A sizing machine with high drying efficiency and its usage method

By designing a sizing machine that includes feeding module and drying module, the problems of low drying efficiency and cumbersome lines of the existing sizing machine are solved, and a more efficient drying and operating process is achieved.

CN116856131BActive Publication Date: 2025-07-01JIANGSU JINGKEWEI TEXTILE TECH CO LTD
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Patent Information

Application Number
CN202310720221.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-06-18
Publication Date
2025-07-01
Estimated Expiration
2043-06-18

AI Technical Summary

Technical Problem

The existing sizing machines have low drying efficiency when used, and the line feeding process is cumbersome, which affects the operation efficiency.

Method used

A sizing machine including a sizing machine body, feeding module, drying module and electric heating plate is designed. The yarn threading process is simplified through the feeding module, and multiple drying operations are performed using the drying module and the electric heating plate to improve the drying efficiency.

Benefits of technology

It improves the drying efficiency and operation convenience of the sizing machine, reduces the time for threading yarns, and improves the overall use efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a sizing machine with high drying efficiency, comprising a sizing machine body, a feeding module 1 is installed on the top of the sizing machine body, and the feeding module 1 is used to pull the textile yarn into the sizing machine body, and the feeding module 1 includes a notch 1 that runs through the top of the sizing machine body; a storage slot 1 is arranged on the inner wall of one side of the notch, and two groups of card slots are embedded with card blocks inside, and baffles are installed on the surfaces of the two groups of card blocks close to each other, and storage boxes are installed on the tops of the two groups of bearing plates, and electric push rods are installed on the inner walls of one side of the two groups of storage boxes, and connecting rods are installed on the output ends of the two groups of electric push rods. The present invention is provided with a sizing machine body, a baffle, an electric push rod and a connecting rod, and the electric push rod is started to drive the connecting rod to push the baffle into the storage slot 1, and then the yarn can be passed through the sizing machine body through the notch 1, thereby improving the flexibility of the sizing machine when in use.
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Description

Technical Field

[0001] The present invention relates to the technical field of textile, and specifically relates to a sizing machine with high drying efficiency and its using method. Background Art

[0002] During the weaving process of textiles, the warp yarns and weft yarns are both subjected to certain tension and friction. Usually, sizing operations are performed on the yarns to improve the strength and wear resistance of the yarns. Moreover, when using a sizing machine, it is mostly necessary to thread the yarns into the interior of the sizing machine and then pull them out. The operation process is rather cumbersome, the threading time is relatively long, and there are certain defects.

[0003] The defects existing in the existing sizing machines are as follows:

[0004] 1. Patent document CN216300483U discloses an automatic sizing device for textile printing, including a printing machine. There are several brackets at the bottom of the printing machine, a slurry spraying pipe is arranged at the top of the printing machine, a switch is arranged at one end of the printing machine, a slurry pump is arranged between the brackets, a slurry storage barrel is arranged at one end of the brackets, a pulley is arranged at the bottom of the slurry storage barrel, support seats are arranged at both ends of the slurry spraying pipe, the slurry pump is connected to the slurry storage barrel through a first feeding pipe, and the slurry pump is connected to the slurry spraying pipe through a second feeding pipe. The structure of the present invention is simple and stable, and the operation is simple. It provides an automatic sizing device for textile printing to solve the problems in the traditional sizing process, such as the slurry is easy to solidify, the slurry coating is uneven, the slurry is not easy to transport, time-consuming and laborious, and the working efficiency is low. However, when using the automatic sizing device for textile printing in the above-mentioned disclosed document, it mainly considers how to solve the problem of uneven slurry coating, and does not consider the problem that the wire feeding process is rather cumbersome when using the existing sizing machine, and the practicability is poor;

[0005] 2. Patent document CN218756493U discloses a new type of spray-type textile sizing machine, including a sizing machine body. A sizing chamber is arranged inside the sizing machine body, a sliding groove is arranged on the inner wall of the sizing chamber, and further includes a slider slidably arranged in the sliding groove. The slider is connected with a pressing roller; at least two groups of the sliding grooves and the pressing rollers are arranged; the cloth to be sized is put in from the feeding opening and taken out from the discharging opening. The sizing liquid is put into the sizing chamber, the cloth is immersed in the sizing chamber, and successively abuts on several pressing rollers and is immersed in the sizing liquid. As the slider on the pressing roller rotates in the sliding groove, the adjacent pressing rollers rotate in the opposite direction, and the cloth can be turned over, that is, the original lower surface becomes the upper surface, and the original upper surface becomes the lower surface. After multiple operations, try to ensure that the sizing liquid thickness on the upper and lower surfaces is the same, and then take it out from the discharging opening. However, when using the new type of spray-type textile sizing machine in the above-mentioned disclosed document, it mainly considers how to ensure the uniformity of the sizing thickness, and does not consider the problem that the convenience of the existing sizing machine is poor when in use;

