Environment-friendly yarn dyeing equipment
By designing a system of dye recirculation and multiple filtration in the yarn dyeing equipment, the shortcomings of existing equipment in environmental protection are solved, efficient utilization of water resources and the reduction of wastewater are achieved, and the environmental protection of the equipment is improved.
Patent Information
- Application Number
- CN202421444709.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-24
- Publication Date
- 2025-05-23
- Estimated Expiration
- 2034-06-24
AI Technical Summary
The existing yarn dyeing equipment lacks considerations in energy conservation, emission reduction and environmental protection, resulting in a large amount of wastewater and energy consumption generated during the dyeing process, which does not meet the requirements of green production.
An environmentally friendly yarn dyeing equipment was designed. By setting up components such as dividing plates, dyeing chambers, pipe cavity, interface tubes, mounting bases, dyeing rods, filter chambers, filter plates, filter blocks, connecting tubes, infusion pumps and multi-layer filters in the dyeing room, the dyeing agent recycling and multiple filtration are achieved, reducing water resource consumption and wastewater generation.
Through recycling and multiple filtration, the water resource consumption and wastewater generation during the dyeing process are significantly reduced, the difficulty of wastewater treatment is reduced, and the environmental protection of the device is improved.
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Figure CN222893371U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of textile machinery and dyeing and finishing technology, and in particular to environmentally friendly yarn dyeing equipment. Background Art
[0002] Yarn is a textile product that is processed from various textile fibers into a certain fineness and is used in a variety of applications, such as weaving, rope making, thread making, knitting and embroidery. Yarn is divided into short-staple yarn, which is made from short fibers (natural short fibers or chemical fiber cut fibers) through spinning, and is divided into ring yarn, open-end spinning, self-twisted yarn, etc. Continuous filaments, such as natural silk and chemical fiber filaments, are divided into twisted or untwisted, smooth filaments or textured filaments. Combination yarns of short fibers and continuous filaments, such as polyester-cotton filament core-spun yarn, etc. Threads are made by combining and twisting two or more single yarns.
[0003] Current yarn dyeing equipment focuses more on improving dyeing efficiency and color uniformity, but it still pays insufficient attention to energy conservation, emission reduction and environmental protection, resulting in a large amount of wastewater and energy consumption during the dyeing process, which does not meet the requirements of green production. Utility Model Content
[0004] In view of the deficiencies of the prior art, the present application provides an environmentally friendly yarn dyeing device, which overcomes the deficiencies of the prior art and aims to solve the problems in the prior art.
[0005] To achieve the above-mentioned purpose, the present application provides the following technical solutions: an environmentally friendly yarn dyeing device, comprising a dyeing chamber, a partition plate is arranged inside the dyeing chamber, a dyeing cavity is arranged above the partition plate, a pipeline cavity is arranged below the partition plate, an interface tube is installed in the middle part of the interior of the partition plate, a mounting seat is installed above the partition plate, a pigment groove is arranged inside the mounting seat, a plurality of groups of dyeing rods are installed above the mounting seat, a liquid guide groove is arranged inside the dyeing rod, the pigment groove is connected to the plurality of groups of liquid guide grooves, a socket is arranged below the mounting seat, and the The interface tube is sleeved on the socket; an outflow port is provided on one side of the dyeing chamber, a guide tube is installed on one side of the outflow port, the other end of the guide tube is fixedly connected to a filter bin, a filter plate is provided inside the filter bin, a filter block and a connecting tube are installed on one side below the filter bin, a multi-layer filter mesh layer is provided inside the connecting tube, the connecting tube passes through the dyeing chamber and is fixedly connected to an infusion tube 1, an infusion pump is fixedly installed on the other end of the infusion tube 1, an infusion tube 2 is installed on the output end of the infusion pump, and the other end of the infusion tube 2 is fixedly connected to the interface tube.
[0006] By adopting the above technical scheme, by setting the mounting seat, when in use, the staff first connects the spinning thread to be dyed to the outside of the dyeing rod, and then when dyeing, the dye will flow out from the liquid outlet to dye the spinning thread, so that the spinning thread can be dyed from the inside to the outside, so that the dyeing effect is better, and the dye to be circulated inside the dyeing chamber will enter the inside of the filter bin through the outflow port, and the large impurities will be preliminarily filtered through the filter plate inside the filter bin. The filtered dye will be filtered twice through the filter block, and then filtered three times through multiple fine filters inside the connecting pipe. After the filtration is completed, the dye will be input into the inside of the interface pipe along the infusion pipe 2 by the infusion pump, and then enter the liquid guide groove from the pigment groove, and then flow out from the liquid guide groove to realize the circulation of the dye. Such a setting can greatly reduce the water resource consumption and wastewater generation in the dyeing process, greatly reduce the difficulty of wastewater treatment, and effectively improve the environmental protection of the device.
