Loom console

By designing a loom control table including movable pedals and damping fast locks, the problem of high and inconvenience in the textile machine operating table is solved, and operation safety and convenience are improved.

CN222878234UActive Publication Date: 2025-05-16GLEN RAVEN TEXTILE TECH SUZHOU
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Patent Information

Application Number
CN202421766143.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-24
Publication Date
2025-05-16
Estimated Expiration
2034-07-24

AI Technical Summary

Technical Problem

The work surface of the existing textile machine is designed with a high position and cannot be adjusted, which makes it inconvenient for operators to operate when wiring the weft storage device. The temporarily placed monitor is easily scratched, causing safety hazards.

Method used

A loom control panel is designed, including a movable first pedal and a second pedal, and the display is mounted on the first pedal, and the pedal is locked and reset by the combination of damping and quick locking members to ensure that the display is always within a safe range.

Benefits of technology

Improves the stability and safety of operators when operating the loom, reduces the risk of the monitor being scraped down, and the console is designed for easy cleaning and maintenance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of textile machinery equipment, in particular to a loom console, and aims to solve the problem that an operator cannot operate a loom due to height limitation caused by the fact that a working table of the loom is high, the loom console comprises a base, a movable first pedal is arranged on the base, and a damper is arranged on the first pedal; the display is mounted on the first pedal; a first pedal is fixedly arranged on the base, a movable second pedal is arranged on the first pedal, a third pedal is further fixedly arranged on the base, a quick locking piece is arranged on the third pedal, and the quick locking piece is used for locking and connecting the second pedal and the third pedal. The control table has the effect of improving the stability of the control table.
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Description

Technical Field

[0001] The present application relates to the technical field of textile machinery and equipment, and in particular to a loom control console. Background Art

[0002] At present, the working table of the textile machines used in the domestic textile industry is designed to be high, and the height of the equipment cannot be adjusted. Due to the height limit, the operators cannot reach the weft feeder when the yarn needs to be threaded and connected, and maintenance and inspection are also inconvenient.

[0003] In actual production, in order to solve the above problems, operators will prepare a small stool by themselves. When necessary, they will move the display of the loom away, put the small stool in the original position of the display, and operate on the small stool; after the operation is completed, they will move the small stool away and put the display back to its original position.

[0004] However, in actual operation, the monitor temporarily placed next to it is easy to be knocked over by other equipment, causing damage to the monitor; and the operator stands on a small stool to lean over the machine to operate, and the small stool is not very stable, which is prone to accidents. This leads to a low safety level in the production process, so it needs to be improved. Utility Model Content

[0005] In order to improve the safety during the loom production process, the present application provides a loom control console.

[0006] The loom control console provided in this application adopts the following technical solution:

[0007] A loom control console comprises a base, on which a movable first pedal is arranged, and a damper is arranged on the first pedal; a display is mounted on the first pedal; a movable second pedal is arranged on the first pedal, and a third pedal is fixedly arranged on the base, and a quick lock is arranged on the third pedal, and the quick lock is used to lock and connect the second pedal with the third pedal.

[0008] By adopting the above technical solution, the operator stands on the base when operating the loom normally. At this time, the first pedal, the second pedal and the display are close to the base, which is convenient for the operator to use. When the weft feeder needs to thread the yarn and connect the wires, the operator pushes the first pedal away from the base, and then pushes the second pedal away from the first pedal; the first pedal contacts the damper during the movement, so that the damper is compressed. Until the second pedal is locked with the quick lock, at this time the first pedal and the second pedal are in a locked state under the restriction of the damper and the quick lock, the operator moves from the base to the first pedal to thread the yarn and connect the wires. After the threading and connecting the yarns are completed, the operator returns to the base, releases the restriction of the quick lock on the second pedal and resets the second pedal, and at this time the first pedal is also reset under the elastic effect of the damper. When the first pedal moves, the display is always within the safety red line of the loom; compared with the prior art, the possibility of the display being knocked down by other equipment is reduced. The damper and the quick lock jointly limit the position of the first pedal and the second pedal, which can improve the stability of the operator standing on the first pedal and improve the safety of the production process.

