A warp knitting fabric tension constant winding device and warp knitting machine
By designing a constant tension winding device for warp knitted fabrics, the elastic tensioning component and transmission component provide constant tensioning force. Combined with the traction of the tiling component, the wrinkle problem caused by uneven tensioning force during winding is solved, and the winding quality is improved.
Patent Information
- Application Number
- CN202510024713.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-08
- Publication Date
- 2025-05-06
- Estimated Expiration
- 2045-01-08
AI Technical Summary
During the production process of warp knitted fabrics, the sides are tight and loose in the middle due to uneven tension during winding, which can easily cause wrinkles and affect subsequent use.
A constant type winding device for tensioning force of warp knitted fabric is designed, including a base, an elastic tensioning assembly, a transmission assembly and a tiling assembly. The elastic tensioning assembly provides a constant tensioning force through the second cylindrical spring, the transmission assembly adjusts the position of the elastic tensioning assembly through the abutment structure and the connecting structure, and the flat assembly pulls both sides of the warp knitting fabric through an oblique roller to ensure the flatness and density of the warp knitting fabric during winding.
Through constant tension and traction of the tiling assembly, the wrinkle of warp knitted fabric during rolling is avoided, the density between the layers of warp knitted fabric rolled on the rolling roller is improved, and the quality of the rolling process is ensured.
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Figure CN119409007B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of warp knitted fabric production, in particular to a warp knitted fabric tension-constant winding device and a warp knitting machine. Background Art
[0002] Warp knitted fabrics are suitable for applications that require a smooth appearance and good breathability, such as clothing, household items, and automotive interiors, due to their good stability and stiffness. In addition, they are also suitable for products that require a stable structure, due to their resistance to unraveling and curling.
[0003] In the process of warp knitted fabric production, the completed warp knitted fabric needs to be rolled up in time to facilitate subsequent storage. In order to ensure the tightness between the layers of warp knitted fabric during winding, a certain winding tensioning force needs to be given to the warp knitted fabric. However, although the existence of the winding tensioning force can ensure the tightness of the warp knitted fabric during winding, the warp knitted fabric will be wrinkled along its length when it is pulled along its length. As a result, when rolling up, the side of the warp knitted fabric is in a tight state while the middle position is relatively loose, which is easy to cause wrinkles and affect subsequent use. Summary of the invention
[0004] The object of the present invention is to provide a warp knitted fabric constant tension type winding device and a warp knitting machine to solve the problems raised in the above background technology.
[0005] To achieve the above object, the present invention provides the following technical solutions:
[0006] A warp knitted fabric constant tension type winding device, comprising:
[0007] A base, on which a winding roller is detachably mounted;
[0008] An elastic tensioning assembly is arranged on the base, and the warp knitted fabric passes through the elastic tensioning assembly and is wound on the winding roller;
[0009] A transmission assembly is connected to the elastic tensioning assembly and rolls in contact with the warp knitted fabric wound on the winding roller, the transmission assembly includes an abutment structure and a connection structure, the abutment structure can drive the connection structure to move according to the thickness of the warp knitted fabric wound on the winding roller, so as to switch the position of the elastic tensioning assembly;
[0010] The flattening assembly is arranged on the base, and the flattening assembly can pull the two sides of the warp knitted fabric when the warp knitted fabric is rolled up.
[0011] As a further solution of the present invention: the elastic tensioning assembly comprises a bracket arranged on the base, the bracket is provided with two sets of first horizontal rollers, and two sets of side frames are installed on the side of the bracket, a connecting member is slidably installed on the side frame, and a lower pressure roller parallel to the first horizontal roller is rotatably installed on the connecting member;
[0012] The elastic tensioning assembly also includes a second cylindrical spring connected to the connecting member and the connecting structure, and the second cylindrical spring is used to provide tensioning force to the warp knitted fabric.
[0013] As a further solution of the present invention: the abutment structure comprises two groups of support frames arranged on the base, the support frames are provided with a first slide groove along the length direction thereof, a follower rod is slidably installed in the first slide groove, an abutment roller is rotatably installed on the follower rod, and the abutment roller rolls and fits with the warp knitted fabric wound on the winding roller;
[0014] The abutment structure further includes a first cylindrical spring disposed in the first sliding groove, one end of the first cylindrical spring is connected to the follower rod, and the other end is connected to the inner wall of the first sliding groove.
