Biodegradable dustproof net weaving transverse movement driving mechanism
By designing the push-up component and the recovery unit, the structure of the biodegradable dustproof net weaving transverse drive mechanism is simplified, solving the problems of unstable operation and high cost in the existing technology, and realizing an efficient and low-cost weaving process.
Patent Information
- Application Number
- CN202423278471.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-30
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2034-12-30
AI Technical Summary
Existing transverse drive mechanisms suffer from poor operational stability, complex structure, and high usage and maintenance costs, making it difficult to meet actual production needs.
The push assembly drives the top wheel to push the warp and weft drive plates laterally. The return unit drives the drive plates to return to their original position. Lateral swing is achieved by the clearance port and the bending of the push rod. Combined with the transverse motor and cam to drive the drive plates to move laterally, the structure is simplified and the operation is stable.
This process achieves operational stability and cost-effectiveness in the weaving of biodegradable dustproof nets, reduces usage and maintenance costs, and improves production efficiency.
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Figure CN223688543U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to drive mechanism technical field, specifically is a kind of biodegradable dust screen weaving horizontal displacement drive mechanism. BACKGROUND
[0002] In actual production process, biodegradable warp and weft are interwoven by weaving equipment to produce biodegradable dust screen, so as to quickly and batch produce biodegradable dust screen.In weaving process, generally, warp combing block and weft combing block are installed on warp driving plate and weft driving plate respectively, warp driving plate and weft driving plate are driven to move horizontally reciprocating by horizontal displacement drive mechanism, and swing drive mechanism drives warp driving plate and weft driving plate to swing laterally reciprocating, then line needle is used to complete the weaving of dust screen.The existing horizontal displacement drive mechanism has complex structure, poor running stability, high investment and maintenance cost, and is difficult to meet the actual use requirement. UTILITY MODEL CONTENTS
[0003] The utility model discloses a kind of biodegradable dust screen weaving horizontal displacement drive mechanism, the biodegradable dust screen weaving horizontal displacement drive mechanism can be driven by two top wheels by top pushing component horizontal top pushing warp driving plate and weft driving plate, after horizontal displacement, warp driving plate or weft driving plate after horizontal displacement can be moved back by recovery unit again, and since the caliber of the let-in mouth is greater than the diameter of the butt joint rod, when swing arm drives warp driving plate and weft driving plate to swing laterally, top rod connected with installation cylinder can be bent to angle relative to butt joint rod to realize warp driving plate and weft driving plate to swing laterally, structure is ingenious, running is stable, and use cost is lower.
[0004] To achieve the above object, the utility model uses the following technical scheme:
[0005] The application discloses a biodegradable dustproof net weaving transverse movement driving mechanism, which comprises a pushing assembly, two pushing units and two restoring units; the pushing unit comprises a sliding block, a top wheel, a butt joint rod, a mounting cylinder and a top rod; the lower end of the sliding block is slidably arranged on a rack; the top wheel is rotatably arranged at one end of the sliding block; one end of the butt joint rod is threadedly connected with the sliding block away from the top wheel, and the other end of the butt joint rod is fixedly provided with a butt joint ball; one end of the top rod is threadedly connected with the inner cavity of the mounting cylinder, the end of the top rod is provided with a ball cavity in cooperation with the inner part of the mounting cylinder, and the butt joint ball is rotatably arranged in the ball cavity; the outer side of the mounting cylinder is provided with a clearance opening, the butt joint rod is outwardly threaded out of the clearance opening, and the diameter of the clearance opening is larger than the diameter of the butt joint rod; one end of the top rod is fixedly connected with a warp driving plate, and the other end of the top rod is fixedly connected with a weft driving plate; the warp driving plate and the weft driving plate are slidably arranged on a swing arm respectively; the pushing assembly is arranged on one side of the pushing unit, and the warp driving plate and the weft driving plate are driven to move transversely by the transverse reciprocating pushing of the pushing assembly through the pushing assembly; one of the restoring units is connected with the warp driving plate, and the other restoring unit is connected with the weft driving plate, and the warp driving plate or the weft driving plate after transverse movement is driven to restore through the restoring unit.
[0006] Further, the pushing assembly comprises a transverse movement motor, a warp cam and a weft cam; the transverse movement motor is fixed on the rack; the warp cam and the weft cam are respectively sleeved and fixed on the output shaft of the transverse movement motor; the outer edge of the warp cam abuts against the top wheel corresponding to the warp driving plate, and the outer edge of the weft cam abuts against the top wheel corresponding to the weft driving plate, so that the warp driving plate and the weft driving plate are driven to move transversely by the rotation of the warp cam and the weft cam respectively.
[0007] Further, the outer edge of the warp cam is circumferentially and intervaliy provided with a plurality of first grooves, and the outer edge of the weft cam is circumferentially and intervaliy provided with a plurality of second grooves; the depth of the first grooves is smaller than that of the second grooves.
