Rope grabbing mechanism of stringing machine
By designing a brand-new rope-grabbing mechanism for the rope threading machine, and utilizing a large fixed ring, a small fixed ring, and a wind-powered mechanism to clean rope debris and dust, the problems of mechanism blockage and inconvenience of telescopic guns have been solved, achieving stable operation and aesthetically pleasing and convenient use of the device.
Patent Information
- Application Number
- CN202520424976.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-12
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2035-03-12
AI Technical Summary
Existing rope threading machines' rope-grabbing mechanisms tend to accumulate rope debris and dust after long-term use, leading to blockages or abnormal friction. Additionally, telescopic guns are unsightly and inconvenient to handle after use.
A rope-grabbing mechanism for a rope threading machine was designed, comprising an operation box, an expansion disc, an expansion mechanism, and a cleaning mechanism. It uses a combination of a large fixed ring and a small fixed ring, combined with a wind-powered mechanism and a slag storage box. The wind power is controlled by a threaded slider to clean debris inside the threaded sleeve, and the telescopic gun can be easily retrieved by a spring clip.
It effectively cleans debris from inside the thread sleeve, prevents blockage, extends the service life of the device, and makes the telescopic gun easier and more aesthetically pleasing to handle.
Smart Images

Figure CN223873347U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a rope threading machine technical field, concretely is a kind of rope threading machine rope grabbing mechanism. BACKGROUND
[0002] In the production of trousers, often need to pass through the rope threading machine to be passed through the belt groove of the waist of trousers to speed up production progress, under the production pressure of larger, can also be successfully completed work.
[0003] The existing rope threading machine rope grabbing mechanism has the following shortcomings:
[0004] 1. The existing rope threading machine rope grabbing mechanism, rope belt debris, dust is easy to accumulate in the rope grabbing device inside after long-term use, cause mechanism jam or abnormal friction.
[0005] 2. In addition, retractable gun generally needs to be fixed with tape after use, not beautiful at the same time, and it is not convenient to take.
[0006] Therefore, a solution is needed. UTILITY MODEL CONTENT
[0007] In view of the deficiencies of the prior art, the utility model provides a kind of rope threading machine rope grabbing mechanism to solve the problems raised in the above background art.
[0008] To achieve the above object, the utility model is realized by the following technical schemes:
[0009] A kind of rope threading machine rope grabbing mechanism, characterized by: including work tank, expansion disc, expansion mechanism and operating mechanism, the expansion disc is set on the top of the side wall of the work tank, the expansion mechanism is set in the bottom of the expansion disc, the operating mechanism is set on the top of the work tank;
[0010] The operating mechanism includes operating tank, dust screen, line hole, control panel, energy transmission plate, cleaning mechanism, motor, upper rotary rod, reel, lower rotary rod, fixed bearing, threading, slag storage tank, a plurality of fixed table one, large fixed ring, fixed table two, small fixed ring, silk cover, telescopic gun and spring clamp, the operating tank is rectangular parallelepiped structure, the dust screen is set on the side wall of the operating tank, the line hole is set in the left end of the operating tank, the control panel is set on the left end inner wall in the operating tank, the energy transmission plate is set on the right top of the control panel, the cleaning mechanism is set in the right end of the control panel, the motor is set in the right top of the operating tank, the upper rotary rod and lower rotary rod are set in the bottom of the motor in up-down structure, the reel is set between the upper rotary rod and lower rotary rod.
[0011] Preferably, the fixed bearing is arranged at the bottom of the lower rotating rod and at the bottom of the operation box, the wire winding is arranged inside the reel and horizontally extends to the left, the slag storage box is arranged at the bottom of the wire and at the center of the bottom of the operation box, a plurality of the first fixed tables are arranged at the left of the slag storage box in a left-right structure, the large fixed ring is arranged at the top of each of the first fixed tables, the second fixed table is arranged at the right of the slag storage box, the small fixed ring is arranged at the top of the second fixed table and wraps the wire, the wire sleeve is arranged on the wire and wrapped by the large fixed ring, the wire sleeve extends outward through the wire hole to the left, the telescopic gun is arranged at the outer end of the wire sleeve, and the spring clamp is arranged at the back of the telescopic gun.
