Composite fiber polyester fabric heat insulation treatment device
By adopting a fast-moving spray head design in the composite fiber polyester cloth heat insulation treatment device, the problem of deterioration of thermal insulation effect caused by uneven spraying in the prior art is solved, and uniform spraying and effective thermal insulation effect of thermal insulation coatings are achieved.
Patent Information
- Application Number
- CN202422537308.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-21
- Publication Date
- 2025-07-01
- Estimated Expiration
- 2034-10-21
AI Technical Summary
The existing composite fiber polyester cloth heat insulation treatment device uses a fixed spray head, which leads to uneven spraying, which may lead to uneven color and thickness of the coating, which will make the insulation effect worse and cannot effectively insulate.
A composite fiber polyester cloth heat insulation treatment device is designed, and a fast-moving spray head is used to move and spray it above the fabric. The threaded rod and slide system are driven by the first and second motors to realize the longitudinal, horizontal and arbitrary movement of the atomized spray head to ensure uniform spraying of the thermal insulation paint.
Through the design of the rapid movement of the nozzle, uniform spraying of the thermal insulation coating is achieved, the problem of uneven coating is solved, the insulation effect is significantly improved, and effective heat insulation is ensured.
Smart Images

Figure CN223042953U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of composite fiber polyester fabric production, in particular to a heat insulation treatment device for composite fiber polyester fabric. Background Art
[0002] The heat insulation treatment device for composite fiber polyester fabric is a device used for heat insulation treatment during the production of composite fiber polyester fabric. By spraying heat insulation paint for heat insulation treatment, the heat insulation performance of the material is enhanced, and the transfer of heat can be effectively blocked.
[0003] Most of the existing heat insulation treatment devices for composite fiber polyester fabric use fixed nozzles for spraying, resulting in uneven spraying, which may cause uneven coating color and uneven coating thickness, deteriorating the heat insulation effect and failing to achieve effective heat insulation.
[0004] Therefore, aiming at the situation that most of the existing heat insulation treatment devices for composite fiber polyester fabric use fixed nozzles for spraying, resulting in uneven spraying, which may cause uneven coating color and uneven coating thickness, deteriorating the heat insulation effect and failing to achieve effective heat insulation, a heat insulation treatment device for composite fiber polyester fabric can be designed. By means of rapid movement, when spraying heat insulation paint, the nozzle moves above the fabric for spraying, evenly spraying every corner of the fabric, thus solving the problems of uneven spraying, which may cause uneven coating color and uneven coating thickness, deteriorating the heat insulation effect and failing to achieve effective heat insulation. Content of the Utility Model
[0005] Aiming at the deficiencies of the prior art, the purpose of the utility model is to provide a heat insulation treatment device for composite fiber polyester fabric, which aims to solve the technical problem that most of the existing devices use fixed nozzles for spraying during use, resulting in uneven spraying, which may cause uneven coating color and uneven coating thickness, deteriorating the heat insulation effect and failing to achieve effective heat insulation.
