CN209210061U - A kind of clutch transmission of fully automatic high-speed layer winder - Google Patents

A kind of clutch transmission of fully automatic high-speed layer winder Download PDF

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Publication number
CN209210061U
CN209210061U CN201822044218.3U CN201822044218U CN209210061U CN 209210061 U CN209210061 U CN 209210061U CN 201822044218 U CN201822044218 U CN 201822044218U CN 209210061 U CN209210061 U CN 209210061U
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China
Prior art keywords
transmission
clutch
shaft
breadth
main shaft
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CN201822044218.3U
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Chinese (zh)
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袁关兴
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HANGZHOU XINGGUAN MACHINERY CO Ltd
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HANGZHOU XINGGUAN MACHINERY CO Ltd
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Priority to CN201822044218.3U priority Critical patent/CN209210061U/en
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Abstract

A kind of clutch transmission of fully automatic high-speed layer winder belongs to winding device technical field, including actuator servo motor, transmission main shaft, right transmission mechanism and Left Drive mechanism;Transmission main shaft is installed on the output end of actuator servo motor;Described right transmission mechanism one end connects transmission main shaft, and the other end connects right linkage shaft;Left side transmission mechanism one end connects transmission main shaft, and the other end connects Left-wing Federation's turn axis;Left-wing Federation's turn axis and right linkage shaft are coaxially disposed and revolving speed is identical.A kind of clutch transmission of fully automatic high-speed layer winder clamps vinyl disc bilateral, and rotates synchronously, so that vinyl disc stability of rotation, rotation is more reliable, and take-up is more accurate.

Description

A kind of clutch transmission of fully automatic high-speed layer winder
Technical field
The utility model belongs to winding device technical field, in particular to a kind of clutch transmission of fully automatic high-speed layer winder Mechanism.
Background technique
In the production process of Welding Wire Protected by Carbon Dioxide Gas, the welding wire in deep bid I-beam wheel is needed according to standard weights On bundling to welding wire vinyl disc, to complete the subpackage process of welding wire.Layer winder also known as essence around machine, wrapping machine, twine disk machine, be by Welding Wire Protected by Carbon Dioxide Gas or other tinsels are from subpackage, the equipment being wound on vinyl disc in deep bid I-beam wheel.
On layer winder, tinsel is wound in vinyl disc after cable machine, under the action of tinsel tension, plastics Disk side plate is by active force, therefore, when vinyl disc coiling, needs to clamp vinyl disc bilateral, then just can be carried out normal volume Around process.
Therefore, it is necessary to research and develop a kind of clutch transmission of fully automatic high-speed layer winder, vinyl disc bilateral is clamped, and It rotates synchronously, so that vinyl disc stability of rotation.
Utility model content
In view of above-mentioned deficiencies of the prior art place, the purpose of this utility model is to provide a kind of fully automatic high-speed layer around The clutch transmission of machine.
In order to achieve the above object, the utility model takes technical solution below.
A kind of clutch transmission of fully automatic high-speed layer winder, including actuator servo motor, transmission main shaft, right driver Structure and Left Drive mechanism;Transmission main shaft is installed on the output end of actuator servo motor;Right transmission mechanism one end connection transmission Main shaft, the other end connect right linkage shaft;Left side transmission mechanism one end connects transmission main shaft, and the other end connects Left-wing Federation's turn Axis;Left-wing Federation's turn axis and right linkage shaft are coaxially disposed and revolving speed is identical.
Shaft coupling is installed between the transmission main shaft and actuator servo motor;The actuator servo motor is fixedly installed in Rack;The transmission main shaft rotational installation is in rack.
The right transmission mechanism includes right driving pulley, right synchronous belt and right passive belt wheel;The right driving pulley is fixed It is installed on transmission main shaft, the right passive belt wheel is fixedly installed in right linkage shaft;Described right synchronous belt one end connects right active Belt wheel, the right passive belt wheel of other end connection;The right linkage shaft rotational installation is in right rack.
The right linkage shaft detachable connection has clutch stick;The clutch stick right end sliding is embedded at right linkage and turns Axis, the clutch stick right end are provided with the second clutch key of protrusion;The right linkage shaft inner wall is provided with to be embedded second The clutch slot of clutch key.
The Left Drive mechanism, including left driving wheel, left synchronous belt, left follower, breadth sliding panel and ejecting mechanism;Institute It states and is provided with underdrive sliding sleeve between left driving wheel and transmission main shaft;The transmission main shaft outer wall is fixedly installed under protrusion Locating piece;The underdrive sliding sleeve is sheathed on transmission main shaft, and its inner wall is axially provided with to be embedded under lower locating piece Sliding groove;Underdrive sliding sleeve can slide axially relative to transmission main shaft, and underdrive sliding sleeve can be synchronous with transmission main shaft Rotation;The left driving wheel is arranged and is fixed on underdrive sliding sleeve;The underdrive sliding sleeve and the rotation of breadth sliding panel connect It connects;Right axle left bearing, breadth under is provided under breadth lower bearing sleeve, breadth between the underdrive sliding sleeve and breadth sliding panel It holds;Right bearing is set between breadth lower bearing sleeve and underdrive sliding sleeve under left bearing, breadth under the breadth, the breadth Lower bearing sleeve is fixedly connected with breadth sliding panel.