[0007] As a preferred technical solution of the present application, heating plates are installed on both sides of the interior of the dyeing chamber, and a temperature sensor is installed above the interior of one group of the heating plates.
[0008] By adopting the above technical solution, the dye can be fully heated by setting up a heating plate. When the dye is heated to an appropriate temperature, the heating plate will detect the temperature condition, and the temperature sensor will stop heating at this time. If the temperature is not enough, the temperature sensor will be started for heating. In this way, the dye temperature can be accurately controlled, the power consumption is reduced, and the practicality of the device is improved.
[0009] As a preferred technical solution of the present application, an air pressure sensor is installed inside the dyeing chamber, a pressure relief hole is opened on one side of the dyeing chamber, and a pressure relief valve is installed outside the pressure relief hole.
[0010] By adopting the above technical solution, an air pressure sensor is set to detect the pressure inside the dyeing chamber. After the internal pressure of the dyeing chamber increases after heating, the pressure relief valve will be opened after detection by the air pressure sensor to discharge excess internal pressure to prevent damage to the device caused by excessive internal pressure. When the pressure is insufficient, the pressure relief valve will be closed, so that the pressure inside the dyeing chamber can be maintained within a certain range, which is more conducive to the dyeing of the yarn by the dye.
[0011] As a preferred technical solution of the present application, a top cover is installed above the dyeing chamber, a supporting arm is provided on one side above the top cover, a connecting rod is hinged on the other end of the supporting arm, a cylinder is hinged on the other end of the connecting rod, an extending support block is provided below the cylinder, a rotating shaft is installed on one side of the top cover, and two sections of the rotating shaft are fixedly installed on the dyeing chamber.
[0012] By adopting the above technical solution and setting a top cover, the sealing of the dyeing room can be effectively improved. After dyeing is completed, the connecting rod is driven downward by the cylinder, which will drive the supporting arm to move to one side, and then the top cover can be separated from the top of the dyeing room by using the rotating shaft as a fulcrum. This arrangement eliminates the need for staff to manually open the top cover, which improves work efficiency while also improving the safety of the device.
[0013] As a preferred technical solution of the present application, a placement groove is arranged above the dyeing chamber, a rubber ring is arranged inside the placement groove, and the top cover is installed inside the placement groove.
[0014] By adopting the above technical solution and providing a rubber ring, the sealing performance of the device can be effectively enhanced to prevent air leakage.
[0015] As a preferred technical solution of the present application, a fixed block is installed around the top of the dyeing chamber, a rotating groove is opened above the fixed block, a rotating block is rotatably connected inside the rotating groove, a limiting block 2 is fixedly connected above the rotating block, a tooth block is provided on one side of the rotating block, a gear is installed above the fixed block, the gear and the gear block are meshed with each other, a limiting block 1 is installed around the top cover, and the limiting block 2 is located above the limiting block 1.
[0016] By adopting the above technical solution and setting gears, when in use, the staff can drive the rotating block to move above the rotating groove by rotating the gears. When moving above the limit block 1, the limit block 1 can be limited. This can further improve the sealing of the device, prevent air leakage caused by the displacement of the top cover due to the pressure change inside the dyeing chamber, and improve the practicability of the device.
[0017] As a preferred technical solution of the present application, a plurality of groups of support blocks are installed below the dyeing chamber, and a plurality of groups of universal wheels are fixedly installed below the support blocks.
[0018] By adopting the above technical solution, the free movement of the device can be achieved by setting universal wheels, which makes it more convenient to move the device when it is needed.
[0019] As a preferred technical solution of the present application, a fixing groove is provided above the dividing plate, and a socket is provided below the mounting seat. The socket is provided corresponding to the fixing groove, and the height of the socket is higher than that of the socket.
[0020] By adopting the above technical solution and providing a socket, when the mounting base is installed on the partition plate, the socket can be prevented from being damaged due to incorrect installation position, thereby improving the safety of the device when in use.