[0006] The technical solution of the utility model is as follows: A heat insulation treatment device for composite fiber polyester cloth, including a cabinet workbench, a first support column, a second support column, a mounting frame, a first sliding groove, a first sliding block, a first motor, a first threaded rod, a second sliding block, a second sliding groove, a mounting block, a heat insulation paint box, a spraying pipe, an atomizing nozzle, a third sliding groove, a third sliding block, a second motor, a second threaded rod, a fourth sliding block, a fourth sliding groove, a material unwinding assembly and a fixing assembly; The first support column is arranged at the lower end of the workbench, the second support column is arranged at the upper end of the workbench, the mounting frame is arranged at the upper end of the second support column, the first sliding groove is arranged inside the mounting frame, the first sliding block is arranged inside the first sliding groove, the first motor is arranged on one side of the first sliding block, the output end of the first motor is provided with the first threaded rod, the first threaded rod penetrates through the first sliding block, the second sliding block is arranged on one side of the first threaded rod, the second sliding groove is opened inside the mounting frame, the second sliding groove is symmetrically arranged with the first sliding groove, the second sliding block is arranged inside the second sliding groove, one end of the second sliding block is rotatably connected with one end of the first threaded rod, the third sliding groove is arranged inside the mounting frame, the third sliding block is arranged inside the third sliding groove, the second motor is arranged on one side of the third sliding block, the output end of the second motor is provided with the second threaded rod, the second threaded rod penetrates through the third sliding block, the fourth sliding groove is arranged inside the mounting frame, the fourth sliding block is arranged inside the fourth sliding groove, one side of the fourth sliding block is rotatably connected with the second threaded rod, mounting blocks are arranged on the outer sides of the first threaded rod and the second threaded rod, the heat insulation paint box is arranged at the upper end of the mounting block, the spraying pipe is arranged on one side of the heat insulation paint box, the atomizing nozzle is arranged at the lower end of the mounting block, and the other end of the spraying pipe is connected with the atomizing nozzle. The material unwinding assembly is arranged at the upper end of the workbench, and the fixing assembly is arranged at the upper end of the workbench.
[0007] Preferably, the cloth is unwound through the material unwinding assembly and then fixed by the fixing assembly. The paint in the heat insulation paint box is drawn out through the spraying pipe and then sprayed out from the atomizing nozzle for spraying. The first motor is started to drive the first threaded rod to rotate. The first threaded rod drives the mounting block, the mounting block drives the second threaded rod, and the second threaded rod drives the fourth sliding block to slide inside the fourth sliding groove, realizing the longitudinal movement of the atomizing nozzle. By starting the second motor, the second motor drives the second threaded rod to rotate. The second threaded rod drives the mounting block, the mounting block drives the first threaded rod, and the first threaded rod drives the second sliding block to slide inside the second sliding groove, realizing the transverse movement of the atomizing nozzle. The cooperation between the first motor and the second motor realizes the arbitrary movement of the atomizing nozzle, thereby realizing the uniform spraying of the heat insulation paint.
[0008] As a preference, the material unwinding assembly includes a support frame, a third motor, a bearing, a rotating shaft and a cloth roll; The support frame is arranged at the upper end of the workbench, and the support frame is fixedly connected with the workbench.
[0009] As a preference, a third motor is arranged at one end of the support frame, the third motor is fixedly connected with the support frame, and the output end of the third motor is provided with a rotating shaft, and the rotating shaft is fixedly connected with the third motor.
[0010] Preferably, a bearing is arranged outside the rotating shaft. The bearing is located inside the support frame and is fixedly connected to the support frame. A fabric roll is arranged outside the rotating shaft.
[0011] Preferably, the fixing assembly includes a bottom plate, a first guiding column, a fourth motor, a third threaded rod, a fifth slider, a second guiding column, a guiding rod, a sixth slider and a pressing plate; the bottom plate is arranged at the upper end of the workbench. There are two groups of bottom plates, and the two groups of bottom plates are located on both sides of the second support column.
[0012] Preferably, the first guiding column is arranged at the upper end of the bottom plate. The fourth motor is arranged at the upper end of the first guiding column. The output end of the fourth motor is provided with the third threaded rod. A fifth sliding groove is formed inside the first guiding column. The fifth slider is arranged outside the third threaded rod and is slidably connected inside the fifth sliding groove. One end of the fifth slider is provided with the pressing plate.
[0013] Preferably, the second guiding column is arranged at the upper end of the bottom plate. The guiding rod is arranged inside the second guiding column. A sixth sliding groove is formed inside the second guiding column. The sixth slider is arranged outside the guiding rod and slides inside the sixth sliding groove. The pressing plate is arranged between the fifth slider and the sixth slider.