[0006] 3. Patent document CN113638163B discloses a new - structure textile sizing machine, including a bearing structure. At the top of the bearing structure, a lifting structure for lifting the fabric is installed. The lifting structure is connected to a sizing structure for sizing. The bearing structure is equipped with a vibration structure for vibrating the sizing slurry to prevent precipitation, and the vibration structure is installed with a driving structure for driving the vibration structure to work and stirring the sizing slurry. The lifting structure facilitates pulling out the sizing structure from inside the vibration structure, so as to facilitate winding the fabric around the sizing structure. The bearing structure facilitates guiding the fabric through the device to prevent it from being difficult to pull out after sizing. Then, with the cooperation of the sizing structure, the fabric can be sized. The driving structure facilitates driving the vibration structure to work, thereby preventing the sizing slurry from precipitating and keeping the slurry uniform. However, when the new - structure textile sizing machine in the above - mentioned published document is used, it mainly considers how to prevent the sizing slurry from precipitating and keep the slurry uniform, and does not consider the problem that the drying and forming effect of the existing sizing machine is poor during use;

[0007] 4. Patent document CN218893845U discloses a textile sizing machine, specifically related to the technical field of textile sizing machines. The utility model includes a machine body, a lower roller, and a slurry storage tank. An auxiliary device is arranged in the middle of the machine body, and an adjusting device is arranged at the top of the machine body. The auxiliary device includes a clamping block. A plurality of rectangular grooves are formed in the inner wall of the slurry storage tank. The size and shape of the surface of the clamping block are adapted to the size and shape of the inner wall of the rectangular groove. One end of the clamping block is fixedly connected to a first cylindrical rod. The surface of the first cylindrical rod is slidably connected to a circular tube, and a small roller is rotatably connected to the surface of the circular tube. By setting the auxiliary device, the small roller can drive the textile fabric to completely immerse in the bottom of the slurry storage tank, so that the textile fabric can be sized from the bottom of the slurry storage tank, which can make the sizing time of the textile fabric longer and reduce the need to continuously add new slurry when the height of the slurry in the slurry storage pool is lower than the contact surface between the lower roller and the textile fabric. However, when the textile sizing machine in the above - mentioned published document is used, it mainly considers how to extend the sizing time of the textile fabric and does not consider the problem that the drying efficiency of the existing sizing machine is low during use. Summary of the Invention

[0008] The purpose of the present invention is to provide a sizing machine with high drying efficiency and its using method to solve the problems raised in the above - mentioned background technology.

[0009] To achieve the above - mentioned purpose, the present invention provides the following technical solution: A sizing machine with high drying efficiency, including a sizing - machine main body. At the top of the sizing - machine main body, a feeding module one is installed, and the feeding module one is used for pulling the yarn for textile into the sizing - machine main body. The feeding module one includes a notch one penetrating through the top of the sizing - machine main body;

[0010] On one side inner wall of the first notch, a first storage groove is provided. On the front wall and the rear wall of the first notch, clamping grooves are provided. Inside both groups of clamping grooves, clamping blocks are fitted and installed. On the surfaces of both groups of clamping blocks close to each other, a baffle is installed, and one end of the baffle is located inside the first storage groove. On one side outer wall of the sizing machine main body, bearing plates arranged front and back are installed through bolts. On the tops of both groups of bearing plates, storage boxes are installed. On one side inner wall of both groups of storage boxes, electric push rods are installed. On the output ends of both groups of electric push rods, a first connecting rod is installed;

[0011] The first connecting rod is located inside the first storage groove, and one end of the first connecting rod is connected to the outer wall of one side of the baffle.

[0012] Preferably, a second feeding module is installed inside the sizing machine main body, and the second feeding module is used to draw out the yarn inside the sizing machine main body. The second feeding module includes a sliding groove penetrating through the front of the sizing machine main body. A connecting groove is provided on the rear wall of the sizing machine main body. Inside the connecting groove, a connecting block is slidably installed. On the front of the connecting block, a connecting roller is installed. On the front of the connecting roller, a first push rod is installed, and the first push rod is located inside the sliding groove. On the outer surface of the connecting roller, a groove is provided. Inside the groove, an adhesive strip is fitted and installed, and the adhesive strip is used to adhere the yarn inside the sizing machine main body. Both the sliding groove and the connecting groove are arc-shaped structures, and the diameter of the first push rod is smaller than the diameter of the connecting roller.

[0013] Preferably, a first drying module and a second drying module are installed inside the sizing machine main body, and both the first drying module and the second drying module are used to dry the sizing agent on the surface of the yarn. The second drying module is located in the middle of the first drying module, and the second feeding module is located in the middle of the second drying module. The first drying module includes four groups of second connecting rods installed on the inner wall of the sizing machine main body up and down. On the outer surface of the second connecting rods, uniformly arranged limiting plates are installed. On the surfaces of the two lower groups of second connecting rods close to each other, uniformly arranged mesh plates are embedded and installed, and the mesh plates and the limiting plates are distributed at intervals. On the back of the sizing machine main body, a blowing mechanism is installed, and the blowing mechanism is used to blow air into the second connecting rods. On the back of the second connecting rods, a second storage groove and a placing hole are provided, and the placing hole is located inside the second storage groove. On the front wall of the second storage groove, symmetrically arranged limiting rods are installed. The outer diameter of the second storage groove is smaller than the outer diameter of the second connecting rod. Inside the second storage groove, a porous sponge is slidably installed. On the front of the porous sponge, symmetrically arranged limiting holes are penetratingly provided, and the limiting holes are fitted with the limiting rods. The porous sponge is located in the middle of the mesh plate.