[0012] Preferably, the top of the expansion disc is provided with a clamping groove, and the clamping groove is concave at the top of the expansion disc.
[0013] Preferably, the cleaning mechanism comprises a power transmission belt one, a power transmission belt two, a control box, an extension plate, a power transmission line, a sliding groove, a threaded sliding block, a fixed plate and a wind power mechanism, the power transmission belt one and the power transmission belt two are arranged at the right of the control plate in an up-down structure, the control box is arranged at the bottom of the power transmission belt one and at the right end of the power transmission belt two, the extension plate is arranged above the right of the control box, the power transmission line is arranged inside the extension plate and extends outward through the extension plate, the sliding groove is arranged inside the control box, the threaded sliding block is arranged on the sliding groove, the fixed plate is arranged at the front end of the threaded sliding block, and the wind power mechanism is arranged at the bottom of the fixed plate.
[0014] Preferably, the threaded sliding block and the fixed plate are integrally formed, and the wind power mechanism wraps the wire.
[0015] Preferably, the wind power mechanism comprises a wind collecting head, a wind distribution plate, a steering cylinder and a wind cylinder, the wind collecting head, the wind distribution plate, the steering cylinder and the wind cylinder are arranged in sequence from left to right, and the wind collecting head, the wind distribution plate, the steering cylinder and the wind cylinder are integrally formed.
[0016] Preferably, the wind collecting head comprises a first wire slot and a plurality of wind slots, the first wire slot is arranged through the middle of the interior of the wind collecting head, and the plurality of wind slots are arranged through the interior of the wind collecting head uniformly around the first wire slot; the air distribution plate comprises a plurality of air holes, an air distribution slot, a limiting ring and a second wire slot, the plurality of air holes are arranged on the left end sidewall of the air distribution plate corresponding to the position of each wind slot, the air distribution slot is arranged at the right end of the air hole, the limiting ring is arranged in the interior of the air distribution slot, and the second wire slot is arranged in the interior of the limiting ring; the turning cylinder is in a hollow obtuse angle structure; the air cylinder comprises a fixing frame, a powerful fan and a third wire slot, the fixing frame is inclined to the direction of the turning cylinder as a whole, the fixing frame is arranged at the right end of the air cylinder, the powerful fan is arranged at the left end of the fixing frame, and the third wire slot is arranged through the right end outer wall below the air cylinder.
[0017] The utility model provides a kind of rope threading machine rope grabbing mechanism. With following beneficial effects:
[0018] 1. The new operation mechanism is designed, and the expansion stability of threading is strengthened by the cooperation of large fixed ring and small fixed ring. The wind power mechanism can control its horizontal movement on the thread by screw block, and strong wind power is injected to clean the sundries in the thread sleeve.
[0019] 2. In addition, the residue storage tank can collect sundries when the thread is retracted.
[0020] 3. The telescopic gun can be clamped on the edge of the clamping groove by spring clamp, and it is more convenient to take. BRIEF DESCRIPTION OF DRAWINGS
[0021] Figure 1 It is the whole structure schematic diagram of the utility model;
[0022] Figure 2 It is the internal structure schematic diagram of the utility model operating box;
[0023] Figure 3 It is the wind power mechanism structure schematic diagram of the utility model;
[0024] Figure 4 It is the wind collecting head structure schematic diagram of the utility model;
[0025] Figure 5 It is the air distribution plate structure schematic diagram of the utility model;
[0026] Figure 6 It is the turning cylinder structure schematic diagram of the utility model;
[0027] Figure 7 It is the air cylinder structure schematic diagram of the utility model.