[0015] As a further solution of the present invention: the connection structure includes:
[0016] A telescopic plate connected to the follower rod, wherein one end of the telescopic plate is provided with a meshing portion;
[0017] A side plate, fixedly mounted on the base, the side plate being connected to the telescopic plate through a slotted shaft structure;
[0018] A drive kit is connected to the side plate, and cooperates with the engagement portion to drive the end of the second column spring away from the connecting piece to move upward when the follower rod moves downward.
[0019] As a further solution of the present invention: the telescopic plate comprises a follower sleeve fixedly connected to the follower rod, the interior of the follower sleeve is a hollow structure, and the telescopic rod is slidably installed in the follower sleeve, one end of the telescopic rod is provided with a rack plate, the rack plate is inclined, and the rack plate forms the meshing portion;
[0020] When the follower rod moves downward, the rack plate can drive the driving kit to move.
[0021] As a further solution of the present invention: the groove shaft structure includes an interlocking shaft rotatably mounted on the telescopic rod and an inclined groove arranged on the side plate, the interlocking shaft can roll in the inclined groove, and the length direction of the inclined groove is parallel to the length direction of the rack plate.
[0022] As a further solution of the present invention: the drive kit includes a gear rotatably mounted on the side plate, the gear is meshed with the rack plate, and the gear is connected to a bevel gear set arranged on the side plate;
[0023] The drive kit also includes a thread adjustment module rotatably mounted on the side frame, two groups of the thread adjustment modules are connected by a second belt, and one group of the thread adjustment modules is connected to the bevel gear set by a first belt.
[0024] As a further solution of the present invention: the threaded adjustment module includes a screw rod rotatably mounted on the side frame, the screw rod is provided with a threaded sleeve threadedly connected thereto, the threaded sleeve is slidably connected to the side frame, the second columnar spring is sleeved on the screw rod, and the end of the second columnar spring away from the connecting piece is connected to the threaded sleeve.
[0025] As a further solution of the present invention: the paving assembly comprises a receiving groove arranged on the bracket, a pressure rod is slidably installed in the receiving groove, and two groups of inclined rollers are symmetrically rotatably installed on the pressure rod;
[0026] A vertical shaft slidably connected to the end of the pressure rod is also installed in the receiving groove, and a third cylindrical spring is sleeved on the vertical shaft, one end of the third cylindrical spring is connected to the pressure rod, and the other end is connected to the inner wall of the receiving groove;
[0027] The paving assembly also includes a second horizontal roller rotatably mounted on the bracket and adapted to the inclined roller.
[0028] A warp knitting machine comprises the warp knitting fabric tension-constant winding device as described above.
[0029] Compared with the prior art, the present invention has the following beneficial effects:
[0030] By setting the elastic tensioning assembly and the elastic force provided by the second cylindrical spring, the tensioning force of the lower pressure roller on the warp knitted fabric is ensured, so that the warp knitted fabric can be wound on the winding roller with a predetermined tensioning force, thereby improving the tightness between the layers of the warp knitted fabric wound on the winding roller, and avoiding the phenomenon that the warp knitted fabric is wrinkled due to looseness during winding;
[0031] By setting the flattening assembly, the inclined roller can rotate with the warp knitted fabric and provide a force to pull the warp knitted fabric toward the side of the warp knitted fabric, so as to achieve the effect of pulling the warp knitted fabric on both sides, so that the warp knitted fabric is smoother when it is wound on the winding roller, further preventing the generation of wrinkles and improving the winding process;
[0032] Through the transmission component that is set up, on the one hand, when the winding roller winds up the warp knitted fabric, it can achieve a certain degree of flattening effect on the warp knitted fabric; on the other hand, when the number of layers of the warp knitted fabric on the winding roller increases and the thickness increases, the abutment roller can change its position in real time, and adjust the height of the second columnar spring through the connecting structure to ensure that as the winding thickness increases and the winding speed increases, the second columnar spring can maintain the original compression amount, and then the second columnar spring can provide a constant tensioning force for the winding of the warp knitted fabric through the pressure roller, thereby ensuring the winding effect of the warp knitted fabric. BRIEF DESCRIPTION OF THE DRAWINGS