[0014] Preferably, the second drying module includes symmetrically arranged placing blocks up and down. On the surfaces of both groups of placing blocks close to each other, electric heating plates are installed, and the electric heating plates are arc-shaped structures. Uniformly arranged air holes are penetratingly provided on the tops of the sizing machine main body and the baffle.

[0015] Preferably, the baffle is fitted into the first notch. The electric push rod can drive the baffle to move horizontally. The baffle can be retracted into the interior of the first storage groove. The length of the first notch is less than that of the first storage groove. Through grooves two are provided on both outer walls of the sizing machine main body in a penetrating manner. One set of through grooves two is located below the sides of the two bearing plates.

[0016] Preferably, evenly arranged first traction rollers are installed on the inner wall of the sizing machine main body, and the first traction rollers are used for sizing the yarn. A partition is installed on the bottom wall of the sizing machine main body, and the partition is located on one side of the first traction rollers. The partition is located below the side of the lower storage block. Two symmetrically arranged second traction rollers are installed on the inner wall of the sizing machine main body, and the second traction rollers are located above the first traction rollers. The second traction rollers are located in the middle of two sets of first drying modules.

[0017] Preferably, jacks are provided on the inner wall of the other side of the first notch. Plug blocks are fitted and installed inside the jacks, and one outer wall of the plug blocks is connected to the other outer wall of the baffle.

[0018] Preferably, a slurry discharge pipe is installed on the outer wall of the other side of the sizing machine main body, and the slurry discharge pipe is used for discharging the slurry in the space formed by the partition and the sizing machine main body. An electronic valve is installed on the outer surface of the slurry discharge pipe.

[0019] Preferably, the usage method of this sizing machine is as follows:

[0020] S1. Before using the sizing machine main body, first insert the yarn to be sized into the interior of the sizing machine main body through the through groove two on one side of the sizing machine main body, and then pull the yarn entering through the first notch, so that the yarn can be drawn to the surface of one of the second traction rollers after passing through several first traction rollers, and then the yarn is drawn to the surface of the first traction rollers again after passing through the first drying module, and finally drawn to the surface of the other set of first traction rollers;

[0021] S2. Then rotate the first push rod so that the adhesive strips on the surface of the connecting roller can stick to the yarn, and push the first push rod to move in the sliding groove, so that the connecting roller can drive the yarn to pass through the middle of the second drying module and finally move near the other through groove two on the sizing machine main body. Then the yarn can be removed from the adhesive strips and pulled out from this through groove two;

[0022] S3. Before sizing the yarn, first insert the porous sponge into the interior of the second storage groove, so that the limiting rod can slide in the limiting hole until the porous sponge is completely inserted into the second storage groove;

[0023] S4. During the process of using the sizing machine main body, the yarn moves slowly under the action of traction force, so that the yarn can be immersed in the sizing agent on the surface of the first traction roller. After the primary sizing operation, it moves to the surface of one group of the second traction rollers, enabling the first set of drying modules arranged vertically to perform the primary drying operation on the yarn. After the primary drying, the yarn is immersed in the sizing agent again through the first traction roller, and then is pulled by the other group of the second traction rollers to the middle of the second set of drying modules for secondary drying.

[0024] Preferably, in the step S1, the following steps are further included:

[0025] S11. After the yarn is pulled to the surface of the second group of the second traction rollers, an appropriate amount of sizing agent is poured into the space formed by the sizing machine main body and the partition board. Then, the electric push rod in the storage box is started. Next, under the action of the first connecting rod, the clamping block can be driven to slide in the clamping groove, so that the baffle can be pushed out of the first placement groove, and the baffle is limited by the engagement of the insertion block and the insertion hole.

[0026] In the step S3, the following steps are further included:

[0027] S31. During the sizing process of the yarn, first, air is blown into the second connecting rod through the air blowing module, and the entering air can be weakened by the porous sponge and then blown out from the mesh plate, so that the upper and lower groups of the second connecting rods can blow out air relatively. Then, the electric heating plate on the placement block is started and heated to an appropriate temperature.

[0028] In the step S4, the following steps are further included:

[0029] S41. The yarn after secondary drying can move slowly in the middle of the drying module two. At this time, the air blown out relatively by the upper two groups of the second connecting rods and the lower two groups of the second connecting rods can blow the heat of the electric heating plate between the upper and lower placement blocks to the surface of the yarn, thus completing the third drying operation, and further improving the drying efficiency after sizing to a certain extent.

[0030] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0031] 1. The present invention is equipped with a sizing machine main body, a first placement groove, a baffle, a storage box, an electric push rod and a first connecting rod. Before using the sizing machine main body, the yarn needs to be threaded from one end of the sizing machine main body to the other end. Before threading, the electric push rod in the storage box is started first. Next, the first connecting rod can be driven to move horizontally in the first placement groove, so that the first connecting rod can pull the baffle to contract into the first placement groove. Then, the yarn can be pulled from one of the notch two to the middle of the two drying modules one through the notch one, thus improving the subsequent sizing efficiency to a certain extent and enhancing the flexibility of the sizing machine during use.