[0028] In the figure, 1 - work box; 2 - expansion disc; 21 - clamping groove; 3 - expansion mechanism; 4 - operating mechanism; 41 - operating box; 42 - dust screen; 43 - wire hole; 44 - control panel; 45 - energy transmission plate; 46 - cleaning mechanism; 461 - energy transmission belt one; 462 - energy transmission belt two; 463 - control box; 464 - extension plate; 465 - energy transmission wire; 466 - sliding groove; 467 - threaded sliding block; 468 - fixed plate; 469 - wind power mechanism; 4691 - wind gathering head; 46911 - silk groove one; 46912 - several wind grooves; 4692 - wind distribution plate; 46921 - several wind holes; 46922 - wind distribution groove; 46923 - limiting ring; 46924 - silk groove two; 4693 - steering cylinder; 4694 - wind cylinder; 46941 - fixed frame; 46942 - powerful fan; 49643 - silk groove three; 47 - motor; 48 - upper rotating rod; 49 - reel; 410 - lower rotating rod; 411 - fixed bearing; 412 - wire penetrating; 413 - slag storage box; 414 - several fixed tables one; 415 - large fixed ring; 416 - fixed table two; 417 - small fixed ring; 418 - silk sleeve; 419 - telescopic gun; 420 - spring clamp. DETAILED DESCRIPTION
[0029] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0030] Please refer to Figures 1-7 The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0031] The core operation mechanism 4 includes operation box 41, dust screen 42, wire hole 43, control panel 44, energy transmission plate 45, cleaning mechanism 46, motor 47, upper rotating rod 48, reel 49, lower rotating rod 410, fixed bearing 411, wire 412, slag storage box 413, several fixed table one 414, large fixed ring 415, fixed table two 416, small fixed ring 417, wire sleeve 418, telescopic gun 419 and spring clamp 420. The operation box 41 is a rectangular structure, the dust screen 42 is arranged on the side wall of the operation box 41, the wire hole 43 is arranged at the left end of the operation box 41, the control panel 44 is arranged on the left end inner wall inside the operation box 41, the energy transmission plate 45 is arranged above the right of the control panel 44, the cleaning mechanism 46 is arranged at the right end of the control panel 44, the motor 47 is arranged at the right top inside the operation box 41, the upper rotating rod 48 and the lower rotating rod 410 are arranged in an up-down structure at the bottom of the motor 47, the reel 49 is arranged between the upper rotating rod 48 and the lower rotating rod 410, the fixed bearing 411 is arranged at the bottom of the lower rotating rod 410 and at the bottom inside the operation box 41, the wire 412 is wound and arranged inside the reel 49 and extends horizontally to the left, the slag storage box 413 is arranged at the bottom of the wire 412 and at the central position of the bottom inside the operation box 41, the several fixed table one 414 is arranged in a left-right structure at the left of the slag storage box 413, the large fixed ring 415 is arranged at the top of each fixed table one 414, the fixed table two 416 is arranged at the right of the slag storage box 413, the small fixed ring 417 is arranged at the top of the fixed table two 416 and wraps the wire 412, the wire sleeve 418 is wrapped and arranged on the wire 412 and is wrapped by the large fixed ring 415, the wire sleeve 418 extends outwardly through the wire hole 43 to the left, the telescopic gun 419 is arranged at the outer end of the wire sleeve 418, and the spring clamp 420 is arranged at the back of the telescopic gun 419.
[0032] Specifically, the top of the expansion disc 2 is provided with a clamping groove 21, and the clamping groove 21 is concave at the top of the expansion disc 2.
[0033] In detail, the cleaning mechanism 46 includes energy transmission belt one 461, energy transmission belt two 462, control box 463, extension plate 464, energy transmission wire 465, chute 466, threaded slide block 467, fixed plate 468 and wind power mechanism 469. The energy transmission belt one 461 and the energy transmission belt two 462 are arranged in an up-down structure at the right of the control panel 44, the control box 463 is arranged at the bottom of the energy transmission belt one 461 and the right end of the energy transmission belt two 462, the extension plate 464 is arranged above the right of the control box 463, the energy transmission wire 465 is arranged inside the extension plate 464 and extends outwardly through the extension plate 464, the chute 466 is arranged inside the control box 463, the threaded slide block 467 is arranged on the chute 466, the fixed plate 468 is arranged at the front end of the threaded slide block 467, and the wind power mechanism 469 is arranged at the bottom of the fixed plate 468.