[0033] Figure 1 It is a structural schematic diagram of an embodiment of a warp knitted fabric tension-constant winding device;
[0034] Figure 2 for Figure 1 A magnified view of the structure at center A;
[0035] Figure 3 for Figure 1 A magnified view of the structure at B in the middle;
[0036] Figure 4 It is a structural schematic diagram of another angle of an embodiment of a warp knitted fabric constant tension force winding device;
[0037] Figure 5 for Figure 4 A magnified view of the structure at C in the middle;
[0038] Figure 6 It is a structural schematic diagram of the abutment structure in one embodiment of a warp knitted fabric constant tension force winding device;
[0039] Figure 7 It is a structural schematic diagram of an elastic tensioning component and a flattening component in one embodiment of a warp knitted fabric constant tensioning force winding device;
[0040] Figure 8 It is a structural exploded diagram of a thread adjustment module in one embodiment of a warp knitted fabric constant tension force winding device;
[0041] Fig. 9 It is a structural schematic diagram of the connection relationship between the follower plate and the rack plate in one embodiment of a warp knitted fabric constant tension force winding device;
[0042] Fig.10 It is a structural exploded diagram of a slotted shaft set in one embodiment of a warp knitted fabric constant tension force winding device;
[0043] Fig.11 The present invention is a schematic structural diagram of a drive kit in one embodiment of a warp knitted fabric constant tension winding device.
[0044] In the figure: 1. base; 2. support frame; 3. bracket; 301. accommodating groove; 4. winding roller; 5. first slide groove; 6. follower rod; 7. abutment roller; 8. first columnar spring; 9. follower sleeve; 10. telescopic rod; 11. interlocking shaft; 12. rack plate; 13. side plate; 14. inclined groove; 15. gear; 16. bevel gear set; 17. first belt; 18. screw rod; 19. second belt; 20. side frame; 21. threaded sleeve; 22. second columnar spring; 23. connecting piece; 24. pressing roller; 25. first horizontal roller; 26. second horizontal roller; 27. pressure rod; 28. inclined roller; 29. third columnar spring; 30. vertical shaft. DETAILED DESCRIPTION
[0045] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0046] In addition, when an element in the present invention is referred to as being "fixed to" or "disposed on" another element, it may be directly on the other element or there may be a central element. When an element is considered to be "connected to" another element, it may be directly connected to the other element or there may be a central element at the same time. The terms "vertical", "horizontal", "left", "right" and similar expressions used herein are for illustrative purposes only and are not intended to be the only embodiment.
[0047] In an embodiment of the present invention, a warp knitted fabric constant tension winding device comprises: a base 1, an elastic tensioning assembly, a transmission assembly and a flattening assembly, so that on the one hand, when the warp knitted fabric is rolled up by the winding roller, a certain degree of flattening effect can be achieved on the warp knitted fabric, and on the other hand, when the number of layers of the warp knitted fabric on the winding roller increases and the thickness increases, the abutment roller can change its position in real time, and adjust the height of the second column spring through the connecting structure to ensure that the second column spring can ensure the original compression amount when the winding speed increases as the winding thickness increases, so that the second column spring can provide a constant tensioning force for the winding of the warp knitted fabric through the pressing roller, thereby ensuring the winding effect of the warp knitted fabric, as follows:
[0048] See also Figure 1 to Figure 11 , a winding roller 4 is detachably mounted on the base 1;
[0049] The elastic tensioning assembly is arranged on the base 1, and the warp knitted fabric passes through the elastic tensioning assembly and is wound on the winding roller 4. The elastic tensioning assembly includes a bracket 3 arranged on the base 1, and two groups of first horizontal rollers 25 are arranged on the bracket 3, and two groups of side frames 20 are installed on the side of the bracket 3, and a connecting member 23 is slidably installed on the side frame 20, and a lower pressure roller 24 parallel to the first horizontal roller 25 is rotatably installed on the connecting member 23;
[0050] The elastic tensioning assembly further includes a second cylindrical spring 22 connected to the connecting member 23 and the connecting structure, and the second cylindrical spring 22 is used to provide tensioning force to the warp knitted fabric.
