Efficient textile padding device
By combining multiple immersion and extrusion structures, circulating water pump agitation, and cleaning and drying components, the problems of insufficient contact of immersion liquid, dripping, and sedimentation in textile immersion devices are solved, achieving efficient and uniform immersion results and cleanliness of the device.
Patent Information
- Application Number
- CN202511548386.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-28
- Publication Date
- 2026-01-20
AI Technical Summary
Existing textile rinsing devices suffer from problems such as insufficient contact between the rinsing solution and the textile, long rinsing time, easy dripping and sedimentation of the rinsing solution, and poor cleaning effect.
The device employs a multi-stage immersion and compression structure, combined with a circulating water pump and a stirring assembly to ensure full contact and uniformity of the immersion solution. A cleaning assembly removes floating dust and lint, a drying assembly dries the device, and an anti-slip assembly stabilizes the device's position.
It improves the efficiency and uniformity of textile impregnation, prevents impregnation solution from dripping and settling, ensures the cleanliness of the equipment, and facilitates subsequent processing of textiles.
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Figure CN121363092A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application relates to the technical field of dipping devices, and particularly relates to an efficient textile dipping device. BACKGROUND
[0002] Textiles, namely products formed through textile processing, include yarns, woven fabrics, knitted fabrics, braided fabrics and the like, and are divided into two categories of woven fabrics and knitted fabrics. The woven fabric, also known as the machine woven fabric, is formed by interlacing the warp yarns and the weft yarns vertically. The basic organizations of the woven fabric include plain weave, twill weave and satin weave. Different woven fabrics are formed by the three basic organizations and various changed organizations, and mainly include chiffon, oxford cloth, denim, twill cloth, flannel and damask. The knitted fabric is formed by constructing loops of yarns or filaments with knitting needles, and the loops are interlocked with each other. Due to the loop structure of the knitted fabric, the yarn storage in unit length is relatively large, and therefore the knitted fabric has good elasticity. The knitted fabric is divided into single-sided and double-sided knitted fabrics, and mainly includes jersey, velvet, bird's eye fabric and mesh fabric.
[0003] In the patent document "CN213142461U efficient cotton type textile dipping device", the purpose of having a scraping function is achieved, the excess dye on the surface of the cotton type textile can be removed, thereby avoiding uneven dyeing, improving the user experience of the cotton type textile dipping device, meeting the needs of the current market, improving the practicality and usability of the cotton type textile dipping device, and solving the problem that the previous cotton type textile dipping device does not have a scraping function. However, when dipping the textile, the dipping liquid does not contact the textile sufficiently, the textile needs a long dipping time, the dipping liquid on the textile is prone to dripping, the dripping dipping liquid is difficult to clean, which affects the cleanliness of the device, and the dipping liquid is prone to sedimentation, which affects the uniformity of the textile dipping. SUMMARY
[0004] In order to solve the problems in the prior art, the two dipping assemblies can dip and press the textile multiple times, so that the textile is fully contacted with the dipping liquid, the dipping effect of the textile is better, the dipping time is shorter, the dipping efficiency of the textile is improved, the problems of poor dipping effect and low dipping efficiency of the textile are solved, the dripping of the dipping liquid is prevented, the cleanliness of the device is affected, the circulating water pump and other structures can make the dipping liquid flow, the stirring assembly can stir the dipping liquid, the problem that the dipping liquid is prone to sedimentation and affects the dipping effect is solved, the dipping liquid is more uniform, and the textile dipping is facilitated.
[0005] More in order to solve the problems in the prior art, the lint, dust and the like on the textile can be cleaned by the cleaning assembly, the problem of affecting the immersion effect of the textile by the lint and dust is solved, and the textile can be dried by the drying assembly, facilitating the transfer of the textile and the subsequent process of the textile.
[0006] Further in order to solve the problems in the prior art, the sliding wheel set can make the movement of the immersion device more labor-saving, the position of the anti-skid plate can be adjusted by the eccentric wheel and the supporting spring, the position of the immersion device can be limited by the anti-skid plate, the position deviation of the immersion device during use is prevented, the problem of position deviation of the immersion device during use is solved, and the use of the immersion device is facilitated.
[0007] An efficient textile immersion device, the immersion device comprises a support table, an immersion shell, a guide assembly, an immersion assembly, a protective shell and a mixing structure, the support table top is fixedly connected with the immersion shell, the immersion shell side is fixedly connected with the guide assembly, the guide assembly is provided with the immersion assembly, the immersion assembly outer side is provided with the protective shell, the protective shell is fixedly connected to the support table top, the protective shell inner side is provided with the mixing structure, the mixing structure comprises a mixing shell, a first connecting pipe, a circulating water pump, a second connecting pipe, a first motor, a stirring assembly, a mounting shell and a fixing column, one side of the mixing shell is fixedly connected with the first connecting pipe, one end of the first connecting pipe is fixedly connected to one side of the immersion shell, the other side of the mixing shell is fixedly connected with the circulating water pump, the water outlet end of the circulating water pump is fixedly connected with the second connecting pipe, the second connecting pipe is fixedly connected to one side of the immersion shell, the top of the mixing shell is fixedly connected with the first motor, the output end of the first motor is fixedly connected with the stirring assembly, the stirring assembly outer side is provided with the mounting shell, the top and bottom of the mounting shell are fixedly connected with a plurality of fixing columns, and the fixing columns are fixedly connected to the mixing shell inner cavity side wall.