[0021] Beneficial effects of this application:
[0022] 1. By setting the mounting seat, when in use, the staff first sleeves the spinning thread to be dyed on the outside of the dyeing rod, and then when dyeing, the dye will flow out from the liquid outlet to dye the spinning thread, so that the spinning thread can be dyed from the inside to the outside, so that the dyeing effect is better, and the dye to be circulated inside the dyeing chamber will enter the inside of the filter bin through the outflow port, and the large impurities will be preliminarily filtered through the filter plate inside the filter bin. The filtered dye will be filtered twice through the filter block, and then filtered three times through multiple fine filters inside the connecting pipe. After the filtration is completed, the dye will be input into the inside of the interface pipe along the infusion pipe 2 by the infusion pump, and then enter the liquid guide groove from the pigment groove, and then flow out from the liquid guide groove to realize the circulation of the dye. This arrangement can greatly reduce the water resource consumption and wastewater generation in the dyeing process, greatly reduce the difficulty of wastewater treatment, and effectively improve the environmental protection of the device.
[0023] 2. The dye can be fully heated by setting a heating plate. When the dye is heated to a suitable temperature, the heating plate will detect the temperature. At this time, the temperature sensor will stop heating. If the temperature is not enough, the temperature sensor will be started for heating. This can achieve precise control of the dye temperature, reduce power consumption, and improve the practicality of the device. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] Figure 1 It is a schematic diagram of the overall cross-sectional structure of this application;
[0025] Figure 2 This is a schematic diagram of the front structure of this application;
[0026] Figure 3 for Figure 1 The enlarged structural diagram at A in the middle;
[0027] Figure 4 This is a schematic diagram of the gear structure of this application.
[0028] In the figure: 1. dyeing chamber; 101. partition plate; 102. dyeing chamber; 103. pipeline chamber; 104. outflow port; 105. interface pipe; 106. heating plate; 107. temperature sensor; 108. air pressure sensor; 109. pressure relief hole; 1010. placement slot; 1011. fixing slot; 2. mounting seat; 201. pigment slot; 202. socket; 3. dyeing stick; 301. liquid guide slot; 302. liquid outlet; 4. guide pipe; 5. filter chamber; 501. filter plate; 502, filter block; 6, connecting pipe; 601, infusion tube one; 602, infusion pump; 603, infusion tube two; 7, top cover; 701, support arm; 702, connecting rod; 703, cylinder; 704, extension support block; 705, rotating shaft; 706, limit block one 8, fixed block; 801, rotating groove; 802, rotating block; 803, limit block two; 804, gear; 805, gear block; 9, rubber ring; 10, support block; 1001, universal wheel; 11, pressure relief valve. DETAILED DESCRIPTION
[0029] The following will be combined with the drawings in the embodiments of the present application to clearly and completely describe the technical solutions in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all of the embodiments. Based on the embodiments in the present application, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of this application.
[0030] Reference Figure 1-3The environmentally friendly yarn dyeing device comprises a dyeing chamber 1, wherein a partition plate 101 is arranged inside the dyeing chamber 1, a dyeing chamber 102 is arranged above the partition plate 101, a pipe chamber 103 is arranged below the partition plate 101, an interface pipe 105 is arranged in the middle of the interior of the partition plate 101, a mounting seat 2 is arranged above the partition plate 101, a pigment groove 201 is arranged inside the mounting seat 2, a plurality of groups of dyeing rods 3 are arranged above the mounting seat 2, a liquid guide groove 301 is arranged inside the dyeing rods 3, the pigment groove 201 is communicated with the plurality of groups of liquid guide grooves 301, a socket 202 is arranged below the mounting seat 2, and the interface pipe 105 is sleeved with the socket 202; a flow outlet 104 is provided on one side of the dyeing chamber 1, a flow guide pipe 4 is installed on one side of the flow outlet 104, a filter chamber 5 is fixedly connected to the other end of the flow guide pipe 4, a filter plate 501 is provided inside the filter chamber 5, a filter block 502 and a connecting pipe 6 are installed on the lower side of the filter chamber 5, a multi-layer filter mesh layer is provided inside the connecting pipe 6, the connecting pipe 6 passes through the dyeing chamber 1 and is fixedly connected to the infusion pipe 1 601, an infusion pump 602 is fixedly installed on the other end of the infusion pipe 1 601, an infusion pipe 2 603 is installed on the output end of the infusion pump 602, and the other end of the infusion pipe 2 603 is fixedly connected to the interface pipe 105. An air pressure sensor 108 is installed inside the dyeing chamber 1, a pressure relief hole 109 is provided on one side of the dyeing chamber 1, and a pressure relief valve 11 is installed outside the pressure relief hole 109.