Described left synchronous belt one end connects left driving wheel, and the other end connects left follower;The left follower is fixedly mounted In Left-wing Federation's turn axis;Left-wing Federation's turn axis right end is provided with plunger tip disk;Left-wing Federation's turn axis rotational installation is slided in upper transmission Dynamic set;The upper transmission sliding sleeve is fixedly connected with breadth sliding panel, and upper transmission sliding sleeve is slidably connected with left frame;It is described Transmission left bearing and upper transmission right bearing are provided between Left-wing Federation's turn axis and upper transmission sliding sleeve;The upper transmission sliding sleeve Sliding seat is provided between left frame;The sliding seat is fixedly installed in left frame, and upper transmission sliding sleeve and sliding seat are sliding Dynamic connection.
The ejecting mechanism, including cylinder, plunger tip, V-type connecting rod, right connecting rod;The rotational cylinder is installed on left frame;Institute State the output end that plunger tip is installed on cylinder;The V-type connecting rod is in the shape of the letter V, and left end rotational installation is in left frame, right end rotational installation In plunger tip;In the middle part inflection point of V-type connecting rod, right end is rotatablely installed in breadth sliding panel for the right connecting rod left end rotational installation.
Right driver plate is fixedly installed on the left of the right linkage shaft;It is fixedly installed on the left of the right driver plate to be inserted in The finger of vinyl disc pin hole;Left driver plate is fixedly installed on the right side of Left-wing Federation's turn axis.
A kind of clutch transmission of fully automatic high-speed layer winder further includes dividing disc, coiling shaft and clutch stick;It is described Coiling shaft is in hollow cylindric;Coiling shaft is laterally arranged, and inside is inserted with clutch stick;The coiling shaft inner wall setting There is lateral sliding groove, the clutch stick outer wall is provided with the first clutch key for being embedded at sliding groove;The coiling shaft and from It closes and is provided with horizontal spring between stick;The spring left end contacts the protrusion of clutch stick outer wall, and right end contacts coiling shaft;Institute It states the sliding of clutch stick right end and is embedded at right linkage shaft, the clutch stick right end is provided with the second clutch key of protrusion;The right side Linkage shaft inner wall is provided with the clutch slot to be embedded the second clutch key;It is arranged with vinyl disc on the left of the coiling shaft, institute It states plastics disc side and opens up pin hole;The coiling shaft outer wall fixing sleeve is equipped with right driver plate;Fixed peace on the left of the right driver plate Equipped with the finger to be inserted in vinyl disc pin hole.
A kind of clutch transmission of fully automatic high-speed layer winder clamps vinyl disc bilateral, and rotates synchronously, so that modeling Rotation of disc is steady, and rotation is more reliable, and take-up is more accurate.
Detailed description of the invention
Fig. 1 is the structural schematic diagram of the embodiments of the present invention 1;
Fig. 2 is the structural schematic diagram of the embodiments of the present invention 2;
Fig. 3 is the structural schematic diagram of the embodiments of the present invention 3;
Fig. 4 is the structural schematic diagram of the utility model ejecting mechanism;
In figure: dividing disc A001, coiling shaft A009, clutch stick A010, the first clutch key A011, left card convex A012, the right side Card convex A013, roll bearing sleeve A014, coiling left bearing A015, coiling right bearing A016, the second clutch key A017, spring A018, vinyl disc A019, right driver plate A020, finger A021,
Actuator servo motor B001, transmission main shaft B002, shaft coupling B003,
Right driving pulley B101, right synchronous belt B102, right passive belt wheel B103, right linkage shaft B104,
Lower positioning key B201, underdrive sliding sleeve B202, left driving wheel B203, left synchronous belt B204, left follower B205, Right bearing B209, Left-wing Federation's turn axis under left bearing B208, breadth under breadth sliding panel B206, breadth lower bearing sleeve B207, breadth B210, left driver plate B211, upper transmission sliding sleeve B212, upper transmission left bearing B213, upper transmission right bearing B214, sliding seat B215、
Cylinder B301, plunger tip B302, V-type connecting rod B303, right connecting rod B304,
Left frame C001, right rack C002.
Specific embodiment
With reference to the accompanying drawing, the utility model is described in further detail.
Embodiment 1.