[0008] Further, a plurality of entrances are formed in the top of the immersion shell, maintenance doors are hingedly connected to the front and back of the protective shell, two immersion assemblies are arranged on the immersion shell and distributed left and right, a rotating opening is formed in the top of the mixing shell, the output end of the first motor extends through the rotating opening and extends to the mixing shell inner cavity, a discharge pipe assembly is fixedly connected to one side of the mixing shell, the first connecting pipe is located on the upper side of the back of the immersion shell, and the first connecting pipe is located on the lower side of the back of the immersion shell.
[0009] Further, the guiding assembly comprises a first mounting plate and a first guiding column, both ends of the first guiding column are rotationally connected with the first mounting plate, and both the first mounting plates are fixedly connected to the side surface of the impregnation shell, the impregnation assembly comprises three impregnation rollers, two second mounting plates and two extrusion columns, the impregnation assembly comprises three impregnation rollers, the three impregnation rollers are rotationally connected to the side wall in the inner cavity of the impregnation shell, and the three impregnation rollers are distributed in a triangular shape, the two second mounting plates are rotationally connected to both ends of the two extrusion columns respectively, and the two second mounting plates are fixedly connected to the top of the impregnation shell, and the two extrusion columns are distributed in a left-right symmetry.
[0010] Further, the stirring assembly comprises a first rotating column, a driving gear, a second rotating column, a driven gear, a stirring shaft and a stirring blade, the first rotating column is fixedly connected to the output end of the first motor, the bottom of the first rotating column is fixedly connected with the driving gear, the bottom of the driving gear is fixedly connected with the second rotating column, the second rotating column is rotationally connected to the side wall in the inner cavity of the mounting shell, the side surface of the driving gear is engaged with two symmetrically distributed driven gears, the side surfaces, away from each other, of the two driven gears are fixedly connected with the stirring shaft, the surface of the stirring shaft is fixedly connected with the stirring blade, and the side surface of the mounting shell is provided with a preset opening, one end of the stirring shaft penetrates through the preset opening and is rotationally connected to the side wall in the inner cavity of the mixing shell.
[0011] Further, the impregnation device further comprises an auxiliary structure, the auxiliary structure comprises a cleaning assembly and a drying assembly, the cleaning assembly comprises a fixed cleaning shell, a second guiding column, a second motor, a first winding column, a sticky hair belt, a supporting column and a second winding column, the fixed cleaning shell is fixedly connected to the top of the supporting table, the side wall in the inner cavity of the fixed cleaning shell is rotationally connected with the second guiding column, one side of the fixed cleaning shell is fixedly connected with the second motor, the output end of the second motor is fixedly connected with the first winding column, the surface of the first winding column is wrapped with the sticky hair belt, one side of the sticky hair belt is provided with the supporting column, the supporting column is rotationally connected to the side wall in the inner cavity of the fixed cleaning shell, and the sticky hair belt is wrapped on the surface of the second winding column, and the second winding column is rotationally connected to the side wall in the inner cavity of the fixed cleaning shell.
[0012] Further, the side wall in the inner cavity of the fixed cleaning shell is fixedly connected with four second guiding columns distributed in an S shape, the fixed cleaning shell is provided with a first inlet on one side and a first outlet on the other side, the side wall in the inner cavity of the fixed cleaning shell is rotationally connected with two supporting columns distributed on the left and right, and the front surface of the fixed cleaning shell is hingedly connected with a replacement door.
[0013] Further, the drying assembly comprises a first drying shell, a third guide column, a second drying shell, a drying fan, a heating body and a dustproof net, the first drying shell is fixed to the top of the support table, the inner cavity side wall of the first drying shell is rotationally connected with the third guide column, the first drying shell is fixed with the second drying shell on one side, the second drying shell is fixed to the top of the support table, the inner cavity side wall of the second drying shell is fixed with the drying fan, the drying fan is provided with the heating body on one side, the heating body is fixed to the inner cavity side wall of the second drying shell, and the back of the second drying shell is provided with the dustproof net.
[0014] Further, the front and back of the first drying shell and the second drying shell are provided with a plurality of evenly distributed air exchange holes, the inner cavity side wall of the second drying shell is fixed with a plurality of heating bodies, the first drying shell is provided with a first inlet on one side, the second drying shell is provided with a second inlet on the other side, and the inner cavity side wall of the first drying shell is rotationally connected with three third guide columns, and the three third guide columns are in a triangular structure.
