Elasticizer air compression energy saving device
By designing an adjustment component, the problem of fixed position of the broken wire detector was solved, enabling flexible adjustment of the broken wire detector and improving the adaptability and energy-saving effect of the air compressor energy-saving device for the texturing machine.
Patent Information
- Application Number
- CN202410535272.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-04-30
- Publication Date
- 2026-01-27
- Estimated Expiration
- 2044-04-30
AI Technical Summary
In existing texturing machine air compressor energy-saving devices, the position of the yarn breakage detector is fixed, which is not convenient to adjust according to the yarn position.
An energy-saving air compressor device for a texturing machine, including an adjustment component, was designed. Through the sliding connection of the horizontal and vertical seats, combined with the locking component, the position adjustment and fixation of the broken wire detector can be realized.
The position of the broken wire detector can be flexibly adjusted, which improves the adaptability and energy-saving effect of the device.
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Figure CN118207666B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of textile processing technology, and in particular to an energy-saving air compressor device for a texturing machine. Background Technology
[0002] The texturing machine is equipped with a meshing nozzle, which is connected to an air compressor through an air pipe. This allows the meshing nozzle to apply compressed air to the yarn, meshing it and improving its quality and elasticity. During the yarn production process, yarn breakage may occur, resulting in no yarn passing through the meshing nozzle while the compressed air continues to be output, leading to higher energy consumption.
[0003] The prior art CN218561735U discloses an air compressor energy-saving device for a texturing machine, which includes a broken wire detector mounted on a frame and a control solenoid valve installed between a network nozzle and an air duct. The broken wire detector has a detection head and also includes a limiting seat mounted on the frame corresponding to the broken wire detector. The limiting seat is provided with a insertion slot for the broken wire detector to be inserted into. The limiting seat is also provided with an opening that communicates with the insertion slot and is used to expose the detection head. Furthermore, a limiting structure is provided between the limiting seat and the frame to prevent the broken wire detector from disengaging from the insertion slot.
[0004] The above-mentioned device connects a broken yarn detector to a solenoid valve, so that the solenoid valve closes when a yarn breaks, thereby achieving energy saving. However, the position of the broken yarn detector is fixed, which makes it inconvenient to adjust the position of the broken yarn detector according to the position of the yarn. Summary of the Invention
[0005] The purpose of this invention is to provide an energy-saving device for air pressure in a texturing machine, which solves the problem that existing energy-saving devices for air pressure in a texturing machine are not convenient for adjusting the position of the broken yarn detector according to the position of the yarn.
[0006] To achieve the above objectives, the present invention provides an energy-saving air compressor device for a texturing machine, comprising a frame, an air supply pipe, a solenoid valve, a network nozzle, and a wire breakage detector. The air supply pipe is mounted on the frame, the solenoid valve is mounted on the air supply pipe, and the network nozzle is mounted on the solenoid valve. The device also includes an adjustment assembly located between the frame and the wire breakage detector. The adjustment assembly includes a fixed housing, a horizontal seat, a vertical seat, a slider, a mounting base, a locking component, and a mounting component. The fixed housing is fixedly connected to the frame and located on one side of the frame. The horizontal seat is slidably connected to the fixed housing and located inside the fixed housing. The vertical seat is slidably connected to the fixed housing and located inside the fixed housing. The slider is slidably connected to both the horizontal and vertical seats and is mounted on the horizontal seat. The mounting base is fixedly connected to the slider and is mounted on the slider. The wire breakage detector is connected to the mounting base and is mounted on the mounting base. The locking component is mounted on the fixed housing, and the mounting component is mounted on the mounting base.
[0007] The adjustment assembly further includes a first limiting rod and a second limiting rod. The first limiting rod is fixedly connected to the horizontal seat and slidably connected to the slider, and is disposed on the horizontal seat. The second limiting rod is slidably connected to the vertical seat and slidably connected to the slider, and is disposed on the vertical seat.