[0014] The beneficial effects of the present utility model:
[0015] Compared with the traditional heat insulation treatment device for composite fiber polyester fabric, most of them use fixed nozzles for spraying, resulting in uneven spraying, which may lead to uneven coating color and uneven coating thickness, deteriorating the heat insulation effect and failing to achieve effective heat insulation. Through the fast moving method, when spraying the heat insulation coating, the nozzle moves above the fabric for spraying, evenly spraying every corner of the fabric, thus solving the problems of uneven spraying, which may lead to uneven coating color and uneven coating thickness, deteriorating the heat insulation effect and failing to achieve effective heat insulation. Description of the Drawings
[0016] Figure 1 Shown is a three-dimensional structural schematic diagram of a heat insulation treatment device for composite fiber polyester fabric of the present utility model;
[0017] Figure 2 Shown is a sectional structural schematic diagram of a nozzle moving assembly of a heat insulation treatment device for composite fiber polyester fabric of the present utility model;
[0018] Figure 3 Shown is a sectional structural schematic diagram of a unwinding assembly of a heat insulation treatment device for composite fiber polyester fabric of the present utility model;
[0019] Figure 4 Shown is a sectional structural schematic diagram of a fixing assembly of a heat insulation treatment device for composite fiber polyester fabric of the present utility model.
[0020] Description of the reference numerals in the drawings: 1, workbench; 2, first support column; 3, second support column; 4, mounting bracket; 501, first chute; 502, first slider; 503, first motor; 504, first threaded rod; 505, second slider; 506, second chute; 507, mounting block; 508, heat insulation paint box; 509, spraying pipe; 510, atomizing nozzle; 511, third chute; 512, third slider; 513, second motor; 514, second threaded rod; 515, fourth slider; 516, fourth chute; 601, support frame; 602, third motor; 603, bearing; 604, rotating shaft; 605, fabric roll; 701, bottom plate; 702, first guide post; 703, fourth motor; 704, third threaded rod; 705, fifth slider; 706, second guide post; 707, guide rod; 708, sixth slider; 709, pressing plate; 710, fifth chute; 711, sixth chute. Detailed implementation manners
[0021] The present utility model will be further described below in conjunction with the drawings and embodiments.
[0022] Please refer to Figure 1 - Figure 2, the present utility model provides an embodiment: a heat insulation treatment device for composite fiber polyester cloth, including a cabinet workbench 1, a first support column 2, a second support column 3, a mounting frame 4, a first chute 501, a first slider 502, a first motor 503, a first threaded rod 504, a second slider 505, a second chute 506, a mounting block 507, a heat insulation paint box 508, a spraying pipe 509, an atomizing nozzle 510, a third chute 511, a third slider 512, a second motor 513, a second threaded rod 514, a fourth slider 515, a fourth chute 516, a unwinding assembly and a fixing assembly; a first support column 2 is arranged at the lower end of the workbench 1, a second support column 3 is arranged at the upper end of the workbench 1, a mounting frame 4 is arranged at the upper end of the second support column 3, a first chute 501 is arranged inside the mounting frame 4, a first slider 502 is arranged inside the first chute 501, a first motor 503 is arranged on one side of the first slider 502, a first threaded rod 504 is arranged at the output end of the first motor 503, the first threaded rod 504 penetrates through the first slider 502, a second slider 505 is arranged on one side of the first threaded rod 504, a second chute 506 is opened inside the mounting frame 4, the second chute 506 is symmetrically arranged with the first chute 501, a second slider 505 is arranged inside the second chute 506, one end of the second slider 505 is rotatably connected to one end of the first threaded rod 504, a third chute 511 is arranged inside the mounting frame 4, a third slider 512 is arranged inside the third chute 511, a second motor 513 is arranged on one side of the third slider 512, a second threaded rod 514 is arranged at the output end of the second motor 513, the second threaded rod 514 penetrates through the third slider 512, a fourth chute 516 is arranged inside the mounting frame 4, a fourth slider 515 is arranged inside the fourth chute 516, one side of the fourth slider 515 is rotatably connected to the second threaded rod 514, mounting blocks 507 are arranged on the outer sides of the first threaded rod 504 and the second threaded rod 514, a heat insulation paint box 508 is arranged at the upper end of the mounting block 507, a spraying pipe 509 is arranged on one side of the heat insulation paint box 508, an atomizing nozzle 510 is arranged at the lower end of the mounting block 507, the other end of the spraying pipe 509 is connected to the atomizing nozzle 510, an unwinding assembly is arranged at the upper end of the workbench 1, and a fixing assembly is arranged at the upper end of the workbench 1.