[0034] The threaded sliding block 467 and the fixed plate 468 are integrally formed, and the wind power mechanism 469 wraps the wire 412.
[0035] The wind power mechanism 469 includes a wind collecting head 4691, a wind distributing plate 4692, a deflection cylinder 4693, and a wind cylinder 4694, which are sequentially arranged from left to right and integrally formed.
[0036] The wind collecting head 4691 includes a wire slot 46911 and a plurality of wind slots 46912, the wire slot 46911 is arranged through the middle position of the inside of the wind collecting head 4691, and the plurality of wind slots 46912 are arranged through the inside of the wind collecting head 4691 around the wire slot 46911; the wind distributing plate 4692 includes a plurality of wind holes 46921, a wind distributing slot 46922, a limiting ring 46923, and a wire slot 46924, the plurality of wind holes 46921 are arranged on the left end side wall of the wind distributing plate 4692 corresponding to the position of each wind slot 46912, the wind distributing slot 46922 is arranged at the right end of the wind hole 46921, the limiting ring 46923 is arranged in the inside of the wind distributing slot 46922, and the wire slot 46924 is arranged in the inside of the limiting ring 46923; the deflection cylinder 4693 is in a hollow obtuse angle structure; the wind cylinder 4694 includes a fixed frame 46941, a powerful fan 46942, and a wire slot 46943, the fixed frame 46941 is inclined to the direction of the deflection cylinder 4693 as a whole, the fixed frame 46941 is arranged at the right end of the wind cylinder 4694, the powerful fan 46942 is arranged at the left end of the fixed frame 46941, and the wire slot 46943 is arranged through the right end outer wall below the wind cylinder 4694.
[0037] The new operation mechanism 4 is designed, the extension stability of the wire 412 is strengthened through the cooperation of the large fixed ring 415 and the small fixed ring 417, the wind power mechanism 469 enabled can control its own horizontal movement on the wire 412 to the right end of the wire sleeve 418 through the threaded sliding block 467, and strong wind power is injected to clean the sundries in the inside of the wire sleeve 418. In addition, the sundries brought down by the wire 412 can be collected in the residue storage box 413 when the wire 412 is retracted. The telescopic gun 419 can be clamped at the edge of the clamping groove 21 through the spring clamp 420, and it is more convenient to take.
[0038] Working principle: when working, the extension and retraction of the wire penetrating 412 are controlled by the front and rear buttons on the telescopic gun 419, the inner wall of the wire sleeve 418 is slightly thicker than the wire penetrating 412, and every time the wire penetrating 412 retracts, the impurities brought out at the right end of the wire sleeve 418 will fall into the slag storage box 413 for collection. After the work is completed, the control box can be energized by the energy transmission belt one 461 and the energy transmission belt two 462 through the control panel 44. Then, under the energization of the energy transmission line 465, the threaded slider 467 moves left on the wire penetrating 412 through the fixed plate 468 with the wind power mechanism 469 until the left end of the wind gathering head 4691 abuts against the right end of the wire sleeve 418, and then the powerful fan 46942 starts to work, and the strong wind power is finally released into the gap between the wire penetrating 412 and the wire sleeve 418 through the wind barrel 4694, the steering barrel 4693, the air distribution plate 4692, the air distribution groove 46922 of the wind gathering head 4691 and each air groove 46912, and the strong wind power blows out the impurities in the gap from the front end of the telescopic gun.