[0015] Further, the dipping device further comprises an anti-skid assembly, the anti-skid assembly comprises a support leg, a third mounting plate, a sliding wheel set, a double-shaft motor, an eccentric wheel, a connecting plate, a limiting column, a reinforcing shell, a supporting spring, a connecting column and an anti-skid plate, the support table is fixed with the support leg at the corners of the bottom, the support leg is fixed to the top of the third mounting plate, the third mounting plate is fixed with the sliding wheel set at the corners of the bottom, the support table is fixed with the mounting table at the bottom, the mounting table is fixed with the double-shaft motor at the bottom, the output end of the double-shaft motor is fixed with the eccentric wheel, the bottom of the eccentric wheel is provided with the connecting plate, the connecting plate is slidingly connected to the surface of the limiting column, the top end of the limiting column is fixed with the reinforcing shell, the limiting column and the reinforcing shell are fixed to the top of the third mounting plate, the top surface of the reinforcing shell is fixed with the supporting spring, the supporting spring is fixed to the top of the connecting plate, the bottom of the connecting plate is fixed with the connecting column, and the connecting column is fixed to the top of the anti-skid plate.
[0016] Further, the top of the third mounting plate is fixed with two symmetrically distributed reinforcing frames, the reinforcing frames are fixed to the bottom of the support table, and the reinforcing frames are in a cross structure, the connecting plate is provided with two symmetrically distributed limiting openings, the top end of the limiting column penetrates through the limiting opening and is fixed to the inner wall of the top surface of the reinforcing shell, the supporting spring is sleeved on the surface of the limiting column, the bottom of the connecting plate is fixed with two symmetrically distributed connecting columns, the third mounting plate is provided with a plurality of connecting openings, the bottom end of the connecting column penetrates through the connecting opening and extends to below the third mounting plate, and the bottom of the anti-skid plate is provided with a plurality of anti-skid teeth. The application has the advantages of providing a high-efficiency textile dipping device which is convenient to clean and has good dipping effect. BRIEF DESCRIPTION OF DRAWINGS
[0017] In order to more clearly illustrate the technical solutions of the embodiments of the present application or the prior art, the drawings needed to be used in the embodiments or prior art description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.
[0018] Figure 1 is a high-efficiency textile dipping device according to an embodiment of the present application; Figure 2 is Figure 1 a planar structure schematic diagram of the dipping device in the embodiment shown; Figure 3 is Figure 1 a three-dimensional structure schematic diagram of the dipping shell in the embodiment shown; Figure 4 is Figure 1 a three-dimensional structure schematic diagram of the guide assembly in the embodiment shown; Figure 5 is Figure 1 a schematic diagram of the mixing structure and the position relationship of the dipping shell in the embodiment shown; Figure 6 is Figure 5 a top view schematic diagram of the mixing structure in the embodiment shown; Figure 7 is Figure 6 a three-dimensional structure schematic diagram of the stirring assembly in the embodiment shown; Figure 8 is Figure 1 a schematic diagram of the position relationship between the second motor and the first winding column in the embodiment shown; Figure 9 is Figure 1 a schematic diagram of the internal structure of the second drying shell in the embodiment shown; Figure 10 is Figure 1 a three-dimensional structure schematic diagram of the anti-skid assembly in the embodiment shown.
[0019] The meanings of the reference signs in the drawings are as follows: 100, impregnation device; 101, support table; 102, impregnation housing; 103, guide assembly; 1031, first mounting plate; 1032, first guide column; 104, impregnation assembly; 1041, impregnation roller; 1042, second mounting plate; 1043, extrusion column; 105, protective housing; 106, mixing housing; 107, first connecting pipe; 108, circulating water pump; 109, second connecting pipe; 110, first motor; 111, stirring assembly; 1111, first rotating column; 1112, driving gear; 1113, second rotating column; 1114, driven gear; 1115, stirring shaft; 1116, stirring blade; 112, mounting housing; 113, fixing column; 114, cleaning housing; 115, second guide column; 116, second motor; 117, first winding column; 118, sticky tape; 119, support column; 120, second winding column; 121, first drying housing; 122, third guide column; 123, second drying housing; 124, drying fan; 125, heating body; 126, dustproof net; 127, support leg; 128, third mounting plate; 129, sliding wheel set; 130, double-shaft motor; 131, eccentric wheel; 132, connecting plate; 133, limiting column; 134, reinforcing housing; 135, support spring; 136, connecting column; 137, anti-skid plate. DETAILED DESCRIPTION
[0020] In order to make the application purposes, features and advantages of the present application more obvious and easy to understand, the technical solutions in the embodiments of the present application will be described clearly and completely below in conjunction with the drawings in the embodiments of the present application. Obviously, the embodiments described below are only some of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0021] The technical solutions of the present application will be further described below in conjunction with the drawings and through specific embodiments.
[0022] In the description of the present application, it should be understood that the terms "upper", "lower", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application.
