Automatic oil supply device and oil supply method for spooling oil agent of air texturing machine
By using the automatic oiling device for winding oil in an air-textured machine, which includes wire guiding, shaving, and oiling steps, the problem of clogged oiling holes and uneven oiling caused by exposed fibers falling off blended yarns is solved, achieving uniform oiling and stable oiling of the yarn.
Patent Information
- Application Number
- CN202511180534.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-22
- Publication Date
- 2025-11-11
- Estimated Expiration
- 2045-08-22
AI Technical Summary
During the winding process of blended yarns, exposed fibers are prone to falling off, leading to blockage of the oil supply holes and uneven oiling of the yarn, which affects the yarn quality and subsequent processing.
An automatic oil supply device for winding oil in an air-texturing machine was designed, comprising an oil placement section, an oil immersion section, a pressing section, and a shaving section. Through the steps of wire guiding, shaving, and oil immersion, the device ensures that the yarn is fully immersed in oil and cleans exposed fibers, preventing oil loss and blockage.
It achieves uniform oiling of yarn, avoids oil waste and clogging of oil supply holes, and improves yarn quality and processing efficiency.
Smart Images

Figure CN120922686A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of textile equipment, specifically to an automatic oil supply device and method for oiling winding agents in an air-forming machine. Background Technology
[0002] In the textile industry, the winding machine plays a crucial "bridge" role as the final process in spinning and the first process in weaving. During the winding process, oiling the yarn is an indispensable step. Spinning oiling can give the fibers a smooth and soft feel, effectively improve the antistatic properties of the fibers, reduce friction between fibers and between fibers and other objects, and ensure the smooth progress of subsequent processing. In addition, oiling can also improve the abrasion resistance, dyeing evenness, and color fixation of the fibers, which not only meets the requirements of the spinning process itself but also meets the needs of textile processing. Blended yarns, as a commonly used type of yarn in modern textiles, are prone to fiber shedding during the winder process in an air texturer. Therefore, an automatic oiling device is needed to prepare blended yarns.
[0003] In the production process of blended yarns, some raw material fibers fail to fully participate in the weaving and integration, resulting in a large number of exposed free fibers on the yarn surface. These exposed fibers are easily detached during subsequent wind treatment in an air texturer due to mechanical stretching, friction, and other external forces. The detached fiber fragments fall into the oil tank during the production process, directly causing blockage of the oil supply holes and affecting the stable operation of the oil supply system. At the same time, when the yarn with easily detached fibers is oiled, the oil will preferentially adhere to the surface of these exposed fibers. When the fibers detach, the oil they carry is also lost, which not only wastes the oiling agent but also results in insufficient and uneven oiling of the yarn itself, severely weakening the oiling effect, directly affecting the yarn quality, and adversely affecting subsequent weaving processing and finished product performance. Summary of the Invention
[0004] The purpose of this invention is to provide an automatic oil supply device and method for winding oil in an air deformation machine, thereby solving the problems mentioned in the background art.
[0005] To achieve the above objectives, the present invention provides the following technical solution: an automatic oil supply device for winding oil in an air deformation machine, comprising an oil placement part, an oil immersion part inside the oil placement part, an oil baffle plate, a pressure groove on the oil baffle plate, a mounting hole at the bottom of the pressure groove, a bottom mounting block threaded inside the mounting hole, a liquid level monitor fixedly connected to the middle position of the bottom mounting block, a pressure part inside the oil placement part, the pressure part comprising a fixed block, two fixed brackets fixedly connected to the top of the fixed block, two sets of shaving parts on the pressure part, each set of shaving parts comprising an external pull-out block, an external moving bracket fixedly connected to the external pull-out block, a docking roller rotatably connected to the external moving bracket, and a shaving cylinder fixedly sleeved outside the docking roller.
