Impregnation temperature control device

By designing a temperature-controlled impregnation mechanism and a heat-insulating extrusion assembly, the problem of uneven temperature of the impregnation liquid in the nonwoven fabric impregnation device was solved, achieving uniform temperature control and heat preservation of the impregnation liquid, and improving the impregnation effect of the fabric.

CN223582388UActive Publication Date: 2025-11-21揭阳市少记科技有限公司
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Patent Information

Application Number
CN202423237895.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-27
Publication Date
2025-11-21
Estimated Expiration
2034-12-27

AI Technical Summary

Technical Problem

Existing nonwoven fabric impregnation devices cannot accurately control the temperature of the impregnation solution, resulting in uneven temperature distribution and affecting the uniformity of the fabric's structural properties.

Method used

An impregnation temperature control device was designed, comprising a temperature-controlled impregnation mechanism, an impregnation liquid replenishment mechanism, and a conveying and heat preservation mechanism. The device ensures the uniformity of impregnation liquid temperature and heat preservation effect through stirring blades and heat preservation extrusion components.

Benefits of technology

It achieves continuous temperature control and uniformity of the impregnation solution, improves the impregnation effect and heat preservation performance of the fabric, and avoids the deterioration of the impregnation effect caused by temperature fluctuations.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an impregnation temperature control device, which belongs to the technical field of cloth impregnation and comprises a temperature control impregnation mechanism, an impregnation liquid supplementing mechanism and a conveying heat preservation mechanism. An impregnation liquid supplementing mechanism used for supplementing impregnation liquid and a conveying heat preservation mechanism used for conveying cloth and conducting auxiliary heat preservation on the impregnation liquid are installed at the front end and the rear end of the temperature control impregnation mechanism respectively, and the impregnation liquid supplementing mechanism is connected with the conveying heat preservation mechanism; the steeping liquor supplementing mechanism comprises a separating and stirring assembly and a transferring and supplementing assembly. Through the mode, the temperature of the internal impregnation liquid is continuously controlled through the temperature control impregnation mechanism, and the interior of the temperature control impregnation mechanism is divided into the impregnation bin and the temporary storage bin by matching with the partition plate, so that the temperature of the supplemented impregnation liquid is close to the temperature of the impregnation liquid in the impregnation process; the problem that the impregnation effect becomes poor due to the fact that the overall temperature is reduced after the impregnation liquid with the low temperature is supplemented is solved, and meanwhile the temperature of the new impregnation liquid in the temporary storage bin can be rapidly and evenly increased to the designated temperature through stirring of the stirring blades.
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Description

TECHNICAL FIELD

[0001] The utility model relates to cloth impregnation technical field, specifically to a kind of impregnation temperature control device. BACKGROUND

[0002] Non-woven fabric is a kind of material which is directly processed into cloth by fiber without spinning process, which is combined by fiber through mechanical, thermal or chemical method, and has the characteristics of light, soft, breathable, etc. The production process of non-woven fabric includes impregnation process, which can effectively improve the waterproofness, flame retardancy and other properties of the cloth.

[0003] For example, Chinese patent application CN219991921U1 discloses a non-woven fabric impregnation device, which includes a box body and a mounting bracket installed at one end of the box body. The mounting bracket has an inlet opening. The other end of the box body has an outlet opening. A first drive motor is installed outside the outlet opening. A winding roller is installed at the output end of the first drive motor. A discharge pipe is installed at the lower part of the box body. Brush plates are installed at the upper and lower ends of the mounting bracket. The brush plates are installed on the mounting bracket through adjusting bolts. The bottom of the adjusting bolt is rotatably connected to the mounting bracket. A plurality of reversing rollers are installed inside the box body. The reversing rollers are provided with non-woven fabric bodies. A second drive motor is installed at the bottom of the box body. A stirring shaft is installed at the output end of the second drive motor.

[0004] However, the non-woven fabric impregnation device cannot accurately control the temperature of the impregnation liquid. High or low temperature will have a significant impact on the activation of the impregnation liquid. Similarly, uneven temperature will also cause uneven structure and performance of the cloth.

[0005] Therefore, the utility model designs an impregnation temperature control device to solve the above problems. UTILITY MODEL CONTENTS

[0006] In view of the above shortcomings of the prior art, the utility model provides an impregnation temperature control device.

[0007] To achieve the above purpose, the utility model realizes the following technical scheme:

[0008] An impregnation temperature control device includes a temperature control impregnation mechanism, an impregnation liquid supplementing mechanism and a conveying and heat preserving mechanism.

