Polyester gray fabric shaping device
By introducing a spray circulation system and a flexible setting structure into the polyester fabric setting device, the problem of insufficient heat dissipation area was solved, achieving efficient heat dissipation and stable setting, while saving water.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-25
- Publication Date
- 2026-03-24
AI Technical Summary
The heat dissipation area of the existing polyester fabric setting device is insufficient, and the heat dissipation efficiency needs to be improved.
A polyester fabric setting device was designed, comprising a spraying component, a heating component, a setting component, and a cooling component. A water pump circulation system removes heat from the surface of the cooling roller, increasing the heat dissipation area, and a flexible shell and connecting rod structure are used to adjust the tension to avoid damage to the fabric.
This improves the heat dissipation efficiency of polyester fabric, reduces water usage, and ensures the stability and effectiveness of the setting process.
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Figure CN224031283U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model discloses a polyester gray cloth setting technical field, especially a polyester gray cloth setting device. BACKGROUND
[0002] Gray cloth refers to the natural color cotton cloth for printing and dyeing processing, and the utility model discloses a polyester gray cloth setting device, including: workbench, cloth outlet assembly, heating assembly, pressure assembly, cooling assembly, the lower surface of workbench installs support leg, the upper surface right side edge of workbench installs cloth outlet assembly, and the cloth outlet assembly is by support no.
[0003] According to the disclosed technical scheme, although the two cooling plates can cool and dissipate heat for the polyester gray cloth, the area of the heat dissipation plate is not enough, and the heat dissipation efficiency needs to be improved when facing the polyester gray cloth with a large volume that needs to be set.
[0004] Therefore, a polyester gray cloth setting device is provided. CONTENT OF THE UTILITY MODEL
[0005] One of the technical problems to be solved by the present application is that the heat dissipation area of the related setting device is enough, and the heat dissipation efficiency needs to be improved.
[0006] To solve the above technical problems, the present application provides a polyester gray cloth setting device, which comprises a workbench, a cloth outlet assembly, a spraying assembly, a heating assembly, a setting assembly, and a cooling assembly.
[0007] The lower part of the workbench is provided with support legs.
[0008] The cloth outlet assembly is arranged at the right end of the workbench close to the edge.
[0009] The spraying assembly is arranged on the workbench, and the left end of the spraying assembly is the heating assembly, and the right end is the cloth outlet assembly.
[0010] The heating assembly is arranged in the middle of the workbench, and the left end of the heating assembly is the setting assembly, and the right end is the spraying assembly.
[0011] The setting assembly is arranged on the left half of the workbench, and its position is located at the right end of the cooling assembly and the left end of the heating assembly.
[0012] The cooling assembly is arranged at the left end of the workbench close to the edge, and the cooling assembly is composed of a cooling roller, a support frame five, a support rod five, a transfer water conveying part one, a transfer water conveying part two, a water pump two, a water pipe one, a water pipe two, a water pump three and a water pipe four.
[0013] In some embodiments, the cloth output assembly includes an output roller, a support frame one, a support rod one, and a motor;
[0014] The output roller is mounted on the support rod one of the two support frames one, the surface of the output roller is wrapped with a polyester cloth, and the two ends of the output roller are provided with limiting rings. The left end of the support rod one is provided with the motor.
[0015] In some embodiments, the spraying assembly includes an auxiliary roller, a protective frame, a water pump one, a water outlet hole, a water storage chamber, a support frame two, a support rod two, and a nozzle.
[0016] The auxiliary roller is arranged below the top plate of the protective frame, and the auxiliary roller is arranged on the support rod two between the two support frames two.
[0017] The top plate of the protective frame is provided with a plurality of nozzles, and the water spraying direction of the nozzles is directly opposite to the auxiliary roller below.
[0018] The top plate of the protective frame is provided with the water pump one at the middle position, and the water pump one is connected with the nozzles through the built-in water guide groove of the top plate of the protective frame.