[0039] The utility model discloses a 1 - working box, 2 - expansion disc, 21 - clamping groove, 3 - expansion mechanism, 4 - operating mechanism, 41 - operating box, 42 - dustproof screen, 43 - line hole, 44 - control panel, 45 - energy transmission board, 46 - cleaning mechanism, 461 - energy transmission belt one, 462 - energy transmission belt two, 463 - control box, 464 - extension plate, 465 - energy transmission line, 466 - sliding groove, 467 - threaded slider, 468 - fixed plate, 469 - wind power mechanism, 4691 - wind gathering head, 46911 - silk groove one, 46912 - a plurality of air grooves, 4692 - air distribution plate, 46921 - a plurality of air holes, 46922 - air distribution groove, 46923 - limit ring, 46924 - silk groove two, 4693 - steering barrel, 4694 - wind barrel, 46941 - fixed frame, 46942 - powerful fan, 49643 - silk groove three, 47 - motor, 48 - upper rotary rod, 49 - reel, 410 - lower rotary rod, 411 - fixed bearing, 412 - wire penetrating, 413 - slag storage box, 414 - a plurality of fixed platform one, 415 - big fixed ring, 416 - fixed platform two, 417 - small fixed ring, 418 - wire sleeve, 419 - telescopic gun, 420 - spring clamp, these components are all general standard parts or the components known to those skilled in the art, and the structure and principle are all known to the technical personnel and can be known through conventional experimental method, the utility model solves the problems that 1. the existing rope grabbing mechanism of the rope penetrating machine is easy to accumulate rope debris and dust in the inside of the rope grabbing device after long -term use, resulting in the blockage or abnormal friction of the mechanism. 2. In addition, the telescopic gun generally needs to be fixed with a clamping belt after use, which is not beautiful and inconvenient to take. The utility model effectively solves the problem of accumulated impurities in the wire sleeve, improves the applicability of the device, prolongs the service life of the device, and facilitates the taking of the telescopic gun.
[0040] The basic principle and main features of the present application and the advantages of the present application are shown and described above, for those skilled in the art, obviously the present application is not limited to the details of the above exemplary embodiments, and can be realized in other specific forms without departing from the spirit or basic characteristics of the present application. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-limiting, the scope of the present application is defined by the appended claims rather than the above description, therefore all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present application. Any reference signs in the claims should not be considered as limiting the claims involved.
[0041] In addition, it should be understood that, although the present application is described in the form of embodiments, not every embodiment contains only one independent technical solution, the description of the specification is only for the sake of clarity, those skilled in the art should consider the specification as a whole, the technical solutions in each embodiment can also be combined appropriately to form other embodiments that those skilled in the art can understand.
Claims
1. A rope-grabbing mechanism of a rope-threading machine, characterized by: Including work box (1), expansion disc (2), expansion mechanism (3) and operating mechanism (4), expansion disc (2) is arranged on the top of the side wall of work box (1), expansion mechanism (3) is arranged on the bottom of expansion disc (2), operating mechanism (4) is arranged on the top of work box (1); The operating mechanism (4) includes operation box (41), dust screen (42), wire hole (43), control panel (44), energy transmission plate (45), cleaning mechanism (46), motor (47), upper rotary rod (48), reel (49), lower rotary rod (410), fixed bearing (411), wire (412), slag storage box (413), several fixed table one (414), large fixed ring (415), fixed table two (416), small fixed ring (417), wire sleeve (418), telescopic gun (419) and spring clamp (420), the operation box (41) is cuboid structure, the dust screen (42) is arranged on the side wall of the operation box (41), the wire hole (43) is arranged on the left end of the operation box (41), the control panel (44) is arranged on the left end inner wall in the operation box (41), the energy transmission plate (45) is arranged on the right upper side of the control panel (44), the cleaning mechanism (46) is arranged on the right end of the control panel (44), the motor (47) is arranged on the right top inside the operation box (41), the upper rotary rod (48) and the lower rotary rod (410) are arranged in the bottom of the motor (47) in the up-down structure, the reel (49) is arranged between the upper rotary rod (48) and the lower rotary rod (410).
