A yarn steaming device for textile and its usage method

By driving the motor and motor to drive the installation barrel and discharge mechanism, the disassembly and assembly of the yarn reel is automatically completed, solving the problems of operational labor and water droplet pollution, and achieving efficient yarn reel treatment.

CN119877221BActive Publication Date: 2025-07-29XINXIANG UNIV +1
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Patent Information

Application Number
CN202510394137.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-03-31
Publication Date
2025-07-29
Estimated Expiration
2045-03-31

AI Technical Summary

Technical Problem

The existing yarn steaming device is laborious to operate, the yarn roll is disassembled in low efficiency, and steam condenses into water droplets to contaminate the yarn.

Method used

The drive motor and motor drive the installation cylinder and the discharge mechanism, combined with the liquid scraping mechanism, realize the automatic disassembly and assembly of the yarn reel and the removal of water droplets.

Benefits of technology

It reduces the labor intensity of operators, improves the disassembly and assembly efficiency of the yarn reel, and avoids water droplets contamination of the yarn, and improves the quality of the steaming yarn.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a yarn steaming device for textile and a using method thereof, which relates to the technical field of textile production. The present invention includes a steaming mechanism, which includes an outer shell cylinder, a mounting cylinder arranged inside the outer shell cylinder and coaxially with the outer shell cylinder, a driving motor fixed at the middle position of the left wall of the outer shell cylinder, and a guide block arranged on the left side of the mounting cylinder and slidably connected with the outer shell cylinder; a discharging mechanism, which includes a motor arranged in front of the outer shell cylinder, a plurality of blocking rods arranged in a circumferential array and penetrating through the mounting cylinder, and an L-shaped rod arranged on the left side of the blocking rods and fixed to the outer peripheral wall of the mounting cylinder. By adjusting the position of the insertion rod, the mounting cylinder can be moved or rotated, without the need for manual labor to operate the movement of the mounting cylinder. The position of the blocking rods can be centrally adjusted through the worm for centralized disassembly and assembly. The yarn reels can be centrally collected through the motor. In addition, the water column is prevented from polluting the yarn through the scraping strip.
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Description

Technical Field

[0001] The present invention relates to the technical field of textile production, and particularly to a yarn steaming device for textile and a usage method thereof. Background Art

[0002] Yarn steaming is a common textile process, mainly used to improve the quality and stability of yarns. Through steam heating and humidification, the steaming process can enable the yarns to reach a predetermined tension and twist, thereby improving their weaving performance.

[0003] The steps of yarn steaming are roughly as follows: wind the yarn around a dedicated yarn reel, then place the yarn reel into the steam chamber of the steamer, heat and moisten the yarn with steam at 100°C to 110°C, and finally adjust the tightness of the yarn by the steaming time and steam pressure.

[0004] As disclosed in the authorized announcement number CN118065070B, a high-efficiency setting twist and steaming device includes a transfer mechanism, a steaming outer cylinder mechanism, a steaming heating mechanism, a steaming rotation mechanism, and a steaming telescopic mechanism. The transfer mechanism moves the device to a suitable position, and the steaming rotation mechanism ensures that the yarn reel can be evenly heated during the steaming process. Adding water in the steaming heating mechanism can avoid the influence of low humidity on the steaming effect during the steaming process, improve the quality and uniformity of steaming. When the loading component abuts against the steaming heating mechanism, vibration will be generated, and the vibration can shake off the water attached to the surface of the yarn reel, which is beneficial to the better transfer of the steam temperature to the inside of the yarn reel and improves the steaming effect.

[0005] In the prior art, before yarn steaming, it is necessary to open the sealing door, then pull out the loading bracket, and then sleeved the yarn reel outside the loading component in the loading bracket. After the operation is completed, push the loading bracket into the steam chamber of the steamer and close the sealing door to perform the steaming operation. However, when operating in the above manner, it is necessary to manually push and pull the loading bracket, and the operation is relatively laborious, increasing the labor intensity of the operator.

[0006] At the same time, a large number of yarn reels need to be installed on the loading component before steaming, and a large number of yarn reels also need to be removed from the loading component when taking out the yarn reels after steaming. However, each loading component in the prior art radially supports the yarn reel through two relatively movable limiting extension rods, and axially limits the yarn reel by the wedge-shaped limiting blocks at the outer ends of the limiting extension rods to realize the installation of the yarn reel. But when taking out the yarn reel in this way, it is necessary to operate the limiting extension rods to approach each other to take out the yarn reel, and at the same time, it is necessary to manually operate each yarn reel to disengage from the loading component to take out the yarn reel, resulting in relatively troublesome operation steps when disassembling the yarn reel and reducing the removal efficiency of the yarn reel.

[0007] Moreover, in the prior art, steam is used to steam the yarn. However, during the steaming process, the steam condenses on the inner wall of the outer shell cylinder of the yarn steaming machine to form water droplets, which drip onto the surface of the yarn under the action of gravity, contaminating the yarn and reducing the quality of yarn steaming. Summary of the Invention

[0008] The purpose of this part is to outline some aspects of the embodiments of the present invention and briefly introduce some preferred embodiments. Simplifications or omissions may be made in this part, as well as in the abstract and title of the present application, to avoid obscuring the purpose of this part, the abstract, and the title. However, such simplifications or omissions shall not be used to limit the scope of the present invention.

[0009] In view of the problem that the prior art requires manual pushing and pulling of the loading bracket, which is laborious and increases the labor intensity of the operator, a yarn steaming device for textile is proposed.