[0019] The auxiliary roller, the support frame two, and the support rod two are provided with the water storage chamber below the projection, the left end wall of the water storage chamber is provided with the water outlet hole at the middle position, and the water outlet hole is a through hole.
[0020] In some embodiments, the heating assembly includes a heating roller, a support frame three, and a support rod three.
[0021] The heating roller is arranged on the support rod three between the two support frames three, the number of the heating roller is two, the number of the support rod three is two, the two heating rollers are arranged vertically up and down along with the two support rods three, and a gap is left between the two heating rollers.
[0022] In some embodiments, the shaping assembly includes a pressurized shaping roller, a support frame four, and a support rod four.
[0023] The pressurized shaping roller is arranged on the support rod four between the two support frames four, the number of the pressurized shaping roller is two, the number of the support rod four is two, the two pressurized shaping rollers are arranged vertically up and down along with the two support rods four, and the surfaces of the two pressurized shaping rollers are in abutting contact.
[0024] The pressurized shaping roller is composed of a sleeve rod, a connecting rod, a spring, and a flexible shell. The sleeve rod is hollow, four connecting rods are arranged on the surface of the sleeve rod in the circumferential direction, the connecting rods are provided with springs, one end of the connecting rod is connected with the inner wall of the flexible shell, and the other end is connected with the sleeve rod.
[0025] The flexible shell is an arc-shaped plate made of flexible material, and four flexible shells can form a nearly cylindrical structure.
[0026] The sleeve rod is provided with a plurality of groups of connecting rods and springs along the length direction.
[0027] In some embodiments, the cooling roller is arranged between the support rods five between two support frames five, the number of cooling rollers is six, the number of support frames five is six, and the number of support rods five is six, and every two cooling rollers and every two support rods five are arranged vertically up and down between two support frames five;
[0028] The six cooling rollers, support rods five and support frames five are divided into three groups, each group comprising two support frames five, two support rods five and two cooling rollers, and the three groups are arranged in parallel on the left end face of the workbench;
[0029] The cooling roller surface is provided with a heat conduction plate, and the support rod five is provided with a water guide groove;
[0030] The left end of the six support rods five is provided with a transfer water supply part one, and the right end of the six support rods five is provided with a transfer water supply part two, and the transfer water supply part one and the transfer water supply part two are symmetrically arranged at the two ends of the support rod five;
[0031] The lower end of the transfer water supply part two is connected with the water pump two through the water pipe one, and the transfer water supply part one is connected with the water pump three through the water pipe four, and the water pump three, the water pipe four, the water pump two and the water pipe one are arranged at the lower end of the transfer water supply part one and the transfer water supply part two, and are symmetrically arranged about the center line of the short side of the workbench.
[0032] In some embodiments, the water pump two is connected with the left end and the right end of the water pump one through the water pipe two, and the water outlet hole is connected with the left end of the water pump three through the water pipe three.
[0033] In some embodiments, the water pump one provides water to flow to the nozzle through the water guide groove arranged in the top plate of the protection frame, the nozzle sprays water downward, the water falls into the water storage chamber, the water in the water storage chamber flows to the water pump three through the water outlet hole and the water pipe three, the water pump three sends the water flow to the transfer water supply part one, the transfer water supply part one sends the water flow to the water guide groove arranged in the support rod five, and the heat generated by the heat conduction plate arranged on the surface of the cooling roller is taken away to the transfer water supply part two, and the water flow flows to the water pump two through the water pipe one, and the water pump two sends the water flow to the water pump one through the water pipe two.
[0034] The utility model at least has the following beneficial effects:
[0035] The water flow is used for spraying the polyester gray cloth by the water pump one, the water after spraying is collected in the water storage chamber, the water flow is introduced to the water guide groove arranged in the support rod five through the water outlet hole and the water pipe three, and the heat generated by the heat conduction plate arranged on the surface of the cooling roller is taken away, and then the water flow flows back to the water pump one through the transfer water supply part two, the water pipe one and the water pump two, and one spraying-cooling water circulation is completed, and water is saved.