[0009] Optionally, a first support rod is fixedly provided at the edge of the base near the third pedal, a first rotating part is rotatably connected to the first support rod, the first pedal is connected to the first rotating part, the first pedal is arranged higher than the third pedal, and the projection of the first pedal can cover the third pedal.

[0010] Optionally, a second support rod is fixed on the first pedal, the second support rod is located at an end of the first pedal away from the first support rod, a second rotating part is rotatably connected to the second support rod, and the second pedal is connected to the second rotating part; a third rotating part is rotatably connected to the top end of the second support rod, and the display is connected to the third rotating part.

[0011] Optionally, the second pedal is arranged lower than the first pedal and higher than the third pedal; the projection of the second pedal and the display can both fall on the first pedal.

[0012] By adopting the above technical solution, when the first pedal approaches the base, the second pedal retracts below the first pedal, and the projections of the first pedal, the second pedal and the display all fall on the third pedal. The entire control panel retracts next to the base, and the occupied production space is small, which is convenient for cleaning and maintenance. The operator pushes the first pedal to rotate outward, and the first rotating part rotates 90 degrees clockwise; the movable table also rotates outward. Then the second pedal is controlled to move, and the second rotating part rotates 45 degrees clockwise until the second pedal is locked and fixed with the third pedal through the quick lock. The first pedal, the second pedal and the third pedal form a triangular structure to improve the stability of the control panel. The operator then pushes the display away from the top of the first pedal, and the third rotating part rotates 90 degrees clockwise to expose the space on the first pedal. The operator first lifts his left foot and steps on the second pedal, then lifts his right foot and steps on the first pedal to climb onto the first pedal. The setting of the second pedal can assist the operator to climb onto the first pedal, and the third pedal can assist the operator to climb onto the base from the ground. It is convenient for operators to use and improves the practicality of the control panel.

[0013] Optionally, a rack is slidably provided at the bottom of the first pedal, and teeth are provided on the outer peripheral walls of the first rotating part and the second rotating part, and are both meshed with the rack.

[0014] Optionally, the length of the meshing area between the rack and the first rotating part is greater than the length of the meshing area between the rack and the second rotating part, that is, a blank section is provided in the area of ​​the rack corresponding to the second rotating part.

[0015] Optionally, internal teeth are provided on the inner circumferential wall of the second rotating part, and three driven gears are meshedly installed on the inner side of the second rotating part. The three driven gears are meshed with a central gear at the center, and a power output device is formed by a connecting plate between the three driven gears. The power output device has a power output amplification function, and the third rotating part is connected to the central gear, and the third rotating part rotates synchronously with the central gear.

[0016] By adopting the above technical solution, the first rotating part is always engaged with the rack. When the first pedal drives the first rotating part to rotate clockwise, the first rotating part drives the rack to move to the right. At this time, the second rotating part corresponds to the blank section of the rack, and the second rotating part and the second pedal do not move. Until the first rotating part rotates 45 degrees clockwise, the second rotating part begins to mesh with the rack. The first rotating part continues to rotate 45 degrees clockwise, the first rotating part drives the rack to continue to move to the right, the rack drives the second rotating part to rotate 45 degrees clockwise, and drives the second pedal to rotate 45 degrees clockwise. The second rotating part rotates clockwise to drive the central gear to rotate at twice the angular velocity, and the central gear drives the third rotating part and the display to rotate 90 degrees clockwise. When resetting, when the second pedal and the display are completely retracted into the projection range of the first pedal, the first pedal is reset to an angle of 45 degrees with the base, and then reset to above the third pedal. Reduce the possibility of the second pedal and the display being damaged by the loom, and improve the safety of the control console when in use. The first rotating part, the second rotating part and the third rotating part are linked and coordinated to improve the convenience of using the control console.

[0017] Optionally, the quick locking component includes a locking block, two locking balls and a spring, the locking block is installed on the top wall of the third pedal, a locking rod is installed on the bottom wall of the second pedal, a channel corresponding to the locking rod is opened on the locking block, the two locking balls are arranged on both sides of the channel opposite to each other, the locking ball and the locking block are connected by a spring, when the spring is in a relaxed state, the locking ball is in the channel; the outer peripheral wall of the locking rod is provided with an inclined surface and a groove, and the locking ball is adapted to the groove.