[0008] The locking component includes a first locking plate, a first locking seat, and a driving component. The first locking plate is slidably connected to the fixed shell and is located inside the fixed shell. The first locking seat is fixedly connected to the vertical seat and is located on the side of the vertical seat near the first locking plate. The driving component is disposed on the fixed shell.
[0009] The driving component includes a lifting plate, a button, and a connecting rod. The lifting plate is slidably connected to the fixed shell and is located inside the fixed shell. The button is fixedly connected to the lifting plate and is located on one side of the lifting plate. The two ends of the connecting rod are fixedly connected to the lifting plate and the first locking plate, respectively, and the connecting rod is located between the lifting plate and the first locking plate.
[0010] The driving component further includes a return spring, the two ends of which are connected to the fixed shell and the first locking plate, respectively, and the return spring is located inside the fixed shell.
[0011] The mounting component includes a mounting rod, a mounting spring, and a stop plate. The mounting rod is fixedly connected to the broken wire detector and is located on one side of the broken wire detector. The mounting spring is connected to the mounting base and is located inside the mounting base. The stop plate is connected to the mounting spring and is located at one end of the mounting spring.
[0012] The mounting base also has a limiting groove, which is disposed on the mounting base and located on the side of the mounting base near the mounting rod. The limiting groove cooperates with the mounting rod.
[0013] The mounting base also has a guide groove, which is disposed on the mounting base and located on one side of the mounting base.
[0014] This invention discloses an energy-saving air compressor device for a texturing machine. The horizontal seat slides up and down on the fixed housing, allowing the slider to slide up and down, thereby moving the mounting base and the broken yarn detector up and down. The slider moves left and right on the horizontal seat, moving the mounting base and the broken yarn detector left and right, allowing the position of the broken yarn detector to be adjusted. Once the broken yarn detector is in position, the locking member locks the horizontal seat and the vertical seat. At this point, the slider cannot move up and down under the limitation of the horizontal seat, nor can it move left and right under the limitation of the vertical seat, thus fixing the slider and the mounting base and the broken yarn detector. This achieves the purpose of conveniently adjusting the position of the broken yarn detector according to the yarn position. Attached Figure Description
[0015] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below.
[0016] Figure 1 This is a schematic diagram of the overall structure of the air compressor energy-saving device for the texturing machine according to the first embodiment of the present invention.
[0017] Figure 2 This is a schematic diagram of the installation component according to the first embodiment of the present invention.
[0018] Figure 3 This is a schematic diagram of the drive unit according to the first embodiment of the present invention.
[0019] Figure 4 This is the first embodiment of the present invention. Figure 3 Enlarged view of point A.
[0020] Figure 5 This is a schematic diagram of the installation structure of the second locking seat according to the second embodiment of the present invention.
[0021] Figure 6 This is a schematic diagram of the installation structure of the first guide rod according to the second embodiment of the present invention.
[0022] Figure 7 This is a schematic diagram of the limiting groove according to the third embodiment of the present invention.
[0023] Figure 8 This is a schematic diagram of the installation structure of the abutment plate according to the third embodiment of the present invention.
[0024] In the diagram: 100-Frame, 101-Gas supply pipe, 102-Solenoid valve, 103-Network nozzle, 104-Broken wire detector, 105-Adjusting component, 106-Fixing shell, 107-Horizontal seat, 108-Vertical seat, 109-Slider, 110-Mounting seat, 111-Locking component, 112-Mounting component, 113-First limit rod, 114-Second limit rod, 115-First locking plate, 116-First locking seat, 117-Drive component, 118-Lifting plate, 119-Button, 120-Connecting rod, 121-Reset spring, 201-Second locking plate, 202-Second locking seat, 203-Rotating rod, 204-First guide rod, 205-Second guide rod, 301-Mounting rod, 302-Mounting spring, 303-Abutting plate, 304-Limiting groove, 305-Guide groove. Detailed Implementation
[0025] The embodiments of the present invention are described in detail below. Examples of the embodiments are shown in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain the present invention, but should not be construed as limiting the present invention.