[0051] When in use, the weaving machine weaves the warp knitted fabric, and the woven warp knitted fabric is passed around the upper part of the first group of first horizontal rollers 25, and passed around the lower part of the lower pressure roller 24, and then passed around the upper part of the other group of first horizontal rollers 25, and is wound on the winding roller 4 by pulling, and then the driving motor (not shown in the figure) connected to the rotating shaft of the winding roller 4 is controlled to work, so that the winding roller 4 can wind up the warp knitted fabric. In this process, the warp knitted fabric should be controlled to have a predetermined tension, that is, the warp knitted fabric has a force to drive the lower pressure roller 24 to move upward, and the second columnar spring 22 is compressed to a certain extent. The elastic force provided by the second columnar spring 22 ensures the tension of the lower pressure roller 24 on the warp knitted fabric, so that the warp knitted fabric can be wound on the winding roller 4 with a predetermined tension, thereby improving the compactness between the layers of the warp knitted fabric wound on the winding roller 4, and avoiding the warp knitted fabric from wrinkling due to looseness during winding.
[0052] See also Figure 1~Figure 2 , Figure 7 The flattening assembly is arranged on the base 1, and the flattening assembly can pull the two sides of the warp knitted fabric during the process of the warp knitted fabric being rolled up. The flattening assembly includes a receiving groove 301 arranged on the bracket 3, and a pressure rod 27 is slidably installed in the receiving groove 301, and two groups of inclined rollers 28 are symmetrically rotatably installed on the pressure rod 27;
[0053] A vertical shaft 30 slidably connected to the end of the pressure rod 27 is also installed in the receiving groove 301, and a third cylindrical spring 29 is sleeved on the vertical shaft 30, one end of the third cylindrical spring 29 is connected to the pressure rod 27, and the other end is connected to the inner wall of the receiving groove 301;
[0054] The paving assembly further includes a second horizontal roller 26 rotatably mounted on the bracket 3 and adapted to the inclined roller 28 .
[0055] During the process of winding the warp knitted fabric, the warp knitted fabric is in a state of sliding cooperation with the inclined roller 28. At this time, as the winding roller 4 pulls the warp knitted fabric, the warp knitted fabric can slide relative to the inclined roller 28. Specifically, one side of the warp knitted fabric is supported by the second horizontal roller 26, and the other side is pressed by the inclined roller 28, so that when the warp knitted fabric moves, the inclined roller 28 can follow the rotation and provide a force to pull the warp knitted fabric toward the side of the warp knitted fabric, thereby achieving the effect of pulling both sides of the warp knitted fabric, making the warp knitted fabric smoother when wound on the winding roller 4, further preventing the formation of wrinkles and improving the winding process.
[0056] It should be noted that the inclined direction of the inclined roller 28 is: the side of its rotating shaft facing the side of the warp knitted fabric is at the rear side of the direction in which the warp knitted fabric is rolled up compared to the other side, so that when the warp knitted fabric slides relative to the inclined roller 28, a friction separation along the length direction of the warp knitted fabric and a friction component force along the width direction of the warp knitted fabric can be generated. Under the action of the friction component force along the width direction of the warp knitted fabric, the side of the friction component force along the width direction of the warp knitted fabric can be pulled, which has the effect of making the warp knitted fabric flat.
[0057] See also Figure 1 , Figure 6 The transmission assembly is connected to the elastic tensioning assembly and rolls in contact with the warp knitted fabric wound on the winding roller 4. The transmission assembly includes an abutment structure and a connection structure. The abutment structure can drive the connection structure to move according to the thickness of the warp knitted fabric wound on the winding roller 4, so as to switch the position of the elastic tensioning assembly.