[0023] Reference Figures 1 to 2The utility model provides a high -efficient textile soaking device, and the soaking device 100 includes support platform 101, soaking shell 102, guide assembly 103, soaking assembly 104, protective shell 105 and mix structure, support platform 101 top fixedly connected with soaking shell 102, and soaking shell 102 side fixedly connected with guide assembly 103, and guide assembly 103 is provided with soaking assembly 104, and the outside of soaking assembly 104 is provided with protective shell 105, and protective shell 105 is fixedly connected on the top of support platform 101, and the inside of protective shell 105 is provided with mix structure, and mix structure includes mix shell 106, first connecting pipe 107, circulating water pump 108, second connecting pipe 109, first motor 110, stirring assembly 111, mounting shell 112 and fixed column 113, and mix shell 106 one side is fixedly connected with first connecting pipe 107, and first connecting pipe 107 one end is fixedly connected with soaking shell 102 one side, and mix shell 106 other side is fixedly connected with circulating water pump 108, and the water outlet of circulating water pump 108 is fixedly connected with second connecting pipe 109, and second connecting pipe 109 is fixedly connected with soaking shell 102 one side, and mix shell 106 top is fixedly connected with first motor 110, and the output of first motor 110 is fixedly connected with stirring assembly 111, and stirring assembly 111 outside is provided with mounting shell 112, and mounting shell 112 top and bottom are all fixedly connected with a plurality of fixed columns 113, and fixed column 113 is fixedly connected with mix shell 106 inner chamber side wall.
[0024] Through the above technical scheme, the textile can be soaked and extruded multiple times by the soaking assembly 104, so that the soaking liquid can be more fully contacted with the textile, the soaking time of the textile is shortened, and the soaking efficiency of the textile is improved. The extrusion column 1043 is used to extrude the textile, so that the excess soaking liquid on the textile is prevented from being squeezed out, the excess soaking liquid is prevented from falling, and the neatness of the soaking device 100 is prevented from being affected. The circulating water pump 108 is used to make the soaking liquid flow, and the stirring assembly 111 is used to mix the soaking liquid, so that the soaking liquid is prevented from being deposited and affecting the soaking effect. When the soaking device 100 is used, the textile enters the soaking shell 102 through the guide assembly 103, and then the textile is soaked in the soaking liquid by the plurality of soaking rollers 1041, so that the textile is soaked. Then, the textile is extruded once by the extrusion column 1043, and then the textile is soaked twice by the soaking roller 1041, and then the textile is extruded twice by the extrusion column 1043. Through the two times of soaking, the textile is fully contacted with the soaking liquid, so that the soaking effect of the textile is better. The extrusion column 1043 is used to extrude the textile, so that the excess soaking liquid on the textile is squeezed out, and the neatness of the soaking device 100 is prevented from being affected by the falling of the soaking liquid. The circulating water pump 108, the first connecting pipe 107 and the second connecting pipe 109 are used to make the soaking liquid in the soaking shell 102 flow, and then the first motor 110 and the stirring assembly 111 are used to stir and mix the soaking liquid, so that the soaking liquid is prevented from being deposited and affecting the soaking effect of the textile.
[0025] Specifically, as shown in Figure 2 and Figure 3 , the top of the soaking shell 102 is provided with a plurality of entrances, the front and back of the protective shell 105 are hinged with maintenance doors, and the protective shell 105 can prevent dust and other debris from falling into the soaking liquid to affect the quality of the soaking liquid. The soaking shell 102 is provided with two left and right distributed soaking assemblies 104, and the top of the mixing shell 106 is provided with a rotating port. The output end of the first motor 110 penetrates the rotating port and extends to the inner cavity of the mixing shell 106. The mixing shell 106 is fixedly connected with a discharge pipe assembly on one side. The discharge pipe assembly can facilitate the discharge of the soaking liquid. The first connecting pipe 107 is located on the upper side of the back of the soaking shell 102, and the first connecting pipe 107 is located on the lower side of the back of the soaking shell 102.
[0026] As a further optimization scheme, as shown in Figure 2 and Figure 4 , the guide assembly 103 includes a first mounting plate 1031 and a first guide column 1032. The first guide column 1032 is rotatably connected with the first mounting plate 1031 at both ends, and the two first mounting plates 1031 are fixedly connected to the side of the soaking shell 102. The first guide column 1032 can support the first mounting plate 1031, and the first mounting plate 1031 can guide the textile into the soaking shell 102. The soaking assembly 104 includes three soaking rollers 1041, two second mounting plates 1042 and two extrusion columns 1043. The soaking assembly 104 includes three soaking rollers 1041, which are rotatably connected to the side wall of the inner cavity of the soaking shell 102, and the three soaking rollers 1041 are distributed in a triangular shape. Two second mounting plates 1042 are rotatably connected to both ends of two extrusion columns 1043, and two second mounting plates 1042 are fixedly connected to the top of the soaking shell 102. The two extrusion columns 1043 are symmetrically distributed. The extrusion column 1043 can extrude the excess soaking liquid on the textile to prevent the excess soaking liquid from dripping and affecting the neatness of the soaking device 100, and facilitate the drying of the textile.