[0026] First embodiment:
[0027] Please see Figures 1 to 4 ,in Figure 1 This is a schematic diagram of the overall structure of the air compressor energy-saving device for the texturing machine. Figure 2 This is a structural diagram of the installation components. Figure 3 This is a structural diagram of the drive unit. Figure 4 yes Figure 3 Enlarged view of point A.
[0028] This invention provides an energy-saving air compressor device for a texturing machine, comprising a frame 100, an air supply pipe 101, a solenoid valve 102, a network nozzle 103, a wire breakage detector 104, and an adjustment assembly 105. The adjustment assembly 105 includes a fixed housing 106, a horizontal seat 107, a vertical seat 108, a slider 109, a mounting base 110, a locking component 111, and a mounting component 112. The adjustment assembly 105 also includes a first limiting rod 113 and a second limiting rod 114. The locking component 111 includes a first locking plate 115, a first locking seat 116, and a driving component 117. The driving component 117 includes a lifting plate 118, a button 119, a connecting rod 120, and a return spring 121. The device operates via the horizontal seat 107. The vertical sliding of the fixed housing 106 allows the slider 109, the mounting base 110, and the broken wire detector 104 to be adjusted vertically. The left and right sliding of the slider 109 on the horizontal base 107 moves the mounting base 110 and the broken wire detector 104 left and right. Finally, the locking member 111 locks the horizontal base 107 and the vertical base 108, thereby fixing the slider 109 and allowing the broken wire detector 104 to be adjusted to any position. It can be understood that the above solution can be used to facilitate the installation and removal of the broken wire detector 104, and can also be used to solve the problem of facilitating the adjustment of the position of the broken wire detector 104.
[0029] In this specific embodiment, the air supply pipe 101 is installed on the frame 100, the solenoid valve 102 is installed on the air supply pipe 101, and the network nozzle 103 is installed on the solenoid valve 102. The air supply pipe 101 is connected to an air compressor (not shown in the figure). Multiple solenoid valves 102 and network nozzles 103 are provided on the air supply pipe 101, and the network nozzles 103 and solenoid valves 102 are connected. Multiple yarn breakage detectors 104 are provided, each corresponding to and electrically connected to a specific solenoid valve 102. The yarn passes through the network nozzle 103 and is wound onto a take-up roller. Compressed air inside the air supply pipe 101 enters the network nozzle 103 through the solenoid valve 102. When the yarn breakage detector 104 detects a yarn breakage, it transmits a signal to the corresponding solenoid valve 102, causing the corresponding solenoid valve 102 to close, thereby achieving energy saving.
[0030] The fixed housing 106 is fixedly connected to the frame 100 and located on one side of the frame 100. The horizontal seat 107 is slidably connected to the fixed housing 106 and located inside the fixed housing 106. The vertical seat 108 is slidably connected to the fixed housing 106 and located inside the fixed housing 106. The slider 109 is slidably connected to the horizontal seat 107 and the vertical seat 108, and is disposed on the horizontal seat 107. The mounting base 110 is fixedly connected to the slider 109 and is disposed on the vertical seat 107. On the slider 109, the broken wire detector 104 is connected to and mounted on the mounting base 110. The locking member 111 is mounted on the fixed housing 106, and the mounting member 112 is mounted on the mounting base 110. The broken wire detector 104 is mounted on the mounting base 110 via the mounting member 112. The locking member 111 can lock the horizontal seat 107 and the vertical seat 108. The horizontal seat 107 is horizontally positioned and can be locked on the fixed housing 106. The vertical seat 108 is vertically positioned and can slide left and right on the fixed housing 106. The vertical sliding of the horizontal seat 107 on the fixed housing 106 allows the slider 109 to slide up and down, thereby moving the mounting base 110 and the wire breakage detector 104 up and down. The left and right movement of the slider 109 on the horizontal seat 107 moves the mounting base 110 and the wire breakage detector 104 left and right, allowing the position of the wire breakage detector 104 to be adjusted. Once the position of the broken yarn detector 104 is adjusted to the correct position, the locking member 111 locks the horizontal seat 107 and the vertical seat 108. At this time, the slider 109 cannot move up or down under the limitation of the horizontal seat 107, and cannot move left or right under the limitation of the vertical seat 108, thereby fixing the slider 109 and fixing the mounting base 110 and the broken yarn detector 104, so as to facilitate the adjustment of the position of the broken yarn detector 104 according to the position of the yarn.