[0018] By adopting the above technical solution, the second pedal drives the locking rod to rotate clockwise and approach the locking block, and the locking block enters the channel from the opening of the channel on the side wall of the locking block, and the front end of the locking rod is inserted between the two locking balls. The locking rod continues to move, and the inclined surface of the locking rod squeezes the locking ball out of the channel, and the spring is compressed. When the locking rod is completely inserted into the channel, the locking ball is inserted into the groove under the elastic force of the spring, and the locking rod is difficult to move by itself. When unlocking is required, the operator pushes the second pedal in the opposite direction with his foot, and the second pedal drives the locking rod to overcome the restriction of the locking ball and move in the opposite direction, thereby releasing the restriction on the locking rod. The operation is simple and the cost is low.

[0019] Optionally, a movable platform is installed at the bottom end of the second support rod, a universal wheel is installed on the bottom wall of the movable platform, and the movable platform is used to support the second support rod.

[0020] By adopting the above technical solution, when the first pedal moves, the second support rod drives the movable platform away from the base. The movable platform supports the second support rod, and the second support rod and the first support rod jointly support the first pedal, thereby improving the stability of the operator standing on the first pedal.

[0021] In summary, the present application includes at least one of the following beneficial technical effects:

[0022] 1. When the operator normally operates the loom, he stands on the base. At this time, the first pedal, the second pedal and the display are all close to the base, which is convenient for the operator to use. When the weft storage device needs to be threaded and connected, the operator pushes the first pedal away from the base, and then pushes the second pedal away from the first pedal; the first pedal contacts the damper during the movement, causing the damper to be compressed. Until the second pedal is locked with the quick-locking part, at this time the first pedal and the second pedal are in a locked state under the restriction of the damping and the quick-locking part, and the operator moves from the base to the first pedal to thread the yarn and connect the yarn. After the threading and connection are completed, the operator returns to the base, releases the restriction of the quick-locking part on the second pedal and resets the second pedal. At this time, the first pedal is also reset under the elastic action of the damping. When the first pedal moves, the display is always within the safety red line of the loom; compared with the prior art, the possibility of the display being knocked over by other equipment is reduced. The damping and quick-locking parts jointly limit the position of the first pedal and the second pedal, which can improve the stability of the operator standing on the first pedal and improve the safety of the production process;

[0023] 2. When the first pedal is close to the base, the second pedal retracts under the first pedal. At this time, the projections of the first pedal, the second pedal and the display all fall on the third pedal. The entire control panel retracts next to the base, occupying a small production space, which is convenient for cleaning and maintenance. The operator pushes the first pedal to rotate outward, and the first rotating part rotates 90 degrees clockwise; the movable table also rotates outward. Then control the movement of the second pedal, and the second rotating part rotates 45 degrees clockwise until the second pedal is locked and fixed with the third pedal through the quick lock. The first pedal, the second pedal and the third pedal form a triangular structure to improve the stability of the control panel. The operator then pushes the display away from the top of the first pedal, and the third rotating part rotates 90 degrees clockwise to expose the space on the first pedal. The operator first lifts his left foot and steps on the second pedal, then lifts his right foot and steps on the first pedal to climb onto the first pedal. The setting of the second pedal can assist the operator to climb onto the first pedal, and the third pedal can assist the operator to climb onto the base from the ground. It is convenient for operators to use and improves the practicality of the control panel;