[0010] To solve the above technical problems, the present invention provides the following technical solution: A yarn steaming device for textile, comprising: a steaming mechanism, including an outer shell cylinder, a mounting cylinder disposed inside the outer shell cylinder and coaxially with the outer shell cylinder, a driving motor fixedly provided at the middle position of the left wall of the outer shell cylinder, and a guiding block disposed to the left of the mounting cylinder and slidably connected to the outer shell cylinder. The inner side of the right wall of the guiding block is provided with a circular plate fixedly connected to the mounting cylinder in clearance fit. A screw rod threadedly connected to the circular plate is fixedly provided on the power output shaft of the driving motor. A driving rod is provided in front of the left end of the screw rod. A fixing sleeve fixedly connected to the screw rod is fixedly provided at the inner end of the driving rod. A plug rod is provided on one side of the driving rod. A connecting sleeve fixedly connected to the circular plate is provided in clearance fit on the outer part of the plug rod. A jack is provided through the front side of the guiding block. A blind hole is provided on the left wall of the circular plate corresponding to the position of the jack. A discharging mechanism, including a motor disposed in front of the outer shell cylinder, a plurality of blocking rods distributed in a circumferential array and penetrating through the mounting cylinder, and an L-shaped rod disposed to the left of the blocking rods and fixedly connected to the outer peripheral wall of the mounting cylinder. And a liquid scraping mechanism disposed between the mounting cylinder and the outer shell cylinder, including a scraping strip with a triangular cross-section on the upper side and in contact with the inner peripheral wall of the outer shell cylinder, and an arc-shaped plate disposed below the scraping strip.

[0011] As a preferred embodiment of the yarn steaming device for textile of the present invention, wherein: an annular plate is fixedly provided at the edge of the right wall of the guiding block. The inner diameter of the annular plate is smaller than the outer diameter of the circular plate. Guide bosses are fixedly provided at both the front and rear ends of the outer peripheral wall of the guiding block. Guide grooves cooperating with the guide bosses are axially provided on the inner peripheral wall of the outer shell cylinder.

[0012] As a preferred embodiment of a yarn steaming device for textile of the present invention, the following is provided: a pinch block is fixedly provided at the left end of the insertion rod, an operation groove is formed in the front of the driving motor corresponding to the left wall of the outer shell cylinder, a side plate rotatably connected to the outer shell cylinder is provided to the left of the operation groove, the free end of the side plate is detachably fixed to the outer shell cylinder, and rotating rods are fixedly provided at both the front and rear ends of the outer peripheral wall of the outer shell cylinder.

[0013] As a preferred embodiment of a yarn steaming device for textile of the present invention, the following is provided: a water tank is fixedly provided at the lower wall of the outer shell cylinder, a heating wire is provided at the lower wall inside the water tank, and through holes are uniformly formed in the inner side of the water tank corresponding to the lower peripheral wall of the outer shell cylinder.

[0014] As a preferred embodiment of a yarn steaming device for textile of the present invention, the following is provided: a shell door is rotatably connected to the right wall of the outer shell cylinder, a convex plate is fixedly provided at the upper end of the shell door, a hydraulic cylinder is provided to the left of the convex plate, U-shaped plates are fixedly provided at both ends of the hydraulic cylinder, a vertical plate fixed to the outer shell cylinder is provided inside the U-shaped plate on the left side, protrusions two are fixedly provided on both the front and rear side walls of the vertical plate, protrusions one are fixedly provided on both the front and rear side walls of the convex plate, and the protrusions two and the protrusions one are in clearance fit with the corresponding U-shaped plates respectively.

[0015] The beneficial effect of a yarn steaming device for textile of the present invention is as follows: after the insertion rod is inserted into the jack and the blind hole, since the screw rod is in threaded connection with the round plate and the insertion rod is not in the rotation trajectory of the driving rod, when the screw rod rotates, the round plate can be driven to move axially inside the outer shell cylinder. Therefore, when installing or disassembling the yarn reel, there is no need to manually and laboriously operate to move the yarn reel outside the outer shell cylinder for the disassembly and assembly of the yarn reel, solving the problem in the prior art that it is necessary to manually push and pull the loading bracket, which is rather laborious and increases the labor intensity of the operator.

[0016] In view of the fact that in the prior art, when removing the yarn reel, it is necessary to operate the limit extension rods to approach each other to remove the yarn reel, and at the same time, it is necessary to manually operate each yarn reel to disengage from the loading component one by one to remove the yarn reel, resulting in rather troublesome operation steps when disassembling the yarn reel and reducing the removal efficiency of the yarn reel. Therefore, a further improvement is made to a yarn steaming device for textile.

[0017] As a preferred embodiment of a yarn steaming device for textile of the present invention, the following is provided: a U-shaped frame fixed to the motor is provided outside the outer shell cylinder, the rotating rod is rotatably connected to the U-shaped frame through a bearing, and the power output shaft of the motor is fixedly connected to the corresponding rotating rod.

[0018] As a preferred solution of a yarn steaming device for textile of the present invention, wherein: a sliding plate is fixedly provided at the inner end of the blocking rod, an installation cup fixed to the installation cylinder is arranged in a clearance fit outside the sliding plate, a spring is arranged inside the installation cup, and two ends of the spring are respectively abutted against the sliding plate and the installation cup. A connecting rope is fixed to the inner side wall corresponding to the sliding plate inside the spring, and one end of the connecting rope is fixedly connected to the rotating cylinder; a connecting plate is fixedly arranged in a circumferential array on the outer peripheral wall on the left side of the rotating cylinder, a round rod is fixedly provided at the end of the right wall of the connecting plate away from the rotating cylinder, and a roller which is rotatably connected to the round rod and is in rolling connection with the installation cylinder is arranged outside the round rod. Limit rings fixed to the installation cylinder are arranged on the left and right sides of the roller.

[0019] As a preferred solution of a yarn steaming device for textile of the present invention, wherein: a worm is arranged behind the right end of the rotating cylinder, a transmission tooth meshed with the worm is fixedly provided on the outer peripheral wall corresponding to the rotating cylinder in front of the worm, a cross plate fixedly connected to the installation cylinder is arranged outside the upper side of the worm, the worm is rotatably connected to the cross plate through a bearing, and a rocking wheel is fixed to the worm corresponding to the upper side of the cross plate.

