously moved in the L-shaped groove, so that the height of the four legs on the base can be adjusted, the ground height difference can be quickly compensated, the uneven ground can be adapted, the equipment is prevented from being inclined to affect the processing efficiency of the textile, and the horizontal placement effect of the base and the textile equipment is ensured.

[0024] (4) After the equipment is installed on the base, the buffer base plate is moved downward under the action of gravity to be attached to the bottom of the equipment, predetermined positioning and locking are formed, the rigid connection of the positioning mechanism is matched, horizontal displacement during equipment operation is effectively prevented, and the stability of processing precision is ensured.

[0025] (5) The modules of the various mechanisms are designed to be detachable, the parts (such as sliding blocks, buffer springs and air bag balls) of the positioning mechanism and the buffer mechanism can be individually disassembled and replaced without the need to disassemble the base as a whole, the transmission structure of the step motor and the worm gear of the leveling mechanism can reduce the failure rate, the maintenance cycle is longer than the equipment overhaul cycle, and the maintenance cost of the equipment is further reduced. BRIEF DESCRIPTION OF DRAWINGS

[0026] Other features, objects and advantages of the present application will become more apparent from the following detailed description of non-limiting embodiments, made with reference to the accompanying drawings:

[0027] Figure 1 FIG. 1 is a structural schematic view of a fixed base for a textile equipment in an embodiment of the present application;

[0028] Figure 2 FIG. 2 is a structural schematic view of a positioning mechanism in an embodiment of the present application;

[0029] Figure 3 FIG. 3 is a structural schematic view of a buffer mechanism in an embodiment of the present application;

[0030] Figure 4 FIG. 4 is a structural schematic view of a secondary buffer box in an embodiment of the present application;

[0031] Figure 5 FIG. 5 is an installation schematic view of an air bag ball in an embodiment of the present application;

[0032] Figure 6 FIG. 6 is a structural schematic view of a buffer sleeve in an embodiment of the present application;

[0033] Figure 7 FIG. 7 is a structural schematic view of a supporting leg in an embodiment of the present application;

[0034] Figure 8 FIG. 8 is a structural schematic view of a leveling mechanism in an embodiment of the present application.

[0035] In the diagram: Base-1, Buffer base plate-2, Positioning mechanism-3, Support leg-4, Buffer mechanism-5, Guide rail-31, Slider-32, Mounting plate-33, Telescopic cylinder-34, Partition plate-51, Primary buffer plate-52, U-shaped seat-53, Push rod-54, Secondary buffer box-55, Buffer sleeve-56, Slide groove-551, Push block-552, Buffer spring-553, Airbag ball-554, Outer cylinder-561, Buffer column-562, Secondary buffer spring-563, Leveling mechanism-41, Motor-42, Top plate-43, Worm gear-11, Limit seat-12, Worm wheel-13, Rotating seat-14, Pull rod-15, Roller-16, L-shaped groove-17, Lifting rod-18. Detailed Implementation

[0036] To make the technical means, creative features, objectives and effects of this invention easier to understand, the invention will be further described below in conjunction with specific embodiments.

[0037] Example 1: Please refer to Figures 1-6 The specific embodiments of the present invention are as follows:

[0038] A fixed base for textile equipment includes a base 1, a buffer base plate 2, a positioning mechanism 3, support legs 4, and a buffer mechanism 5. The bottom of the base 1 has several support legs 4 arranged in an array. The base 1 has a built-in buffer mechanism 5 that can buffer the vibration generated when the textile equipment is running. The top of the buffer mechanism 5 is connected to the buffer base plate 2. The top of the buffer base plate 2 is equipped with the positioning mechanism 3. The top of the positioning mechanism 3 is connected to the bottom of the textile equipment.

[0039] Please see Figures 1-2 The positioning mechanism 3 includes a guide rail 31, a slider 32, a mounting plate 33, and a telescopic cylinder 34. Two sets of guide rails 31 are symmetrically arranged and mounted on the buffer base plate 2. Slider 32 is slidably fitted on both sets of guide rails 31. Mounting plates 33 are fixed on both sides of the two sliders 32. The mounting plates 33 can be installed and fixed to the base of the textile equipment by bolts. The bottom of the mounting plate 33 is connected to the piston end of the telescopic cylinder 34. The telescopic cylinder 34 is fixed on the buffer base plate 2.

[0040] Please see Figure 2 By driving the telescopic cylinder 34 to operate, and with the extension and retraction of the piston rod, the mounting plate 33 connected to it and the slider 32 connected to the mounting plate 33 can be moved back and forth on the guide rail 31, thereby adjusting the installation position of the textile equipment. The position can be adjusted according to the installation position size of textile equipment of different sizes, making it highly adaptable.