[0031] Secondly, the first limiting rod 113 is fixedly connected to the horizontal seat 107 and slidably connected to the slider 109, and is disposed on the horizontal seat 107; the second limiting rod 114 is slidably connected to the vertical seat 108 and slidably connected to the slider 109, and is disposed on the vertical seat 108; the first limiting rod 113 and the second limiting rod 114 limit the slider 109, improve the stability of the slider 109 when moving, and at the same time prevent the slider 109 from disengaging from the horizontal seat 107 and the vertical seat 108.
[0032] Meanwhile, the first locking plate 115 is slidably connected to the fixed shell 106 and is located inside the fixed shell 106; the first locking seat 116 is fixedly connected to the vertical seat 108 and is located on the side of the vertical seat 108 near the first locking plate 115; the driving component 117 is disposed on the fixed shell 106.
[0033] In addition, the lifting plate 118 is slidably connected to the fixed shell 106 and is located inside the fixed shell 106; the button 119 is fixedly connected to the lifting plate 118 and is located on one side of the lifting plate 118; the two ends of the connecting rod 120 are fixedly connected to the lifting plate 118 and the first locking plate 115 respectively, and the connecting rod 120 is located between the lifting plate 118 and the first locking plate 115.
[0034] Finally, the two ends of the return spring 121 are connected to the fixed shell 106 and the first locking plate 115 respectively, and the return spring 121 is located inside the fixed shell 106.
[0035] The first locking plate 115 and the first locking seat 116 are provided with interlocking teeth. The return spring 121 applies force to the first locking plate 115, causing the first locking plate 115 to move upward, thereby engaging the teeth on the first locking plate 115 and the first locking seat 116, thus locking the vertical seat 108. When adjusting the position of the broken wire detector 104, pressing the button 119 causes the lifting plate 118 to descend, which in turn causes the connecting rod 120 and the first locking plate 115 to descend, separating the first locking plate 115 from the first locking seat 116. At this time, the vertical seat 108 can move left and right, thereby allowing the slider 109 to move left and right.
[0036] Second embodiment:
[0037] Based on the first embodiment, please refer to Figure 5 and Figure 6 , Figure 5 This is a schematic diagram of the installation structure of the second locking seat in the second embodiment. Figure 6 This is a schematic diagram of the installation structure of the first guide rod in the second embodiment. The locking component 111 in this embodiment also includes a second locking plate 201, a second locking seat 202, a rotating rod 203, a first guide rod 204, and a second guide rod 205.
[0038] In this specific embodiment, the second locking plate 201 is slidably connected to the fixed shell 106 and located inside the fixed shell 106; the second locking seat 202 is fixedly connected to the transverse seat 107 and located on the side of the transverse seat 107 near the second locking plate 201; the two ends of the rotating rod 203 are respectively rotatably connected to the second locking plate 201 and the lifting plate 118, and the rotating rod 203 is disposed on the lifting plate 118; there are two of each of the second locking plate 201, the second locking seat 202 and the rotating rod 203, and the two second locking seats 202 are respectively located on the left and right sides of the transverse seat 107, and the second locking plate 201 and the second locking seat 202 are provided with interlocking teeth; when the button 119 is pressed down to drive the lifting plate 118 to descend, the lifting plate 118 drives the two rotating rods 203 to move, thereby causing the two locking plates 201 to move. The rotating rod 203 drives the two second locking plates 201 to move away from each other, thereby separating the second locking plates 201 from the second locking seats 202. At this time, the second locking seats 202 and the horizontal seat 107 can move up and down, thereby allowing the slider 109, the mounting seat 110, and the broken wire detector 104 to move up and down. When the button 119 is pressed, the first locking plate 115 moves away from the first locking seat 116, and the second locking plate 201 moves away from the second locking seat 202, allowing the horizontal seat 107 and the vertical seat 108 to unlock simultaneously. After the button 119 is stopped being pressed, the lifting plate 118 is reset under the action of the return spring 121, causing the rotating rod 203, the connecting rod 120, the first locking plate 115, and the second locking plate 201 to reset, thereby simultaneously locking the first locking seat 116 and the second locking seat 202.