[0027] As a further optimization scheme, as shown in Figure 5 , Figure 6 and Figure 7As shown, the stirring assembly 111 comprises a first rotating column 1111, a driving gear 1112, a second rotating column 1113, a driven gear 1114, a stirring shaft 1115 and stirring blades 1116, the first rotating column 1111 is fixedly connected to the output end of the first motor 110, the bottom of the first rotating column 1111 is fixedly connected to the driving gear 1112, the bottom of the driving gear 1112 is fixedly connected to the second rotating column 1113, the second rotating column 1113 is rotatably connected to the side wall of the inner cavity of the mounting shell 112, the side surface of the driving gear 1112 engages with two symmetrical driven gears 1114, the opposite sides of the two driven gears 1114 are fixedly connected with the stirring shaft 1115, the surface of the stirring shaft 1115 is fixedly connected with the stirring blades 1116, and a preset opening is formed in the side surface of the mounting shell 112, one end of the stirring shaft 1115 penetrates through the preset opening and is rotatably connected to the side wall of the inner cavity of the mixing shell 106.
[0028] Through the above technical scheme, the impregnation liquid can be stirred and mixed, so that the mixing of the impregnation liquid is more uniform, the quality is prevented from being affected by precipitation of the impregnation liquid, the impregnation effect is better, in use, the first motor 110 drives the first rotating column 1111 to rotate, thereby driving the driving gear 1112 to rotate, at this time, the second rotating column 1113 can support the driving gear 1112, so that the driving gear 1112 is more stable, the driving gear 1112 can drive the driven gear 1114 to rotate, thereby driving the stirring shaft 1115 to rotate, and further driving the stirring blades 1116 to rotate, so that the impregnation liquid can be stirred, and the impregnation effect of the textile is prevented from being affected by precipitation of the impregnation liquid.
[0029] As an optimization scheme, as shown in Figure 2 and Figure 8 As shown, the impregnation device 100 further comprises an auxiliary structure, the auxiliary structure comprises a cleaning assembly and a drying assembly, the cleaning assembly comprises a fixed cleaning shell 114, a second guide column 115, a second motor 116, a first winding column 117, a sticky hair belt 118, a support column 119 and a second winding column 120, the fixed cleaning shell 114 is fixedly connected to the top of the support table 101, the second guide column 115 is rotatably connected to the side wall of the inner cavity of the fixed cleaning shell 114, the second motor 116 is fixedly connected to one side of the fixed cleaning shell 114, the output end of the second motor 116 is fixedly connected to the first winding column 117, the first winding column 117 is wrapped with the sticky hair belt 118, one side of the sticky hair belt 118 is provided with the support column 119, the support column 119 is rotatably connected to the side wall of the inner cavity of the fixed cleaning shell 114, and the second winding column 120 is wrapped on the surface of the second winding column 120, and the second winding column 120 is rotatably connected to the side wall of the inner cavity of the fixed cleaning shell 114.
[0030] By the above technical scheme, the textile can be cleaned and dried. The textile can be cleaned before soaking by the cleaning assembly, preventing floating dust and lint on the textile from affecting the soaking effect. When in use, the second guide column 115 guides the textile. The first winding column 117 is driven by the second motor 116 to rotate, thereby driving the lint belt 118 to move. The floating dust and lint on the textile can be adhered by the lint belt 118 on both sides. Then, the textile is guided by the second guide column 115 to the guide assembly 103. When the lint belt 118 is used, the second winding column 120 unwinds the lint belt 118. The first winding column 117 winds the lint belt 118. The support column 119 makes the lint belt 118 contact the textile to remove the floating dust and lint on the textile, facilitating the soaking of the textile.
[0031] Specifically, as shown in Figure 2 and Figure 8 , four second guide columns 115 are fixedly connected to the side wall of the inner cavity of the fixed cleaning shell 114 and are distributed in an S shape. A first entrance is formed on one side of the fixed cleaning shell 114. A first exit is formed on the other side of the fixed cleaning shell 114. Two support columns 119 are rotatably connected to the side wall of the inner cavity of the fixed cleaning shell 114 and are distributed left and right. A replacement door is hingedly connected to the front of the fixed cleaning shell 114. The textile can be guided by the second guide column 115. The lint belt 118 can be replaced by the replacement door.