[0006] Preferably, the oil placement part includes a mounting frame, a cylindrical rod is fixedly connected inside the mounting frame, an oil placement groove is formed at the bottom of the inner wall of the mounting frame, an inclined surface is formed in the oil placement groove, an oil supply hole is formed at the bottom of the mounting frame, and the oil supply hole is connected to the oil placement groove.
[0007] Preferably, the inner wall of the mounting frame has two opposing side slots, a cleaning scraper is slidably connected to the cylindrical rod inside the mounting frame, the bottom of the cleaning scraper is provided with a scraper blade, the outer wall of the mounting frame has an external discharge hole, a waste collection rack is fixedly connected to the outer wall of the external discharge hole, and the waste collection rack has an opening that connects to the external discharge hole.
[0008] Preferably, the oil baffle is fixed inside the mounting bracket, the top surface of the oil baffle is in contact with the bottom scraper of the cleaning scraper, the bottom of the oil baffle is provided with an arc-shaped block, the bottom of the pressure groove is connected to two oil inlet holes, the inner wall of the mounting hole is provided with threads, and the bottom mounting block is provided with six sets of fan-shaped through holes distributed in a circle.
[0009] Preferably, the oil-filling part is provided with a cross brace, which includes a cross brace frame. The cross brace frame is fixedly connected to the inside of the two side slots. The cross brace frame has two mating slots and two inward sliding grooves. The two inward sliding grooves are respectively connected to the corresponding mating slots through circular through holes. The inside of the two inward sliding grooves is slidably connected to a driving block. The two driving blocks are respectively fixedly connected to a locking rod. The two locking rods are movably inserted into the circular through holes of the corresponding inward sliding grooves and mating slots.
[0010] Preferably, the interstitial block is positioned in the middle of the mounting frame, and two internal adjustment grooves are formed inside the interstitial block. Two bottom mounting frames are fixedly connected to the bottom of the interstitial block, and each of the two bottom mounting frames has a shaft hole. Both of the two mounting frames also have shaft holes. The shaft holes of the two mounting frames are not on the same axis. A pressure roller is rotatably connected between the two bottom mounting frames through the shaft hole, and the pressure roller is inserted into the pressure groove.
[0011] Preferably, the outer pull-out block is provided with a rectangular block, which is engaged in the corresponding docking groove. An inner bundle block is fixedly connected to the outer pull-out block and slidably connected in the corresponding inner adjustment groove. A spring is provided on the inner bundle block. A locking hole is provided on the rectangular block of the outer pull-out block, and a corresponding locking rod can be fixedly inserted into the locking hole. A shaft is provided on the outer moving frame, and the shafts of the two outer moving frames are respectively kept on the same axis as the shaft holes on the corresponding fixed frames. The shafts of the outer moving frames can be inserted into the shaft holes on the corresponding fixed frames. A wire-adhesive layer is provided on the outer wall of the shaving cylinder.
[0012] Preferably, the oil-containing part has a wire guide section inside, the wire guide section includes an outer frame, the outer frame is fixed to the outer wall of the mounting frame, the outer frame is rotatably connected to the outer frame, an inner frame is fixed to the outer wall of the interlocking block, two supports are fixed to the inner frame, two opposing incomplete spherical grooves are respectively opened on the inner side of the two inner frames, locking bolts are fixedly inserted in the two supports of the inner frame, and an oil squeezing ball is movably connected inside the inner frame, the oil squeezing ball has a wire through hole inside.
[0013] In this invention, an automatic oil supply method for winding oil in an air deformation machine includes the following steps:
[0014] S1: The yarn is guided into the device by the auxiliary rollers of the lead wire section. The auxiliary rollers on the outer frame can rotate flexibly to reduce the friction when the yarn enters and ensure that the yarn is smoothly introduced. After the yarn passes through the auxiliary rollers, it enters the area composed of the inner frame and the oil squeezing ball. The oil squeezing ball has a threading hole for the yarn to pass through. Its incomplete spherical groove design allows it to rotate flexibly. When the yarn passes through, the oil squeezing ball can initially squeeze out some of the excess oil, reducing the burden of subsequent processing.