[0024] 3. The first rotating part is always meshed with the rack. When the first pedal drives the first rotating part to rotate clockwise, the first rotating part drives the rack to move to the right. At this time, the second rotating part corresponds to the blank section of the rack, and the second rotating part and the second pedal do not move. Until the first rotating part rotates 45 degrees clockwise, the second rotating part begins to mesh with the rack. The first rotating part continues to rotate 45 degrees clockwise, the first rotating part drives the rack to continue to move to the right, the rack drives the second rotating part to rotate 45 degrees clockwise, and drives the second pedal to rotate 45 degrees clockwise. The second rotating part rotates clockwise to drive the central gear to rotate at twice the angular velocity, and the central gear drives the third rotating part and the display to rotate 90 degrees clockwise. When resetting, when the second pedal and the display are completely retracted into the projection range of the first pedal, the first pedal is reset to an angle of 45 degrees with the base, and then reset to above the third pedal. Reduce the possibility of the second pedal and the display being damaged by the loom, and improve the safety of the control console when in use. The first rotating part, the second rotating part and the third rotating part are linked and coordinated to improve the convenience of using the control console. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] Figure 1 It is a structural schematic diagram of a loom control console according to an embodiment of the present application.

[0026] Figure 2 It is a schematic diagram of the positions of the first rotating part, the second rotating part and the rack in the embodiment of the present application.

[0027] Figure 3 It is a cross-sectional view of the quick lock member according to the embodiment of the present application.

[0028] Explanation of the reference numerals: 1. first pedal; 11. rack; 111. blank section; 2. second pedal; 3. third pedal; 4. quick lock; 41. lock block; 42. lock ball; 43. spring; 44. locking rod; 441. inclined plane; 442. groove; 5. first support rod; 6. second support rod; 61. movable platform; 62. universal wheel; 7. first rotating part; 8. second rotating part; 81. driven gear; 82. center gear; 9. third rotating part; 100. loom; 101. base; 102. damping; 103. display. DETAILED DESCRIPTION

[0029] The following is combined with Figure 1-3 This application is described in further detail.

[0030] The present application embodiment discloses a loom control console. Figure 1A loom control console includes a base 101, which is placed on the ground in front of the work surface of the loom 100. A movable first pedal 1 is provided on the base 101, and a damper 102 is installed on the loom 100. The first pedal 1 can contact the damper 102 when it moves, and the damper 102 can limit the movement range of the first pedal 1. A display 103 is installed on the first pedal 1, and the movement of the first pedal 1 drives the display 103 to move. A third pedal 3 is fixed on the base 101, and a movable second pedal 2 is provided on the first pedal 1. A quick lock 4 is provided on the third pedal 3 for locking and connecting the second pedal 2 and the third pedal 3.

[0031] When the operator normally operates the loom 100, he stands on the base 101. At this time, the first pedal 1 and the second pedal 2 are close to the base 101, and the display 103 is also close to the base 101, which is convenient for the operator to use. When the weft storage device needs to be threaded and connected, the operator pushes the first pedal 1 away from the base 101, and then pushes the second pedal 2 away from the first pedal 1; during the movement of the first pedal 1, it contacts the damper 102 so that the damper 102 is compressed. Until the second pedal 2 is locked with the quick lock 4, at this time, the first pedal 1 and the second pedal 2 are in a locked state under the restriction of the damper 102 and the quick lock 4, and the operator moves from the base 101 to the first pedal 1 to thread the yarn and connect the yarn. After the threading and connecting the yarn is completed, the operator returns to the base 101, releases the restriction of the quick lock 4 on the second pedal 2 and resets the second pedal 2. At this time, the first pedal 1 is also reset under the elastic action of the damper 102. The first pedal 1 is connected to the base 101, and the display 103 is installed on the first pedal 1. When the first pedal 1 moves, the display 103 is always within the safety red line of the loom 100; compared with the prior art, the possibility of the display 103 being knocked down by other equipment is reduced. The damping 102 and the quick lock 4 jointly limit the positions of the first pedal 1 and the second pedal 2, which can improve the stability of the operator standing on the first pedal 1 and improve the safety of the production process.

[0032] Reference Figure 1 A first support rod 5 is fixedly provided at the edge of the base 101 near the third pedal 3, and the first support rod 5 is fixed to the ground by bolts. A first rotating part 7 is rotatably connected to the first support rod 5, and the first pedal 1 is fixed to the outer peripheral wall of the first rotating part 7 by welding. A second support rod 6 is fixed to the first pedal 1, and the second support rod 6 is passed through the first pedal 1, and the outer peripheral wall of the second support rod 6 is fixed to the first pedal 1 by welding. The second support rod 6 is located at the end of the first pedal 1 away from the first support rod 5, and a second rotating part 8 is rotatably connected to the second support rod 6, and the second pedal 2 is fixed to the outer peripheral wall of the second rotating part 8 by welding. The top end of the second support rod 6 protrudes from the top wall of the first pedal 1 and is rotatably connected to the third rotating part 9, and the display 103 is connected to the third rotating part 9 by bolts.