[0020] Another beneficial effect of the yarn steaming device for textile of the present invention is that: by rotating the worm to drive the installation cylinder to rotate, the blocking rod is pulled towards the installation cylinder under the action of the connecting rope. At this time, the motor is used to make the outer shell cylinder in a state of being higher on the left and lower on the right. In this state, the motor is further used to drive the outer shell cylinder to rotate quickly in a small angle alternately clockwise and counterclockwise, so that the yarn reel outside the L-shaped rod can be separated from the L-shaped rod under the condition of being inclined and bumpy, which is convenient for collecting the yarn reel. Compared with the prior art, since a plurality of yarn reels are sleeved outside each L-shaped rod, the disassembly and assembly of the yarn reel are more convenient. At the same time, when disassembling the yarn reel, it is not necessary to perform manual disassembly operations on each yarn reel, which simplifies the operation steps and reduces the labor intensity of the operation. The cooperation of the motor makes it convenient to centrally collect the yarn reel, improves the disassembly and collection efficiency of the yarn reel, and solves the problem that in the prior art, when removing the yarn reel, it is necessary to operate the limit extension rods to approach each other to take out the yarn reel, and at the same time, it is necessary to manually operate each yarn reel to be separated from the loading component to take out the yarn reel, resulting in troublesome operation steps when disassembling the yarn reel and reducing the taking-out efficiency of the yarn reel.

[0021] In view of the fact that in the prior art, steam is used to steam the yarn. However, during the yarn steaming process, the steam condenses on the inner wall of the outer shell cylinder of the yarn steamer to form water droplets, and the water droplets drip onto the yarn surface under the action of gravity, thereby polluting the yarn and reducing the yarn steaming quality. Therefore, a further improvement is made to a yarn steaming device for textile.

[0022] As a preferred solution of a yarn steaming device for textile of the present invention, wherein: an installation bar is fixedly provided on the lower wall of the scraping bar, connecting rods are fixedly provided at both ends of the installation bar, the connecting rod on the left side is fixedly connected to the circular plate, and an end plate fixed to the arc-shaped plate is rotatably connected to the outside of the connecting rod through a bearing.

[0023] Another beneficial effect of a yarn steaming device for textile of the present invention is that: by driving the liquid scraping mechanism to rotate by using the rotation of the circular plate, the scraping bar is enabled to scrape the water droplets condensed on the inner peripheral wall of the upper side of the outer shell cylinder. Since the arc-shaped plate moves along with the scraping bar, when the scraping bar scrapes the water droplets condensed on the inner peripheral wall of the upper side, the water droplets fall into the arc-shaped plate to avoid contaminating the yarn with water droplets, solving the problem in the prior art that since steam is used to steam the yarn, during the steaming process, the steam condenses on the inner wall of the outer shell cylinder of the yarn steamer to form water droplets, and under the action of gravity, the water droplets drip onto the surface of the yarn to contaminate the yarn, reducing the quality of yarn steaming.

[0024] The present invention also provides a usage method of a yarn steaming device for textile, which is used according to the following steps:

[0025] S1. Control the hydraulic cylinder to retract to drive the shell door to rotate and open the shell door;

[0026] S2. Rotate the side plate, operate the insertion rod to be inserted into the inside of the insertion hole and the blind hole, control the driving motor to work to drive the left end of the installation cylinder to move to the right end of the outer shell cylinder, and operate the handwheel to rotate to make the stop rod move towards the rotating cylinder;

[0027] S3. Operate the yarn reel to be sleeved on the outside of the L-shaped rod, then rotate the handwheel to make the stop rod move away from the rotating cylinder, then control the driving motor to work to drive the installation cylinder to return to the initial position, and control the hydraulic cylinder to extend to close the shell door;

[0028] S4. Open the side plate, pull out the insertion rod in the insertion hole and the blind hole and insert it into the connecting sleeve, and start the driving motor and the heating wire to steam the yarn while the yarn reel is rotating;

[0029] S5. After the steaming is completed, control the hydraulic cylinder to retract to drive the shell door to rotate and open the shell door, stop the driving motor, at this time operate the handwheel to rotate to make the stop rod move towards the rotating cylinder, and then control the motor to drive the outer shell cylinder to rotate clockwise until the right end of the outer shell cylinder is lower than the left end of the outer shell cylinder;

[0030] S6. On the basis of S5, control the power output shaft of the motor to move in the clockwise and counterclockwise directions alternately until the yarn reel is separated from the L-shaped rod and then from the outer shell cylinder, then control the driving motor to stop working, and make the motor drive the outer shell cylinder to be in the original state;

[0031] Performing cyclic operations in sequence according to S2, S3, S4, S5, and S6 enables cyclic yarn steaming. Description of the Drawings

[0032] To more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings required for use in the description of the embodiments will be briefly introduced below. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts. Among them:

[0033] Figure 1 It is the overall structure diagram of a yarn steaming device for textile.

[0034] Figure 2 It is the structure diagram inside the outer shell cylinder.

[0035] Figure 3 It is the left view structure diagram of a yarn steaming device for textile.

[0036] Figure 4 It is the internal structure diagram of the yarn steaming mechanism.

[0037] Figure 5 It is the mating structure diagram of the guiding boss and the guiding groove.

[0038] Figure 6 It is the exploded view of some structures in the yarn steaming mechanism.

[0039] Figure 7 For Figure 6 The structure diagram from another perspective.

[0040] Figure 8 It is the structure diagram of the discharging mechanism.

[0041] Figure 9 For Figure 8 The partial structure diagram in

[0042] Figure 10 It is the internal structure diagram of the mounting cup.

[0043] Figure 11 It is the structure diagram of the liquid scraping mechanism.