[0031] By setting the mounting seat 2 when in use, the staff first sleeves the yarn to be dyed on the outside of the dyeing rod 3, and then when dyeing, the dye will flow out from the liquid outlet 302 to dye the yarn, so that the yarn can be dyed from the inside to the outside, so that the dyeing effect is better, and the dye to be circulated inside the dyeing chamber 1 will enter the inside of the filter bin 5 through the outflow port 104, and the large impurities will be preliminarily filtered through the filter plate 501 inside the filter bin 5, and the filtered dye will be filtered twice through the filter block 502, and then filtered three times through multiple fine filter meshes inside the connecting pipe 6, and the dye after filtration will be input into the inside of the interface pipe 105 along the infusion pipe 2 603 by the infusion pump 602, and then enter the liquid guide groove 301 from the pigment tank 201, and then flow out from the liquid guide groove 301 to realize the circulation of the dye, so that the arrangement can greatly reduce the water resource consumption and wastewater generation in the dyeing process, greatly reduce the difficulty of wastewater treatment, and effectively improve the environmental protection of the device. By setting up the air pressure sensor 108, the pressure condition inside the dyeing chamber 1 can be detected. After the internal pressure of the dyeing chamber 1 increases after heating, the pressure relief valve 11 will be opened after the detection of the air pressure sensor 108 to discharge the excess internal pressure to prevent damage to the device caused by excessive internal pressure. When the pressure is insufficient, the pressure relief valve 11 will be closed. In this way, the pressure inside the dyeing chamber 1 can be maintained within a certain range, which is more conducive to the dyeing of the yarn by the dye.
[0032] Reference Figure 1 , heating plates 106 are installed on both sides of the interior of the dyeing chamber 1, and a temperature sensor 107 is installed on the upper part of one group of heating plates 106; a top cover 7 is installed on the upper side of the dyeing chamber 1, a supporting arm 701 is arranged on one side of the upper side of the top cover 7, a connecting rod 702 is hinged on the other end of the supporting arm 701, a cylinder 703 is hinged on the other end of the connecting rod 702, an extended support block 704 is arranged below the cylinder 703, a rotating shaft 705 is installed on one side of the top cover 7, and two sections of the rotating shaft 705 are fixedly installed with the dyeing chamber 1; a fixed The fixed block 8 has a rotating groove 801 formed on the top of the fixed block 8, a rotating block 802 is rotatably connected inside the rotating groove 801, a limiting block 803 is fixedly connected to the top of the rotating block 802, a tooth block 805 is provided on one side of the rotating block 802, a gear 804 is installed on the top of the fixed block 8, the gear 804 and the tooth block 805 are meshed with each other, a limiting block 706 is installed around the top cover 7, and the limiting block 803 is located above the limiting block 706; the dye can be fully heated by arranging the heating plate 106, and when the dye is heated to a suitable temperature, the dye can be heated to a suitable temperature. When the temperature is too low, the heating plate 106 will detect the temperature, and the temperature sensor 107 will stop heating. If the temperature is not high enough, the temperature sensor 107 will be started to heat. In this way, the temperature of the dye can be accurately controlled, the power consumption is reduced, and the practicality of the device is improved. By setting the top cover 7, the sealing of the dyeing chamber 1 can be effectively improved. After the dyeing is completed, the cylinder 703 drives the connecting rod 702 to move downward, which will drive the supporting arm 701 to move to one side, and then the top cover 7 can be moved from the top of the dyeing chamber 1 through the rotating shaft 705 as a fulcrum. Separation is carried out, and this arrangement does not require the staff to manually open the top cover 7, which improves work efficiency and also improves the safety of the device; by setting the gear 804, when in use, the staff can drive the rotating block 802 to move above the rotating groove 801 by rotating the gear 804, and when it moves to above the limit block 706, the limit block 706 can be limited, which can further improve the sealing of the device, prevent the leakage caused by the displacement of the top cover 7 due to the pressure change inside the dyeing chamber 1, and improve the practicability of the device.