[0036] By setting connecting rod, spring, flexible shell in the pressurized setting roller, the extension of spring and connecting rod can be adjusted according to the tension degree of the polyester gray fabric after heating rear material, so as to avoid the damage of the gray fabric in the setting process after heating, and the setting effect is better.
[0037] By setting three groups of cooling rollers arranged in the same row, supporting frames and supporting rods, the heat dissipation and cooling area of the gray fabric is increased, and the gray fabric passes through the upper and lower cooling rollers, which can cool and dissipate heat and also can play a setting role. BRIEF DESCRIPTION OF DRAWINGS
[0038] Fig. 1 It is a left view schematic diagram of the overall structure of the utility model;
[0039] Fig. 2 It is a right view schematic diagram of the overall structure of the utility model;
[0040] Fig. 3 It is a schematic diagram of another angle of the overall structure of the utility model;
[0041] Fig. 4 It is a schematic diagram of the pressurized setting roller structure of the utility model;
[0042] In the drawing: 100-workbench; 101-supporting leg; 200-outlet roller; 201-supporting frame one; 202-supporting rod one; 203-motor; 300-assistant roller; 301-protection frame; 302-water pump one; 303-water outlet hole; 304-water storage chamber; 305-supporting frame two; 306-supporting rod two; 307-nozzle; 400-heating roller; 401-supporting frame three; 402-supporting rod three; 500-pressurized setting roller; 501-supporting frame four; 502-supporting rod four; 503-sleeve rod; 504-connecting rod; 505-spring; 506-flexible shell; 600-cooling roller; 601-supporting frame five; 602-supporting rod five; 603-intermediate transfer water conveying part one; 604-intermediate transfer water conveying part two; 605-water pump two; 606-water pipe one; 607-water pipe two; 608-water pipe three; 609-water pump three; 610-water pipe four. DETAILED DESCRIPTION
[0043] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model
[0044] Embodiment 1: please refer to Figs. 1-4The utility model provides a technical scheme: a polyester gray cloth setting device, including workbench 100, cloth outlet subassembly, spray subassembly, heating assembly, setting subassembly, still including cooling subassembly,
[0045] The lower part of the workbench 100 is provided with supporting legs 101.
[0046] The cloth outlet subassembly is arranged at the right end of the workbench 100 close to the edge position.
[0047] The spray subassembly is arranged on the workbench 100, and the left end of the spray subassembly is the heating assembly, and the right end is the cloth outlet subassembly.
[0048] The heating assembly is arranged in the middle of the workbench 100, and the left end of the heating assembly is the setting subassembly, and the right end is the spray subassembly.
[0049] The setting subassembly is arranged on the left half of the workbench 100, and the position is located at the right end of the cooling subassembly and the left end of the heating assembly.
[0050] The cooling subassembly is arranged at the left end of the workbench 100 close to the edge position, and the cooling subassembly is composed of a cooling roller 600, a supporting frame five 601, a supporting rod five 602, a water transfer part one 603, a water transfer part two 604, a water pump two 605, a water pipe one 606, a water pipe two 607, a water pump three 609 and a water pipe four 610.
[0051] The cloth outlet subassembly comprises a cloth outlet roller 200, a supporting frame one 201, a supporting rod one 202 and a motor 203.
[0052] The cloth outlet roller 200 is installed on the supporting rod one 202 of the two supporting frames one 201, the surface of the cloth outlet roller 200 is wrapped with polyester gray cloth, the two ends of the cloth outlet roller 200 are provided with limiting rings, and the left end of the supporting rod one 202 is provided with the motor 203.
[0053] The spray subassembly comprises an auxiliary roller 300, a protective frame 301, a water pump one 302, water outlet holes 303, a water storage chamber 304, a supporting frame two 305, a supporting rod two 306 and nozzles 307.