[0033] The top wall of the third pedal 3 is lower than the top wall of the base 101, the top wall of the first pedal 1 is higher than the top wall of the base 101, and the second pedal 2 is lower than the first pedal 1 and higher than the third pedal 3. The projections of the second pedal 2 and the display 103 can both fall on the first pedal 1, and the projection of the first pedal 1 can cover the third pedal 3. The bottom end of the second support rod 6 passes through the second pedal 2 downward, and a movable platform 61 is installed at the bottom end of the second support rod 6 away from the first pedal 1, and a universal wheel 62 is installed on the bottom wall of the movable platform 61, and the universal wheel 62 is directly in contact with the ground.

[0034] When the first pedal 1 is close to the base 101, the second pedal 2 retracts below the first pedal 1. At this time, the projections of the first pedal 1, the second pedal 2 and the display 103 all fall on the third pedal 3, and the movable platform 61 also moves to the side of the third pedal 3. The entire control panel retracts next to the base 101, and the occupied production space is small, which is convenient for cleaning and maintenance. The operator pushes the first pedal 1 to rotate outward, and the first rotating part 7 rotates 90 degrees clockwise; the movable platform 61 also rotates outward. Then the second pedal 2 is controlled to move, and the second rotating part 8 rotates 45 degrees clockwise until the second pedal 2 is locked and fixed with the third pedal 3 through the quick lock 4. The first pedal 1, the second pedal 2 and the third pedal 3 form a triangular structure to improve the stability of the control panel. The operator then pushes the display 103 away from the top of the first pedal 1, and the third rotating part 9 rotates 90 degrees clockwise to expose the space on the first pedal 1. The operator first lifts his left foot and steps on the second pedal 2, then lifts his right foot and steps on the first pedal 1, and steps on the first pedal 1. The second pedal 2 can assist the operator to step onto the first pedal 1, and the third pedal 3 can assist the operator to step onto the base 101 from the ground. The first support column and the second support column support the first pedal 1 together.

[0035] Reference Figure 1 and Figure 2 A rack 11 is slidably provided on the first pedal 1, a slide rail is installed on the bottom wall of the first pedal 1, and the rack 11 is slidably connected to the slide rail. Teeth are provided on the side walls of the rack 11 close to the first rotating part 7 and the second rotating part 8, and teeth are provided on the outer peripheral walls of the first rotating part 7 and the second rotating part 8. Both the first rotating part 7 and the second rotating part 8 can mesh with the rack 11. The radius of the first rotating part 7 and the second rotating part 8 are the same, and the first rotating part 7 and the second rotating part 8 are linked and coordinated through the rack 11. A blank section 111 is provided on the rack 11 in the area corresponding to the second rotating part 8, and the length of the meshing area between the rack 11 and the first rotating part 7 is twice the length of the meshing area between the rack 11 and the second rotating part 8.

[0036] The second support rod 6 is hollow inside, and the inner peripheral wall of the second rotating part 8 is provided with internal teeth. Three driven gears 81 are meshed and installed inside the second rotating part 8. The three driven gears 81 are meshed with a central gear 82. A power output device is formed between the three driven gears 81 through a connecting plate. The power output device has a power output amplification function. The inner diameter of the second rotating part 8 is twice the diameter of the central gear 82. A shaft is connected to the top wall of the central gear 82. The end of the shaft away from the central gear 82 is connected to the third rotating part 9. The third rotating part 9 rotates synchronously with the central gear 82.