A kind of clutch transmission of fully automatic high-speed layer winder, including actuator servo motor B001, transmission main shaft B002, Right transmission mechanism and Left Drive mechanism;Transmission main shaft B002 is installed on the output end of actuator servo motor B001;The right transmission Mechanism one end connects transmission main shaft B002, and the other end connects right linkage shaft B104;The connection of left side transmission mechanism one end passes Dynamic main shaft B002, the other end connect Left-wing Federation's turn axis B210;Left-wing Federation's turn axis B210 and right linkage shaft B104 are coaxially set It sets and revolving speed is identical.
This clutch transmission ensure that Left-wing Federation turn axis B210 by the drive of the same actuator servo motor B001 Identical with right linkage shaft B104 revolving speed, to drive vinyl disc rotation from the two sides vinyl disc A019, vinyl disc A019 is rotated more It is steady strong.
Shaft coupling B003 is installed between the transmission main shaft B002 and actuator servo motor B001;The actuator servo electricity Machine B001 is fixedly installed in rack;The transmission main shaft B002 rotational installation is in rack.
The right transmission mechanism includes right driving pulley B101, right synchronous belt B102 and right passive belt wheel B103;The right side Driving pulley B101 is fixedly installed in transmission main shaft B002, and the right passive belt wheel B103 is fixedly installed in right linkage shaft B104;Described one end right synchronous belt B102 connects right driving pulley B101, the right passive belt wheel B103 of other end connection;It is described right Turn axis B104 is rotatablely installed in right rack C002.
The working principle mode of right transmission mechanism is as follows, when actuator servo motor B001 movement, drives transmission main shaft B002 Rotation, right driving pulley B101 synchronous rotary.Right driving pulley B101 drives right passive belt wheel B103 by right synchronous belt B102 Rotation, right linkage shaft B104 synchronous rotary.
The Left Drive mechanism, including left driving wheel B203, left synchronous belt B204, left follower B205, breadth sliding panel B206 and ejecting mechanism.
Underdrive sliding sleeve B202 is provided between the left driving wheel B203 and transmission main shaft B002;The transmission main shaft B002 outer wall is fixedly installed the lower positioning key B201 of protrusion;The underdrive sliding sleeve B202 is sheathed on transmission main shaft B002, And its inner wall is axially provided with the lower slider slot to be embedded lower positioning key B201.Therefore, underdrive sliding sleeve B202 can be opposite It slides axially in transmission main shaft B002, and underdrive sliding sleeve B202 can be with transmission main shaft B002 synchronous rotary.The left master Driving wheel B203 is arranged and is fixed on underdrive sliding sleeve B202.The underdrive sliding sleeve B202 and breadth sliding panel B206 rotation Connection, preferably, be provided between the underdrive sliding sleeve B202 and breadth sliding panel B206 breadth lower bearing sleeve B207, Right bearing B209 under left bearing B208, breadth under breadth;Right bearing B209 is set under left bearing B208, breadth under the breadth Between breadth lower bearing sleeve B207 and underdrive sliding sleeve B202, the breadth lower bearing sleeve B207 and breadth sliding panel B206 are solid Fixed connection.Therefore, breadth sliding panel B206 and underdrive sliding sleeve B202 is axial can synchronizing moving.
Described one end left synchronous belt B204 connects left driving wheel B203, and the other end connects left follower B205;The left quilt Driving wheel B205 is fixedly installed in Left-wing Federation turn axis B210;Left-wing Federation's turn axis B210 right end is provided with left driver plate B211;It is described Left-wing Federation turn axis B210 is rotatablely installed in upper transmission sliding sleeve B212;The upper transmission sliding sleeve B212 and breadth sliding panel B206 It is fixedly connected, and upper transmission sliding sleeve B212 and left frame C001 is slidably connected.Further, Left-wing Federation's turn axis B210 and Transmission left bearing B213 and upper transmission right bearing B214 is provided between upper transmission sliding sleeve B212;The upper transmission sliding sleeve Sliding seat B215 is provided between B212 and left frame C001;The sliding seat B215 is fixedly installed in left frame C001, and on Transmission sliding sleeve B212 and sliding seat B215 is slidably connected.
As shown in figure 4, the ejecting mechanism, including cylinder B301, plunger tip B302, V-type connecting rod B303, right connecting rod B304; The cylinder B301 rotational installation is in left frame C001;The plunger tip B302 is installed on the output end of cylinder B301;The V-type connects Bar B303 is in the shape of the letter V, and left end rotational installation is rotatablely installed in left frame C001, right end in plunger tip B302;The right connecting rod B304 Left end rotational installation is rotatablely installed in the middle part inflection point of V-type connecting rod B303, right end in breadth sliding panel B206.