[0041] Please see Figure 3The buffer mechanism 5 includes a partition 51, a primary buffer plate 52, a U-shaped seat 53, a push rod 54, a secondary buffer box 55, and a buffer sleeve 56. The partition 51 is located inside the base 1 and contacts the inner wall of the base 1. Several primary buffer plates 52 are installed on the top of the partition 51. The primary buffer plates 52 are arranged in an array at equal intervals. Several U-shaped seats 53 are symmetrically installed on both sides of the partition 51. Push rods 54 are rotatably fitted on the U-shaped seats 53. The other end of the push rod 54 is connected to the secondary buffer box 55. The secondary buffer box 55 is installed at the bottom of the base 1. The bottom of the partition 51 is connected to the buffer sleeve 56, which is located on the base 1.

[0042] Please see Figure 3 Several primary buffer plates 52 are arc-shaped components with the same structure. With the help of the mechanical properties of the arc structure, when an external force is applied to the arc surface, the impact force will be decomposed along the curved surface and transmitted to a larger area, avoiding local concentration. Moreover, the arc design can undergo elastic deformation when subjected to force, storing and releasing some energy and improving stability.

[0043] Please see Figures 4-5 The secondary buffer box 55 includes a slide groove 551, a push block 552, a buffer spring 553, and an airbag ball 554. The inner wall of the secondary buffer box 55 has slide grooves 551 on both sides, and push blocks 552 are slidably fitted in the slide grooves 551 on both sides. The top of the push block 552 is fixed to the push rod 54. The front end of the push block 552 is equipped with a buffer spring 553. The other end of the buffer spring 553 is fixed to the inner wall of the secondary buffer box 55. An airbag ball 554 is installed on the spring joint at the tail end of the buffer spring 553. The airbag ball 554 is a rubber elastic airbag. When the buffer spring 553 is compressed by the movement of the push block 552, the airbag ball 554 can squeeze the airbag ball 554, which can increase the buffering performance of the buffer spring 553.

[0044] Please see Figures 1-5 When the textile equipment is installed on the mounting plate 33 of the positioning mechanism 3, under the action of the equipment's gravity, it will squeeze the buffer mechanism 5 downward and drive the buffer base plate 2 to move downward until the bottom of the textile equipment contacts the top of the base 1 and then stops.

[0045] Please see Figure 5 When the textile equipment is running, it generates downward vibration force. With the help of the arc-shaped structure of the primary buffer plate 52 installed on the buffer mechanism 5, the external force can be effectively dispersed, energy absorbed and local impact reduced, thus providing initial buffering for the vibration of the equipment. Then, under the action of the equipment's gravity and vibration force, it will press down on the partition plate 51 and move forward through the push rods 54 on both sides of the partition plate 51, compressing the buffer spring 553. Under the action of the buffer spring 553 and the airbag ball 554, the textile equipment can reduce vibration and noise.

[0046] Please see Figure 6 The buffer sleeve 56 includes an outer cylinder 561, a buffer column 562, and a secondary buffer spring 563. The buffer column 562 is slidably fitted inside the outer cylinder 561. The buffer column 562 is inserted into the outer cylinder 561, and a secondary buffer spring 563 is installed between the bottom of the buffer column 562 and the outer cylinder 561. When the buffer column 562 is subjected to the downward gravity and compression force of the partition 51, it will move downward and compress the secondary buffer spring 563. The secondary buffer spring 563 can play a buffering role for the buffer column 562. The elastic coefficient of the secondary buffer spring 563 is greater than that of the buffer spring 553.

[0047] Example 2: Please refer to Figures 7-8 The specific embodiments of the present invention are as follows:

[0048] Please see Figure 7 The support leg 4 includes a leveling mechanism 41, a motor 42 and a top plate 43. The leveling mechanism 41 is installed on the top of the support leg 4. The motor 42 is installed on the outer side of the leveling mechanism 41. The motor 42 is electrically connected to the external control unit. The top of the leveling mechanism 41 is connected to the top plate 43, which is connected to the base 1.

[0049] Please see Figures 7-8 The leveling mechanism 41 includes a worm gear 11, a limiting seat 12, a worm wheel 13, a rotating seat 14, a pull rod 15, a roller 16, an L-shaped groove 17, and a lifting rod 18. The worm gear 11 is rotatably fitted onto the leveling mechanism 41, and one end is connected to the output end of the motor 42. The worm gear 11 is driven to rotate by the forward and reverse rotation of the motor 42. The limiting seat 12 is rotatably fitted onto the worm gear 11 and is fixed to the leveling mechanism 41. The worm wheel 13 meshes with the bottom of the worm gear 11 and is rotatably fitted onto the rotating seat 14. On the seat 14, the rotating seat 14 is fixed to the leveling mechanism 41. A pull rod 15 is rotatably fitted on one side of the worm gear 13. Rollers 16 are installed at both ends of the pull rod 15. The rollers 16 are located in the L-shaped groove 17 and can slide in the L-shaped groove 17. The L-shaped groove 17 is installed on the side wall of the leveling mechanism 41. A lifting rod 18 is connected to one side of the pull rod 15. The lifting rod 18 passes through the outside of the leveling mechanism 41 and is connected to the top plate 43, which can drive the top plate 43 to adjust the height.