[0054] The auxiliary roller 300 is arranged below the top plate of the protective frame 301, and the auxiliary roller 300 is arranged on the supporting rod two 306 between the two supporting frames two 305.
[0055] A plurality of nozzles 307 are arranged on the bottom of the top plate of the protective frame 301, and the water spraying direction of the nozzles 307 is opposite to the auxiliary roller 300 below.
[0056] The water pump one 302 is arranged at the middle position of the top of the top plate of the protective frame 301, and the water pump one 302 and the nozzles 307 are connected through the built-in water guide groove of the top plate of the protective frame 301.
[0057] The projection position below the auxiliary roller 300, the support frame two 305 and the support rod two 306 is provided with a water storage chamber 304, and a water outlet hole 303 is arranged in the middle position of the left end wall of the water storage chamber 304.
[0058] The heating assembly comprises a heating roller 400, a support frame three 401 and a support rod three 402.
[0059] The heating roller 400 is arranged on the support rod three 402 between the two support frames three 401, the number of the heating roller 400 is two, the number of the support rod three 402 is two, the two heating rollers 400 and the two support rods three 402 are arranged vertically upward and downward, and a gap is left between the two heating rollers 400.
[0060] The shaping assembly comprises a pressurized shaping roller 500, a support frame four 501 and a support rod four 502.
[0061] The pressurized shaping roller 500 is arranged on the support rod four 502 between the two support frames four 501, the number of the pressurized shaping roller 500 is two, the number of the support rod four 502 is two, the two pressurized shaping rollers 500 and the two support rods four 502 are arranged vertically upward and downward, and the surfaces of the two pressurized shaping rollers 500 abut and contact.
[0062] The pressurized shaping roller 500 is composed of a sleeve rod 503, a connecting rod 504, a spring 505 and a flexible shell 506, the sleeve rod 503 is hollow, four connecting rods 504 are arranged on the surface of the sleeve rod 503 in the circumferential direction, the spring 505 is arranged on the connecting rod 504, one end of the connecting rod 504 is connected with the inner wall of the flexible shell 506, and the other end is connected with the sleeve rod 503.
[0063] The flexible shell 506 is an arc-shaped plate made of flexible material, and four flexible shells 506 can form a nearly cylindrical structure.
[0064] The sleeve rod 503 is provided with a plurality of groups of connecting rods 504 and springs 505 along the length direction.
[0065] The cooling roller 600 is arranged between the support rod five 602 between the two support frames five 601, the number of the cooling roller 600 is six, the number of the support frame five 601 is six, the number of the support rod five 602 is six, and every two cooling rollers 600 and every two support rods five 602 are arranged vertically upward and downward in the middle of the two support frames five 601.
[0066] The six cooling rollers 600, the support rod five 602 and the support frame five 601 are divided into three groups according to two support frames five 601, two support rods five 602 and two cooling rollers 600, and are arranged in parallel on the left end face of the workbench 100.
[0067] The surface of the cooling roller 600 is provided with a heat conduction plate, and the support rod five 602 is provided with a water guide groove.
[0068] The left end of the six support rods 602 is provided with a water transfer section 603, and the right end of the six support rods 602 is provided with a water transfer section 604. The water transfer section 603 and the water transfer section 604 are symmetrically arranged at both ends of the support rods 602.
[0069] The lower end of the intermediate water conveyance section 2 604 is connected to the water pump 2 605 via water pipe 1 606. The intermediate water conveyance section 1 603 is connected to the water pump 3 609 via water pipe 4 610. The water pump 3 609, water pipe 4 610, water pump 2 605, and water pipe 1 606 are located at the lower ends of intermediate water conveyance section 1 603 and intermediate water conveyance section 2 604, and are symmetrical about the short side centerline of the workbench 100.