[0032] As a further optimization scheme, as shown in Figure 2 and Figure 9 , the drying assembly includes a first drying shell 121, a third guide column 122, a second drying shell 123, a drying fan 124, a heating body 125, and a dust screen 126. The first drying shell 121 is fixedly connected to the top of the support table 101. The third guide column 122 is rotatably connected to the side wall of the inner cavity of the first drying shell 121. The second drying shell 123 is fixedly connected to one side of the first drying shell 121. The second drying shell 123 is fixedly connected to the top of the support table 101. The drying fan 124 is fixedly connected to the side wall of the inner cavity of the second drying shell 123. The heating body 125 is provided on one side of the drying fan 124 and is fixedly connected to the side wall of the inner cavity of the second drying shell 123. The dust screen 126 is provided on the back of the second drying shell 123. The dust screen 126 can prevent dust from entering the second drying shell 123 and prevent dust from adhering to the textile.
[0033] By the above technical scheme, the textile can be dried, facilitating the transfer of the textile and the subsequent process. In use, the textile can be dried by the drying fan 124 and the heating body 125, and the textile can be guided by the third guide column 122, increasing the residence time of the textile in the first drying shell 121 and improving the drying effect of the textile, facilitating the transfer of the textile.
[0034] Specifically, as shown in Figure 2 and Figure 9 , the front and back surfaces of the first drying shell 121 and the second drying shell 123 are provided with a plurality of evenly distributed air exchange holes, and a plurality of heating bodies 125 are fixedly connected to the side walls of the inner cavity of the second drying shell 123. The heating bodies 125 can be heated to facilitate drying of the textile. The first drying shell 121 is provided with a first inlet on one side and a second inlet on the other side. The inner cavity side wall of the first drying shell 121 is rotatably connected with three third guide columns 122, and the three third guide columns 122 form a triangular structure.
[0035] As an optimization scheme, as shown in Figure 2 and Figure 10 , the dipping device 100 further comprises an anti-skid assembly, which comprises a supporting leg 127, a third mounting plate 128, a sliding wheel set 129, a double-shaft motor 130, an eccentric wheel 131, a connecting plate 132, a limiting column 133, a reinforcing shell 134, a supporting spring 135, a connecting column 136 and an anti-skid plate 137. The supporting legs 127 are fixedly connected to the bottom corners of the supporting table 101, and the supporting legs 127 are fixedly connected to the top of the third mounting plate 128. The sliding wheel sets 129 are fixedly connected to the bottom corners of the third mounting plate 128. The supporting table 101 is fixedly connected with a mounting table at the bottom, and the mounting table is fixedly connected with a double-shaft motor 130 at the bottom. The output end of the double-shaft motor 130 is fixedly connected with an eccentric wheel 131, and the bottom of the eccentric wheel 131 is provided with a connecting plate 132. The connecting plate 132 is slidingly connected to the surface of the limiting column 133. The limiting column 133 is fixedly connected with a reinforcing shell 134 at the top, and the limiting column 133 and the reinforcing shell 134 are fixedly connected to the top of the third mounting plate 128. The reinforcing shell 134 is fixedly connected with a supporting spring 135 on the inner wall of the top surface, and the supporting spring 135 is fixedly connected to the top of the connecting plate 132. The connecting plate 132 is fixedly connected with a connecting column 136 at the bottom, and the connecting column 136 is fixedly connected to the top of the anti-skid plate 137.
[0036] Through the technical scheme, the movement and stability of the impregnation device 100 can be facilitated, and the impregnation device 100 is convenient to use. When in use, the impregnation device 100 can be moved conveniently through the sliding wheel set 129, and the movement of the impregnation device 100 is more stable. When the impregnation device 100 needs to be stable, the eccentric wheel 131 is driven to rotate by the double-shaft motor 130, so as to extrude the connecting plate 132, the connecting plate 132 moves downward along the limiting column 133, the connecting column 136 moves in the same direction, the anti-skid plate 137 moves in the same direction, the anti-skid plate 137 contacts the ground, the friction between the impregnation device 100 and the ground is increased, and displacement of the impregnation device 100 during use is prevented, so that the impregnation device 100 is convenient to use. When the impregnation device 100 needs to be moved, the anti-skid plate 137 can be restored to the initial position by using the opposite mode, and the operation is simple and convenient to use.
[0037] Specifically, as shown in Figure 2 and Figure 10 , the third mounting plate 128 is fixedly connected with two symmetrical reinforcing frames at the top, the reinforcing frames are fixedly connected to the bottom of the support table 101, and the reinforcing frames have a cross structure. The connecting plate 132 is provided with two symmetrical limiting openings, the limiting column 133 penetrates through the limiting openings and is fixedly connected to the inner wall of the top surface of the reinforcing shell 134, the movement track of the connecting plate 132 can be limited through the limiting column 133, and the movement of the connecting plate 132 is more stable. The support spring 135 is sleeved on the surface of the limiting column 133, and the connecting plate 132 can be restored to the initial position through the support spring 135. The connecting plate 132 is fixedly connected with two symmetrical connecting columns 136 at the bottom, the third mounting plate 128 is provided with a plurality of connecting openings, the bottom end of the connecting column 136 penetrates through the connecting openings and extends to below the third mounting plate 128, and the anti-skid plate 137 is provided with a plurality of anti-skid teeth at the bottom. The friction between the anti-skid plate 137 and the ground can be increased through the anti-skid teeth, and the impregnation device 100 is more stable during use.