[0044] In the drawings, the list of components represented by each label is as follows:

[0045] 100 - Yarn steaming mechanism, 101 - Outer shell cylinder, 101a - Rotating rod, 101b - Water tank, 101c - Side plate, 101d - Perforation, 101e - Guide groove, 101f - Operation groove, 102 - Installation cylinder, 103 - Hydraulic cylinder, 103a - U - shaped plate, 104 - Convex plate, 104a - First protrusion, 105 - Driving motor, 105a - Screw rod, 106 - Vertical plate, 106a - Second protrusion, 107 - Shell door, 108 - Guide block, 108a - Guide boss, 108b - Jack, 109 - Annular plate, 110 - Driving rod, 110a - Fixed sleeve, 111 - Insertion rod, 111a - Pinching block, 112 - Circular plate, 112a - Connecting sleeve, 112b - Blind hole, 113 - Heating wire, 200 - Discharging mechanism, 201 - Rotating cylinder, 201a - Transmission gear, 202 - L - shaped rod, 203 - Stop rod, 204 - Motor, 205 - U - shaped frame, 206 - Installation cup, 207 - Roller, 208 - Connecting plate, 208a - Round rod, 209 - Worm, 209a - Rocking wheel, 209b - Horizontal plate, 210 - Slide plate, 210a - Spring, 210b - Connecting rope, 211 - Limiting ring, 300 - Liquid scraping mechanism, 301 - Scraping strip, 302 - Installation strip, 302a - Connecting rod, 303 - Arc plate, 303a - End plate. Detailed implementation manners

[0046] In order to make the above - mentioned objects, features and advantages of the present invention more obvious and understandable, the following detailed description of the specific implementation manners of the present invention will be given in conjunction with the accompanying drawings of the specification.

[0047] In the following description, many specific details are set forth in order to fully understand the present invention. However, the present invention can also be implemented in other ways different from those described herein. Those skilled in the art can make similar extensions without departing from the connotation of the present invention. Therefore, the present invention is not limited by the specific embodiments disclosed below.

[0048] Secondly, the so - called "one embodiment" or "embodiment" refers to a specific feature, structure or characteristic that can be included in at least one implementation manner of the present invention. The "in one embodiment" appearing in different places in this specification does not all refer to the same embodiment, nor is it a separate or selectively exclusive embodiment with other embodiments.

[0049] Furthermore, the present invention is described in detail in conjunction with schematic diagrams. When detailing the embodiments of the present invention, for the convenience of explanation, the cross - sectional views showing the device structures will be enlarged locally out of the general proportion, and the schematic diagrams are only examples, which should not limit the protection scope of the present invention herein. In addition, in actual production, three - dimensional spatial dimensions including length, width and depth should be included. Embodiment 1

[0050] Refer to Figure 1, Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 and Figure 7 , which is the first embodiment of the present invention. This embodiment provides a yarn steaming device for textile. By inserting the inserting rod 111 into the inside of the jack 108b and the blind hole 112b, when the driving motor 105 works to drive the screw rod 105a to rotate, the installation cylinder 102 can axially move inside the outer shell cylinder 101, without manual laborious operation, reducing the labor intensity of the operator.

[0051] Specifically, it includes a steaming mechanism 100, which includes an outer shell cylinder 101, an installation cylinder 102 arranged inside the outer shell cylinder 101 and coaxially with the outer shell cylinder 101, a driving motor 105 fixed at the middle position of the left wall of the outer shell cylinder 101, and a guiding block 108 arranged on the left side of the installation cylinder 102 and slidably connected with the outer shell cylinder 101. The driving motor 105 can adopt a servo motor. In order to reduce the weight of the guiding block 108, the inside of the guiding block 108 can be hollowed out; a discharging mechanism 200, which includes a motor 204 arranged in front of the outer shell cylinder 101, a retaining rod 203 arranged in a circumferential array and penetrating through the installation cylinder 102, and an L-shaped rod 202 arranged on the left side of the retaining rod 203 and fixed to the outer peripheral wall of the installation cylinder 102. The motor 204 can adopt a servo motor. The number of the L-shaped rods 202 can be determined according to the actual size of the outer diameter of the installation cylinder 102. After the yarn reel is sleeved outside two adjacent L-shaped sleeves, the adjacent yarn reels do not contact each other; and a liquid scraping mechanism 300 arranged between the installation cylinder 102 and the outer shell cylinder 101, which includes a scraping strip 301 with a triangular cross-section on the upper side and in contact with the inner peripheral wall of the outer shell cylinder 101, and an arc-shaped plate 303 arranged below the scraping strip 301. The scraping strip 301 can adopt a rubber material. At the same time, the edge of the scraping strip 301 contacts the inner peripheral wall of the outer shell cylinder 101.

[0052] Read in detail Figure 4 , Figure 6 and Figure 7As shown in the figure, a circular plate 112 fixedly connected to the mounting cylinder 102 is arranged in an inner clearance fit with the right wall of the guiding block 108. The circular plate 112 is slidably connected to the annular plate 109. A screw rod 105a threadedly connected to the circular plate 112 is fixedly arranged on the power output shaft of the driving motor 105. When the screw rod 105a rotates relative to the circular plate 112, the screw rod 105a can drive the circular plate 112 to move. In front of the left end of the screw rod 105a, there is a driving rod 110. A fixing sleeve 110a fixedly connected to the screw rod 105a is fixedly arranged at the inner end of the driving rod 110. A plug rod 111 is arranged on one side of the driving rod 110. When the plug rod 111 is located in the rotation trajectory of the driving rod 110, the rotation of the driving rod 110 can drive the plug rod 111 to rotate, and finally drive the mounting cylinder 102 and the yarn reel to be in a rotating state. The plug rod 111 can be made of a magnetic material, and the circular plate 112 can be made of a magnetizable material to improve the stability of the plug rod 111 during use. A connecting sleeve 112a fixed to the circular plate 112 is arranged in an outer clearance fit with the outer part of the plug rod 111. A jack 108b is formed through the front side of the guiding block 108. A blind hole 112b is formed in the left wall of the circular plate 112 corresponding to the position where the jack 108b is located. The aperture of the jack 108b is adapted to the outer diameter of the plug rod 111. In order to facilitate the accurate insertion of the plug rod 111 into the blind hole 112b, the aperture of the blind hole 112b can be slightly larger than the diameter of the plug rod 111. At the same time, the angle after the driving motor 105 stops working is the angle at which the plug rod 111 can be smoothly inserted into the jack 108b and the blind hole 112b;

[0053] With the above settings, when the plug rod 111 is inserted into the inside of the connecting sleeve 112a, the driving motor 105 works to drive the screw rod 105a to rotate, so that the fixing sleeve 110a and the driving rod 110 rotate, thereby driving the plug rod 111, the connecting sleeve 112a and the circular plate 112 to rotate, and finally driving the mounting cylinder 102 to rotate, realizing the rotation of the yarn reel. The rotation of the yarn reel during steaming can improve the uniformity during steaming;

[0054] When the plug rod 111 is inserted into the jack 108b and the blind hole 112b, the circular plate 112 and the guiding boss 108a are in a non-rotatable state. The driving motor 105 works to drive the screw rod 105a to rotate, so that the circular plate 112 continuously moves, and can drive the mounting cylinder 102 to move to the outside of the outer shell cylinder 101, facilitating the installation operation of the yarn reel by sleeving the yarn reel on the outside of the L-shaped rod 202.