[0070] Water pump 2 605 is connected to the left and right ends of water pump 1 302 via water pipe 2 607;
[0071] The water outlet 303 is connected to the left end of the water pump 309 via water pipe 3608.
[0072] Water pump 302 supplies water through the built-in water guide channel on the top plate of the protective frame 301 to the nozzle 307. The nozzle 307 sprays water downwards, and the water falls into the water storage chamber 304. The water in the water storage chamber 304 flows through the water outlet 303 and through the water pipe 608 to the water pump 609. The water pump 609 sends the water to the intermediate water conveying section 603. The intermediate water conveying section 603 sends the water to the water inlet channel built into the support rod 602, carrying away the heat from the heat-conducting plate on the surface of the cooling roller 600 and flowing to the intermediate water conveying section 604. The water flows through the water pipe 606 to the water pump 605. The water pump 605 sends the water through the water pipe 607 to the water pump 302. Thus, the water flowing out of the spray assembly flows back to the spray assembly after passing through the cooling assembly, completing one water circulation cycle.
[0073] The following is combined with Figs. 1-4 A detailed description of the working process of this polyester fabric setting device:
[0074] First, the worker places the polyester fabric to be shaped onto the fabric output roller 200. The fabric output roller 200 has limit rings at both ends to restrict the position of the polyester fabric. Then, the motor 203 is started, which drives the fabric output roller 200 to rotate, bringing the polyester fabric to be shaped under the protective frame 301 and onto the auxiliary roller 300. At this time, the water pump 302 is started. The water pump 302 directs the water flow through the built-in water guide groove on the top plate of the protective frame 301 to the nozzle 307. The nozzle 307 sprays the water flow directly onto the polyester fabric to be shaped below. The remaining water flow is left in the water storage chamber 304 under the auxiliary roller 300. The water storage chamber 304 has a water outlet 303 in the middle of the left end wall. The water outlet 303 directs the water flow through the water pipe 608 to the water pump 609.
[0075] Then the cloth enters the gap between the two heating rollers 400, the two heating rollers 400 heat the polyester cloth in the gap, and the polyester cloth passes through the pressure setting roller 500, and the polyester cloth passes through the upper part of the lower pressure setting roller 500 from the bottom of the lower pressure setting roller 500, and then passes through the lower part of the upper pressure setting roller 500 to the upper end of the upper pressure setting roller 500 in an S shape. By setting the connecting rod 504, the spring 505 and the flexible shell 506 in the pressure setting roller 500, the extension and contraction of the spring 505 and the connecting rod 504 can be adjusted according to the tension of the polyester cloth after heating. At the same time, the flexible shell 506 is made of flexible material and has elasticity, which can deform appropriately according to the tension of the polyester cloth after heating to avoid damage to the cloth during the setting process after heating, and the setting effect is better.
[0076] Then the polyester cloth enters the gap between the two heating rollers 400, the two heating rollers 400 heat the polyester cloth in the gap, and the polyester cloth passes through the pressure setting roller 500, and the polyester cloth passes through the upper part of the lower pressure setting roller 500 from the bottom of the lower pressure setting roller 500, and then passes through the lower part of the upper pressure setting roller 500 to the upper end of the upper pressure setting roller 500 in an S shape. By setting the connecting rod 504, the spring 505 and the flexible shell 506 in the pressure setting roller 500, the extension and contraction of the spring 505 and the connecting rod 504 can be adjusted according to the tension of the polyester cloth after heating. At the same time, the flexible shell 506 is made of flexible material and has elasticity, which can deform appropriately according to the tension of the polyester cloth after heating to avoid damage to the cloth during the setting process after heating, and the setting effect is better.