[0009] The front and rear ends of the temperature control impregnation mechanism are respectively provided with an impregnation liquid supplementing mechanism for supplementing impregnation liquid and a conveying and heat preserving mechanism for conveying cloth and assisting in heat preservation of the impregnation liquid. The impregnation liquid supplementing mechanism and the conveying and heat preserving mechanism are connected.

[0010] The impregnation liquid supplementing mechanism comprises a partition stirring assembly for partitioning and stirring the temporarily stored impregnation liquid in the temperature-controlled impregnation mechanism, and a transfer supplementing assembly for automatically supplementing the impregnation liquid, the partition stirring assembly is installed at the front end of the temperature-controlled impregnation mechanism, and the partition stirring assembly is connected with the heat preservation mechanism, and the transfer supplementing assembly is installed on the partition stirring assembly.

[0011] The partition stirring assembly comprises a motor, a stirring shaft, a plurality of stirring blades, a partition plate and a top plate, the partition plate is installed in the temperature-controlled impregnation mechanism to partition the internal space of the temperature-controlled impregnation mechanism into two parts, the internal space at the rear end of the temperature-controlled impregnation mechanism is an impregnation bin, and the internal space at the front end of the temperature-controlled impregnation mechanism is a temporary storage bin, the top plate is installed at the top of the temporary storage bin in the temperature-controlled impregnation mechanism, the rear end of the top plate is fixedly connected with the partition plate, the motor is fixedly installed at the top of the top plate, the output end of the motor extends to the inside of the temporary storage bin through the top plate and is fixedly connected with the stirring shaft, the top of the stirring shaft is rotationally connected with the bottom surface of the top plate, the bottom of the stirring shaft is rotationally connected with the inner bottom wall of the temporary storage bin in the temperature-controlled impregnation mechanism, and the plurality of stirring blades are uniformly distributed and fixedly installed on the outer wall of the bottom of the stirring shaft, and the top of the partition plate and the top plate are connected with the heat preservation mechanism.

[0012] Further, the temperature-controlled impregnation mechanism comprises an outer shell, a heating pipe and an impregnation tank, the impregnation tank is fixedly installed on the inner side of the outer shell, there is a gap between the outer shell and the impregnation tank, the heating pipe is located between the outer shell and the impregnation tank and is fixedly connected with the impregnation tank, the outer shell is connected with the heat preservation mechanism, the impregnation tank is connected with the heat preservation mechanism, the partition plate is fixedly installed in the impregnation tank to partition the impregnation tank into an impregnation bin at the rear and a temporary storage bin at the front, the bottom of the stirring shaft is rotationally connected with the inner bottom wall of the impregnation tank, and the top of the left side of the outer shell is provided with a liquid inlet, and the bottom of the right side of the outer shell is provided with a liquid outlet.

[0013] Further, the transfer supplementing assembly comprises a liquid level sensor and a water pump, the liquid level sensor is installed in the middle of the inner wall of the impregnation bin of the impregnation tank and is fixedly connected with the rear side wall of the partition plate, the water pump is fixedly installed at the top of the top plate, the water inlet end of the water pump is communicated with the inner bottom of the temporary storage bin of the impregnation tank through a water pipe, the water outlet end of the water pump is communicated with the inner top of the impregnation bin of the impregnation tank through a water pipe, and the liquid level sensor is electrically connected with the water pump.

[0014] Further, the heat preservation mechanism comprises a conveying assembly and a heat preservation extrusion assembly, the conveying assembly is installed at the rear end of the temperature-controlled impregnation mechanism, and the heat preservation extrusion assembly is installed at the top of the rear end of the temperature-controlled impregnation mechanism.

[0015] Further, the conveying assembly comprises an input roller, two output rollers and two tensioning components arranged symmetrically left and right, the input roller is rotationally connected with the top right side of the rear end of the shell through a mounting plate, the two output rollers are arranged obliquely up and down, a gap for the cloth to pass through is left between the two output rollers, the two output rollers are rotationally connected with the top left side of the rear end of the shell through a mounting plate, and the two tensioning components are located inside the impregnation bin of the impregnation tank and connected with the inner wall and the partition plate of the impregnation tank.