[0055] For details, please refer to Figure 4 and Figure 5As shown, an annular plate 109 is fixedly provided at the edge of the right wall of the guiding block 108. The inner diameter of the annular plate 109 is smaller than the outer diameter of the circular plate 112. The cooperation between the annular plate 109 and the guiding block 108 enables the circular plate 112 to rotate only inside the guiding block 108. Guiding bosses 108a are fixedly provided at both the front and rear ends of the outer peripheral wall of the guiding block 108. Guiding grooves 101e that cooperate with the guiding bosses 108a are axially formed on the inner peripheral wall of the outer shell cylinder 101. The guiding bosses 108a move along the inside of the guiding grooves 101e;

[0056] With the above arrangement, when the inserting rod 111 is inserted into the inside of the connecting sleeve 112a, the driving motor 105 operates to rotate the driving rod 110, driving the inserting rod 111, the connecting sleeve 112a and the circular plate 112 to rotate inside the guiding block 108. When the inserting rod 111 is inserted into the insertion hole 108b and the blind hole 112b, the driving motor 105 operates to drive the screw rod 105a to rotate. With the cooperation of the guiding bosses 108a in the guiding grooves 101e, the guiding block 108 does not rotate, enabling the screw rod 105a to drive the circular plate 112 to move.

[0057] For details, refer to Figure 3 、 Figure 4 and Figure 5 As shown, a pinch block 111a is fixedly provided at the left end of the inserting rod 111. The pinch block 111a can be set in a frustum shape, and the smaller end of the pinch block 111a is fixed to the inserting rod 111. An operation groove 101f is formed in the front of the driving motor 105 corresponding to the left wall of the outer shell cylinder 101. A side plate 101c rotatably connected to the outer shell cylinder 101 is provided to the left of the operation groove 101f. A sealing gasket can be fixedly provided on the side wall of the side plate 101c close to the outer shell cylinder 101. The free end of the side plate 101c is detachably fixed to the outer shell cylinder 101. Rotating rods 101a are fixedly provided at both the front and rear ends of the outer peripheral wall of the outer shell cylinder 101;

[0058] With the above arrangement, by operating the side plate 101c to rotate to expose the operation groove 101f, and then pinching the pinch block 111a by hand, the inserting rod 111 can be operated to move, enabling the inserting rod 111 to be inserted into the connecting sleeve 112a or the blind hole 112b.

[0059] For details, refer to Figure 4 As shown, a water tank 101b is fixedly provided on the lower wall of the outer shell cylinder 101. Water is provided inside the water tank 101b. A heating wire 113 is provided on the lower wall inside the water tank 101b for heating the water. Perforations 101d are evenly formed on the inner side of the water tank 101b corresponding to the lower peripheral wall of the outer shell cylinder 101. Water vapor can enter the inside of the outer shell cylinder 101 by passing through the perforations 101d;

[0060] With the above arrangement, the heat generated when the heating wire 113 operates can heat the water, and the generated steam enters the inside of the outer shell cylinder 101 through the perforations 101d. The steam acts on the yarn to perform the yarn steaming treatment.

[0061] Read carefully Figure 3 As shown, a shell door 107 is rotatably connected to the right wall of the outer shell cylinder 101. A sealing gasket can be fixedly arranged on the side of the shell door 107 close to the outer shell cylinder 101. A convex plate 104 is fixedly arranged at the upper end of the shell door 107. A hydraulic cylinder 103 is arranged to the left of the convex plate 104 for driving the shell door 107 to rotate. Both ends of the hydraulic cylinder 103 are fixedly provided with U-shaped plates 103a. Inside the U-shaped plate 103a on the left side, there is a vertical plate 106 fixed to the outer shell cylinder 101. On the front and rear side walls of the vertical plate 106, there are respectively convexities two 106a fixedly arranged. On the front and rear side walls of the convex plate 104, there are respectively convexities one 104a fixedly arranged. The convexities two 106a and the convexities one 104a are in clearance fit with the corresponding U-shaped plates 103a respectively;

[0062] With the above settings, when the hydraulic cylinder 103 works, it can drive the U-shaped plate 103a on the right side to rotate. Under the cooperation of the convexity one 104a and the convex plate 104, the shell door 107 is driven to rotate to open or close the shell body.

[0063] Furthermore, on the surface of the outer shell cylinder 101, there are also interfaces for adjusting the pressure inside the outer shell cylinder 101 and supplying steam from the outside. The above interfaces are not shown in the figure. The pressure inside the outer shell cylinder 101 can be adjusted by an externally provided pressure regulating mechanism, and steam can be provided for the inside of the outer shell cylinder 101 by an externally provided steam generating mechanism. Embodiment 2

[0064] Refer to Figure 1 、 Figure 2 、 Figure 8 、 Figure 9 and Figure 10 This is the second embodiment of the present invention. Based on the previous embodiment, the difference from the previous embodiment is that in this embodiment, the yarn reels are centrally sleeved outside the L-shaped rod 202. By using the cooperation of the worm 209 and the transmission teeth 201a, the rotating cylinder 201 drives the blocking rod 203 to move towards the rotating cylinder 201, and the motor 204 is used to make the mounting cylinder 102 rotate back and forth counterclockwise and clockwise in small amplitudes to generate bumps to cause the yarn reels to break away, so as to facilitate the centralized and rapid collection of the yarn reels, simplify the operation steps, and improve the disassembly and assembly efficiency of the yarn reels.