[0023] Please refer to Figure 3, the unwinding assembly includes a support frame 601, a third motor 602, a bearing 603, a rotating shaft 604, and a fabric roll 605; a support frame 601 is provided at the upper end of the workbench 1, and the support frame 601 is fixedly connected to the workbench 1. By fixedly connecting the support frame 601 to the upper end of the workbench 1, the operation of the unwinding assembly is made more stable. A third motor 602 is provided at one end of the support frame 601, and the third motor 602 is fixedly connected to the support frame 601. A rotating shaft 604 is provided at the output end of the third motor 602, and the rotating shaft 604 is fixedly connected to the third motor 602. By connecting the rotating shaft 604 to the third motor 602, the rotation of the third motor 602 drives the rotation of the rotating shaft 604. A bearing 603 is provided outside the rotating shaft 604, and the bearing 603 is located inside the support frame 601 and is fixedly connected to the support frame 601. A fabric roll 605 is provided outside the rotating shaft 604. By the rotation of the rotating shaft 604 driving the rotation of the bearing 603, rotation is carried out, so that the fabric roll 605 unwinds.
[0024] Please refer to Figure 4 , in this embodiment, the fixing assembly includes a bottom plate 701, a first guide post 702, a fourth motor 703, a third threaded rod 704, a fifth slider 705, a second guide post 706, a guide rod 707, a sixth slider 708, and a pressing plate 709; a bottom plate 701 is provided at the upper end of the workbench 1, and there are two groups of bottom plates 701, and the two groups of bottom plates 701 are located on both sides of the second support column 3. By the two groups of bottom plates 701, the fabric is fixed more firmly. A first guide post 702 is provided at the upper end of the bottom plate 701, a fourth motor 703 is provided at the upper end of the first guide post 702, a third threaded rod 704 is provided at the output end of the fourth motor 703, a fifth chute 710 is opened inside the first guide post 702, a fifth slider 705 is provided outside the third threaded rod 704, and the fifth slider 705 is slidably connected inside the fifth chute 710. One end of the fifth slider 705 is provided with a pressing plate 709. By driving the third threaded rod 704 to rotate by the fourth motor 703, the third threaded rod 704 drives the fifth slider 705 to move inside the first guide post 702, so that the fifth slider 705 drives the pressing plate 709 to move. A second guide post 706 is provided at the upper end of the bottom plate 701, a guide rod 707 is provided inside the second guide post 706, a sixth chute 711 is opened inside the second guide post 706, a sixth slider 708 is provided outside the guide rod 707, and the sixth slider 708 slides inside the sixth chute 711. A pressing plate 709 is provided between the fifth slider 705 and the sixth slider 708. By driving the pressing plate 709 to move by the fifth slider 705, the sixth slider 708 is driven to slide along the guide rod 707 inside the second guide post 706.
[0025] When unwinding the fabric roll, start the third motor 602. The third motor 602 drives the rotating shaft 604, the rotating shaft 604 drives the bearing 603 to rotate, the rotating shaft 604 drives the fabric roll 605 to rotate, hold one end of the fabric, and unwind the fabric.