[0077] In addition, the water outlet hole 303 guides the water flow to the water pump three 609 through the water pipe three 608, the water pump three 609 sends the water flow to the transfer water part one 603 through the water pipe four 610, the transfer water part one 603 sends the water flow to the water guide groove of the support rod five 602, and the heat generated by the heat conduction plate on the surface of the cooling roller 600 is removed, and finally sent to the transfer water part two 604. The transfer water part two 604 sends water to the water pump one 302 through the water pipe one 606, the water pump two 605 and the water pipe two 607. Thus, the spray-cooling water flow circulation is completed, and the subsequent water flow can continue the spray-cooling circulation process. The water used in the spray process is collected throughout the process for cooling and heat dissipation of the polyester cloth, water is saved, and the concept of environmental protection is met.
[0078] It should be noted that in this paper, relational terms such as first and second are used only to distinguish one entity or operation from another, and do not necessarily require or imply that there is any such actual relationship or order between these entities or operations. Moreover, the terms "include", "contain" or any other variants thereof are intended to cover non-exclusive inclusion, so that the process, method, article or equipment including a series of elements not only includes those elements, but also includes other elements not explicitly listed or inherent to such process, method, article or equipment.
[0079] Although the embodiments of the present application have been shown and described, it is to be understood that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present application, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A polyester gray fabric setting device, comprising a workbench (100), a cloth outlet assembly, a spraying assembly, a heating assembly, a setting assembly, characterized in that: Further comprising a cooling assembly; The lower part of the workbench (100) is provided with supporting legs (101); The cloth outlet assembly is arranged at the right edge of the workbench (100); The spraying assembly is arranged on the workbench (100), and the left end of the spraying assembly is the heating assembly, and the right end is the cloth outlet assembly; The heating assembly is arranged in the middle of the workbench (100), and the left end of the heating assembly is the shaping assembly, and the right end is the spraying assembly; The shaping assembly is arranged on the left half of the workbench (100), and its position is located at the right end of the cooling assembly and the left end of the heating assembly; The cooling assembly is arranged at the left edge of the workbench (100), and the cooling assembly is composed of a cooling roller (600), a supporting frame five (601), a supporting rod five (602), a water transfer part one (603), a water transfer part two (604), a water pump two (605), a water pipe one (606), a water pipe two (607), a water pump three (609), and a water pipe four (610).
2. The polyester gray fabric setting device according to claim 1, characterized in that: The cloth outlet assembly comprises a cloth outlet roller (200), a supporting frame one (201), a supporting rod one (202), and a motor (203); The cloth outlet roller (200) is installed on the supporting rod one (202) of the two supporting frame ones (201), the surface of the cloth outlet roller (200) is wrapped with a polyester gray fabric, the two ends of the cloth outlet roller (200) are provided with limiting rings, and the left end of the supporting rod one (202) is provided with a motor (203).
3. The polyester gray fabric setting device according to claim 1, wherein: The spraying assembly comprises an auxiliary roller (300), a protection frame (301), a water pump one (302), a water outlet hole (303), a water storage chamber (304), a supporting frame two (305), a supporting rod two (306), and a nozzle (307); The auxiliary roller (300) is arranged below the top plate of the protection frame (301), and the auxiliary roller (300) is arranged on the supporting rod two (306) between the two supporting frame twos (305); The top plate of the protection frame (301) is provided with a plurality of nozzles (307) at the bottom, and the water spraying direction of the nozzles (307) is opposite to the auxiliary roller (300) below; The water pump one (302) is arranged at the middle position of the top plate of the protection frame (301), and the water pump one (302) and the nozzle (307) are connected through the built-in water guide groove of the top plate of the protection frame (301); The auxiliary roller (300), the supporting frame two (305), and the supporting rod two (306) are provided with the water storage chamber (304) below the projection, the left end wall of the water storage chamber (304) is provided with a water outlet hole (303) at the middle position, and the water outlet hole (303) is a through hole.
4. The polyester gray fabric setting device according to claim 1, wherein: The heating assembly comprises a heating roller (400), a supporting frame three (401), and a supporting rod three (402); The heating roller (400) is arranged on the support rod three (402) between the two support frames three (401), the number of the heating roller (400) is two, the number of the support rod three (402) is two, the two heating rollers (400) and the two support rods three (402) are arranged vertically up and down, and gaps are left between the two heating rollers (400).