[0008] Further, the restoring unit comprises a restoring spring, a rotating sleeve and a pull rope arranged along the transverse movement direction of the warp driving plate or the weft driving plate; the rotating sleeve is rotatably arranged on the rack; the outer wall of the rotating sleeve is respectively provided with a first mounting block and a second mounting block; one end of the restoring spring is fixedly connected with the rack, and the other end of the restoring spring is fixedly connected with the first mounting block; one end of the pull rope is fixedly connected with the second mounting block, the other end of one of the pull ropes is fixedly connected with the warp driving plate, and the other end of the other pull rope is fixedly connected with the weft driving plate, so that the warp driving plate or the weft driving plate after transverse movement is driven to restore by the pulling force of the restoring spring.
[0009] Further, the swing arm is respectively slidably provided with two guide rods; one end of the guide rod is fixedly connected with the warp driving plate, and the other end of the guide rod is fixedly connected with the weft driving plate.
[0010] Further, the sliding block is provided with a locking bolt, and the abutting rod is provided with a locking groove near one end of the sliding block; the locking bolt is in threaded connection with the sliding block and is tightly embedded in the locking groove.
[0011] After the technical scheme is adopted, the biological degradable dustproof net weaving transverse driving mechanism has the following beneficial effects:
[0012] 1. The biological degradable dustproof net weaving transverse driving mechanism can drive the warp driving plate and the weft driving plate to transversely move through the pushing assembly, and can drive the transversely moved warp driving plate or weft driving plate to move back after transverse movement through the recovery unit; and since the caliber of the gap is larger than the diameter of the abutting rod, the push rod connected with the mounting cylinder can be bent to the side to realize lateral swinging of the warp driving plate and the weft driving plate, so that the structure is ingenious, the operation is stable, and the use cost is low.
[0013] 2. The biological degradable dustproof net weaving transverse driving mechanism can rotate the warp cam and the weft cam through the same transverse motor to drive the warp driving plate and the weft driving plate to transversely move, respectively; and the depth of the first groove is smaller than the depth of the second groove, so that the transverse movement distance of the warp driving plate is smaller than the transverse movement distance of the weft driving plate.
[0014] 3. The biological degradable dustproof net weaving transverse driving mechanism can drive the transversely moved warp driving plate and weft driving plate to move back through the pulling force of the two recovery springs, respectively. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 It is a three-dimensional structure schematic view of the biological degradable dustproof net weaving transverse driving mechanism.
[0016] Figure 2 It is a partial structure schematic view of the pushing assembly, the pushing unit and the recovery unit of the biological degradable dustproof net weaving transverse driving mechanism.
[0017] Figure 3 It is a partial sectional structure schematic view of the abutting rod, the mounting cylinder and the push rod connection of the biological degradable dustproof net weaving transverse driving mechanism.
[0018] In the drawing, the reference signs are represented as:
[0019] 1, push assembly; 10, transverse moving motor; 11, warp cam; 110, first groove; 12, weft cam; 120, second groove; 2, push unit; 20, sliding block; 200, locking bolt; 21, top wheel; 22, butt joint rod; 220, butt joint ball; 221, locking groove; 23, mounting cylinder; 230, clearance; 24, push rod; 3, recovery unit; 30, recovery spring; 31, rotating sleeve; 310, first mounting block; 311, second mounting block; 32, pull rope; 4, warp drive plate; 5, weft drive plate; 6, swing arm; 60, guide rod. DETAILED DESCRIPTION
[0020] In order to make the purpose, technical scheme and advantages of the utility model clearer, the utility model is further described in detail below in combination with the drawings and examples. It should be understood that the specific examples described herein are only used to explain the utility model and not to limit the utility model.
[0021] Please refer to Figures 1 to 3 A biodegradable dustproof net weaving transverse moving driving mechanism, comprising a push assembly 1, two push units 2 and two recovery units 3. The push unit 2 comprises a sliding block 20, a top wheel 21, a butt joint rod 22, a mounting cylinder 23 and a push rod 24. The lower end of the sliding block 20 is slidingly arranged on a rack. The top wheel 21 is rotatably arranged at one end of the sliding block 20. One end of the butt joint rod 22 is threadedly connected with the sliding block 20 away from the top wheel 21, and the other end of the butt joint rod 22 is fixedly provided with a butt joint ball 220. One end of the push rod 24 is threadedly connected with the inner cavity of the mounting cylinder 23, and the end of the push rod 24 and the inside of the mounting cylinder 23 form a ball cavity, and the butt joint ball 220 is rotatably arranged in the ball cavity. The mounting cylinder 23 is provided with a clearance 230 on the outside, and the butt joint rod 22 penetrates out of the clearance 230, and the caliber of the clearance 230 is larger than the diameter of the butt joint rod 22. The other end of one of the push rods 24 is fixedly connected with a warp drive plate 4, and the other end of the other push rod 24 is fixedly connected with a weft drive plate 5. The warp drive plate 4 and the weft drive plate 5 are slidingly arranged on a swing arm 6 respectively. The push assembly 1 is arranged on one side of the push unit 2, and the two top wheels 21 are driven to move transversely by the push assembly 1 reciprocatingly pushing the warp drive plate 4 and the weft drive plate 5 respectively. One of the recovery units 3 is connected with the warp drive plate 4, and the other recovery unit 3 is connected with the weft drive plate 5, and the warp drive plate 4 or the weft drive plate 5 after transverse movement is driven to recover by the recovery unit 3.