[0058] The abutment structure comprises two groups of support frames 2 arranged on the base 1, the support frames 2 are provided with first slide grooves 5 along the length direction thereof, a follower rod 6 is slidably installed in the first slide groove 5, an abutment roller 7 is rotatably installed on the follower rod 6, and the abutment roller 7 is rollingly fitted with the warp knitted fabric wound on the winding roller 4;
[0059] The abutment structure further includes a first cylindrical spring 8 disposed in the first sliding groove 5 , one end of the first cylindrical spring 8 is connected to the follower rod 6 , and the other end of the first cylindrical spring 8 is connected to the inner wall of the first sliding groove 5 .
[0060] Furthermore, in the initial state, the first column spring 8 is in a stretched state. At this time, the first column spring 8 has a force to pull the follower rod 6 to move upward, so that the contact roller 7 can fit the warp knitted fabric wound on the winding roller 4. On the one hand, when the winding roller 4 winds up the warp knitted fabric, it can achieve a certain degree of flattening effect on the warp knitted fabric. On the other hand, when the number of layers of the warp knitted fabric on the winding roller 4 increases and the thickness increases, the contact roller 7 can change its position in real time and adjust the height of the second column spring 22 through the connecting structure to ensure that as the winding thickness increases and the winding speed increases, the second column spring 22 can maintain the original compression amount, so that the second column spring 22 can provide a constant tensioning force for the winding of the warp knitted fabric through the pressure roller 24, thereby ensuring the winding effect of the warp knitted fabric.
[0061] See also Figure 5 , Figure 9~Figure 10 The connection structure includes: a telescopic plate, a side plate 13 and a driving kit.
[0062] The telescopic plate is connected to the follower rod 6, and a meshing portion is provided at one end of the telescopic plate. The telescopic plate includes a follower sleeve 9 fixedly connected to the follower rod 6, and the interior of the follower sleeve 9 is a hollow structure, and a telescopic rod 10 is slidably installed in the follower sleeve 9, and a rack plate 12 is provided at one end of the telescopic rod 10, and the rack plate 12 is inclined, and the rack plate 12 forms the meshing portion;
[0063] When the follower rod 6 moves downward, the rack plate 12 can drive the driving kit to move;
[0064] The side plate 13 is fixedly mounted on the base 1, and the side plate 13 is connected to the telescopic plate through a slot shaft structure, and the slot shaft structure includes an engaging shaft 11 rotatably mounted on the telescopic rod 10 and an inclined groove 14 arranged on the side plate 13, and the engaging shaft 11 can roll in the inclined groove 14, and the length direction of the inclined groove 14 is parallel to the length direction of the rack plate 12.
[0065] In the initial state, the follower rod 6 is at the highest point of its stroke. At this time, the engaging shaft 11 is at the upper end of the inclined groove 14, and the gear 15 is in meshing with the rack plate 12. As the winding roller 4 rotates and the warp knitted fabric is wound, the thickness of the warp knitted fabric wound on the winding roller 4 will increase. At this time, the abutment roller 7 will move downward and drive the follower rod 6 to move downward. During this process, the follower rod 6 drives the telescopic rod 10 to move downward through the follower sleeve 9, and enables the engaging shaft 11 to move along the length direction of the inclined groove 14. At this time, the rack plate 12 can move along its length direction, while maintaining meshing with the gear 15, causing the gear 15 to rotate, thereby driving the drive kit to operate, thereby increasing the position of the second column spring 22, so that the second column spring 22 maintains a constant degree of compression, and achieves the effect of keeping the warp knitted fabric winding tension constant.
[0066] It should be noted that the drive kit mainly adjusts the position of the second cylindrical spring 22 in the form of threaded transmission, and if the rack plate 12 is directly connected to the follower rod 6, considering the effective descending amount of the follower rod 6, the gear 15 is required to drive the drive kit to move through a relatively large belt transmission structure. At this time, the torque required for the rotation of the gear 15 is very large, which increases the resistance to the descent of the abutment roller 7, which can easily cause the abutment roller 7 to further squeeze the warp knitted fabric wound on the winding roller 4, causing the warp knitted fabric to deform. Through the above-mentioned arrangement, the downward movement of the follower rod 6 is converted into the lateral movement of the telescopic rod 10, thereby effectively reducing the resistance to the downward movement of the abutment roller 7 and preventing the warp knitted fabric from being compressed and deformed. At the same time, the gear 15 can generate a sufficient number of rotations to drive the drive kit to move.