[0050] Please see Figures 7-8 The leveling mechanism 41 has a leveling accuracy of ±0.1mm. The motor 42 drives the lifting rod 18 to rise and fall through the worm gear transmission. The lifting stroke is 0-50mm, which is suitable for working conditions with a ground height difference of 0-50mm.

[0051] Please see Figure 8The two sets of rollers 16 installed at both ends of the pull rod 15 are located inside the two sliding grooves in the horizontal and vertical directions of the L-shaped groove 17, respectively, and can slide inside them to drive the pull rod 15 to change the tilt angle.

[0052] Please see Figures 7-8 The motor 42 drives the worm gear 11 to rotate, which, with the help of the worm wheel and worm, drives the worm wheel 13 at the bottom to rotate. As the worm wheel 13 rotates, it drives the pull rod 15 on one side to move synchronously in the L-shaped groove 17, thereby adjusting the height of the lifting rod 18.

[0053] Please see Figures 1-8 The components of the positioning and buffering mechanisms (such as sliders, buffer springs, and airbags) can be disassembled and replaced individually without disassembling the entire base. The stepper motor and worm gear transmission structure of the leveling mechanism can reduce the failure rate and make the maintenance cycle longer than the equipment overhaul cycle, further reducing the maintenance cost of the equipment.

[0054] Based on the above embodiments, the specific working principle is as follows:

[0055] When the textile equipment needs to be placed on the base 1, the mounting plate 33 provided on the base 1 is installed and fixed to the bottom of the textile equipment. Then, the telescopic cylinder 34 drives the mounting plate 33 and the slider 32 connected to it to move back and forth on the guide rail 31, thereby adjusting the installation position of the textile equipment. When the textile equipment is installed on the mounting plate 33, under the action of the equipment's gravity, it will squeeze the buffer mechanism 5 downward and drive the buffer base plate 2 to move downward until the bottom of the textile equipment contacts the top of the base 1 and then stops.

[0056] When the textile equipment is running, it generates downward vibration force. The primary buffer plate 52 installed on the buffer mechanism 5 can effectively disperse the external force, absorb energy and reduce local impact, thus providing initial buffering for the vibration of the equipment. Then, under the action of the equipment's gravity and vibration force, it will press down on the partition plate 51, and the push rods 54 on both sides of the partition plate 51 will move forward to press the buffer spring 553. Under the action of the buffer spring 553 and the airbag ball 554, the textile equipment can reduce vibration and noise.

[0057] When the ground is uneven, the motor 42 drives the worm gear 11 to rotate. With the help of the worm wheel and worm gear, the worm wheel 13 at the bottom will rotate. As the worm wheel 13 rotates, the pull rod 15 on one side will move synchronously in the L-shaped groove 17, thereby adjusting the height of the lifting rod 18.

[0058] This invention solves the problems of existing high-speed air-jet looms, which, due to the high-speed rotation of the spindle, generate high-frequency vibrations that cause fabric defects such as weft breakage, weft shrinkage, and sparse or dense lines, and whose long-term vibrations exacerbate the wear of internal components and reduce the service life of the equipment.

[0059] This invention, through the combination of the above-mentioned components, uses a primary buffer plate to disperse vibration energy, a buffer spring and an air bladder to absorb high-frequency vibrations, and a secondary buffer spring to absorb mid- and low-frequency vibrations. Through the cooperation between the primary buffer plate and the secondary buffer box, it achieves graded suppression of vibrations across the entire frequency range of textile equipment, thereby buffering and reducing the vibrations of core components such as the main shaft bearings, reducing the wear rate of equipment components, extending the replacement cycle, and also reducing noise in textile equipment.

[0060] In the description of this invention, it should be understood that the indicated orientation or positional relationship is based on the orientation or positional relationship shown in the accompanying drawings, and is only for the convenience of describing this invention and simplifying the description, and is not intended to indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this invention.

[0061] The control method of the present invention is through a controller. The control circuit of the controller can be implemented by simple programming by those skilled in the art. The power supply is also common knowledge in the art. Therefore, the present invention will not explain the control method and circuit connection in detail.

[0062] The above are merely specific embodiments of this application, but the scope of protection of this application is not limited thereto. Any changes or substitutions that can be easily conceived by those skilled in the art within the scope of the technology disclosed in this application should be included within the scope of protection of this application.