[0015] S: After initial guidance, the yarn enters between the two sets of shaving sections. After the position is adjusted, the moving block in the sliding groove of the cross support frame is pushed, so that the locking rod is inserted into the locking hole on the rectangular block of the outer card block to fix the position of the shaving section. During the movement, the yarn comes into contact with the shaving drum. The adhesive layer on the outer wall of the shaving drum will remove the exposed fiber material on the surface of the yarn that is not fully woven, so as to clean the exposed fiber material.
[0016] S: The yarn that has undergone the shaving process enters the oil-immersion section. The pressing groove on the oil baffle plate is used to guide the yarn. The pressing roller of the pressing section is inserted into the pressing groove to press the yarn into the oil, ensuring that the yarn can be fully immersed in oil. The two oil inlet holes at the bottom of the pressing groove allow the oil to seep into the groove, ensuring the oil immersion effect of the yarn. The oil content in the pressing groove is monitored in real time by the liquid level monitor, so as to facilitate timely replenishment of the oil.
[0017] Compared with the prior art, the beneficial effects of the present invention are:
[0018] 1. The pressing rollers and pressing grooves of the pressing section fit tightly, which can accurately press the yarn into the oil and ensure that the yarn is fully soaked in oil. At the same time, the adhesive layer on the outer wall of the yarn shaving drum can efficiently remove the exposed fiber material on the yarn surface that is not fully woven during the yarn movement. When the yarn passes through the area composed of the inner frame and the oil squeezing ball, the oil squeezing ball has a threading hole for the yarn to pass through. Its incomplete spherical groove design allows it to rotate flexibly. When the yarn passes through, the oil squeezing ball can initially squeeze out some of the excess oil. This prevents the oil from preferentially adhering to the surface of these exposed fibers when the yarn with easily detached fibers is being oiled. When the fibers fall off, the oil they carry is also lost, which not only wastes the oil agent, but also results in insufficient and uneven oiling of the yarn body, seriously weakening the oiling effect.
[0019] 2. The pressing rollers of the pressing section are inserted into the pressing groove to press the yarn into the oil, ensuring that the yarn is fully soaked in oil. The two oil inlet holes at the bottom of the pressing groove allow the oil to seep into the groove, ensuring the oil soaking effect of the yarn. The oil content in the pressing groove is monitored in real time by a liquid level monitor. When the oil level is lower than the liquid level monitor, the external oil inlet device is controlled to replenish the oil inside to maintain the oil at the working level. The arc-shaped block at the bottom of the oil baffle plate can guide the flow of oil, improve the oil utilization efficiency, and at the same time block the falling fiber fragments, effectively preventing the falling fiber fragments from falling into the oil tank with the production process and directly causing the oil supply hole blockage problem. Attached Figure Description
[0020] Figure 1 This is a schematic diagram of the three-dimensional assembly structure of the present invention;
[0021] Figure 2 This is a schematic diagram of the three-dimensional assembly structure from below according to the present invention;
[0022] Figure 3 This is an exploded structural diagram of the present invention;
[0023] Figure 4 This is an exploded bottom view schematic diagram of the structure of the present invention;
[0024] Figure 5 This is a partial cross-sectional view of the present invention;
[0025] Figure 6 For the present invention Figure 5 A schematic diagram of the enlarged structure of part A is shown.
[0026] Figure 7 This is a schematic diagram of the assembly structure of the oil-filling part of the present invention;
[0027] Figure 8 This is a schematic diagram of the assembly structure of the oil-immersed part of the present invention;
[0028] Figure 9 For the present invention Figure 8 A schematic diagram of the enlarged structure of section B is shown.