[0065] Specifically, read carefully Figure 3 and Figure 8 As shown, outside the outer shell cylinder 101, there is a U-shaped frame 205 fixed to the motor 204, which can be fixedly connected to the installation platform through bolts. The rotating rod 101a is rotatably connected to the U-shaped frame 205 through a bearing, and the power output shaft of the motor 204 is fixedly connected to the corresponding rotating rod 101a;

[0066] With the above settings, after the U-shaped frame 205 is fixed on the installation platform, when the motor 204 operates to drive the rotating rod 101a to rotate, the outer shell cylinder 101 can be rotated.

[0067] For detailed reading Figure 8 、 Figure 9 and Figure 10 As shown in the figure, a slide plate 210 is fixedly provided at the inner end of the stop rod 203. An installation cup 206 fixed to the installation cylinder 102 is provided with a clearance fit outside the slide plate 210. A spring 210a is provided inside the installation cup 206. The spring 210a provides a force for the slide plate 210 in the direction away from the rotating cylinder 201. The two ends of the spring 210a are respectively abutted against the slide plate 210 and the installation cup 206. A connecting rope 210b is fixed to the inner side wall of the spring 210a corresponding to the slide plate 210. One end of the connecting rope 210b is fixedly connected to the rotating cylinder 201;

[0068] Circular plates 208 are fixedly arranged in a circumferential array on the outer peripheral wall on the left side of the rotating cylinder 201. A round rod 208a is fixedly provided at one end of the right wall of the circular plate 208 away from the rotating cylinder 201. A roller 207 rotatably connected to the round rod 208a and rollingly connected to the installation cylinder 102 is provided. Limit rings 211 fixed to the installation cylinder 102 are provided on both the left and right sides of the roller 207 to limit the roller 207 so that the roller 207 moves between the two limit rings 211. With the above settings, the rotating cylinder 201 can rotate at a fixed position;

[0069] With the above settings, by rotating the rotating cylinder 201, the connecting rope 210b can be driven to move. When the connecting rope 210b is loose, under the action of the spring 210a, when the slide plate 210 contacts the installation cylinder 102, the stop rod 203 extends out of the installation cylinder 102, and the installation cylinder 102 is used to block the yarn reel sleeved outside the L-shaped rod 202 to prevent the yarn reel from accidentally separating from the L-shaped rod 202 during yarn steaming;

[0070] By rotating the rotating cylinder 201, the connecting rope 210b can be driven to move, thereby pulling the slide plate 210 and the stop rod 203 towards the rotating cylinder 201. At this time, the stop rod 203 loses its blocking effect, so as to have an operating space to sleeve the yarn reel outside the L-shaped rod 202. At the same time, in this state, after making the left end of the outer shell cylinder 101 higher than the right end of the outer shell cylinder 101, the motor 204 is used to operate to make the rotating cylinder 201 jolt, and the yarn reel can be centrally disassembled.

[0071] For detailed reading Figure 9As shown in the figure, a worm 209 is provided behind the right end of the rotating cylinder 201. In front of the worm 209, a transmission gear 201a engaged with the worm 209 is fixed to the outer peripheral wall of the rotating cylinder 201. An external horizontal plate 209b fixedly connected to the mounting cylinder 102 is provided above the worm 209. The worm 209 is rotatably connected to the horizontal plate 209b through a bearing. A handwheel 209a is fixed to the worm 209 corresponding to the upper side of the horizontal plate 209b;

[0072] With the above settings, by operating the handwheel 209a to rotate, the worm 209 can be driven to rotate. Under the action of the transmission gear 201a, the rotating cylinder 201 rotates, so as to realize the adjustment of the position of the shift lever 203. Embodiment 3

[0073] Referring to Figure 1 、 Figure 2 and Figure 11 This is the third embodiment of the present invention. This embodiment is based on any of the above embodiments. Different from the above embodiments, the rotation of the circular plate 112 drives the scraping strip 301 to move to scrape off the water droplets condensed on the inner peripheral wall of the upper side of the outer shell cylinder 101, and the arc-shaped plate 303 is used to collect the water droplets to prevent the dripping water droplets from contaminating the yarn.

[0074] Specifically, a mounting strip 302 is fixedly provided on the lower wall of the scraping strip 301. Connecting rods 302a are fixedly provided at both ends of the mounting strip 302. The connecting rod 302a on the left side is fixedly connected to the circular plate 112. An end plate 303a fixedly connected to the arc-shaped plate 303 is rotatably connected to the outside of the connecting rod 302a through a bearing. A drain hole is provided on the end plate 303a corresponding to the right side of the arc-shaped plate 303. The drain hole is located at the upper right of the right end of the mounting cylinder 102;

[0075] With the above settings, when the circular plate 112 rotates, it drives the connecting rod 302a and the mounting strip 302 to rotate, so that the edge of the scraping strip 301 scrapes off the water droplets on the inner peripheral wall of the upper side of the outer shell cylinder 101. Finally, the water droplets fall into the arc-shaped plate 303 to complete the collection, and the collected water droplets pass through the drain hole and drip downward to the lower end inside the outer shell cylinder 101. Embodiment 4

[0076] This embodiment is the fourth embodiment of the present invention. This embodiment provides a use method of a yarn steaming device for textile, which is used according to the following steps:

[0077] S1. Control the hydraulic cylinder 103 to retract to drive the shell door 107 to rotate to open the shell door 107;

[0078] S2. Rotate the side plate 101c, operate the insertion rod 111 to be inserted into the inside of the jack 108b and the blind hole 112b, control the driving motor 105 to work to drive the left end of the mounting cylinder 102 to move to the right end of the outer shell cylinder 101, and operate the handwheel 209a to rotate to make the stop lever 203 move towards the rotating cylinder 201;