[0033] Reference Figure 1A placement groove 1010 is provided above the dyeing chamber 1, a rubber ring 9 is provided on the inner side of the placement groove 1010, and a top cover 7 is installed inside the placement groove 1010; by providing the rubber ring 9, the sealing performance of the device can be effectively enhanced to prevent air leakage; multiple groups of support blocks 10 are installed below the dyeing chamber 1, and multiple groups of universal wheels 1001 are fixedly installed below the support blocks 10; by providing the universal wheels 1001, the free movement of the device can be achieved, which can be more convenient when the device needs to be moved; a fixing groove 1011 is provided above the dividing plate 101, and a socket 202 is provided below the mounting seat 2, the socket 202 is provided corresponding to the fixing groove 1011, and the height of the socket 202 is higher than the socket 202; by providing the socket 202, when the mounting seat 2 is installed on the dividing plate 101, by providing the socket 202, damage to the socket 202 due to incorrect installation position can be prevented, thereby improving the safety of the device when in use.
[0034] Working principle: by setting the mounting seat 2, when in use, the staff first sleeves the yarn to be dyed on the outside of the dyeing rod 3, and then when dyeing, the dye will flow out from the liquid outlet 302 to dye the yarn, so that the yarn can be dyed from the inside to the outside, so that the dyeing effect is better, the dye to be circulated inside the dyeing chamber 1 will enter the inside of the filter bin 5 through the outflow port 104, and the large impurities will be initially filtered through the filter plate 501 inside the filter bin 5. The filtered dye will be filtered twice by the filter block 502, and then filtered three times by multiple fine filters inside the connecting tube 6. After the filtration is completed, the dye will be pumped into the infusion tube 602 along the infusion tube 60 3 is input into the interior of the interface tube 105, then enters the liquid guide groove 301 from the pigment groove 201, and then flows out from the liquid guide groove 301 to realize the circulation of the dye. This arrangement can greatly reduce the water resource consumption and wastewater generation in the dyeing process, greatly reduce the difficulty of wastewater treatment, and effectively improve the environmental protection of the device. The dye can be fully heated by setting the heating plate 106. When the dye is heated to a suitable temperature, the heating plate 106 will detect the temperature, and then the temperature sensor 107 will stop heating. If the temperature is not enough, the temperature sensor 107 will be started to heat. In this way, the temperature of the dye can be accurately controlled, the power consumption is reduced, and the practicality of the device is improved;
[0035] Among them, by setting up the air pressure sensor 108, the pressure condition inside the dyeing chamber 1 can be detected. After the internal pressure of the dyeing chamber 1 increases after heating, the pressure relief valve 11 will be opened after the detection of the air pressure sensor 108 to discharge the excess internal pressure to prevent the device from being damaged by excessive internal pressure. When the pressure is insufficient, the pressure relief valve 11 will be closed, so that the pressure inside the dyeing chamber 1 can be kept within a certain range, which is more conducive to the dyeing of the yarn by the dye. By setting up the top cover 7, the sealing of the dyeing chamber 1 can be effectively improved. After the dyeing is completed, the connecting rod 702 is driven downward by the cylinder 703, which will drive the support arm 701 to move to one side, and then the top cover 7 can be separated from the top of the dyeing chamber 1 by using the rotating shaft 705 as a fulcrum. This arrangement does not require the staff to manually open the top cover 7, which improves the work efficiency and the safety of the device.
[0036] At the same time, by providing the rubber ring 9, the sealing performance of the device can be effectively enhanced to prevent air leakage;
[0037] In addition, by setting the gear 804, when in use, the staff can drive the rotating block 802 to move above the rotating groove 801 by rotating the gear 804. When moving to the top of the limit block 706, the limit block 706 can be limited. This can further improve the sealing of the device, prevent air leakage caused by the displacement of the top cover 7 due to the pressure change inside the dyeing chamber 1, and improve the practicality of the device; by setting the universal wheel 1001, the free movement of the device can be achieved, and it can be more convenient when the device needs to be moved; by setting the socket 202, when the mounting base 2 is installed on the dividing plate 101, the socket 202 can be prevented from being damaged due to incorrect installation position, thereby improving the safety of the device when in use.