[0029] Figure 10 This is a schematic diagram of the assembly structure of the cross brace of the present invention;
[0030] Figure 11 This is a schematic diagram of the crimping part assembly structure of the present invention;
[0031] Figure 12 This is a schematic diagram of the assembly structure of the shaving part of the present invention;
[0032] Figure 13 This is a schematic diagram of the wire assembly structure of the present invention;
[0033] Figure 14 This is a schematic diagram of the assembly structure of the pressure part and the shaving part of the present invention.
[0034] The attached diagram lists the components represented by each number as follows:
[0035] 1. Oil compartment; 101. Mounting bracket; 102. Inner oil compartment tank; 103. Oil supply hole; 104. Side slot; 105. Cleaning scraper; 106. Outer drain hole; 107. Miscellaneous item rack; 2. Oil immersion compartment; 201. Oil baffle plate; 202. Pressure groove; 203. Oil inlet hole; 204. Mounting hole; 205. Bottom mounting block; 206. Liquid level monitor; 3. Cross brace; 301. Cross brace frame; 302. Connecting groove; 303. Inner sliding groove; 304. Moving block; 305. Locking rod; 4. Wire pressing section; 401. Interlocking block; 402. Inner adjusting groove; 403. Bottom mounting frame; 404. Fixing frame; 405. Wire pressing roller; 5. Wire shaving section; 501. Outer pull-out block; 502. Inner binding block; 503. Locking insertion hole; 504. Outer moving frame; 505. Connecting roller; 506. Wire shaving drum; 6. Conductor section; 601. Outer mounting frame; 602. Auxiliary roller; 603. Inner fixing frame; 604. Locking bolt; 605. Oil squeeze ball. Detailed Implementation
[0036] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0037] Example 1: Please refer to Figure 1 - Figure 14 An automatic oil supply device for winding oil in an air deformation machine includes an oil placement section 1, an oil immersion section 2 inside the oil placement section 1, an oil baffle plate 201, a pressure groove 202 on the oil baffle plate 201, a mounting hole 204 connected to the bottom of the pressure groove 202, a bottom mounting block 205 threadedly connected inside the mounting hole 204, a liquid level monitor 206 fixedly connected to the middle position of the bottom mounting block 205, a pressure section 4 inside the oil placement section 1, a pressure section 4 including a spacer block 401, two fixing brackets 404 fixedly connected to the top of the spacer block 401, two sets of shaving sections 5 on the pressure section 4, each set of shaving sections 5 including an external pull-out block 501, an external moving bracket 504 fixedly connected to the external pull-out block 501, a docking roller 505 rotatably connected to the external moving bracket 504, and a shaving cylinder 506 fixedly sleeved outside the docking roller 505.
[0038] The oil placement part 1 includes a mounting bracket 101. A cylindrical rod is fixedly connected inside the mounting bracket 101. An oil placement inner groove 102 is opened at the bottom of the inner wall of the mounting bracket 101. An inclined surface is provided in the oil placement inner groove 102. An oil supply hole 103 is opened at the bottom of the mounting bracket 101. The oil supply hole 103 is connected to the oil placement inner groove 102.
[0039] The inner wall of the mounting frame 101 has two opposing side slots 104. A cleaning scraper 105 is slidably connected to the cylindrical rod inside the mounting frame 101. The bottom of the cleaning scraper 105 is provided with a scraper blade. An external discharge hole 106 is provided on the outer wall of the mounting frame 101. A waste collection rack 107 is fixedly connected to the outer wall of the external discharge hole 106. An opening is provided on the waste collection rack 107 that connects to the external discharge hole 106.
[0040] The oil baffle 201 is fixed inside the mounting bracket 101. The top surface of the oil baffle 201 is in contact with the bottom scraper of the cleaning scraper 105. The bottom of the oil baffle 201 is provided with an arc-shaped block. The bottom of the pressure groove 202 is connected to two oil inlet holes 203. The inner wall of the mounting hole 204 is provided with threads. The bottom mounting block 205 is provided with six sets of fan-shaped through holes distributed in a circle.