[0079] S3. Operate the yarn reel to be sleeved outside the L-shaped rod 202, then rotate the handwheel 209a to make the stop lever 203 move away from the rotating cylinder 201, then control the driving motor 105 to work to drive the mounting cylinder 102 to return to the initial position, and control the hydraulic cylinder 103 to extend to close the shell door 107;

[0080] S4. Open the side plate 101c, pull out the insertion rod 111 in the jack 108b and the blind hole 112b and insert it into the connecting sleeve 112a, and start the driving motor 105 and the heating wire 113 to steam the yarn while the yarn reel is rotating;

[0081] S5. After steaming the yarn, control the hydraulic cylinder 103 to retract to drive the shell door 107 to rotate to open the shell door 107, stop the driving motor 105, at this time operate the handwheel 209a to rotate to make the stop lever 203 move towards the rotating cylinder 201, and then control the motor 204 to drive the outer shell cylinder 101 to rotate clockwise until the right end of the outer shell cylinder 101 is lower than the left end of the outer shell cylinder 101;

[0082] S6. On the basis of S5, control the power output shaft of the motor 204 to move in the clockwise and counterclockwise directions alternately until the yarn reel is separated from the L-shaped rod 202 and then separated from the outer shell cylinder 101, then control the driving motor 105 to stop working, and make the motor 204 drive the outer shell cylinder 101 to be in the original state;

[0083] S7. Perform cyclic operations in sequence according to S2, S3, S4, S5, and S6 to perform cyclic yarn steaming.

[0084] In addition, the electrical appliances used in this yarn steaming device for textile are all electrically connected to an external power source through conductive wires. At the same time, the electrical appliances can be obtained through market procurement or private customization, and their models are not limited here.

[0085] Importantly, it should be noted that the construction and arrangement of the present application shown in multiple different exemplary embodiments are merely illustrative. Although only a few embodiments are described in detail in this disclosure, those who refer to this disclosure should easily understand that many modifications are possible without substantially departing from the novel teachings and advantages of the subject matter described in this application (for example, the dimensions, scales, structures, shapes and proportions of various elements, as well as parameter values (such as temperature, pressure, etc.), installation arrangements, use of materials, color, orientation changes, etc.). For example, an element shown as being integrally formed may be composed of multiple parts or elements, the position of the element may be inverted or otherwise changed, and the nature, number or position of discrete elements may be altered or changed. Accordingly, all such modifications are intended to be included within the scope of the present invention. The order or sequence of any process or method steps may be changed or reordered according to alternative embodiments. In the claims, any "means plus function" clause is intended to cover the structures that perform the recited function herein, and not only structural equivalents but also equivalent structures. Other substitutions, modifications, changes and omissions may be made in the design, operating conditions and arrangement of the exemplary embodiments without departing from the scope of the present invention. Therefore, the present invention is not limited to a particular embodiment, but extends to various modifications that still fall within the scope of the appended claims.

[0086] In addition, in order to provide a concise description of the exemplary embodiments, not all features of the actual embodiments may be described (i.e., those features that are not relevant to the currently contemplated best mode of carrying out the present invention or those that are not relevant to the implementation of the present invention).

[0087] It should be understood that in the development of any actual implementation, as in any engineering or design project, numerous specific implementation decisions may be made. Such development efforts may be complex and time-consuming, but for those of ordinary skill in the art who benefit from this disclosure, without undue experimentation, such development efforts will be a routine task of design, fabrication and production.

[0088] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and not to limit them. Although the present invention has been described in detail with reference to the preferred embodiments, those of ordinary skill in the art should understand that the technical solutions of the present invention may be modified or equivalently replaced without departing from the spirit and scope of the technical solutions of the present invention, and they should all be covered within the scope of the claims of the present invention.

Claims

1. A yarn steaming device for textile, characterized in that: Including, A yarn steaming mechanism (100), comprising an outer shell cylinder (101), a mounting cylinder (102) disposed inside the outer shell cylinder (101) and coaxially arranged with the outer shell cylinder (101), a driving motor (105) fixedly provided at the middle position of the left wall of the outer shell cylinder (101), and a guiding block (108) disposed to the left of the mounting cylinder (102) and slidably connected to the outer shell cylinder (101). The inner side of the right wall of the guiding block (108) is provided with a circular plate (112) fixedly connected to the mounting cylinder (102) with a clearance fit. A screw rod (105a) threadedly connected to the circular plate (112) is fixedly provided on the power output shaft of the driving motor (105). In front of the left end of the screw rod (105a), there is a driving rod (110). A fixing sleeve (110a) fixedly connected to the screw rod (105a) is fixedly provided at the inner end of the driving rod (110). On one side of the driving rod (110), there is an inserting rod (111). An outer sleeve (112a) fixedly connected to the circular plate (112) is provided on the outside of the inserting rod (111) with a clearance fit. A jack (108b) is formed through the front side of the guiding block (108). A blind hole (112b) is formed in the left wall of the circular plate (112) corresponding to the position of the jack (108b). An annular plate (109) is fixedly provided at the edge of the right wall of the guiding block (108). The inner diameter of the annular plate (109) is smaller than the outer diameter of the circular plate (112). Guiding bosses (108a) are fixedly provided at both the front and rear ends of the outer peripheral wall of the guiding block (108). A guiding groove (101e) cooperating with the guiding bosses (108a) is axially formed on the inner peripheral wall of the outer shell cylinder (101). A discharging mechanism (200), comprising a motor (204) disposed in front of the outer shell cylinder (101), a plurality of blocking rods (203) arranged in a circumferential array and penetrating through the mounting cylinder (102), and an L-shaped rod (202) disposed to the left of the blocking rods (203) and fixedly connected to the outer peripheral wall of the mounting cylinder (102); and, A liquid scraping mechanism (300) disposed between the mounting cylinder (102) and the outer shell cylinder (101), comprising a scraping strip (301) with a triangular cross-section on the upper side and in contact with the inner peripheral wall of the outer shell cylinder (101), and an arc-shaped plate (303) disposed below the scraping strip (301). An installation strip (302) is fixedly provided on the lower wall of the scraping strip (301). Connecting rods (302a) are fixedly provided at both ends of the installation strip (302). The connecting rod (302a) on the left side is fixedly connected to the circular plate (112). An end plate (303a) fixedly connected to the arc-shaped plate (303) is rotatably connected to the outside of the connecting rod (302a) through a bearing.