[0016] Further, the tensioning component comprises two auxiliary rollers, two tight rollers, four sliding frames and two groups of springs, the two auxiliary rollers are horizontally located inside the impregnation bin of the impregnation tank, and the two ends of the auxiliary rollers are rotationally connected with the inner wall of the rear end of the impregnation tank and the partition plate respectively, the top of the inner wall of the rear end of the impregnation tank and the top of the rear side of the partition plate limit the sliding right of two symmetrically arranged sliding frames, the sliding direction of the sliding frame is horizontal, the two tight rollers are symmetrically arranged on the inner top of the impregnation tank, the two ends of the tight roller are rotationally mounted on the inner side of the two sliding frames at the front and rear ends, and the outer end of each sliding frame is provided with a group of springs, and each group of springs comprises two springs, and the two ends of the spring are fixedly connected with the inner side wall of the impregnation tank and the outer end of the sliding frame.

[0017] Further, the heat preservation and extrusion assembly comprises two cylinders, a first heat preservation plate, a second heat preservation plate, two synchronous moving components, two extrusion rollers and a support, one cylinder is fixedly installed at the top of the rear end of the shell, the other cylinder is fixedly installed at the top of the rear end of the top plate, the output ends of the two cylinders are fixedly connected with the front and rear ends of the first heat preservation plate respectively, the first heat preservation plate and the second heat preservation plate are located at the top of the impregnation bin of the impregnation tank, the front and rear ends of the first heat preservation plate and the second heat preservation plate are limitingly and slidably connected with the top of the partition plate and the top of the rear end of the impregnation tank respectively, the second heat preservation plate is located below the left side of the first heat preservation plate, the top surface of the second heat preservation plate is slidably connected with the bottom surface of the first heat preservation plate, the two extrusion rollers are rotationally installed on the bottom left side of the first heat preservation plate and the bottom right side of the second heat preservation plate through mounting frames respectively, the two extrusion rollers are located inside the two tight rollers correspondingly, the front and rear ends of the support are fixedly connected with the top of the partition plate and the top of the rear end of the impregnation tank respectively, the two ends of the synchronous moving component are connected with the top of the first heat preservation plate and the second heat preservation plate respectively, and the inner top of the support is connected with the synchronous moving component.

[0018] Further, the two synchronous moving components are arranged in front and back inside the support, the synchronous moving component comprises a rotating rod and two push rods, the rotating rod is rotationally installed at the inner top of the support, the two ends of the rotating rod are rotationally connected with one end of the two push rods respectively, the other ends of the two push rods are rotationally connected with the right top of the first heat preservation plate and the left top of the second heat preservation plate respectively, and the two push rods are always arranged in relative parallel.

[0019] Compared with the prior art, the utility model has the advantages of:

[0020] 1. The utility model discloses a temperature control dipping mechanism is to the inside dipping liquid's sustained temperature control, cooperation partition plate separates the inside of temperature control dipping mechanism as dipping storehouse and temporary storage, make the dipping liquid temperature of supplement close to the dipping liquid temperature in dipping procedure, avoid the problem that the overall temperature drops after the dipping liquid of lower temperature supplements and causes the dipping effect to be poor, can the new dipping liquid temperature of temporary storage even rise to the specified temperature quickly through the stirring of stirring vane.

[0021] 2. The utility model discloses two extruding rollers drive cloth extruding tight roller, make cloth must be tight to continue conveying, improve the dipping effect of cloth, first heat preservation board and second heat preservation board block the heat air loss of dipping storehouse inside dipping tank to some extent, improve the heat preservation effect, convenient for heating pipe to control the temperature of dipping liquid in the dipping tank. ACCURACY

[0022] In order to more clearly illustrate the technical scheme in the embodiment of the utility model or prior art, below will to the drawing needed to use in the embodiment or prior art description make a brief introduction. Obviously, the drawing in the following description only some embodiments of the utility model, for ordinary skilled person in the art comes, under the premise of not paying creative labor, can also obtain other drawings according to these drawings.

[0023] Figure 1 It is a perspective view of the dipping temperature control device of the utility model;

[0024] Figure 2 It is a front view of the dipping temperature control device of the utility model;

[0025] Figure 3 It is a plan view of the dipping temperature control device of the utility model;

[0026] Figure 4 It is a perspective view along Figure 3 A-A section is removed a part;

[0027] Figure 5 It is a perspective view along Figure 3 B-B section is removed a part;

[0028] Figure 6 It is a perspective view along Figure 3 C-C section is removed a part;

[0029] Figure 7 It is a perspective view of the heat preservation extrusion assembly of the utility model.