[0041] The oil-filling part 1 is provided with a cross brace 3 inside. The cross brace 3 includes a cross brace frame 301. The cross brace frame 301 is fixedly connected to the inside of two side slots 104. Two docking slots 302 are opened on the cross brace frame 301. Two inward sliding grooves 303 are opened inside the cross brace frame 301. The two inward sliding grooves 303 are respectively connected to the corresponding docking slots 302 through circular through holes. The two inward sliding grooves 303 are respectively slidably connected to the inside of the two inward sliding grooves 303. The two inward sliding blocks 304 are respectively fixedly connected to the two inward sliding blocks 304. The two inward sliding rods 305 can be movably inserted into the circular through holes of the corresponding inward sliding grooves 303 and docking slots 302.
[0042] In this embodiment, an external oil supply system is connected through the oil supply hole 103 to inject an appropriate amount of winding oil into the oil tank 102. The oil level needs to be maintained within a suitable range and can be observed in real time through the level monitor 206. The level monitor 206 is installed in the middle of the bottom mounting block 205, which is screwed into the mounting hole 204 by threads. During installation, it is necessary to ensure good sealing to prevent oil leakage. The pressing groove 202 on the oil baffle plate 201 is used to guide the yarn. The pressing roller 405 of the pressing part 4 is inserted into the pressing groove 202 to press the yarn into the oil, ensuring that the yarn can be fully immersed in oil. The two oil inlets 203 at the bottom of the crimping groove 202 allow oil to seep into the groove, ensuring the oil impregnation effect of the yarn. The oil content in the crimping groove 202 is monitored in real time by the liquid level monitor 206. When the oil level is lower than the liquid level monitor 206, the external oil inlet device is controlled to replenish the oil inside to maintain the oil at the working level. The arc-shaped block at the bottom of the oil baffle 201 can guide the flow of oil, improve the oil utilization efficiency, and at the same time block fallen fiber fragments, effectively preventing the fallen fiber fragments from falling into the oil tank with the production process and directly causing the blockage of the oil supply hole 103.
[0043] Example 2: Please refer to Figure 1 - Figure 14 As shown, the interstitial block 401 is located in the middle of the mounting bracket 101. The interior of the interstitial block 401 has two internal adjustment grooves 402. The bottom of the interstitial block 401 is fixedly connected to two bottom mounting brackets 403. The two bottom mounting brackets 403 are respectively provided with shaft holes. The two fixed brackets 404 are also provided with shaft holes. The shaft holes of the two fixed brackets 404 are not on the same axis. The two bottom mounting brackets 403 are rotatably connected to the wire pressing roller 405 through the shaft holes. The wire pressing roller 405 is inserted into the wire pressing groove 202.
[0044] The outer drawer block 501 has a rectangular block, which is locked in the corresponding docking groove 302. The outer drawer block 501 is fixedly connected to the inner bundle block 502, which is slidably connected in the corresponding inner adjustment groove 402. The inner bundle block 502 is equipped with a spring. The rectangular block of the outer drawer block 501 has a locking hole 503, in which a corresponding locking rod 305 can be fixedly inserted. The outer moving frame 504 has a shaft, and the shafts of the two outer moving frames 504 are respectively kept on the same axis as the shaft holes on the corresponding fixed frame 404. The shafts of the outer moving frame 504 can be inserted into the shaft holes on the corresponding fixed frame 404. The outer wall of the shaving drum 506 is provided with a wire-adhesive layer.
[0045] The oil-containing part 1 has a wire guide part 6 inside. The wire guide part 6 includes an outer frame 601, which is fixed to the outer wall of the mounting frame 101. An auxiliary roller 602 is rotatably connected to the outer frame 601. An inner frame 603 is fixed to the outer wall of the interlocking block 401. Two supports are fixed to the inner frame 603. Two opposing incomplete spherical grooves are opened on the inner side of the two inner frames 603 respectively. Locking bolts 604 are fixedly inserted into the two supports of the inner frame 603. An oil squeezing ball 605 is movably connected inside the inner frame 603. A wire-passing hole is opened inside the oil squeezing ball 605.