[0039] The first guide rod 204 is fixedly connected to the fixed shell 106, slidably connected to the second locking seat 202, and slidably connected to the first locking plate 115; the second guide rod 205 is fixedly connected to the fixed shell 106, slidably connected to the first locking seat 116, and slidably connected to the second locking plate 201; the first guide rod 204 guides the sliding of the second locking seat 202 and the first locking plate 115, improving the stability of the second locking seat 202 and the first locking plate 115 when they move; the second guide rod 205 guides the movement of the first locking seat 116 and the second locking plate 201, improving the stability of the first locking seat 116 and the second locking plate 201 when they move.
[0040] When using the air compressor energy-saving device for the texturing machine in this embodiment, when it is necessary to adjust the position of the broken wire detector 104, pressing the button 119 causes the lifting plate 118, the connecting rod 120, and the first locking plate 115 to descend, causing the first locking plate 115 to disengage from the first locking seat 116. At this time, the first locking seat 116 and the vertical seat 108 can move left and right, thereby allowing the slider 109, the mounting seat 110, and the broken wire detector 104 to move left and right. Simultaneously, the lifting plate 118 descends, also causing the rotating rod 203 to move, causing the rotating rod 203 to drive the two second locking plates 201 away from the two second locking seats 202. When the second locking plates 201 and... After the second locking seat 202 disengages, the horizontal seat 107 can be raised and lowered, thereby allowing the slider 109, the mounting seat 110, and the wire breakage detector 104 to be raised and lowered. At this time, the wire breakage detector 104 can be adjusted to any position. When the position of the wire breakage detector 104 is adjusted to the correct position, the button 119 is stopped, and the first locking plate 115 and the second locking plate 201 are reset under the action of the return spring 121, thereby locking the first locking seat 116 and the second locking seat 202. At this time, the horizontal seat 107 and the vertical seat 108 are locked, preventing the slider 109, the mounting seat 110, and the wire breakage detector 104 from moving arbitrarily.
[0041] Third embodiment:
[0042] Based on the first embodiment, please refer to Figure 5 and Figure 6 , Figure 5 This is a schematic diagram of the installation structure of the second locking seat in the second embodiment. Figure 6 This is a schematic diagram of the installation structure of the first guide rod in the second embodiment. The installation component 112 in this embodiment includes an installation rod 301, an installation spring 302 and an abutment plate 303. The installation seat 110 also has a limiting groove 304 and a guide groove 305.
[0043] In this specific embodiment, the mounting rod 301 is fixedly connected to the wire breakage detector 104 and is located on one side of the wire breakage detector 104; the mounting spring 302 is connected to the mounting base 110 and is located inside the mounting base 110; the abutment plate 303 is connected to the mounting spring 302 and is located at one end of the mounting spring 302.
[0044] The limiting groove 304 is disposed on the mounting base 110 and located on the side of the mounting base 110 close to the mounting rod 301, and the limiting groove 304 cooperates with the mounting rod 301.
[0045] Two mounting rods 301 are provided, located on the left and right sides of the broken wire detector 104 respectively. The mounting base 110 has a sliding groove that mates with the mounting rod 301. The sliding groove and the limiting groove 304 form an L-shape. The abutment plate 303 has an inclined surface, facilitating the movement of the abutment plate 303 driven by the broken wire detector 104. When installing the broken wire detector 104, align the mounting rod 301 with the sliding groove on the mounting base 110, then press the broken wire detector 104 downwards, causing the broken wire detector 104 to press against the abutment plate 303. The abutment plate 303 then presses against the mounting spring 302. When the mounting rod 301... After moving to the limiting groove 304, the movement stops. At this time, the elasticity of the mounting spring 302 drives the abutment plate 303 and the broken wire detector 104 to move, so that the broken wire detector 104 drives the mounting rod 301 to move into the limiting groove 304. The limiting groove 304 limits the mounting rod 301, thereby installing the broken wire detector 104 in the mounting base 110. When disassembling the broken wire detector 104, press the broken wire detector 104 backward to move the mounting rod 301 out of the limiting groove 304. At this time, the broken wire detector 104 can be pulled upward, thereby facilitating the disassembly of the broken wire detector 104.