[0038] It is apparent for those skilled in the art that the present application is not limited to the details of the foregoing exemplary embodiments, and the present application can be implemented in other concrete forms without departing from the spirit or essential characteristics of the present application. Therefore, the embodiments should be considered as exemplary and non-limiting, and the scope of the present application is defined by the appended claims rather than the foregoing description, and it is intended to encompass all changes falling within the meaning and range of equivalents of the elements of the claims. Any reference signs in the claims should not be considered as limiting the claims involved.
[0039] The above-described embodiments are only used to illustrate the technical solutions of the present application, and not to limit them; although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that they can still modify the technical solutions recorded in the foregoing embodiments, or make equivalent replacements for part of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present application.
Claims
1. A high efficiency textile impregnation apparatus characterized by: The dipping device (100) comprises a support table (101), a dipping shell (102), a guide assembly (103), a dipping assembly (104), a protective shell (105) and a mixing structure, the support table (101) is fixedly connected with the dipping shell (102) on the top, the dipping shell (102) is fixedly connected with the guide assembly (103) on the side, the guide assembly (103) is provided with the dipping assembly (104), the dipping assembly (104) is provided with the protective shell (105) on the outside, the protective shell (105) is fixedly connected with the support table (101) on the top, the protective shell (105) is provided with the mixing structure on the inside, the mixing structure comprises a mixing shell (106), a first connecting pipe (107), a circulating water pump (108), a second connecting pipe (109), a first motor (110), a stirring assembly (111), a mounting shell (112) and a fixing column (113), one side of the mixing shell (106) is fixedly connected with the first connecting pipe (107), one end of the first connecting pipe (107) is fixedly connected with one side of the dipping shell (102), the other side of the mixing shell (106) is fixedly connected with the circulating water pump (108), the water outlet end of the circulating water pump (108) is fixedly connected with the second connecting pipe (109), the second connecting pipe (109) is fixedly connected with one side of the dipping shell (102), the top of the mixing shell (106) is fixedly connected with the first motor (110), the output end of the first motor (110) is fixedly connected with the stirring assembly (111), the stirring assembly (111) is provided with the mounting shell (112) on the outside, a plurality of fixing columns (113) are fixedly connected with the mounting shell (112) on the top and the bottom, and the fixing columns (113) are fixedly connected with the side wall in the inner cavity of the mixing shell (106).
2. A high efficiency textile impregnation apparatus as claimed in claim 1, wherein: A plurality of entrances are formed in the top of the dipping shell (102), maintenance doors are hingedly connected to the front and back of the protective shell (105), two left and right dipping assemblies (104) are arranged on the dipping shell (102), a rotating opening is formed in the top of the mixing shell (106), the output end of the first motor (110) penetrates through the rotating opening and extends into the inner cavity of the mixing shell (106), a discharge pipe assembly is fixedly connected to one side of the mixing shell (106), the first connecting pipe (107) is located on the upper side of the back of the dipping shell (102), and the first connecting pipe (107) is located on the lower side of the back of the dipping shell (102).
3. A high efficiency textile impregnation apparatus as claimed in claim 1, wherein: The guiding assembly (103) comprises a first mounting plate (1031) and a first guiding column (1032), both ends of the first guiding column (1032) are rotationally connected with the first mounting plate (1031), and both of the first mounting plates (1031) are fixedly connected to the side of the impregnation shell (102).
4. A high efficiency textile impregnation apparatus as claimed in claim 1, wherein: The stirring assembly (111) comprises a first rotating column (1111), a driving gear (1112), a second rotating column (1113), a driven gear (1114), a stirring shaft (1115) and stirring blades (1116), the first rotating column (1111) is fixedly connected to the output end of the first motor (110), the bottom of the first rotating column (1111) is fixedly connected with the driving gear (1112), the bottom of the driving gear (1112) is fixedly connected with the second rotating column (1113), the second rotating column (1113) is rotationally connected to the side wall in the inner cavity of the mounting shell (112), the side surface of the driving gear (1112) is engaged with two symmetrically distributed driven gears (1114), the two driven gears (1114) are fixedly connected with the stirring shaft (1115) on the opposite sides, the surface of the stirring shaft (1115) is fixedly connected with the stirring blades (1116), and the side surface of the mounting shell (112) is provided with a preset opening, one end of the stirring shaft (1115) penetrates through the preset opening and is rotationally connected to the side wall in the inner cavity of the mixing shell (106).