[0046] In this embodiment, the equipment is turned on, and the blended yarn that needs to be wind-dried by the air texturer is first guided into the device by the auxiliary roller 602 on the conductor section 6. The auxiliary roller 602 on the outer frame 601 can rotate flexibly to reduce the friction when the yarn enters, ensuring that the yarn is smoothly introduced. After the yarn is initially guided, it enters between the two sets of shaving sections 5. The rectangular block on the outer draw-out block 501 is locked in the docking groove 302 of the cross support section 3. After the position is adjusted, the driving block 304 in the sliding groove 303 of the cross support frame 301 is pushed, so that the locking rod 305 is inserted into the locking hole 503 on the rectangular block of the outer draw-out block 501, fixing the position of the shaving section 5. During the movement, the yarn comes into contact with the shaving drum 506 and is shaved. The adhesive layer on the outer wall of the yarn spool 506 removes exposed fibers from the yarn surface that are not fully woven, thus cleaning the exposed fibers. After passing through the auxiliary roller 602, the yarn enters the area consisting of the inner frame 603 and the oil squeezing ball 605. The oil squeezing ball 605 has a threading hole for the yarn to pass through, and its incomplete spherical groove design allows it to rotate flexibly. When the yarn passes through, the oil squeezing ball 605 can initially squeeze out some excess oil. This prevents the oil from preferentially adhering to the surface of these exposed fibers when the yarn with easily detached fibers is being oiled. When the fibers detach, the oil they carry is also lost, which not only wastes the oil but also results in insufficient and uneven oiling of the yarn body, seriously weakening the oiling effect.
[0047] It should be noted that after the yarn is prepared, the cleaning scraper 105 can be pushed to slide along the inner cylindrical rod of the mounting frame 101. The scraper at the bottom contacts the top surface of the oil baffle 201 to clean the residual fiber impurities on the oil baffle 201. The cleaned impurities fall into the waste collection rack 107 through the external discharge hole 106 for collection. The waste collection rack 107 should be cleaned regularly to prevent the accumulation of impurities from affecting the operation of the equipment.
[0048] In this invention, an automatic oil supply method for winding oil in an air deformation machine includes the following steps:
[0049] S1: The yarn is guided into the device by the auxiliary roller 602 of the guide wire section 6. The auxiliary roller 602 on the outer frame 601 can rotate flexibly to reduce the friction when the yarn enters and ensure that the yarn is smoothly introduced. After the yarn passes through the auxiliary roller 602, it enters the area composed of the inner frame 603 and the oil squeezing ball 605. The oil squeezing ball 605 has a threading hole inside for the yarn to pass through. Its incomplete spherical groove design allows it to rotate flexibly. When the yarn passes through, the oil squeezing ball 605 can initially squeeze out some of the excess oil, reducing the burden of subsequent processing.
[0050] S2: After initial guidance, the yarn enters between the two sets of shaving sections 5. After the position is adjusted, the driving block 304 in the sliding groove 303 of the cross support frame 301 is pushed, so that the locking rod 305 is inserted into the locking hole 503 on the rectangular block of the outer card block 501, fixing the position of the shaving section 5. During the movement, the yarn comes into contact with the shaving drum 506. The adhesive layer on the outer wall of the shaving drum 506 will remove the exposed fiber material on the surface of the yarn that is not fully woven, so as to clean the exposed fiber material.
[0051] S3: The yarn that has undergone the shaving process enters the oil-immersion section 2. The pressing groove 202 on the oil baffle 201 is used to guide the yarn. The pressing roller 405 of the pressing section 4 is inserted into the pressing groove 202 to press the yarn into the oil, ensuring that the yarn can be fully immersed in oil. The two oil inlet holes 203 at the bottom of the pressing groove 202 allow the oil to seep into the groove, ensuring the oil immersion effect of the yarn. The oil content in the pressing groove 202 is monitored in real time by the liquid level monitor 206 to facilitate timely replenishment of the oil.