[0067] See also Figure 3 , Figure 7 , Figure 8 , Fig.11 The driving kit is connected to the side plate 13, and the driving kit cooperates with the meshing portion to drive the end of the second cylindrical spring 22 away from the connecting member 23 to move upward when the follower rod 6 moves downward;
[0068] The driving kit includes a gear 15 rotatably mounted on the side plate 13, the gear 15 is meshed with the rack plate 12, and the gear 15 is connected to a bevel gear set 16 disposed on the side plate 13;
[0069] The drive kit also includes a threaded adjustment module rotatably mounted on the side frame 20, two groups of the threaded adjustment modules are connected by a second belt 19, and one group of the threaded adjustment modules is connected to the bevel gear set 16 by a first belt 17, the threaded adjustment module includes a screw rod 18 rotatably mounted on the side frame 20, the screw rod 18 is provided with a threaded sleeve 21 threadedly connected thereto, the threaded sleeve 21 is slidably connected to the side frame 20, the second columnar spring 22 is sleeved on the screw rod 18, and the end of the second columnar spring 22 away from the connecting member 23 is connected to the threaded sleeve 21.
[0070] When the gear 15 rotates, the screw rod 18 can be driven to rotate through the bevel gear set 16 and the second belt 19, so that the threaded sleeve 21 that is threadedly matched with the screw rod 18 and slidingly connected to the side frame 20 can move along the length direction of the screw rod 18. Specifically, when the follower rod 6 moves downward, the threaded sleeve 21 can move upward, thereby causing the second columnar spring 22 to move upward, so that the second columnar spring 22 can maintain a constant compression amount, and then the lower pressure roller 24 acts on the warp knitted fabric to make the tensioning force of the warp knitted fabric constant, thereby improving the winding effect of the warp knitted fabric.
[0071] As an embodiment of the present invention, a warp knitting machine is also proposed, comprising the warp knitted fabric constant tension force winding device.
[0072] It will be apparent to those skilled in the art that the invention is not limited to the details of the exemplary embodiments described above and that the invention can be implemented in other specific forms without departing from the spirit or essential features of the invention. Therefore, the embodiments should be considered exemplary and non-limiting in all respects, and the scope of the invention is defined by the appended claims rather than the foregoing description, and it is intended that all variations falling within the meaning and scope of the equivalent elements of the claims be included in the invention. Any reference numeral in a claim should not be considered as limiting the claim to which it relates.
[0073] In addition, it should be understood that although the present specification is described according to implementation modes, not every implementation mode contains only one independent technical solution. This description of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment may also be appropriately combined to form other implementation modes that can be understood by those skilled in the art.
Claims
1. A warp knitted fabric constant tension winding device, characterized in that: include: A base (1), wherein a winding roller (4) is detachably mounted on the base (1); An elastic tensioning assembly is arranged on the base (1), and the warp knitted fabric passes through the elastic tensioning assembly and is wound on a winding roller (4); a transmission assembly connected to the elastic tension assembly and rollingly fitted with the warp knitted fabric wound on the winding roller (4); the transmission assembly comprising an abutment structure and a connection structure; the abutment structure can drive the connection structure to move according to the thickness of the warp knitted fabric wound on the winding roller (4), so as to switch the position of the elastic tension assembly; A flattening assembly is arranged on the base (1), and the flattening assembly can pull both sides of the warp knitted fabric when the warp knitted fabric is rolled up; The elastic tensioning assembly comprises a bracket (3) arranged on the base (1), two groups of first horizontal rollers (25) being arranged on the bracket (3), and two groups of side frames (20) being installed on the sides of the bracket (3), a connecting member (23) being slidably installed on the side frames (20), and a lower pressure roller (24) parallel to the first horizontal roller (25) being rotatably installed on the connecting member (23); The elastic tensioning assembly further comprises a second cylindrical spring (22) connected to the connecting member (23) and the connecting structure, wherein the second cylindrical spring (22) is used to provide tensioning force to the warp knitted fabric; The height of the second columnar spring (22) is adjusted by the connection structure so that the second columnar spring (22) can provide a constant tensioning force for the winding of the warp knitted fabric through the downward pressure roller (24), the abutment structure comprising two groups of support frames (2) arranged on the base (1), the support frames (2) being provided with a first slide groove (5) along the length direction thereof, a follower rod (6) being slidably mounted in the first slide groove (5), an abutment roller (7) being rotatably mounted on the follower rod (6), the abutment roller (7) being rollingly fitted with the warp knitted fabric wound on the winding roller (4); The abutment structure further comprises a first cylindrical spring (8) arranged in the first slide groove (5), one end of the first cylindrical spring (8) being connected to the follower rod (6), and the other end being connected to the inner wall of the first slide groove (5), and the connection structure comprising: a telescopic plate connected to the follower rod (6), one end of the telescopic plate being provided with a meshing portion; A side plate (13) is fixedly mounted on the base (1), and the side plate (13) is connected to the telescopic plate via a slotted shaft structure; A drive kit is connected to the side plate (13), and the drive kit cooperates with the meshing portion to drive the end of the second column spring (22) away from the connecting member (23) to move upward when the follower rod (6) moves downward.