[0032] 2. The present invention is equipped with a chute, a connecting roller, a first push rod, a groove, and an adhesive strip. After the yarn is drawn to the middle of two groups of drying modules I, rotate the first push rod to drive the connecting roller to rotate until the orientation of the adhesive strip is aligned with the yarn. Then, the yarn can be bonded by the adhesive strip. After the yarn is bonded to the connecting roller, push the first push rod to move in the chute until the yarn is pulled near another notch II on the sizing machine body. Then, the yarn can be pulled out from the notch II, thereby improving the convenience of using the sizing machine to a certain extent.

[0033] 3. The present invention is equipped with a second connecting rod, a second storage groove, a limiting rod, a porous sponge, a storage hole, a mesh plate, and a limiting hole. Before using the sizing machine, first align the limiting rod with the limiting hole, and then the porous sponge can be inserted into the interior of the second storage groove so that the porous sponge can be inserted between two groups of mesh plates. During subsequent use of the sizing machine, blow air into the storage hole on the second connecting rod through the air blowing module, so that the blown air can be weakened by the porous sponge and then blown out from the mesh plate. Then, the drying operation can be performed on the yarn passing between the upper and lower two second connecting rods, thereby improving the drying effect of the sized yarn to a certain extent.

[0034] 4. The present invention is equipped with a storage block, an electric heating plate, and a ventilation hole. During the sizing process of the yarn, start the electric heating plate in the middle of the storage block and heat the electric heating plate to a suitable temperature, so that after the yarn enters the drying module II, the heat dissipated by the electric heating plate can be blown to the surface of the yarn by the relatively blown air from two groups of drying modules I. Through layer-by-layer drying, the drying efficiency of the sized yarn can be improved to a certain extent, and the practicability of using the sizing machine can be improved. BRIEF DESCRIPTION OF THE DRAWINGS

[0035] Figure 1 is a schematic diagram of the overall structure of the present invention;

[0036] Figure 2 is a schematic diagram of the assembled structure of the sizing machine body and the baffle of the present invention;

[0037] Figure 3 is a schematic diagram of the planar assembled structure of the second connecting rod of the present invention;

[0038] Figure 4 is a schematic diagram of the assembled structure of the connecting roller of the present invention;

[0039] Figure 5 is a schematic diagram of the planar assembled structure of the porous sponge of the present invention;

[0040] Figure 6 is a schematic diagram of the assembled structure of the first storage groove and the clamping block of the present invention;

[0041] Figure 7 is the plan view of the present invention;

[0042] Figure 8 is the schematic assembly structure diagram of the screen plate of the present invention;

[0043] Figure 9 is the workflow diagram of the present invention.

[0044] In the figure: 1. Sizing machine main body; 2. First notch; 3. First storage groove; 4. Card slot; 5. Card block; 6. Baffle; 7. Carrier plate; 8. Storage box; 9. Electric push rod; 10. First connecting rod; 11. Second notch; 12. Slide groove; 13. Connecting roller; 14. First push rod; 15. Groove; 16. Adhesive strip; 17. First traction roller; 18. Partition; 19. Second traction roller; 20. Second connecting rod; 21. Limiting plate; 22. Second storage groove; 23. Limiting rod; 24. Porous sponge; 25. Storage hole; 26. Screen plate; 27. Limiting hole; 28. Storage block; 29. Electric heating plate; 30. Ventilation hole; 31. Drainage pipe; 32. Electronic valve; 33. Insert block. Detailed implementation manners

[0045] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0046] In the description of the present invention, it should be noted that the orientation or positional relationship indicated by the terms "upper", "lower", "inner", "outer", "front end", "rear end", "both ends", "one end", "the other end", etc. is based on the orientation or positional relationship shown in the accompanying drawings. It is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of the present invention. In addition, the terms "first" and "second" are only used for descriptive purposes and cannot be construed as indicating or implying relative importance.

[0047] In the description of the present invention, it should be noted that unless otherwise clearly specified and limited, the terms "installed", "provided with", "connected", etc. should be understood in a broad sense. For example, "connected" can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the communication inside two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific situations.