2. The yarn steaming device for textile according to claim 1, characterized in that: A pinch block (111a) is fixedly provided at the left end of the insertion rod (111). An operation slot (101f) is formed in the front of the driving motor (105) corresponding to the left wall of the outer shell cylinder (101). A side plate (101c) rotatably connected to the outer shell cylinder (101) is provided to the left of the operation slot (101f). The free end of the side plate (101c) is detachably fixed to the outer shell cylinder (101). Rotating rods (101a) are fixedly provided at both the front and rear ends of the outer peripheral wall of the outer shell cylinder (101).

3. The yarn steaming device for textile according to claim 2, characterized in that: A water tank (101b) is fixedly provided at the lower wall of the outer shell cylinder (101). A heating wire (113) is provided at the lower wall inside the water tank (101b). Perforations (101d) are evenly formed in the inner side of the water tank (101b) corresponding to the lower peripheral wall of the outer shell cylinder (101).

4. The yarn steaming device for textile according to claim 3, wherein: A shell door (107) is rotatably connected to the right wall of the outer shell cylinder (101). A convex plate (104) is fixedly provided at the upper end of the shell door (107). A hydraulic cylinder (103) is provided to the left of the convex plate (104). U-shaped plates (103a) are fixedly provided at both ends of the hydraulic cylinder (103). A vertical plate (106) fixed to the outer shell cylinder (101) is provided inside the U-shaped plate (103a) on the left side. Protrusions two (106a) are fixedly provided on both the front and rear side walls of the vertical plate (106). Protrusions one (104a) are fixedly provided on both the front and rear side walls of the convex plate (104). The protrusions two (106a) and the protrusions one (104a) are in clearance fit with the corresponding U-shaped plates (103a) respectively.

5. The yarn steaming device for textile according to claim 2, wherein: A U-shaped frame (205) fixed to the motor (204) is provided outside the outer shell cylinder (101). The rotating rod (101a) is rotatably connected to the U-shaped frame (205) through a bearing. The power output shaft of the motor (204) is fixedly connected to the corresponding rotating rod (101a).

6. The yarn steaming device for textile according to claim 5, characterized in that: A sliding plate (210) is fixedly provided at the inner end of the blocking rod (203). An installation cup (206) fixed to the installation cylinder (102) is provided outside the sliding plate (210) with a clearance fit. A spring (210a) is provided inside the installation cup (206). The two ends of the spring (210a) are respectively abutted against the sliding plate (210) and the installation cup (206). A connecting rope (210b) is fixed to the inner side wall of the spring (210a) corresponding to the sliding plate (210). One end of the connecting rope (210b) is fixedly connected to the rotating cylinder (201). Connecting plates (208) are fixedly arranged in a circumferential array on the outer peripheral wall on the left side of the rotating cylinder (201). A round rod (208a) is fixedly provided at one end of the right wall of the connecting plate (208) away from the rotating cylinder (201). A roller (207) rotatably connected to the round rod (communicated with the installation cylinder (102) and rolled) is provided outside the round rod (208a). Limit rings (211) fixed to the installation cylinder (102) are provided to the left and right of the roller (207).

7. A yarn steaming device for textile according to claim 6, characterized in that: Behind the right end of the rotating cylinder (201), there is a worm (209). In front of the worm (209), a transmission gear (201a) engaged with the worm (209) is fixed to the outer peripheral wall of the rotating cylinder (201). Outside the upper side of the worm (209), there is a cross plate (209b) fixedly connected to the mounting cylinder (102). The worm (209) is rotatably connected to the cross plate (209b) through a bearing. On the worm (209) corresponding to the upper side of the cross plate (209b), a handwheel (209a) is fixed.

8. A method for using a yarn steaming device for textile, characterized in that, A yarn steaming device for textile according to any one of claims 4 and 7 is used according to the following steps: S1. Control the hydraulic cylinder (103) to retract, driving the shell door (107) to rotate to open the shell door (107); S2. Rotate the side plate (101c), operate the insertion rod (111) to be inserted into the inside of the insertion hole (108b) and the blind hole (112b), control the driving motor (105) to work to drive the left end of the mounting cylinder (102) to move to the right end of the outer shell cylinder (101), and operate the handwheel (209a) to rotate to make the stop rod (203) move towards the rotating cylinder (201); S3. Operate the yarn reel to be sleeved on the outside of the L-shaped rod (202), then rotate the handwheel (209a) to make the stop rod (203) move away from the rotating cylinder (201), then control the driving motor (105) to work to drive the mounting cylinder (102) to return to the initial position, and control the hydraulic cylinder (103) to extend to close the shell door (107); S4. Open the side plate (101c), pull out the insertion rod (111) in the insertion hole (108b) and the blind hole (112b) and insert it into the connecting sleeve (112a), and start the driving motor (105) and the heating wire (113) to steam the yarn while the yarn reel is rotating; S5. After steaming, control the hydraulic cylinder (103) to retract to drive the shell door (107) to rotate to open the shell door (107), stop the driving motor (105). At this time, operate the handwheel (209a) to rotate to make the stop rod (203) move towards the rotating cylinder (201), and then control the motor (204) to drive the outer shell cylinder (101) to rotate clockwise until the right end of the outer shell cylinder (101) is lower than the left end of the outer shell cylinder (101); S6. On the basis of S5, control the power output shaft of the motor (204) to alternately move in the clockwise and counterclockwise directions until the yarn reel is separated from the L-shaped rod (202) and then separated from the outer shell cylinder (101), then control the driving motor (105) to stop working, and make the motor (204) drive the outer shell cylinder (101) to be in the original state; S7. Perform cyclic operations in sequence according to S2, S3, S4, S5, and S6 to perform cyclic yarn steaming.

Citation Information

Patent Citations

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