2. A warp knitted fabric constant tension winding device according to claim 1, characterized in that: The telescopic plate comprises a follower sleeve (9) fixedly connected to the follower rod (6), the interior of the follower sleeve (9) is a hollow structure, and a telescopic rod (10) is slidably mounted in the follower sleeve (9), a rack plate (12) is arranged at one end of the telescopic rod (10), the rack plate (12) is arranged in an inclined manner, and the rack plate (12) forms the meshing portion; When the follower rod (6) moves downward, the rack plate (12) can drive the drive kit to move.
3. A warp knitted fabric constant tension winding device according to claim 2, characterized in that: The grooved shaft structure comprises an engaging shaft (11) rotatably mounted on the telescopic rod (10) and an inclined groove (14) provided on the side plate (13); the engaging shaft (11) is capable of rolling in the inclined groove (14); and the length direction of the inclined groove (14) is parallel to the length direction of the rack plate (12).
4. A warp knitted fabric constant tension winding device according to claim 3, characterized in that: The drive kit comprises a gear (15) rotatably mounted on the side plate (13), the gear (15) meshing with the rack plate (12), and the gear (15) is connected to a bevel gear set (16) arranged on the side plate (13); The drive kit also includes a thread adjustment module rotatably mounted on the side frame (20), two groups of the thread adjustment modules are connected via a second belt (19), and one group of the thread adjustment modules is connected to the bevel gear set (16) via a first belt (17).
5. A warp knitted fabric constant tension winding device according to claim 4, characterized in that: The threaded adjustment module comprises a screw rod (18) rotatably mounted on the side frame (20); the screw rod (18) is provided with a threaded sleeve (21) threadedly connected thereto; the threaded sleeve (21) is slidably connected to the side frame (20); the second columnar spring (22) is sleeved on the screw rod (18), and one end of the second columnar spring (22) away from the connecting member (23) is connected to the threaded sleeve (21).
6. The warp knitted fabric constant tension winding device according to claim 1, characterized in that: The paving assembly comprises a receiving groove (301) arranged on the bracket (3), a pressure rod (27) is slidably mounted in the receiving groove (301), and two groups of inclined rollers (28) are symmetrically rotatably mounted on the pressure rod (27); A vertical shaft (30) slidably connected to the end of the pressure rod (27) is also installed in the accommodating groove (301), and a third columnar spring (29) is sleeved on the vertical shaft (30), one end of the third columnar spring (29) is connected to the pressure rod (27), and the other end is connected to the inner wall of the accommodating groove (301); The paving assembly further comprises a second horizontal roller (26) rotatably mounted on the bracket (3) and adapted to the inclined roller (28).
7. A warp knitting machine, characterized in that: It comprises a warp knitted fabric constant tension winding device as described in any one of claims 1 to 6.
Citation Information
Patent Citations
Film winding device and film winding method
CN117104948A
Textile fiber warp knitting device
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Fabric winding device of textile machinery
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