[0030] The reference numerals in the drawing respectively represent:

[0031] 1. temperature control impregnation mechanism; 11. shell; 12. heating pipe; 13. impregnation tank; 2. impregnation liquid supplement mechanism; 21. partition stirring assembly; 211. motor; 212. stirring shaft; 213. stirring blade; 214. partition plate; 215. top plate; 22. transfer supplement assembly; 221. liquid level sensor; 222. water pump; 3. conveying heat preservation mechanism; 31. conveying assembly; 311. input roller; 312. output roller; 313. auxiliary roller; 314. tight roller; 315. sliding frame; 316. spring; 32. heat preservation extrusion assembly; 321. air cylinder; 322. first heat preservation plate; 323. second heat preservation plate; 324. rotating rod; 325. push rod; 326. extrusion roller; 327. bracket. DETAILED DESCRIPTION

[0032] To make the purpose, technical scheme and advantages of the embodiments of the present application clearer, the technical scheme of 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 described embodiments are some embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all the other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0033] In the following description, "left", "right", "front", "back", "upper", "lower" are oriented in the perspective of the front view.

[0034] Embodiment one: in some embodiments, referring to the drawings of the specification Figures 1-7 An impregnation temperature control device, comprising a temperature control impregnation mechanism 1, an impregnation liquid supplement mechanism 2 and a conveying heat preservation mechanism 3,

[0035] The front and rear ends of the temperature control impregnation mechanism 1 are respectively provided with the impregnation liquid supplement mechanism 2 for supplementing the impregnation liquid and the conveying heat preservation mechanism 3 for conveying the cloth and assisting in the heat preservation of the impregnation liquid, and the impregnation liquid supplement mechanism 2 and the conveying heat preservation mechanism 3 are connected.

[0036] The impregnation liquid supplement mechanism 2 comprises a partition stirring assembly 21 for partitioning the temperature control impregnation mechanism 1 and stirring the temporarily stored impregnation liquid, and a transfer supplement assembly 22 for automatically supplementing the impregnation liquid, the partition stirring assembly 21 is installed at the front end of the temperature control impregnation mechanism 1, and the partition stirring assembly 21 is connected with the conveying heat preservation mechanism 3, and the transfer supplement assembly 22 is installed on the partition stirring assembly 21.

[0037] The partition stirring assembly 21 comprises a motor 211, a stirring shaft 212, a plurality of stirring blades 213, a partition plate 214 and a top plate 215. The partition plate 214 is installed inside the temperature control immersion mechanism 1 and is used to divide the internal space of the temperature control immersion mechanism 1 into two parts. The internal space at the rear end of the temperature control immersion mechanism 1 is an immersion bin, and the internal space at the front end of the temperature control immersion mechanism 1 is a temporary storage bin. The top plate 215 is installed at the top of the temporary storage bin in the temperature control immersion mechanism 1, and the rear end of the top plate 215 is fixedly connected with the partition plate 214. The motor 211 is fixedly installed at the top of the top plate 215. The output end of the motor 211 extends to the inside of the temporary storage bin through the top plate 215 and is fixedly connected with the stirring shaft 212. The top of the stirring shaft 212 is rotatably connected with the bottom surface of the top plate 215. The bottom of the stirring shaft 212 is rotatably connected with the inner bottom wall of the temporary storage bin in the temperature control immersion mechanism 1. The plurality of stirring blades 213 are uniformly distributed and fixedly installed on the outer wall of the bottom of the stirring shaft 212. The top of the partition plate 214 and the top plate 215 are connected with the conveying and heat preservation mechanism 3.

[0038] When the immersion temperature control device is normally used, the temperature control immersion mechanism 1 is started to uniformly control the immersion liquid inside, and the conveying and heat preservation mechanism 3 is started to convey and immerse the cloth from the inside of the immersion bin of the temperature control immersion mechanism 1. When the immersion liquid in the immersion bin of the temperature control immersion mechanism 1 is less, the transfer and supplement assembly 22 is started to transfer the immersion liquid in the temporary storage bin of the temperature control immersion mechanism 1 to the immersion bin, and to supplement the immersion liquid in the temporary storage bin of the temperature control immersion mechanism 1 again. Then the motor 211 is started, the motor 211 drives the stirring shaft 212 to rotate, the stirring shaft 212 drives the stirring blades 213 to rotate in the temporary storage bin of the temperature control immersion mechanism 1, the supplemented immersion liquid with lower temperature is stirred, the internal immersion liquid of the temperature control immersion mechanism 1 is continuously controlled in temperature, and the inside of the temperature control immersion mechanism 1 is divided into the immersion bin and the temporary storage bin by the partition plate 214, so that the temperature of the supplemented immersion liquid is close to the temperature of the immersion liquid in the immersion process, and the problem that the overall temperature is lowered and the immersion effect is poor due to the supplementation of the immersion liquid with lower temperature is avoided. At the same time, the temperature of the new immersion liquid in the temporary storage bin can be quickly and uniformly raised to the specified temperature through the stirring of the stirring blades 213.