[0022] As Figures 1 to 2As shown, the pushing assembly 1 includes a transverse motor 10, a warp cam 11, and a weft cam 12; the transverse motor 10 is fixed on the frame; the warp cam 11 and the weft cam 12 are respectively sleeved and fixed on the output shaft of the transverse motor 10; the outer edge of the warp cam 11 abuts against the top wheel 21 corresponding to the warp drive plate 4, and the outer edge of the weft cam 12 abuts against the top wheel 21 corresponding to the weft drive plate 5. The rotation of the warp cam 11 and the weft cam 12 drives the warp drive plate 4 and the weft drive plate 5 to move laterally, respectively.
[0023] like Figures 1 to 2 As shown, the outer edge of the warp cam 11 is provided with a plurality of first grooves 110 spaced apart, and the outer edge of the weft cam 12 is provided with a plurality of second grooves 120 spaced apart; the depth of the first grooves 110 is less than the depth of the second grooves 120.
[0024] like Figures 1 to 2 As shown, the return unit 3 includes a return spring 30, a rotating sleeve 31, and a pull rope 32 arranged along the transverse direction of the warp drive plate 4 or the weft drive plate 5. The rotating sleeve 31 is rotatably mounted on the frame. The outer wall of the rotating sleeve 31 is respectively provided with a first mounting block 310 and a second mounting block 311. One end of the return spring 30 is fixedly connected to the frame, and the other end of the return spring 30 is fixedly connected to the first mounting block 310. One end of the pull rope 32 is fixedly connected to the second mounting block 311. The other end of one pull rope 32 is fixedly connected to the warp drive plate 4, and the other end of the pull rope 32 is fixedly connected to the weft drive plate 5. The pull force of the return spring 30 drives the transversely moved warp drive plate 4 or weft drive plate 5 to return.
[0025] like Figure 1 As shown, two guide rods 60 are slidably passed through the swing arm 6; one end of the guide rod 60 is fixedly connected to the warp drive plate 4, and the other end of the guide rod 60 is fixedly connected to the weft drive plate 5.
[0026] like Figures 1 to 2 As shown, a locking bolt 200 is provided on the slider 20, and a locking groove 221 is provided on the end of the connecting rod 22 near the slider 20; the locking bolt 200 is threadedly connected to the slider 20 and its inner end is tightly embedded in the locking groove 221.
[0027] It can be understood that "multiple" in the present disclosure refers to two or more, and other quantifiers are similar. The association relationship of "and / or" describing the associated objects means that there can be three relationships, for example, A and / or B can represent three cases of A existing alone, A and B existing together, and B existing alone. The character " / " generally represents that the associated objects before and after it are in an "or" relationship. The singular forms "a", "said" and "the" are also intended to include the plural forms, unless the context clearly indicates otherwise.
[0028] It can be further understood that the terms "first", "second", and the like are used to describe various information, but these information should not be limited to these terms. These terms are only used to distinguish the same type of information from each other, and do not indicate a particular order or importance. In fact, the expressions of "first", "second", and the like can be completely interchangeable. For example, the first information can also be referred to as the second information, and similarly, the second information can also be referred to as the first information without departing from the scope of the present disclosure.
[0029] It can be further understood that the terms "center", "longitudinal", "transverse", "front", "back", "up", "down", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the embodiments and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation.
[0030] It can be further understood that, unless otherwise specified, "connection" includes direct connection between the two without other components, and also includes indirect connection between the two with other elements.
[0031] It can be further understood that although the operations are described in a specific order in the embodiments of the present disclosure in the drawings, it should not be understood as requiring the operations to be performed in the specific order shown or in a serial order, or requiring all the operations to be performed to obtain the desired results. In a particular environment, multitasking and parallel processing can be advantageous.
[0032] Other embodiments of the present disclosure will be readily apparent to those skilled in the art upon considering the specification and practice of the utility model disclosed herein. The present application is intended to cover any variations, uses, or adaptive changes of the present disclosure that follow the general principles of the present disclosure and include common knowledge or conventional techniques in the art that are not disclosed by the present disclosure. The specification and examples are only considered as exemplary, and the true scope and spirit of the present disclosure are indicated by the following claims.