Claims

1. A fixed base for textile equipment, comprising a base (1), a plurality of legs (4) arranged in an array at the bottom of the base (1), and a buffer mechanism (5) built into the base (1), wherein a buffer base plate (2) is connected to the top of the buffer mechanism (5), and a positioning mechanism (3) is mounted on the top of the buffer base plate (2), and the top of the positioning mechanism (3) is connected to the bottom of the textile equipment; characterized in that: The buffer mechanism (5) includes a partition (51), a plurality of primary buffer plates (52) located on the top of the partition (51), a plurality of U-shaped seats (53) symmetrically installed on both sides of the partition (51), and a push rod (54) for rotating with the plurality of U-shaped seats (53). The other end of the push rod (54) is connected to the secondary buffer box (55). The bottom of the partition (51) is connected to the buffer sleeve (56), and the buffer sleeve (56) is located on the base (1). The secondary buffer box (55) includes a sliding groove (551) on both sides of the inner wall of the secondary buffer box (55), a push block (552) for sliding cooperation with the sliding groove (551) on both sides, and a buffer spring (553) installed at the front end of the push block (552). The other end of the buffer spring (553) is fixed to the inner wall of the secondary buffer box (55), and an airbag ball (554) is installed on the spring joint at the tail end of the buffer spring (553). The support leg (4) includes a leveling mechanism (41) and a motor (42) located on the outside of the leveling mechanism (41). The motor (42) is electrically connected to an external control unit. The top of the leveling mechanism (41) is connected to a top plate (43) connected to the base (1). The leveling mechanism (41) includes a worm (11), a limiting seat (12) for rotating with the worm (11), a worm wheel (13) for meshing with the bottom of the worm (11), a rotating seat (14) for rotating with the worm wheel (13), and a pull rod (15) located on one side of the worm wheel (13). Rollers (16) are installed at both ends of the pull rod (15). The rollers (16) are located in an L-shaped groove (17). The L-shaped groove (17) is installed on the side wall of the leveling mechanism (41). A lifting rod (18) is connected to one side of the pull rod (15). The lifting rod (18) passes through the outside of the leveling mechanism (41) and is connected to the top plate (43).

2. A fixing base for textile equipment according to claim 1, characterized in that: The positioning mechanism (3) includes a guide rail (31), a slider (32) for sliding cooperation with the guide rail (31), and a mounting plate (33) located on the slider (32). The bottom of the mounting plate (33) is connected to the piston end of the telescopic cylinder (34). The telescopic cylinder (34) is fixed on the buffer base plate (2) with a stroke of 0-600 mm.

3. A fixing base for textile equipment according to claim 1, characterized in that: When textile equipment is installed on the mounting plate (33) of the positioning mechanism (3), under the action of the equipment's gravity, it will squeeze the buffer mechanism (5) downward and drive the buffer base plate (2) to move downward until the bottom of the textile equipment contacts the top of the base (1) and stops, thus achieving positioning and locking.

4. A fixing base for textile equipment according to claim 1, characterized in that: The buffer sleeve (56) includes an outer cylinder (561), a buffer post (562), and a secondary buffer spring (563). The buffer post (562) is slidably fitted inside the outer cylinder (561). The buffer post (562) is inserted into the outer cylinder (561), and a secondary buffer spring (563) is installed between the bottom of the buffer post (562) and the outer cylinder (561).

5. A fixing base for textile equipment according to claim 1, characterized in that: Several of the first-level buffer plates (52) are arc-shaped components with the same structure. With the help of the mechanical properties of the arc structure, when an external force is applied to the arc surface, the impact force will be decomposed along the curved surface and transmitted to a larger area, avoiding local concentration.

6. A fixing base for textile equipment according to claim 1, characterized in that: The secondary buffer box (55) is installed at the bottom of the base (1), and the top of the push block (552) is fixed to the push rod (54).

7. A fixing base for textile equipment according to claim 1, characterized in that: The leveling mechanism (41) has a leveling accuracy of ±0.1mm. The motor (42) drives the lifting rod (18) to rise and fall through the worm gear transmission. The lifting stroke is 0-50mm, which is suitable for working conditions with a ground height difference of 0-50mm.

8. A fixing base for textile equipment according to claim 1, characterized in that: The airbag ball (554) is a rubber elastic airbag.

9. A fixing base for textile equipment according to claim 1, characterized in that: The two sets of rollers (16) installed at both ends of the pull rod (15) are located inside the two sliding grooves in the horizontal and vertical directions of the L-shaped groove (17), respectively, and can slide inside them to drive the pull rod (15) to change the tilt angle.

10. A fixing base for textile equipment according to claim 1, characterized in that: The components of the positioning mechanism (3) and the buffer mechanism (5) can be disassembled and replaced individually without disassembling the base (1) as a whole.

Citation Information

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