[0039] In some embodiments, the temperature control immersion mechanism 1 comprises an outer shell 11, a heating pipe 12 and an immersion tank 13. The immersion tank 13 is fixedly installed on the inner side of the outer shell 11. There is a gap between the outer shell 11 and the immersion tank 13. The heating pipe 12 is located between the outer shell 11 and the immersion tank 13 and is fixedly connected with the immersion tank 13. The outer shell 11 is connected with the conveying and heat preservation mechanism 3. The immersion tank 13 is connected with the conveying and heat preservation mechanism 3. The partition plate 214 is fixedly installed inside the immersion tank 13 to divide the immersion tank 13 into the immersion bin at the rear and the temporary storage bin at the front. The bottom of the stirring shaft 212 is rotatably connected with the inner bottom wall of the immersion tank 13. The top of the left side of the outer shell 11 is provided with a liquid inlet. The bottom of the right side of the outer shell 11 is provided with a liquid outlet.

[0040] The transport supplement assembly 22 comprises a liquid level sensor 221 and a water pump 222. The liquid level sensor 221 is installed in the middle of the inner wall of the impregnation bin of the impregnation tank 13 and is fixedly connected with the rear side wall of the partition plate 214. The water pump 222 is fixedly installed on the top of the top plate 215. The water inlet end of the water pump 222 is communicated with the inner bottom of the temporary storage bin of the impregnation tank 13 through a water pipe. The water outlet end of the water pump 222 is communicated with the inner top of the impregnation bin of the impregnation tank 13 through a water pipe. The liquid level sensor 221 is electrically connected with the water pump 222.

[0041] In normal use of the impregnation temperature control device, the heat-conducting oil is inputted between the outer shell 11 and the impregnation tank 13 through the liquid inlet on the outer side of the outer shell 11, and the heating pipe 12 is started to control the temperature of the heat-conducting oil, so that the impregnation liquid in the impregnation tank 13 is uniformly heated. When the liquid level of the impregnation liquid in the impregnation bin of the impregnation tank 13 drops below the sensing end of the liquid level sensor 221, the water pump 222 is started to pump the impregnation liquid in the temporary storage bin of the impregnation tank 13 to the impregnation bin of the impregnation tank 13 for replenishment. The setting of the heating pipe 12 makes the impregnation liquid in the impregnation tank 13 uniformly heated, which is convenient for temperature control. The setting of the liquid level sensor 221 and the water pump 222 makes it possible to automatically replenish the impregnation liquid.

[0042] In some embodiments, the conveying and heat preservation mechanism 3 comprises a conveying assembly 31 and a heat preservation extrusion assembly 32. The conveying assembly 31 is installed in the inner rear end of the temperature control impregnation mechanism 1. The heat preservation extrusion assembly 32 is installed on the top of the rear end of the temperature control impregnation mechanism 1.

[0043] The conveying assembly 31 comprises an input roller 311, two output rollers 312 and two left and right symmetrical tensioning components. The input roller 311 is rotatably connected with the top of the right rear end of the outer shell 11 through a mounting plate. The two output rollers 312 are arranged in an inclined manner. A gap is left between the two output rollers 312 for the passage of cloth. The two output rollers 312 are rotatably connected with the top of the left rear end of the outer shell 11 through a mounting plate. The two tensioning components are located in the impregnation bin of the impregnation tank 13 and are connected with the inner wall of the impregnation tank 13 and the partition plate 214.