[0048] Please refer to Figure 1 , Figure 2 , Figure 6 , Figure 7 and Figure 9 , an embodiment provided by the present invention: a sizing machine with high drying efficiency, including a sizing machine main body 1, a second slot 11, a slurry discharge pipe 31 and an insertion block 33. A first feeding module is installed on the top of the sizing machine main body 1, and the first feeding module is used to draw the yarn for textile into the sizing machine main body 1. The first feeding module includes a first slot 2 penetrating through the top of the sizing machine main body 1. A first storage slot 3 is provided on one inner wall of the first slot 2. Clamping slots 4 are provided on the front and rear walls of the first slot 2. Clamping blocks 5 are fitted and installed inside the two clamping slots 4. A baffle 6 is installed on the surfaces of the two clamping blocks 5 close to each other, and one end of the baffle 6 is located inside the first storage slot 3. A bearing plate 7 arranged front and rear is installed on the outer wall of one side of the sizing machine main body 1 through bolts. Storage boxes 8 are installed on the tops of the two bearing plates 7. Electric push rods 9 are installed on the inner walls of one side of the two storage boxes 8. Connecting rods 10 are installed at the output ends of the two electric push rods 9. The connecting rod 10 is located inside the first storage slot 3. One end of the connecting rod 10 is connected to the outer wall of one side of the baffle 6. The second drying module includes placing blocks 28 arranged symmetrically up and down. Electric heating plates 29 are installed on the surfaces of the two placing blocks 28 close to each other, and the electric heating plates 29 are in an arc structure. Uniformly arranged ventilation holes 30 penetrate through the tops of the sizing machine main body 1 and the baffle 6. The baffle 6 is fitted with the first slot 2. The electric push rod 9 can drive the baffle 6 to move horizontally, and the baffle 6 can be retracted into the first storage slot 3. The length of the first slot 2 is less than the length of the first storage slot 3. Second slots 11 penetrate through the outer walls of both sides of the sizing machine main body 1. One of the second slots 11 is located below the sides of the two bearing plates 7. An insertion hole is provided on the inner wall of the other side of the first slot 2. An insertion block 33 is fitted and installed inside the insertion hole, and the outer wall of one side of the insertion block 33 is connected to the outer wall of the other side of the baffle 6. A slurry discharge pipe 31 is installed on the outer wall of the other side of the sizing machine main body 1, and the slurry discharge pipe 31 is used to discharge the slurry in the space formed by the partition plate 18 and the sizing machine main body 1. An electronic valve 32 is installed on the outer surface of the slurry discharge pipe 31.

[0049] Further, before using the sizing machine main body 1, first operate the electric push rod 9 in the storage box 8 on the bearing plate 7. Then, under the action of the first connecting rod 10, the clamping block 5 can be driven to move in the clamping groove 4, so that the insertion block 33 is no longer engaged with the insertion hole. Next, the baffle 6 can be pulled into the first storage groove 3. Then, the yarn to be sized is inserted into the interior of the sizing machine main body 1 through one set of notch two 11, and finally the yarn is pulled out from the other set of notch two 11. During the sizing process, the yarn is dried three times by the electric heating plate 29. After sizing, the electronic valve 32 on the surface of the slurry discharge pipe 31 is opened, so that the slurry in the sizing machine main body 1 can be discharged from the slurry discharge pipe 31, thereby improving the flexibility and practicability of the sizing machine to a certain extent.

[0050] Please refer to Figure 4 , an embodiment provided by the present invention: a sizing machine with high drying efficiency, including a chute 12 and a second traction roller 19. A second feeding module is installed inside the sizing machine main body 1, and the second feeding module is used to pull out the yarn in the sizing machine main body 1. The second feeding module includes a chute 12 penetrating through the front surface of the sizing machine main body 1. A connecting groove is provided on the rear wall of the sizing machine main body 1, and a connecting block is slidably installed inside the connecting groove. A connecting roller 13 is installed on the front surface of the connecting block, and a first push rod 14 is installed on the front surface of the connecting roller 13, and the first push rod 14 is located inside the chute 12. A groove 15 is provided on the outer surface of the connecting roller 13, and an adhesive strip 16 is fitted inside the groove 15, and the adhesive strip 16 is used to adhere to the yarn inside the sizing machine main body 1. Both the chute 12 and the connecting groove are arc-shaped structures. The diameter of the first push rod 14 is smaller than the diameter of the connecting roller 13. A first traction roller 17 is evenly installed on the inner wall of the sizing machine main body 1, and the first traction roller 17 is used for sizing the yarn. A partition 18 is installed on the bottom wall of the sizing machine main body 1, and the partition 18 is located on one side of the first traction roller 17. The partition 18 is located below the side of the lower storage block 28. Two groups of symmetrically arranged second traction rollers 19 are installed on the inner wall of the sizing machine main body 1, and the second traction rollers 19 are located above the first traction roller 17. The second traction rollers 19 are located in the middle of two groups of first drying modules.

[0051] Further, after the yarn is pulled to the middle of two groups of first drying modules, rotate the first push rod 14 to drive the connecting roller 13 to rotate until the orientation of the adhesive strip 16 is aligned with the yarn. Then, the yarn can be adhered through the adhesive strip 16. After the yarn is adhered to the connecting roller 13, push the first push rod 14 to move in the chute 12 until the yarn is pulled to near the other set of notch two 11 on the sizing machine main body 1, and the yarn is pulled out of the sizing machine main body 1 from the notch two 11, thereby improving the convenience of using the sizing machine to a certain extent.

[0052] Please refer to Figure 3 , Figure 5and Figure 8 , an embodiment provided by the present invention: a sizing machine with high drying efficiency, including a second connecting rod 20 and a limiting hole 27. A drying module one and a drying module two are installed inside the sizing machine main body 1, and both the drying module one and the drying module two are used to dry the slurry on the surface of the yarn. The drying module two is located in the middle of the drying module one, and the feeding module two is located in the middle of the drying module two. The drying module one includes four groups of second connecting rods 20 installed on the inner wall of the sizing machine main body 1 up and down. A uniformly arranged limiting plate 21 is installed on the outer surface of the second connecting rod 20. Uniformly arranged mesh plates 26 are embedded and installed on the surfaces of the two lower groups of second connecting rods 20 close to each other, and the mesh plates 26 and the limiting plates 21 are distributed at intervals. A blowing mechanism is installed on the back of the sizing machine main body 1, and the blowing mechanism is used to blow air into the second connecting rod 20. A second storage groove 22 and a storage hole 25 are arranged on the back of the second connecting rod 20, and the storage hole 25 is located inside the second storage groove 22. Symmetrically arranged limiting rods 23 are installed on the front wall of the second storage groove 22. The outer diameter of the second storage groove 22 is smaller than the outer diameter of the second connecting rod 20. A porous sponge 24 is slidably installed inside the second storage groove 22. Symmetrically arranged limiting holes 27 are penetrated through the front of the porous sponge 24, and the limiting holes 27 are fitted with the limiting rods 23. The porous sponge 24 is located in the middle of the mesh plate 26.