[0037] The first rotating part 7 is always meshed with the rack 11. When the first pedal 1 drives the first rotating part 7 to rotate clockwise, the first rotating part 7 drives the rack 11 to move to the right. At this time, the second rotating part 8 corresponds to the blank section 111 of the rack 11, and the second rotating part 8 and the second pedal 2 do not move. After the first rotating part 7 rotates 45 degrees clockwise, the second rotating part 8 begins to mesh with the rack 11. The first rotating part 7 continues to rotate 45 degrees clockwise, the first rotating part 7 drives the rack 11 to continue to move to the right, the rack 11 drives the second rotating part 8 to rotate 45 degrees clockwise, and drives the second pedal 2 to rotate 45 degrees clockwise. The second rotating part 8 rotates clockwise to drive the central gear 82 to rotate at twice the angular velocity, and the central gear 82 drives the third rotating part 9 and the display 103 to rotate 90 degrees clockwise.

[0038] When the first pedal 1 starts to rotate, the second pedal 2 and the display 103 remain stationary. After the first pedal 1 rotates to an angle of 45 degrees with the base 101, the second pedal 2 starts to rotate. When resetting, when the second pedal 2 and the display 103 are completely retracted into the projection range of the first pedal 1, the first pedal 1 is reset to an angle of 45 degrees with the base 101, and then reset to above the third pedal 3. The possibility of the second pedal 2 and the display 103 being damaged by the loom 100 is reduced, and the safety of the control console when in use is improved.

[0039] Reference Figure 3 The quick lock 4 includes a locking block 41, which is mounted on the top wall of the third pedal 3 by bolts. A locking rod 44 is suspended on the bottom wall of the second pedal 2, and a channel corresponding to the locking rod 44 is provided on the locking block 41. The length direction of the channel is parallel to the tangent direction of the moving track of the locking rod 44, and the locking rod 44 can be inserted into the locking block 41. Two locking balls 42 are arranged on both sides of the channel, and the locking balls 42 and the locking block 41 are slidably matched. The locking ball 42 is connected to the locking block 41 by a spring 43. When the spring 43 is in a relaxed state, the locking ball 42 is partially located in the channel. The cross-section of the locking rod 44 is bullet-shaped, and the front end of the locking rod 44 can be inserted between the two locking balls 42. The middle section of the locking rod 44 is set as an inclined surface 441, and a groove 442 is concave on the inclined surface 441, and the locking ball 42 can be inserted into the groove 442.

[0040] The second pedal 2 drives the locking rod 44 to rotate clockwise and approach the locking block 41. The locking block enters the channel from the opening of the channel on the side wall of the locking block 41, and the front end of the locking rod 44 is inserted between the two locking balls 42. The locking rod 44 continues to move, and the inclined surface 441 of the locking rod 44 squeezes the locking ball 42 out of the channel, and the spring 43 is compressed. When the locking rod 44 is completely inserted into the channel, the locking ball 42 is inserted into the groove 442 under the elastic force of the spring 43, and the locking rod 44 is difficult to move by itself. When unlocking is required, the operator pushes the second pedal 2 in the opposite direction with his foot, and the second pedal 2 drives the locking rod 44 to overcome the restriction of the locking ball 42 and move in the opposite direction, thereby releasing the restriction on the locking rod 44.

[0041] The implementation principle of a loom control console in the embodiment of the present application is as follows: when the operator normally operates the loom 100, he stands on the base 101. At this time, the projections of the first pedal 1, the second pedal 2, the display 103 and the movable platform 61 all fall on the third pedal 3, which is convenient for the operator to use. The production space occupied by the control console is small, which is convenient for cleaning and maintenance. When the weft storage device needs to thread the yarn and connect the wires, the operator pushes the first pedal 1 to rotate outward, and the movable platform 61 rotates the first pedal 1 clockwise until the angle with the base 101 is 45 degrees. The second pedal 2 and the display 103 do not move; the first pedal 1 continues to rotate 45 degrees, and the first rotating part 7 drives the second pedal 2 to rotate 45 degrees clockwise through the rack 11 and the second rotating part 8. The second rotating part 8 drives the display 103 to rotate 90 degrees clockwise through the planetary gear structure, exposing the space above the first pedal 1. At this time, the second pedal 2 drives the locking rod 44 to be locked by the quick lock 4 on the third pedal 3, and the first pedal 1, the second pedal 2 and the third pedal 3 form a triangular structure to improve the stability of the control panel. The second pedal 2 can assist the operator to climb onto the first pedal 1, and the third pedal 3 can assist the operator to climb onto the base 101 from the ground. After use, the second pedal 2 is pushed with the foot to disengage the locking rod 44 from the quick lock 4, and the damper 102 pushes the first pedal 1 to drive the second pedal 2 and the display 103 to reset, reducing the possibility of damage to the control panel and the display 103 and other equipment, thereby improving safety.