[0044] The tensioning component comprises two auxiliary rollers 313, two tensioning rollers 314, two sliding frames 315 and two sets of springs 316. The two auxiliary rollers 313 are horizontally arranged inside the impregnation compartment of the impregnation tank 13, and the two ends of the auxiliary rollers 313 are rotatably connected with the inner wall of the rear end of the impregnation tank 13 and the partition plate 214 respectively. The top of the inner wall of the rear end of the impregnation tank 13 and the top of the rear side of the partition plate 214 limit the sliding of the two right and left symmetrical sliding frames 315 in the horizontal direction. The two tensioning rollers 314 are symmetrically arranged on the inner top of the impregnation tank 13. The two ends of the tensioning rollers 314 are rotatably installed on the inner side of the two sliding frames 315 at the front and rear ends respectively. The outer end of each sliding frame 315 is provided with a set of springs 316. Each set of springs 316 comprises two springs 316, and the two ends of the spring 316 are fixedly connected with the inner side wall of the impregnation tank 13 and the end of the sliding frame 315 respectively.

[0045] The heat preservation extrusion assembly 32 comprises two cylinders 321, a first heat preservation plate 322, a second heat preservation plate 323, two synchronous moving components, two extrusion rollers 326 and a support 327. One cylinder 321 is fixedly installed on the top of the rear end of the shell 11, and the other cylinder 321 is fixedly installed on the top of the rear end of the top plate 215. The output ends of the two cylinders 321 are fixedly connected with the front and rear ends of the first heat preservation plate 322 respectively. The first heat preservation plate 322 and the second heat preservation plate 323 are arranged on the top of the impregnation compartment of the impregnation tank 13. The front and rear ends of the first heat preservation plate 322 and the second heat preservation plate 323 are limitingly and slidably connected with the partition plate 214 and the top of the rear end of the impregnation tank 13 respectively. The second heat preservation plate 323 is arranged below and left to the first heat preservation plate 322, and the top surface of the second heat preservation plate 323 is slidably connected with the bottom surface of the first heat preservation plate 322. The two extrusion rollers 326 are rotatably installed on the bottom left side of the first heat preservation plate 322 and the bottom right side of the second heat preservation plate 323 through mounting frames respectively. The two extrusion rollers 326 are located inside the two tensioning rollers 314 correspondingly. The front and rear ends of the support 327 are fixedly connected with the top of the partition plate 214 and the top of the rear end of the impregnation tank 13 respectively. The two ends of the synchronous moving component are connected with the top of the first heat preservation plate 322 and the second heat preservation plate 323 respectively. The inner top of the support 327 is connected with the synchronous moving component.

[0046] The two synchronous moving components are arranged in front of and behind the inner side of the support 327. The synchronous moving component comprises a rotating rod 324 and two push rods 325. The center of the rotating rod 324 is rotatably installed on the inner top of the support 327. The two ends of the rotating rod 324 are rotatably connected with one end of the two push rods 325 respectively. The other ends of the two push rods 325 are rotatably connected with the right top of the first heat preservation plate 322 and the left top of the second heat preservation plate 323 respectively. The two push rods 325 are always arranged in relative parallel.

[0047] The impregnation temperature control device is used normally, the cloth passes through the left side of the right tight roller 314 from above the input roller 311, then passes through below the two auxiliary rollers 313 and then passes through the right side of the left tight roller 314, and then is output from between the two output rollers 312; then the air cylinder 321 is started, the air cylinder 321 drives the first heat preservation plate 322 to move rightwards, the first heat preservation plate 322 drives the right push rod 325 to move rightwards and drives the rotating rod 324 to rotate, the rotating rod 324 drives the left push rod 325 to rotate and drives the second heat preservation plate 323 to move leftwards, so that the first heat preservation plate 322 and the second heat preservation plate 323 drive the two extrusion rollers 326 to move in the direction away from each other respectively, at this time the two extrusion rollers 326 move towards the corresponding tight roller 314, the extrusion roller 326 contacts the cloth inside the tight roller 314 and extrudes the tight roller 314, the tight roller 314 compresses the spring 316 so that the cloth is clamped by the extrusion roller 326 and the tight roller 314; when the output roller 312 drives the cloth to move, the cloth between the output roller 312 and the left tight roller 314 is first straightened and then drives the left tight roller 314 to continue to compress the spring 316, so that the gap between the left tight roller 314 and the right extrusion roller 326 is increased to complete the conveying; when the cloth between the left tight roller 314 and the right tight roller 314 is straightened and drives the right tight roller 314 to continue to compress the spring 316, the gap between the right tight roller 314 and the right extrusion roller 326 is increased to complete the conveying; the two auxiliary rollers 313 facilitate the cloth to be fully soaked in the impregnation liquid to complete the impregnation process, the cloth is extruded by the two extrusion rollers 326 to extrude the tight roller 314, so that the cloth must be straightened to continue to convey, the impregnation effect of the cloth is improved, meanwhile, the first heat preservation plate 322 and the second heat preservation plate 323 block the loss of hot air inside the impregnation tank 13 to a certain extent, the heat preservation effect is improved, and the temperature control of the impregnation liquid inside the impregnation tank 13 by the heating pipe 12 is facilitated.