[0052] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.
[0053] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. An automatic oil supply device for winding oil in an air deformation machine, comprising an oil placement unit (1), characterized in that: The oil-containing part (1) has an oil-immersing part (2) inside. The oil-immersing part (2) includes an oil baffle (201). The oil baffle (201) has a pressure groove (202). The bottom of the pressure groove (202) is connected to a mounting hole (204). The mounting hole (204) is threadedly connected to a bottom mounting block (205). A liquid level monitor (206) is fixedly connected to the middle position of the bottom mounting block (205). The oil-containing part (1) has a pressure part (4) inside. The pressing part (4) includes a fixed block (401), and two fixed brackets (404) are fixedly connected to the top of the fixed block (401). The pressing part (4) is provided with two sets of shaving parts (5). Both sets of shaving parts (5) include an outer pull-out block (501). An outer moving bracket (504) is fixedly connected to the outer pull-out block (501). A docking roller (505) is rotatably connected to the outer moving bracket (504). A shaving cylinder (506) is fixedly sleeved on the outside of the docking roller (505).
2. The automatic oil supply device for winding oil in an air deformation machine according to claim 1, characterized in that: The oil-filling part (1) includes a mounting bracket (101), a cylindrical rod is fixedly connected inside the mounting bracket (101), an oil-filling inner groove (102) is opened at the bottom of the inner wall of the mounting bracket (101), an inclined surface is provided in the oil-filling inner groove (102), an oil supply hole (103) is opened at the bottom of the mounting bracket (101), and the oil supply hole (103) is connected to the oil-filling inner groove (102).
3. The automatic oil supply device for winding oil in an air deformation machine according to claim 2, characterized in that: The mounting bracket (101) has two opposing side slots (104) on its inner wall. A cleaning scraper (105) is slidably connected to the cylindrical rod inside the mounting bracket (101). The bottom of the cleaning scraper (105) is provided with a scraper blade. An external discharge hole (106) is provided on the outer wall of the mounting bracket (101). A waste collection rack (107) is fixedly connected to the outer wall of the external discharge hole (106). An opening connected to the external discharge hole (106) is provided on the waste collection rack (107).
4. The automatic oil supply device for winding oil in an air deformation machine according to claim 3, characterized in that: The oil baffle (201) is fixed inside the mounting bracket (101). The top surface of the oil baffle (201) is in contact with the bottom scraper of the cleaning scraper (105). The bottom of the oil baffle (201) is provided with an arc-shaped block. The bottom of the pressure groove (202) is connected to two oil inlet holes (203). The inner wall of the mounting hole (204) is provided with threads. The bottom mounting block (205) is provided with six sets of fan-shaped through holes distributed in a circle.
5. An automatic oil supply device for winding oil in an air deformation machine according to claim 4, characterized in that: The oil-filling part (1) is provided with a cross brace (3) inside. The cross brace (3) includes a cross brace frame (301). The cross brace frame (301) is fixedly connected to the inside of the two side slots (104). The cross brace frame (301) has two docking slots (302). The cross brace frame (301) has two inward sliding grooves (303) inside. The two inward sliding grooves (303) are respectively connected to the corresponding docking slots (302) through circular through holes. The two inward sliding grooves (303) are respectively slidably connected with driving blocks (304). The two driving blocks (304) are respectively fixedly connected with locking rods (305). The two locking rods (305) can be movably inserted into the circular through holes of the corresponding inward sliding grooves (303) and docking slots (302).