5. A high efficiency textile impregnation apparatus as claimed in claim 1, wherein: The impregnation device (100) further comprises an auxiliary structure, the auxiliary structure comprises a cleaning assembly and a drying assembly, the cleaning assembly comprises a fixed cleaning shell (114), a second guide column (115), a second motor (116), a first winding column (117), a sticky hair belt (118), a support column (119) and a second winding column (120), the fixed cleaning shell (114) is fixedly connected to the top of the support table (101), the inner cavity side wall of the fixed cleaning shell (114) is rotatably connected with the second guide column (115), one side of the fixed cleaning shell (114) is fixedly connected with the second motor (116), the output end of the second motor (116) is fixedly connected with the first winding column (117), the surface of the first winding column (117) is wrapped with the sticky hair belt (118), one side of the sticky hair belt (118) is provided with the support column (119), the support column (119) is rotatably connected to the inner cavity side wall of the fixed cleaning shell (114), and the sticky hair belt (118) is wrapped on the surface of the second winding column (120). The second winding column (120) is rotatably connected to the inner cavity side wall of the fixed cleaning shell (114).
6. A high efficiency textile impregnation apparatus as claimed in claim 5, wherein: The inner cavity side wall of the fixed cleaning shell (114) is fixedly connected with four second guide columns (115) distributed in an S shape, a first inlet is formed in one side of the fixed cleaning shell (114), a first outlet is formed in the other side of the fixed cleaning shell (114), the inner cavity side wall of the fixed cleaning shell (114) is rotatably connected with two support columns (119) distributed left and right, and a replacement door is hingedly connected to the front of the fixed cleaning shell (114).
7. A high efficiency textile impregnation apparatus as claimed in claim 5, wherein: The drying assembly comprises a first drying shell (121), a third guide column (122), a second drying shell (123), a drying fan (124), a heating body (125) and a dustproof net (126), the first drying shell (121) is fixedly connected to the top of the support table (101), the inner cavity side wall of the first drying shell (121) is rotatably connected with the third guide column (122), one side of the first drying shell (121) is fixedly connected with the second drying shell (123), the second drying shell (123) is fixedly connected to the top of the support table (101), the inner cavity side wall of the second drying shell (123) is fixedly connected with the drying fan (124), one side of the drying fan (124) is provided with the heating body (125), the heating body (125) is fixedly connected to the inner cavity side wall of the second drying shell (123), and the back of the second drying shell (123) is provided with the dustproof net (126).
8. A high efficiency textile impregnation apparatus as claimed in claim 7, wherein: The front and back of the first drying shell (121) and the second drying shell (123) are provided with a plurality of evenly distributed air exchange holes, a plurality of heating bodies (125) are fixed to the inner cavity side wall of the second drying shell (123), a first inlet is formed on one side of the first drying shell (121), a second inlet is formed on the other side of the first drying shell (121), and three third guide columns (122) are rotatably connected to the inner cavity side wall of the first drying shell (121) and are arranged in a triangular structure.
9. A high efficiency textile impregnation apparatus as claimed in claim 1, wherein: The anti-skid assembly comprises support legs (127), a third mounting plate (128), sliding wheel sets (129), a double-shaft motor (130), an eccentric wheel (131), a connecting plate (132), a limiting column (133), a reinforcing shell (134), a supporting spring (135), a connecting column (136) and an anti-skid plate (137), the support legs (127) are fixed to the top of the third mounting plate (128), the third mounting plate (128) is provided with the sliding wheel sets (129) at the four corners of the bottom, the support legs (127) are fixed to the top of the third mounting plate (128), the support legs (127) are fixed to the top of the third mounting plate (128), the double-shaft motor (130) is fixed to the bottom of the mounting table, the output end of the double-shaft motor (130) is fixedly connected with the eccentric wheel (131), the connecting plate (132) is arranged at the bottom of the eccentric wheel (131), the connecting plate (132) is slidably connected to the surface of the limiting column (133), the limiting column (133) is fixedly connected with the reinforcing shell (134) at the top end, the limiting column (133) and the reinforcing shell (134) are fixed to the top of the third mounting plate (128), the supporting spring (135) is fixed to the top of the connecting plate (132), the connecting column (136) is fixed to the bottom of the connecting plate (132), and the connecting column (136) is fixed to the top of the anti-skid plate (137).
10. A high efficiency textile impregnation apparatus as claimed in claim 9, wherein: The third mounting plate (128) is fixedly connected with two symmetrically distributed reinforcing frames at the top, the reinforcing frames are fixed to the bottom of the support table (101), the reinforcing frames are arranged in a cross structure, the connecting plate (132) is provided with two symmetrically distributed limiting openings, the limiting column (133) penetrates through the limiting openings and is fixed to the inner wall of the top surface of the reinforcing shell (134) at the top end, the supporting spring (135) is sleeved on the surface of the limiting column (133), the connecting plate (132) is fixedly connected with two symmetrically distributed connecting columns (136) at the bottom, the third mounting plate (128) is provided with a plurality of connecting openings, the connecting column (136) penetrates through the connecting openings and extends below the third mounting plate (128) at the bottom end, and the anti-skid plate (137) is provided with a plurality of anti-skid teeth at the bottom.
Citation Information
Patent Citations
Efficient cotton textile padding device
CN213142461U