[0048] The above examples are only used to illustrate the technical solutions of the present application, but not limit it; although the present application has been described in detail with reference to the foregoing examples, those skilled in the art should understand that the technical solutions recorded in the foregoing examples can be modified, or some technical features can be replaced equivalently; and these modifications or replacements will 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. An immersion temperature control device comprising a temperature controlled immersion mechanism (1), characterized in that: The temperature control impregnation mechanism (1) is provided with an impregnation liquid supplementing mechanism (2) and a conveying and heat preserving mechanism (3) at the front and rear ends of the temperature control impregnation mechanism (1) respectively, the impregnation liquid supplementing mechanism (2) is used for supplementing the impregnation liquid, and the conveying and heat preserving mechanism (3) is used for conveying the cloth and assisting in heat preservation of the impregnation liquid. The impregnation liquid supplementing mechanism (2) comprises a separation and stirring assembly (21) and a transfer supplementing assembly (22), the separation and stirring assembly (21) is installed at the front end of the temperature control impregnation mechanism (1), the transfer supplementing assembly (22) is installed on the separation and stirring assembly (21), and the transfer supplementing assembly (22) is used for automatically supplementing the impregnation liquid. The separation and stirring assembly (21) comprises a motor (211), a stirring shaft (212), a plurality of stirring blades (213), a partition plate (214) and a top plate (215), the partition plate (214) is installed in the temperature control impregnation mechanism (1) and is used for separating the internal space of the temperature control impregnation mechanism (1) into two parts, the internal space at the rear end of the temperature control impregnation mechanism (1) is an impregnation bin, the internal space at the front end of the temperature control impregnation mechanism (1) is a temporary storage bin, the top plate (215) is installed at the top of the temporary storage bin in the temperature control impregnation mechanism (1), the rear end of the top plate (215) is fixedly connected with the partition plate (214), the motor (211) is fixedly installed at the top of the top plate (215), the output end of the motor (211) is rotatably connected with the stirring shaft (212) through the top plate (215), the top of the stirring shaft (212) is rotatably connected with the bottom surface of the top plate (215), the bottom of the stirring shaft (212) is rotatably connected with the inner bottom wall of the temporary storage bin in the temperature control impregnation mechanism (1), the plurality of stirring blades (213) are uniformly distributed and fixedly installed on the outer wall of the bottom of the stirring shaft (212), and the top of the partition plate (214) and the top plate (215) are connected with the conveying and heat preserving mechanism (3).

2. The immersion temperature control device of claim 1, wherein, The temperature control impregnation mechanism (1) comprises an outer shell (11), a heating pipe (12) and an impregnation groove (13), the impregnation groove (13) is fixedly installed on the inner side of the outer shell (11), there is a gap between the outer shell (11) and the impregnation groove (13), the heating pipe (12) is located between the outer shell (11) and the impregnation groove (13) and is fixedly connected with the impregnation groove (13), the outer shell (11) is connected with the conveying and heat preserving mechanism (3), the impregnation groove (13) is connected with the conveying and heat preserving mechanism (3), the partition plate (214) is fixedly installed in the impregnation groove (13) and separates the impregnation groove (13) into an impregnation bin at the rear and a temporary storage bin at the front, the bottom of the stirring shaft (212) is rotatably connected with the inner bottom wall of the impregnation groove (13), and the top of the left side of the outer shell (11) is provided with an inlet, and the bottom of the right side of the outer shell (11) is provided with an outlet.

3. The immersion temperature control device of claim 2, wherein, The transport supplement assembly (22) comprises a liquid level sensor (221) and a water pump (222), the liquid level sensor (221) is installed in the middle of the inner wall of the impregnation bin of the impregnation tank (13) and is fixedly connected with the rear side wall of the partition plate (214), the water pump (222) is fixedly installed on the top of the top plate (215), the water inlet end of the water pump (222) is communicated with the bottom of the inside of the temporary storage bin of the impregnation tank (13) through a water pipe, the water outlet end of the water pump (222) is communicated with the top of the inside of the impregnation bin of the impregnation tank (13) through a water pipe, and the liquid level sensor (221) is electrically connected with the water pump (222).