[0042] The above are all preferred embodiments of the present application, and the protection scope of the present application is not limited thereto. Therefore, any equivalent changes made according to the structure, shape, and principle of the present application should be included in the protection scope of the present application.

Claims

1. A loom control console, characterized in that: The invention comprises a base (101), wherein a movable first pedal (1) is arranged on the base (101), and a damper (102) is arranged on the first pedal (1); a display (103) is mounted on the first pedal (1); a movable second pedal (2) is arranged on the first pedal (1), and a third pedal (3) is fixedly arranged on the base (101), and a quick lock (4) is arranged on the third pedal (3), and the quick lock (4) is used to lock and connect the second pedal (2) and the third pedal (3).

2. A loom control console according to claim 1, characterized in that: A first support rod (5) is fixedly provided at an edge of the base (101) close to the third pedal (3); a first rotating part (7) is rotatably connected to the first support rod (5); the first pedal (1) is connected to the first rotating part (7); the first pedal (1) is arranged higher than the third pedal (3); and a projection of the first pedal (1) can cover the third pedal (3).

3. A loom control console according to claim 2, characterized in that: A second support rod (6) is fixedly provided on the first pedal (1), the second support rod (6) is located at one end of the first pedal (1) away from the first support rod (5), a second rotating part (8) is rotatably connected to the second support rod (6), and the second pedal (2) is connected to the second rotating part (8); a third rotating part (9) is rotatably connected to the top end of the second support rod (6), and a display (103) is connected to the third rotating part (9).

4. A loom control console according to claim 3, characterized in that: The second pedal (2) is arranged lower than the first pedal (1) and higher than the third pedal (3); the projections of the second pedal (2) and the display (103) can both fall on the first pedal (1).

5. A loom control console according to claim 3, characterized in that: A rack (11) is slidably provided at the bottom of the first pedal (1), and teeth are provided on the outer peripheral walls of the first rotating part (7) and the second rotating part (8), and both are meshed with the rack (11).

6. A loom control console according to claim 5, characterized in that: The length of the meshing area between the rack (11) and the first rotating part (7) is greater than the length of the meshing area between the rack (11) and the second rotating part (8), that is, a blank section (111) is provided in the area of ​​the rack (11) corresponding to the second rotating part (8).

7. A loom control console according to claim 6, characterized in that: The inner peripheral wall of the second rotating part (8) is provided with internal teeth. Three driven gears (81) are meshedly installed on the inner side of the second rotating part (8). The three driven gears (81) are meshed with a central gear (82) at the center. A power output device is formed between the three driven gears (81) via a connecting plate. The power output device has a power output amplification function. The third rotating part (9) is connected to the central gear (82), and the third rotating part (9) and the central gear (82) rotate synchronously.

8. A loom control console according to claim 4, characterized in that: The quick lock component (4) comprises a lock block (41), two lock balls (42) and a spring (43); the lock block (41) is mounted on the top wall of the third pedal (3); a locking rod (44) is mounted on the bottom wall of the second pedal (2); a channel corresponding to the locking rod (44) is opened on the lock block (41); the two lock balls (42) are arranged on opposite sides of the channel; the lock balls (42) and the lock block (41) are connected by a spring (43); when the spring (43) is in a relaxed state, the lock balls (42) are in the channel; an inclined surface (441) and a groove (442) are arranged on the outer peripheral wall of the locking rod (44); the lock balls (42) are adapted to the groove (442).

9. A loom control console according to claim 3, characterized in that: A movable platform (61) is installed at the bottom end of the second support rod (6), a universal wheel (62) is installed on the bottom wall of the movable platform (61), and the movable platform (61) is used to support the second support rod (6).