[0038] The above description is only the preferred embodiment of the present application and is not intended to limit the present application. Although the present application is described in detail with reference to the aforementioned embodiments, those skilled in the art can still modify the technical solutions described in the aforementioned embodiments or replace some of the technical features therein by equivalents. Any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application shall be included in the protection scope of the present application.
Claims
1. An environmentally friendly yarn dyeing device, comprising a dyeing chamber (1), characterized in that: The dyeing chamber (1) is provided with a partition plate (101) inside, the upper part of the partition plate (101) is a dyeing cavity (102), the lower part of the partition plate (101) is a pipeline cavity (103), an interface tube (105) is installed in the middle part of the inner part of the partition plate (101), a mounting seat (2) is installed above the partition plate (101), a pigment groove (201) is provided inside the mounting seat (2), a plurality of groups of dyeing rods (3) are installed above the mounting seat (2), a liquid guide groove (301) is provided inside the dyeing rods (3), the pigment groove (201) is communicated with the plurality of groups of liquid guide grooves (301), a socket (202) is provided below the mounting seat (2), and the interface tube (105) is sleeved on the socket (202); A flow outlet (104) is provided on one side of the dyeing chamber (1), a flow guide tube (4) is installed on one side of the flow outlet (104), the other end of the flow guide tube (4) is fixedly connected to a filter chamber (5), a filter plate (501) is arranged inside the filter chamber (5), a filter block (502) and a connecting tube (6) are installed on one side below the filter chamber (5), a plurality of filter mesh layers are arranged inside the connecting tube (6), the connecting tube (6) passes through the dyeing chamber (1) and is fixedly connected to an infusion tube 1 (601), an infusion pump (602) is fixedly installed on the other end of the infusion tube 1 (601), an infusion tube 2 (603) is installed on the output end of the infusion pump (602), and the other end of the infusion tube 2 (603) is fixedly connected to the interface tube (105).
2. The environmentally friendly yarn dyeing equipment according to claim 1, characterized in that: Heating plates (106) are installed on both sides of the interior of the dyeing chamber (1), and a temperature sensor (107) is installed above the interior of one group of the heating plates (106).
3. The environmentally friendly yarn dyeing equipment according to claim 1, characterized in that: An air pressure sensor (108) is installed inside the dyeing chamber (1), a pressure relief hole (109) is opened on one side of the dyeing chamber (1), and a pressure relief valve (11) is installed outside the pressure relief hole (109).
4. The environmentally friendly yarn dyeing equipment according to claim 1, characterized in that: A top cover (7) is installed above the dyeing chamber (1); a support arm (701) is provided on one side above the top cover (7); a connecting rod (702) is hingedly connected to the other end of the support arm (701); a cylinder (703) is hingedly connected to the other end of the connecting rod (702); an extension support block (704) is provided below the cylinder (703); a rotating shaft (705) is installed on one side of the top cover (7); and the other end of the rotating shaft (705) is fixedly installed on the dyeing chamber (1).
5. The environmentally friendly yarn dyeing equipment according to claim 4, characterized in that: A placement groove (1010) is provided above the dyeing chamber (1), a rubber ring (9) is provided inside the placement groove (1010), and the top cover (7) is installed inside the placement groove (1010).
6. The environmentally friendly yarn dyeing equipment according to claim 4, characterized in that: A fixed block (8) is installed around the top of the dyeing chamber (1), a rotating groove (801) is provided above the fixed block (8), a rotating block (802) is rotatably connected inside the rotating groove (801), a second limiting block (803) is fixedly connected above the rotating block (802), a tooth block (805) is provided on one side of the rotating block (802), a gear (804) is installed above the fixed block (8), the gear (804) and the tooth block (805) are meshed with each other, and a first limiting block (706) is installed around the top cover (7), and the second limiting block (803) is located above the first limiting block (706).
7. The environmentally friendly yarn dyeing equipment according to claim 1, characterized in that: A plurality of groups of support blocks (10) are installed below the dyeing chamber (1), and a plurality of groups of universal wheels (1001) are fixedly installed below the support blocks (10).
8. The environmentally friendly yarn dyeing equipment according to claim 1, characterized in that: A fixing groove (1011) is provided above the dividing plate (101), and a socket (202) is provided below the mounting seat (2); the socket (202) is provided corresponding to the fixing groove (1011), and the height of the socket (202) is higher than that of the socket (202).