[0033] The above merely describes a preferred embodiment of the present application, and the protection scope of the present application is not limited thereto, and any person skilled in the art can easily think of changes or replacements within the technical scope disclosed by the present application, which should be covered within the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.
Claims
1. A biodegradable dust screen woven traverse drive mechanism characterized by: The application relates to a pushing assembly (1), two pushing units (2) and two returning units (3); the pushing unit (2) comprises a sliding block (20), a top wheel (21), a butt joint rod (22), a mounting cylinder (23) and a top rod (24); the lower end of the sliding block (20) is slidably arranged on a rack; the top wheel (21) is rotatably arranged at one end of the sliding block (20); one end of the butt joint rod (22) is threadedly connected with the sliding block (20) away from the top wheel (21), and the other end of the butt joint rod (22) is fixed with a butt joint ball (220); one end of the top rod (24) is threadedly connected with the inner cavity of the mounting cylinder (23), the end of the top rod (24) and the inner part of the mounting cylinder (23) form a ball cavity, and the butt joint ball (220) is rotatably arranged in the ball cavity; the mounting cylinder (23) is provided with a clearance (230) on the outside, the butt joint rod (22) penetrates outwards from the clearance (230), and the caliber of the clearance (230) is larger than the diameter of the butt joint rod (22); one end of one of the top rods (24) is fixedly connected with a warp driving plate (4), and the other end of the other top rod (24) is fixedly connected with a weft driving plate (5); the warp driving plate (4) and the weft driving plate (5) are slidably arranged on a swing arm (6); the pushing assembly (1) is arranged on one side of the pushing unit (2), the two top wheels (21) are driven to move laterally by the pushing assembly (1) reciprocating pushing from the side, and the warp driving plate (4) and the weft driving plate (5) are driven to move laterally; one of the returning units (3) is connected with the warp driving plate (4), and the other returning unit (3) is connected with the weft driving plate (5), and the warp driving plate (4) or the weft driving plate (5) after lateral movement is driven to return by the returning unit (3).
2. A biodegradable dust screen weaving traverse drive mechanism as claimed in claim 1, characterized in that: The pushing assembly (1) comprises a lateral movement motor (10), a warp cam (11) and a weft cam (12); the lateral movement motor (10) is fixed on the rack; the warp cam (11) and the weft cam (12) are respectively sleeved and fixed on the output shaft of the lateral movement motor (10); the outer edge of the warp cam (11) abuts against the top wheel (21) corresponding to the warp driving plate (4), the outer edge of the weft cam (12) abuts against the top wheel (21) corresponding to the weft driving plate (5), and the warp driving plate (4) and the weft driving plate (5) are driven to move laterally by the rotation of the warp cam (11) and the weft cam (12) respectively.
3. A biodegradable dust screen weaving traverse drive mechanism as claimed in claim 2, wherein: The outer edge of the warp cam (11) is circumferentially and intervaliy provided with a plurality of first grooves (110), and the outer edge of the weft cam (12) is circumferentially and intervaliy provided with a plurality of second grooves (120); the depth of the first grooves (110) is smaller than the depth of the second grooves (120).
4. A biodegradable dust screen weaving traverse drive mechanism as claimed in claim 1, wherein: The reply unit (3) comprises a reply spring (30), a rotating sleeve (31) and a pull rope (32) arranged along the transverse direction of the warp driving plate (4) or the weft driving plate (5); the rotating sleeve (31) is rotationally arranged on a frame; the outer wall of the rotating sleeve (31) is respectively provided with a first mounting block (310) and a second mounting block (311); one end of the reply spring (30) is fixedly connected with the frame, and the other end of the reply spring (30) is fixedly connected with the first mounting block (310); one end of the pull rope (32) is fixedly connected with the second mounting block (311), one end of one of the pull ropes (32) is fixedly connected with the warp driving plate (4), and the other end of the other pull rope (32) is fixedly connected with the weft driving plate (5); the warp driving plate (4) or the weft driving plate (5) after transverse movement is driven to be recovered by the pulling force of the reply spring (30).
5. A biodegradable dust screen weaving traverse drive mechanism as claimed in claim 1, wherein: Two guide rods (60) are respectively slidably arranged on the swing arm (6); one end of one of the guide rods (60) is fixedly connected with the warp driving plate (4), and one end of the other guide rod (60) is fixedly connected with the weft driving plate (5).
6. A biodegradable dust screen weaving traverse drive mechanism as claimed in claim 1, wherein: A locking bolt (200) is arranged on the sliding block (20), and a locking groove (221) is arranged on the end of the abutting rod (22) close to the sliding block (20); the locking bolt (200) is threadedly connected with the sliding block (20) and is tightly embedded in the locking groove (221).