2. A rope-grabbing mechanism for a rope threading machine according to claim 1, characterized in that: The fixed bearing (411) is arranged on the bottom of the lower rotary rod (410) and at the bottom inside the operation box (41), the wire (412) is wound and arranged inside the reel (49) and extends horizontally to the left, the slag storage box (413) is arranged at the bottom of the wire (412) and at the bottom inside the operation box (41) in the middle position, several fixed table one (414) are arranged on the left of the slag storage box (413) in the left-right structure, the large fixed ring (415) is arranged on the top of each fixed table one (414), the fixed table two (416) is arranged on the right of the slag storage box (413), the small fixed ring (417) is arranged on the top of the fixed table two (416) and wraps the wire (412), the wire sleeve (418) is wrapped and arranged on the wire (412) and is wrapped by the large fixed ring (415), the wire sleeve (418) extends outwardly through the wire hole (43) to the left, the telescopic gun (419) is arranged on the outer end of the wire sleeve (418), and the spring clamp (420) is arranged on the back of the telescopic gun (419).
3. A rope-grabbing mechanism for a rope threading machine according to claim 1, characterized in that: The top of the expansion disc (2) is provided with a clamping groove (21), and the clamping groove (21) is concave on the top of the expansion disc (2).
4. A rope-grabbing mechanism for a rope threading machine according to claim 1, characterized in that: The cleaning mechanism (46) comprises a first energy transmission belt (461), a second energy transmission belt (462), a control box (463), an extension plate (464), an energy transmission line (465), a sliding groove (466), a threaded sliding block (467), a fixed plate (468) and a wind power mechanism (469), the first energy transmission belt (461) and the second energy transmission belt (462) are arranged in an up-down structure on the right side of the control plate (44), the control box (463) is arranged at the bottom of the first energy transmission belt (461) and the right end of the second energy transmission belt (462), the extension plate (464) is arranged above the right of the control box (463), the energy transmission line (465) is arranged inside the extension plate (464) and extends outward through the extension plate (464), the sliding groove (466) is arranged inside the control box (463), the threaded sliding block (467) is arranged on the sliding groove (466), the fixed plate (468) is arranged at the front end of the threaded sliding block (467), and the wind power mechanism (469) is arranged at the bottom of the fixed plate (468).
5. A rope-grabbing mechanism for a rope-threading machine according to claim 4, characterized in that: The threaded sliding block (467) and the fixed plate (468) are integrally formed, and the wind power mechanism (469) wraps the wire penetrating (412).
6. A rope grasping mechanism for a rope threading machine according to claim 5, characterized in that: The wind power mechanism (469) comprises a wind collecting head (4691), a wind distributing plate (4692), a steering cylinder (4693) and a wind cylinder (4694), which are sequentially arranged from left to right, and the wind collecting head (4691), the wind distributing plate (4692), the steering cylinder (4693) and the wind cylinder (4694) are integrally formed.
7. A rope-grabbing mechanism for a rope-threading machine according to claim 6, characterized in that: Said wind collecting head (4691) comprises a wire slot one (46911) and a plurality of wind slots (46912), the wire slot one (46911) is arranged through the middle position of the interior of the wind collecting head (4691), a plurality of wind slots (46912) are evenly arranged through the interior of the wind collecting head (4691) around the wire slot one (46911); said air distribution plate (4692) comprises a plurality of air holes (46921), air distribution slots (46922), limiting rings (46923) and wire slots two (46924), a plurality of air holes (46921) are arranged on the left end sidewall of the air distribution plate (4692) corresponding to the position of each wind slot (46912), the air distribution slot (46922) is arranged at the right end of the air hole (46921), the limiting ring (46923) is arranged in the interior of the air distribution slot (46922), and the wire slot two (46924) is arranged in the interior of the limiting ring (46923); said deflection cylinder (4693) is a hollow obtuse angle structure; said air cylinder (4694) comprises a fixing frame (46941), a powerful fan (46942) and a wire slot three (49643), the fixing frame (46941) is inclined to the direction of the deflection cylinder (4693), the fixing frame (46941) is arranged at the right end of the air cylinder (4694), the powerful fan (46942) is arranged at the left end of the fixing frame (46941), and the wire slot three (49643) is arranged through the right end outer wall below the air cylinder (4694).