[0046] Meanwhile, the guide groove 305 is disposed on the mounting base 110 and located on one side of the mounting base 110; the guide groove 305 is disposed at the sliding groove on the mounting base 110, and the upper opening of the guide groove 305 is larger than the lower opening. The mounting rod 301 is guided through the guide groove 305, thereby facilitating the insertion of the mounting rod 301 into the sliding groove on the mounting base 110.
[0047] When using the air compressor energy-saving device of the texturing machine in this embodiment, when it is necessary to adjust the position of the broken wire detector, pressing the button causes the lifting plate, the connecting rod, and the first locking plate to descend, disengaging the first locking plate from the first locking seat. At this time, the first locking seat and the vertical seat can move left and right, thereby allowing the slider, the mounting seat, and the broken wire detector to move left and right. Simultaneously, the lifting plate descends, also causing the rotating rod to move, driving the two second locking plates away from the two second locking seats. After the second locking plates disengage from the second locking seats, the horizontal seat can rise and fall, allowing the slider, the mounting seat, and the broken wire detector to rise and fall, thus achieving the purpose of adjusting the position of the broken wire detector. When the position of the broken wire detector is adjusted to the correct position, pressing the button stops. At this time, under the action of the return spring, the first locking plate and the second locking plate reset, thereby locking the first locking seat and the second locking seat. The horizontal seat and the vertical seat are then locked, preventing the slider, the mounting seat, and the broken wire detector from moving arbitrarily.
[0048] Third embodiment:
[0049] Based on the first embodiment, please refer to Figure 7 and Figure 8 , Figure 7 This is a schematic diagram of the limiting groove in the second embodiment. Figure 8 This is a schematic diagram of the installation structure of the abutment plate in the second embodiment. The installation components in this embodiment include an installation rod, an installation spring, and an abutment plate. The installation seat also has a limiting groove and a guide groove.
[0050] In this specific embodiment, the mounting rod is fixedly connected to the broken wire detector and is located on one side of the broken wire detector; the mounting spring is connected to the mounting base and is located inside the mounting base; the abutment plate is connected to the mounting spring and is located at one end of the mounting spring.
[0051] The limiting groove is disposed on the mounting base and located on the side of the mounting base near the mounting rod, and the limiting groove cooperates with the mounting rod.
[0052] Two limiting rods are provided, located on the left and right sides of the broken wire detector, respectively. The mounting base is provided with a sliding groove that mates with the limiting rod. The sliding groove and the limiting groove form an L-shape. When installing the broken wire detector, the limiting rod is aligned with the sliding groove on the mounting base, and then the broken wire detector is pressed down, causing the broken wire detector to press against the abutment plate. The abutment plate presses against the mounting spring. When the limiting rod moves to the limiting groove, it stops moving. At this time, the elasticity of the mounting spring drives the abutment plate and the broken wire detector to move, causing the broken wire detector to move the limiting rod into the limiting groove. The limiting groove limits the limiting rod, thereby installing the broken wire detector in the mounting base. When removing the broken wire detector, the broken wire detector is pressed backward, causing the limiting rod to move out of the limiting groove. At this time, the broken wire detector can be pulled upward, thus facilitating the removal of the broken wire detector.
[0053] Meanwhile, the guide groove is provided on the mounting base and located on one side of the mounting base; the guide groove is provided at the sliding groove on the mounting base, and the upper opening of the guide groove is large, so as to guide the limiting rod through the guide groove, thereby facilitating the insertion of the limiting rod into the sliding groove on the mounting base.