[0053] Furthermore, before using the sizing machine main body 1, first align the limiting rod 23 with the limiting hole 27, then insert the porous sponge 24 into the inside of the second storage groove 22, and blow air into the storage hole 25 on the second connecting rod 20 through the blowing module. During the use of this sizing machine, the yarn moves slowly, and the first sizing operation can be carried out through the first traction roller 17. Then, the sized yarn is conveyed to the first group of drying modules one arranged up and down through one of the second traction rollers 19. Then, the initial drying operation of the yarn can be carried out through this group of second connecting rods 20. After the initial drying, the yarn is immersed in the slurry again through the first traction roller 17, and then the yarn is pulled to the middle of the second group of drying modules one through the other second traction roller 19 for secondary drying. The yarn after secondary drying can move slowly in the middle of the drying module two. At this time, the air blown out relatively by the two upper groups of second connecting rods 20 and the two lower groups of second connecting rods 20 can blow the heat of the electric heating plate 29 between the upper and lower two storage blocks 28 to the surface of the yarn, thereby completing the third drying operation, and thus can improve the drying efficiency after sizing to a certain extent.

[0054] Furthermore, the usage method of this sizing machine is as follows:

[0055] S1. Before using the sizing machine main body 1, first insert the yarn to be sized through the notch two 11 on one side of the sizing machine main body 1 into the interior of the sizing machine main body 1. Then, pull the yarn that has entered through the notch one 2, so that the yarn can be drawn to the surface of one of the second set of traction rollers 19 after passing through several sets of the first set of traction rollers 17. Then, after the yarn passes through the first drying module, it is drawn to the surface of the first set of traction rollers 17 again, and finally to the surface of another set of the first set of traction rollers 17.

[0056] S2. Then rotate the first push rod 14 so that the adhesive strip 16 on the surface of the connecting roller 13 can stick to the yarn, and push the first push rod 14 to move in the chute 12, so that the connecting roller 13 can drive the yarn to pass through the middle of the second drying module and finally move near another notch two 11 on the sizing machine main body 1. Then, the yarn can be removed from the adhesive strip 16 and pulled out from this notch two 11.

[0057] S3. Before sizing the yarn, first insert the porous sponge 24 into the interior of the storage slot two 22, so that the limit rod 23 can slide in the limit hole 27 until the porous sponge 24 is completely inserted into the storage slot two 22.

[0058] S4. During the process of using the sizing machine main body 1, the yarn moves slowly under the action of traction force, so that the yarn can be immersed in the sizing slurry on the surface of the first set of traction rollers 17. After the first sizing operation, it moves to the surface of one of the second set of traction rollers 19, so that the first set of upper and lower arranged drying modules one can perform the first drying operation on the yarn. After the yarn is initially dried, it passes through the first set of traction rollers 17 again and is immersed in the sizing slurry, and then is drawn to the middle of the second set of drying modules one by another set of the second set of traction rollers 19 for secondary drying.

[0059] In step S1, the following steps are further included:

[0060] S11. After the yarn is drawn to the surface of the second set of traction rollers 19, pour an appropriate amount of sizing slurry into the space formed by the sizing machine main body 1 and the partition plate 18. Then start the electric push rod 9 in the storage box 8. Then, under the action of the connecting rod one 10, the clamping block 5 can be driven to slide in the clamping slot 4, so that the baffle 6 can be pushed out from the storage slot one 3, and the baffle 6 is limited by the engagement of the insertion block 33 and the insertion hole.

[0061] In step S3, the following steps are further included:

[0062] S31. During the process of sizing the yarn, first, air is blown into the second connecting rod 20 through the air-blowing module, and the entering air can be weakened by the porous sponge 24 and then blown out from the mesh plate 26, so that the upper and lower groups of the second connecting rods 20 can blow out air relatively. Then, the electric heating plate 29 on the placing block 28 is started, and the electric heating plate 29 is heated to an appropriate temperature;

[0063] In step S4, the following steps are further included:

[0064] S41. The yarn after secondary drying can slowly move in the middle of the second drying module. At this time, the air blown out relatively by the upper two groups of the second connecting rods 20 and the lower two groups of the second connecting rods 20 can blow the heat of the electric heating plate 29 between the upper and lower groups of placing blocks 28 to the surface of the yarn, thereby completing the third drying operation, and further improving the drying efficiency after sizing to a certain extent.