[0026] When fixing the fabric, pass one end of the fabric under the pressing plate 709 to the other end under the pressing plate 709. Start the fourth motor 703, the fourth motor 703 drives the third threaded rod 704 to rotate, the third threaded rod 704 drives the fifth slider 705 to move inside the fifth chute 710, the fifth slider 705 drives the pressing plate 709 to move, the pressing plate 709 drives the sixth slider 708 to move along the guide rod 707 inside the second guide post 706, the pressing plate 709 moves downward to press one end of the fabric. Then start the third motor 602 to drive the rotating shaft 604 to rotate, the rotating shaft 604 rotates to drive the fabric roll 605 to rotate and tighten. Then start the fixing component on one side of the unwinding component to press the fabric, and complete the fixing of the fabric.
[0027] When spraying the heat-insulating coating, draw out the coating in the heat-insulating coating tank 508 through the spraying pipe 509, and then spray it out from the atomizing nozzle 510. Start the first motor 503 to drive the first threaded rod 504 to rotate, the first threaded rod 504 drives the mounting block 507, the mounting block 507 drives the second threaded rod 514, the second threaded rod 514 drives the fourth slider 515 to slide inside the fourth chute 516, to realize the longitudinal movement of the atomizing nozzle 510. By starting the second motor 513, the second motor 513 drives the second threaded rod 514 to rotate, the second threaded rod 514 drives the mounting block 507, the mounting block 507 drives the first threaded rod 504, the first threaded rod 504 drives the second slider 505 to slide inside the second chute 506, to realize the lateral movement of the atomizing nozzle 510. Through the cooperation between the first motor 503 and the second motor 513, the atomizing nozzle 510 can move arbitrarily, so as to realize the uniform spraying of the heat-insulating coating.
[0028] Through the above steps, the fabric is released by the unwinding component and then fixed by the fixing component. The coating in the heat-insulating coating tank 508 is pumped out through the spraying pipe 509 and then sprayed out from the atomizing nozzle 510. The first motor 503 is started to drive the first threaded rod 504 to rotate. The first threaded rod 504 drives the mounting block 507. The mounting block 507 drives the second threaded rod 514. The second threaded rod 514 drives the fourth slider 515 to slide inside the fourth chute 516, realizing the longitudinal movement of the atomizing nozzle 510. By starting the second motor 513, the second motor 513 drives the second threaded rod 514 to rotate. The second threaded rod 514 drives the mounting block 507. The mounting block 507 drives the first threaded rod 504. The first threaded rod 504 drives the second slider 505 to slide inside the second chute 506, realizing the lateral movement of the atomizing nozzle 510. Through the cooperation between the first motor 503 and the second motor 513, the atomizing nozzle 510 can move arbitrarily, thereby realizing the uniform spraying of the heat-insulating coating.
[0029] The embodiments of the present invention have been described in detail above in conjunction with the accompanying drawings. However, the present invention is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the purpose of the present invention.
Claims
1. A composite fiber polyester cloth heat insulation treatment device, comprising a cabinet workbench (1) and a first support column (2); characterized in that: The workbench (1) further comprises a second support column (3), a mounting frame (4), a first slide groove (501), a first slider (502), a first motor (503), a first threaded rod (504), a second slider (505), a second slide groove (506), a mounting block (507), a heat-insulating paint box (508), a spray pipe (509), an atomizing nozzle (510), a third slide groove (511), a third slider (512), a second motor (513), a second threaded rod (514), a fourth slider (515), a fourth slide groove (516), an unwinding assembly and a fixing assembly; the workbench (1) is provided with a first support column (2) at the lower end, A second support column (3) is arranged at the upper end of the workbench (1), a mounting frame (4) is arranged at the upper end of the second support column (3), a first slide groove (501) is arranged inside the mounting frame (4), a first slider (502) is arranged inside the first slide groove (501), a first motor (503) is arranged on one side of the first slider (502), a first threaded rod (504) is arranged at the output end of the first motor (503), the first threaded rod (504) penetrates the first slider (502), a second slider (505) is arranged on one