4. The immersion temperature control device of claim 2, wherein, The conveying and heat preserving mechanism (3) comprises a conveying assembly (31) and a heat preserving and extruding assembly (32), the conveying assembly (31) is installed in the rear end of the temperature control impregnation mechanism (1), and the heat preserving and extruding assembly (32) is installed on the top of the rear end of the temperature control impregnation mechanism (1).

5. The immersion temperature control device of claim 4, wherein, The conveying assembly (31) comprises an input roller (311), two output rollers (312) and two left-right symmetrical tensioning components, the input roller (311) is rotationally connected with the top of the rear end right side of the shell (11) through a mounting plate, the two output rollers (312) are arranged in an up-down inclined mode, a gap for the passage of cloth is formed between the two output rollers (312), the two output rollers (312) are rotationally connected with the top of the rear end left side of the shell (11) through a mounting plate, and the two tensioning components are located in the impregnation bin of the impregnation tank (13) and are connected with the inner wall of the impregnation tank (13) and the partition plate (214).

6. The immersion temperature control device of claim 5, wherein, The tensioning component comprises an auxiliary roller (313), a tight roller (314), four sliding frames (315) and two groups of springs (316), the two auxiliary rollers (313) are horizontally located in the impregnation bin of the impregnation tank (13) and are rotationally connected with the inner wall of the rear end of the impregnation tank (13) and the partition plate (214) at the two ends of the auxiliary roller (313), respectively, the top of the rear end inner wall of the impregnation tank (13) and the top of the rear side of the partition plate (214) limit the sliding of the two left-right symmetrical sliding frames (315) on the right, the sliding direction of the sliding frame (315) is a horizontal direction, the two tight rollers (314) are arranged in a left-right symmetrical mode on the inner top of the impregnation tank (13), the two ends of the tight roller (314) are rotationally installed in the inner sides of the two sliding frames (315) at the front end and the rear end, respectively, one group of springs (316) is installed at the outer end of each sliding frame (315), each group of springs (316) comprises two springs (316), and the two ends of the spring (316) are fixedly connected with the inner side wall of the impregnation tank (13) and the end of the sliding frame (315), respectively.

7. The immersion temperature control device of claim 6, wherein, The heat preservation extrusion assembly (32) comprises two air cylinders (321), a first heat preservation plate (322), a second heat preservation plate (323), two synchronous moving parts, two extrusion rollers (326) and a support (327), one air cylinder (321) is fixedly installed at the top of the rear end of the shell (11), the other air cylinder (321) is fixedly installed at the top of the rear end of the top plate (215), the output ends of the two air cylinders (321) are fixedly connected with the front and rear ends of the first heat preservation plate (322) respectively, the first heat preservation plate (322) and the second heat preservation plate (323) are located at the top of the impregnation bin of the impregnation tank (13), the front and rear ends of the bottom of the first heat preservation plate (322) and the second heat preservation plate (323) are limitingly and slidably connected with the top of the rear end of the partition plate (214) and the impregnation tank (13) respectively, the second heat preservation plate (323) is located below the left side of the first heat preservation plate (322), the top surface of the second heat preservation plate (323) is slidably connected with the bottom surface of the first heat preservation plate (322), the two extrusion rollers (326) are rotatably installed at the bottom left side of the first heat preservation plate (322) and the bottom right side of the second heat preservation plate (323) through the mounting frames respectively, the two extrusion rollers (326) are located on the inner sides of the two tight rollers (314) correspondingly, the front and rear ends of the bottom of the support (327) are fixedly connected with the top of the partition plate (214) and the top of the rear end of the impregnation tank (13) respectively, the two ends of the synchronous moving part are connected with the top of the first heat preservation plate (322) and the top of the second heat preservation plate (323) respectively, and the inner side top of the support (327) is connected with the synchronous moving part.

8. The immersion temperature control device of claim 7, wherein, The two synchronous moving parts are arranged in front of and behind the inner side of the support (327), the synchronous moving part comprises a rotating rod (324) and two push rods (325), the rotating rod (324) is rotatably installed at the inner side top of the support (327), the two ends of the rotating rod (324) are rotatably connected with one end of the two push rods (325) respectively, the other ends of the two push rods (325) are rotatably connected with the right top of the first heat preservation plate (322) and the left top of the second heat preservation plate (323) respectively, and the two push rods (325) are always arranged in parallel relative to each other.

Citation Information

Patent Citations

  • Non-woven fabric dipping device

    CN219991921U