[0065] Working principle: Before using the sizing machine main body 1, first start the electric push rod 9. Under the action of the first connecting rod 10, the clamping block 5 slides in the clamping groove 4, so that the baffle 6 can be retracted into the first placing groove 3. Then, the yarn to be sized is inserted into the interior of the sizing machine main body 1 from one of the second notches 11, and the entering yarn is pulled from the first notch 2, so that the yarn can be pulled to the surface of one of the second traction rollers 19 after passing through multiple first traction rollers 17. Then, after the yarn passes through the first drying module, it is pulled to the surface of the first traction roller 17 again, and finally pulled to the surface of the other first traction roller 17. Then, the sizing slurry is poured into the sizing machine main body 1;

[0066] Then rotate the first push rod 14, so that the adhesive strip 16 on the surface of the connecting roller 13 can stick to the yarn. Then push the first push rod 14 to move in the sliding groove 12, so that the connecting roller 13 can drive the yarn to pass through the middle of the second drying module and finally move near the other second notch 11 on the sizing machine main body 1. Then, the yarn can be removed from the adhesive strip 16, and the yarn is pulled out from this second notch 11;

[0067] During the process of sizing the yarn, air is blown into the second connecting rod 20 through the air-blowing module, and the entering air can be weakened by the porous sponge 24 and then blown out. Then, the electric heating plate 29 is started, so that the air blown out relatively by the two groups of the second connecting rods 20 can blow the heat of the electric heating plate 29 to the surface of the yarn until the drying operation is completed.

[0068] It is obvious to those skilled in the art that the present invention is not limited to the details of the above-described exemplary embodiments, and that the present invention can be implemented in other specific forms without departing from the spirit or essential characteristics of the present invention. Therefore, in all respects, the embodiments should be regarded as exemplary and non-limiting. The scope of the present invention is defined by the appended claims rather than the above description. Therefore, all changes that fall within the meaning and scope of the equivalent elements of the claims are intended to be embraced within the present invention. Any reference signs in the claims should not be construed as limiting the claims involved.

Claims

1. A sizing machine with high drying efficiency, comprising a sizing machine main body (1), characterized in that: A feeding module one is installed at the top of the sizing machine main body (1), and the feeding module one is used to draw the yarn for textile into the sizing machine main body (1). The feeding module one includes a notch one (2) penetrating through the top of the sizing machine main body (1). On one inner wall of the notch one (2), a storage slot one (3) is arranged. On the front wall and the rear wall of the notch one (2), clamping slots (4) are arranged. In the two clamping slots (4), clamping blocks (5) are fitted and installed. On the surfaces of the two clamping blocks (5) close to each other, a baffle (6) is installed, and one end of the baffle (6) is located inside the storage slot one (3). On one outer wall of the sizing machine main body (1), a bearing plate (7) arranged front and back is installed by bolts. On the tops of the two bearing plates (7), storage boxes (8) are installed. On one inner wall of each of the two storage boxes (8), an electric push rod (9) is installed. On the output ends of the two electric push rods (9), a connecting rod one (10) is installed. The connecting rod one (10) is located inside the storage slot one (3), and one end of the connecting rod one (10) is connected to one outer wall of the baffle (6). A feeding module two is installed inside the sizing machine main body (1), and the feeding module two is used to draw the yarn inside the sizing machine main body (1) out. The feeding module two includes a sliding slot (12) penetrating through the front of the sizing machine main body (1). A connecting slot is arranged on the rear wall of the sizing machine main body (1). A connecting block is slidably installed inside the connecting slot. A connecting roller (13) is installed on the front of the connecting block. A push rod one (14) is installed on the front of the connecting roller (13), and the push rod one (14) is located inside the sliding slot (12). A groove (15) is arranged on the outer surface of the connecting roller (13). A sticky strip (16) is fitted and installed inside the groove (15), and the sticky strip (16) is used to stick the yarn inside the sizing machine main body (1). The sliding slot (12) and the connecting slot are both arc-shaped structures. The diameter of the push rod one (14) is smaller than the diameter of the connecting roller (13). Inside the sizing machine main body (1), a first drying module and a second drying module are installed. Both the first drying module and the second drying module are used to dry the sizing on the surface of the yarn. The second drying module is located in the middle of the first drying module, and the second feeding module is located in the middle of the second drying module. The first drying module includes four groups of connecting rods two (20) installed vertically on the inner wall of the sizing machine main body (1). Uniformly arranged limiting plates (21) are installed on the outer surface of the connecting rods two (20). Uniformly arranged mesh plates (26) are embedded on the surfaces of the two lower groups of connecting rods two (20) close to each other, and the mesh plates (26) and the limiting plates (21) are distributed at intervals. A blowing mechanism is installed on the back of the sizing machine main body (1), and the blowing mechanism is used to blow air into the connecting rods two (20). A second storage groove (22) and a storage hole (25) are arranged on the back of the connecting rod two (20), and the storage hole (25) is located inside the second storage groove (22). Symmetrically arranged limiting rods (23) are installed on the front wall of the second storage groove (22). The outer diameter of the second storage groove (22) is smaller than the outer diameter of the connecting rod two (20). A porous sponge (24) is slidably installed inside the second storage groove (22). Symmetrically arranged limiting holes (27) are provided through the front surface of the porous sponge (24), and the limiting holes (27) are fitted with the limiting rods (23). The porous sponge (24) is located in the middle of the mesh plate (26).