5. The polyester gray fabric setting device according to claim 1, wherein: The shaping assembly comprises a pressurized shaping roller (500), a support frame four (501) and a support rod four (502); The pressurized shaping roller (500) is arranged on the support rod four (502) between the two support frames four (501), the number of the pressurized shaping roller (500) is two, the number of the support rod four (502) is two, the two pressurized shaping rollers (500) and the two support rods four (502) are arranged vertically up and down, and the surfaces of the two pressurized shaping rollers (500) abut and contact each other; The pressurized shaping roller (500) is composed of a sleeve rod (503), a connecting rod (504), a spring (505) and a flexible shell (506), the sleeve rod (503) is hollow, four connecting rods (504) are arranged on the surface of the sleeve rod (503) in the circumferential direction, the spring (505) is arranged on the connecting rod (504), one end of the connecting rod (504) is connected with the inner wall of the flexible shell (506), and the other end is connected with the sleeve rod (503); The flexible shell (506) is an arc-shaped plate made of flexible material, and four flexible shells (506) can form a nearly cylindrical structure; The sleeve rod (503) is provided with a plurality of groups of connecting rods (504) and springs (505) along the length direction.
6. The polyester gray fabric setting device according to claim 3, wherein: The cooling roller (600) is arranged between the support rod five (602) between the two support frames five (601), the number of the cooling roller (600) is six, the number of the support frame five (601) is six, the number of the support rod five (602) is six, every two cooling rollers (600) and every two support rods five (602) are arranged vertically up and down in the middle of two support frames five (601); Six cooling rollers (600), support rods five (602) and support frames five (601) are divided into three groups according to two support frames five (601), two support rods five (602) and two cooling rollers (600), and are arranged in parallel on the left end face of the workbench (100); The surface of the cooling roller (600) is provided with a heat conduction plate, and the support rod five (602) is provided with a water guide groove; The left end of the six support rods five (602) is provided with the water transfer part one (603), and the right end of the six support rods five (602) is provided with the water transfer part two (604), and the water transfer part one (603) and the water transfer part two (604) are symmetrically arranged at the two ends of the support rod five (602). The lower end of the transit water delivery part two (604) is connected with the water pump two (605) through the water pipe one (606), the transit water delivery part one (603) is connected with the water pump three (609) through the water pipe four (610), the water pump three (609) and the water pipe four (610) are arranged at the lower end of the transit water delivery part one (603) and the transit water delivery part two (604), and are symmetric about the short edge center line of the workbench (100).
7. The polyester gray fabric setting device according to claim 6, wherein: The water pump two (605) is connected with the left end and the right end of the water pump one (302) through the water pipe two (607); The water outlet hole (303) is connected with the left end of the water pump three (609) through the water pipe three (608).
8. The polyester gray fabric setting device according to claim 7, characterized in that: The water pump one (302) provides water to flow to the nozzle (307) through the built-in water guide groove of the top plate of the protection frame (301), the nozzle (307) sprays water downward, the water falls into the water storage chamber (304), the water in the water storage chamber (304) flows to the water pump three (609) through the water outlet hole (303) and the water pipe three (608), the water pump three (609) sends the water flow to the transit water delivery part one (603), the transit water delivery part one (603) sends the water flow to the water guide groove built in the support rod five (602), and the heat brought by the heat conduction plate arranged on the surface of the cooling roller (600) flows to the transit water delivery part two (604), the water flow flows to the water pump two (605) through the water pipe one (606), the water pump two (605) sends the water flow to the water pipe two (607) to the water pump one (302), and thus the water flow discharged by the spray assembly flows back to the spray assembly after passing through the cooling assembly, and one water flow circulation is completed.
Citation Information
Patent Citations
Polyester gray fabric shaping device
CN219568327U