6. The automatic oil supply device for winding oil in an air deformation machine according to claim 5, characterized in that: The interlocking block (401) is located in the middle of the mounting frame (101). The interlocking block (401) has two internal adjustment grooves (402) inside. The bottom of the interlocking block (401) is fixedly connected to two bottom mounting brackets (403). The two bottom mounting brackets (403) are respectively provided with shaft holes. The two fixing brackets (404) are also provided with shaft holes. The shaft holes of the two fixing brackets (404) are not on the same axis. The two bottom mounting brackets (403) are rotatably connected to each other through the shaft holes. The wire pressing roller (405) is inserted into the wire pressing groove (202).
7. The automatic oil supply device for winding oil in an air deformation machine according to claim 6, characterized in that: The outer pull-out block (501) is provided with a rectangular block, which is locked in the corresponding docking groove (302). An inner bundle block (502) is fixedly connected to the outer pull-out block (501), and the inner bundle block (502) is slidably connected in the corresponding inner adjustment groove (402). A spring is provided on the inner bundle block (502). A locking hole (503) is opened on the rectangular block of the outer pull-out block (501), and a corresponding locking rod (305) can be fixedly inserted into the locking hole (503). A shaft is provided on the outer moving frame (504), and the shafts of the two outer moving frames (504) are respectively kept on the same axis as the shaft hole on the corresponding fixed frame (404). The shaft of the outer moving frame (504) can be inserted into the shaft hole on the corresponding fixed frame (404). A wire-adhesive layer is provided on the outer wall of the wire shaving cylinder (506).
8. The automatic oil supply device for winding oil in an air deformation machine according to claim 7, characterized in that: The oil-filling part (1) is provided with a wire section (6) inside. The wire section (6) includes an outer frame (601), which is fixed to the outer wall of the mounting frame (101). An auxiliary roller (602) is rotatably connected to the outer frame (601). An inner frame (603) is fixed to the outer wall of the interlocking block (401). Two supports are fixed to the inner frame (603). Two opposing incomplete spherical grooves are opened on the inner side of the two inner frames (603). Locking bolts (604) are fixedly inserted into the two supports of the inner frame (603). An oil squeezing ball (605) is movably connected inside the inner frame (603). A wire-passing hole is opened inside the oil squeezing ball (605).
9. An automatic oil supply method for winding agent in an air deformation machine, comprising an automatic oil supply device for winding agent in an air deformation machine according to claim 1, characterized in that, Includes the following steps: S1: The yarn is guided into the device by the auxiliary roller (602) of the guide section (6). The auxiliary roller (602) on the outer frame (601) can rotate flexibly to reduce the friction when the yarn enters and ensure that the yarn is smoothly introduced. After the yarn passes through the auxiliary roller (602), it enters the area composed of the inner frame (603) and the oil squeezing ball (605). The oil squeezing ball (605) has a threading hole inside for the yarn to pass through. Its incomplete spherical groove design allows it to rotate flexibly. When the yarn passes through, the oil squeezing ball (605) can initially squeeze out some of the excess oil, reducing the burden of subsequent processing. S2: After initial guidance, the yarn enters between the two sets of shaving sections (5), and after the position is adjusted, push the drive block (304) in the sliding groove (303) of the cross support frame (301) to make the locking rod (305) insert into the locking hole (503) on the rectangular block of the outer card block (501) to fix the position of the shaving section (5). During the movement, the yarn comes into contact with the shaving drum (506). The adhesive layer on the outer wall of the shaving drum (506) will remove the exposed fiber material on the surface of the yarn that is not fully woven, so as to clean the exposed fiber material. S3: The yarn that has completed the shaving process enters the oil-immersion section (2). The pressing groove (202) on the oil baffle (201) is used to guide the yarn. The pressing roller (405) of the pressing section (4) is inserted into the pressing groove (202) to press the yarn into the oil, ensuring that the yarn can be fully immersed in oil. The two oil inlet holes (203) at the bottom of the pressing groove (202) allow the oil to seep into the groove, ensuring the oil immersion effect of the yarn. The oil content in the pressing groove (202) is monitored in real time by the liquid level monitor (206) to facilitate timely replenishment of the oil.
Citation Information
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