2. The sizing machine with high drying efficiency according to claim 1, wherein: The second drying module includes symmetrically arranged storage blocks (28) up and down. Electric heating plates (29) are installed on the surfaces of the two storage blocks (28) close to each other, and the electric heating plates (29) are in an arc structure. Uniformly arranged ventilation holes (30) are provided through the tops of the sizing machine main body (1) and the baffle (6).

3. The sizing machine with high drying efficiency according to claim 2, wherein: The baffle (6) is fitted with the first slot (2). The electric push rod (9) can drive the baffle (6) to move horizontally. The baffle (6) can be retracted into the first storage groove (3). The length of the first slot (2) is smaller than the length of the first storage groove (3). Through slots two (11) are provided through the outer walls on both sides of the sizing machine main body (1), and one of the through slots two (11) is located below the sides of the two bearing plates (7).

4. The sizing machine with high drying efficiency according to claim 3, characterized in that: Uniformly arranged first traction rollers (17) are installed on the inner wall of the sizing machine main body (1), and the first traction rollers (17) are used for sizing the yarn. A partition plate (18) is installed on the bottom wall of the sizing machine main body (1), and the partition plate (18) is located on one side of the first traction rollers (17). The partition plate (18) is located below the side of the lower storage block (28). Two symmetrically arranged second traction rollers (19) are installed on the inner wall of the sizing machine main body (1), and the second traction rollers (19) are located above the first traction rollers (17). The second traction rollers (19) are located in the middle of two of the first drying modules.

5. The sizing machine with high drying efficiency according to claim 4, characterized in that: A jack is provided on the inner wall of the other side of the first slot (2), and a plug (33) is fitted inside the jack. One side outer wall of the plug (33) is connected to the outer wall of the other side of the baffle (6).

6. The sizing machine with high drying efficiency according to claim 5, characterized in that: On the outer wall of the other side of the sizing machine main body (1), a slurry discharge pipe (31) is installed, and the slurry discharge pipe (31) is used to discharge the slurry in the space formed by the partition plate (18) and the sizing machine main body (1). An electronic valve (32) is installed on the outer surface of the slurry discharge pipe (31).

7. The usage method of a sizing machine with high drying efficiency according to claim 6, characterized in that, The usage method of this sizing machine is as follows: S1. Before using the sizing machine main body (1), first insert the yarn to be sized into the interior of the sizing machine main body (1) through the notch two (11) on one side of the sizing machine main body (1). Then, pull the incoming yarn from the notch one (2) so that the yarn can be pulled to the surface of one of the second traction rollers (19) after passing through several of the first traction rollers (17). Then, after the yarn passes through the first drying module, it is pulled to the surface of the first traction roller (17) again, and finally pulled to the surface of another first traction roller (17). S2. Then rotate the first push rod (14) so that the adhesive strip (16) on the surface of the connecting roller (13) can stick to the yarn, and push the first push rod (14) to move in the chute (12), so that the connecting roller (13) can drive the yarn to pass through the middle of the second drying module and finally move near another notch two (11) on the sizing machine main body (1). Then, the yarn can be removed from the adhesive strip (16) and pulled out from this notch two (11). S3. Before sizing the yarn, first insert the porous sponge (24) into the interior of the storage slot two (22) so that the limit rod (23) can slide in the limit hole (27) until the porous sponge (24) is completely inserted into the storage slot two (22). S4. During the process of using the sizing machine main body (1), the yarn moves slowly under the action of traction force, so that the yarn can be immersed in the slurry on the surface of the first traction roller (17). After the primary sizing operation, it moves to the surface of one of the second traction rollers (19), so that the first set of upper and lower arranged first drying modules can perform the primary drying operation on the yarn. After the primary drying, the yarn passes through the first traction roller (17) again and is immersed in the slurry, and then is pulled by another second traction roller (19) to the middle of the second set of first drying modules for secondary drying.

8. The method of using a sizing machine with high drying efficiency according to claim 7, characterized in that, In the step S1, the following steps are further included: S11. After the yarn is pulled to the surface of the second set of second traction rollers (19), pour an appropriate amount of slurry into the space formed by the sizing machine main body (1) and the partition plate (18). Then start the electric push rod (9) in the storage box (8). Then, under the action of the connecting rod one (10), the clamping block (5) can be driven to slide in the clamping slot (4), so that the baffle (6) can be pushed out from the storage slot one (3), and the baffle (6) is limited by the engagement of the insertion block (33) and the insertion hole. In the step S3, the following steps are further included: S31. During the process of sizing the yarn, first, air is blown into the second connecting rod (20) through the air-blowing module, and the entering air can be weakened by the porous sponge (24) and then blown out from the mesh plate (26), so that the upper and lower groups of the second connecting rods (20) can blow out air relatively. Then, the electric heating plate (29) on the placing block (28) is started, and the electric heating plate (29) is heated to a suitable temperature. In step S4, the following steps are further included: S41. The yarn after secondary drying can move slowly in the middle of the second drying module. At this time, the air blown out relatively by the upper two groups of the second connecting rods (20) and the lower two groups of the second connecting rods (20) can blow the heat of the electric heating plate (29) between the upper and lower placing blocks (28) to the surface of the yarn, thereby completing the third drying operation, and thus improving the drying efficiency after sizing to a certain extent.

Citation Information

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