side of the first threaded rod (504), a second slide groove (506) is opened inside the mounting frame (4), and the second slide groove (50 6) is symmetrically arranged with the first slide groove (501), a second slider (505) is arranged inside the second slide groove (506), one end of the second slider (505) is rotatably connected to one end of the first threaded rod (504), a third slide groove (511) is arranged inside the mounting frame (4), a third slider (512) is arranged inside the third slide groove (511), a second motor (513) is arranged on one side of the third slider (512), a second threaded rod (514) is arranged at the output end of the second motor (513), the second threaded rod (514) penetrates the third slider (512), a fourth slide groove (516) is arranged inside the mounting frame (4), the third slider (512) is arranged on the inner side of the mounting frame (4), and the third slider (511) is arranged on the inner side of the mounting frame (4). A fourth slider (515) is arranged inside the four slide grooves (516), one side of the fourth slider (515) is rotatably connected to the second threaded rod (514), a mounting block (507) is arranged outside the first threaded rod (504) and the second threaded rod (514), a thermal insulation paint box (508) is arranged at the upper end of the mounting block (507), a spray pipe (509) is arranged at one side of the thermal insulation paint box (508), an atomizing nozzle (510) is arranged at the lower end of the mounting block (507), and the other end of the spray pipe (509) is connected to the atomizing nozzle (510), a reeling assembly is arranged at the upper end of the workbench (1), and a fixing assembly is arranged at the upper end of the workbench (1).
2. A composite fiber polyester cloth heat insulation treatment device according to claim 1, characterized in that: The unwinding assembly comprises a support frame (601), a third motor (602), a bearing (603), a rotating shaft (604) and a cloth roll (605); the support frame (601) is arranged at the upper end of the workbench (1), and the support frame (601) is fixedly connected to the workbench (1).
3. A composite fiber polyester cloth heat insulation treatment device according to claim 2, characterized in that: A third motor (602) is disposed at one end of the support frame (601), the third motor (602) is fixedly connected to the support frame (601), and a rotating shaft (604) is disposed at the output end of the third motor (602), the rotating shaft (604) is fixedly connected to the third motor (602).
4. A composite fiber polyester cloth heat insulation treatment device according to claim 2, characterized in that: A bearing (603) is arranged outside the rotating shaft (604), the bearing (603) is located inside the support frame (601), the bearing (603) is fixedly connected to the support frame (601), and a cloth roll (605) is arranged outside the rotating shaft (604).
5. The thermal insulation treatment device for composite fiber polyester cloth according to claim 1, characterized in that: The fixing assembly comprises a bottom plate (701), a first guide column (702), a fourth motor (703), a third threaded rod (704), a fifth slider (705), a second guide column (706), a guide rod (707), a sixth slider (708) and a pressing plate (709); a bottom plate (701) is arranged at the upper end of the workbench (1), and two groups of bottom plates (701) are arranged, and the two groups of bottom plates (701) are located on both sides of the second support column (3).
6. A composite fiber polyester cloth heat insulation treatment device according to claim 5, characterized in that: A first guide column (702) is arranged at the upper end of the bottom plate (701), a fourth motor (703) is arranged at the upper end of the first guide column (702), a third threaded rod (704) is arranged at the output end of the fourth motor (703), a fifth slide groove (710) is opened inside the first guide column (702), a fifth slider (705) is arranged outside the third threaded rod (704), the fifth slider (705) is slidably connected inside the fifth slide groove (710), and a pressing plate (709) is arranged at one end of the fifth slider (705).
7. A thermal insulation treatment device for composite fiber polyester cloth according to claim 5, characterized in that: A second guide column (706) is arranged at the upper end of the bottom plate (701), a guide rod (707) is arranged inside the second guide column (706), a sixth slide groove (711) is opened inside the second guide column (706), a sixth slider (708) is arranged outside the guide rod (707), the sixth slider (708) slides inside the sixth slide groove (711), and a pressure plate (709) is arranged between the fifth slider (705) and the sixth slider (708).