[0054] The above-disclosed embodiments are merely one or more preferred embodiments of this application and should not be construed as limiting the scope of this application. Those skilled in the art can understand that all or part of the processes for implementing the above embodiments and equivalent changes made in accordance with the claims of this application still fall within the scope of this application.
Claims
1. An energy-saving air compressor device for a texturing machine, comprising a frame, an air supply pipe, a solenoid valve, a network nozzle, and a wire breakage detector, wherein the air supply pipe is mounted on the frame, the solenoid valve is mounted on the air supply pipe, and the network nozzle is mounted on the solenoid valve, characterized in that, It also includes an adjustment assembly located between the frame and the broken wire detector; The adjustment assembly includes a fixed shell, a horizontal seat, a vertical seat, a slider, a mounting base, a locking component, and a mounting component. The fixed shell is fixedly connected to the frame and located on one side of the frame. The horizontal seat is slidably connected to the fixed shell and located inside the fixed shell. The vertical seat is slidably connected to the fixed shell and located inside the fixed shell. The slider is slidably connected to both the horizontal and vertical seats and is mounted on the horizontal seat. The mounting base is fixedly connected to the slider and is mounted on the slider. The wire breakage detector is connected to the mounting base and is mounted on the mounting base. The locking component is mounted on the fixed shell, and the mounting component is mounted on the mounting base. The adjustment assembly further includes a first limiting rod and a second limiting rod. The first limiting rod is fixedly connected to the horizontal seat and slidably connected to the slider, and is disposed on the horizontal seat. The second limiting rod is slidably connected to the vertical seat and slidably connected to the slider, and is disposed on the vertical seat. The locking component includes a first locking plate, a first locking seat, and a driving component. The first locking plate is slidably connected to the fixed shell and is located inside the fixed shell. The first locking seat is fixedly connected to the vertical seat and is located on the side of the vertical seat near the first locking plate. The driving component is disposed on the fixed shell. The driving component includes a lifting plate, a button, and a connecting rod. The lifting plate is slidably connected to the fixed housing and is located inside the fixed housing. The button is fixedly connected to the lifting plate and is located on one side of the lifting plate. The two ends of the connecting rod are fixedly connected to the lifting plate and the first locking plate, respectively, and the connecting rod is located between the lifting plate and the first locking plate. The driving component also includes a return spring, the two ends of which are respectively connected to the fixed shell and the first locking plate, and the return spring is located inside the fixed shell; The locking component further includes a second locking plate, a second locking seat, a rotating rod, a first guide rod, and a second guide rod. The second locking plate is slidably connected to the fixed shell and located inside the fixed shell. The second locking seat is fixedly connected to the transverse seat and located on the side of the transverse seat near the second locking plate. The two ends of the rotating rod are rotatably connected to the second locking plate and the lifting plate, respectively. The rotating rod is disposed on the lifting plate. The first guide rod is fixedly connected to the fixed shell and slidably connected to the second locking seat and the first locking plate. The second guide rod is fixedly connected to the fixed shell and slidably connected to the first locking seat and the second locking plate. The first locking plate and the first locking seat are provided with intermeshing teeth. The second locking plate and the second locking seat are also provided with intermeshing teeth.
2. The air compressor energy-saving device for the texturing machine as described in claim 1, characterized in that, The mounting component includes a mounting rod, a mounting spring, and a stop plate. The mounting rod is fixedly connected to the broken wire detector and is located on one side of the broken wire detector. The mounting spring is connected to the mounting base and is located inside the mounting base. The stop plate is connected to the mounting spring and is located at one end of the mounting spring.
3. The air compressor energy-saving device for the texturing machine as described in claim 2, characterized in that, The mounting base also has a limiting groove, which is disposed on the mounting base and located on the side of the mounting base near the mounting rod, and the limiting groove cooperates with the mounting rod.
4. The air compressor energy-saving device for the texturing machine as described in claim 3, characterized in that, The mounting base also has a guide groove, which is disposed on the mounting base and located on one side of the mounting base.
Citation Information
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Intelligent goods shelf facilitating goods information retrieval
CN216569303U
Spinning broken end detection device
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Air compression energy-saving device of elasticizer
CN218561735U