The ejecting mechanism movement, cylinder B301 push plunger tip B302, plunger tip B302 that V-type connecting rod B303 is pushed to revolve clockwise Turn, inflection point drives right connecting rod B304 to rotate counterclockwise in the middle part of V-type connecting rod B303, the left vertex V-type connecting rod B303 and right connecting rod B304 The spacing on right vertex increases, so that breadth sliding panel B206 be pushed to slide to the right, Left-wing Federation turn axis B210 synchronization is slided to the right.When When plunger tip B302 pushes V-type connecting rod B303 to be rotated clockwise to V-type connecting rod B303 left pole-half in level, right connecting rod B304 is counterclockwise Level is turned to, it is breadth sliding panel that it is a dead point that V-type connecting rod B303 left pole-half and right connecting rod B304, which are in same horizontal line, B206 and Left-wing Federation turn axis B210 provides enough support forces.
This Left Drive mechanism passes through lower positioning key B201, underdrive sliding sleeve B202 and drives when transmission main shaft B002 rotation Left driving wheel B203 rotation, then Left-wing Federation's turn axis B210 rotation is driven by left synchronous belt B204, left follower B205, it completes left The spinning movement of linkage shaft B210.In the present apparatus, left driving wheel B203, left follower B205, Left-wing Federation turn axis B210 and Breadth sliding panel B206 is moved synchronously axially, when cylinder B301 movement, drives the axial movement of breadth sliding panel B206, thus So that the synchronous axial movement of Left-wing Federation turn axis B210, completes the Forward to the right of Left-wing Federation's turn axis B210 or moves back to the left.
Therefore, while this equipment realizes the Forward to the right of Left-wing Federation turn axis B210, also make Left-wing Federation turn axis B210 It is coaxial with right linkage shaft B104 and revolving speed is identical.
Embodiment 2.
As shown in Fig. 2, in the present embodiment, being fixedly installed with right driver plate A020 on the left of right linkage shaft B104;The right side The finger A021 to be inserted in vinyl disc A019 pin hole is fixedly installed on the left of driver plate A020.When vinyl disc A019 is by the right Active force when, be bonded right driver plate A020 on the right side of vinyl disc A019, finger A021 is inserted in vinyl disc A019 pin hole, makes to mould Charging tray A019, right driver plate A020 and right linkage shaft B104 are rotated synchronously.
Left driver plate B211 is fixedly installed on the right side of Left-wing Federation turn axis B210.
Under the ejection effect of ejecting mechanism, Left-wing Federation turn axis B210 moves forward to the right, and left driver plate B211 contacts coiling station On vinyl disc A019.Since vinyl disc A019 right end and right driver plate A020 contact, finger A021 is inserted in vinyl disc A019 pin In hole, the left end vinyl disc A019 is contacted with left driver plate B211, and right linkage shaft B104 drives vinyl disc by right driver plate A020 A019 rotation, and Left-wing Federation turn axis B210 is identical with right linkage shaft B104 revolving speed, ejecting mechanism is in dead-centre position, vinyl disc A019 stress equalization, revolving speed is steady, carries out layer around process.
In the present embodiment, remaining is same as Example 1, repeats no more.
Embodiment 3.
It further include dividing disc A001, coiling shaft A009 and clutch stick A010 in the present embodiment.
The coiling shaft A009 is in hollow cylindric;Coiling shaft A009 is laterally arranged, and inside is inserted with clutch stick A010;The coiling shaft A009 inner wall is provided with lateral sliding groove, and the clutch stick A010 outer wall, which is provided with, is embedded at cunning First clutch key A011 of dynamic slot.Clutch stick A010 can slide laterally relative to coiling shaft A009, meanwhile, clutch stick A010 turns When dynamic, structure is set by the card of sliding groove and the first clutch key A011, coiling shaft A009 is driven to rotate synchronously.
Specifically, the coiling shaft A009 outer wall is fixedly installed left card convex A012 and right card convex A013;The coiling Roll bearing sleeve A014, coiling left bearing A015 and coiling right bearing A016 are provided between shaft A009 and dividing disc A001; The left side coiling shaft A009 exposes to dividing disc A001, to wear vinyl disc A019;Outside the roll bearing sleeve A014 Wall is fixed on dividing disc A001, and inner wall card touches coiling left bearing A015 and coiling right bearing A016;The coiling left bearing A015 Left side inner ring contacts left card convex A012, and right side outer ring contacts roll bearing sleeve A014;Outer ring on the left of the coiling right bearing A016 Roll bearing sleeve A014 is contacted, right side contacts right card convex A013.The setting of bearing and bearing block, realize coiling shaft A009 and Rotary spacing between dividing disc A001: coiling shaft A009 had not only been able to achieve relative to dividing disc A001 rotation, but also was able to achieve phase For dividing disc A001 axially position.
Horizontal spring A018 is provided between the coiling shaft A009 and clutch stick A010;The left end the spring A018 The protrusion of clutch stick A010 outer wall is contacted, right end contacts coiling shaft A009.Under the action of spring A018, clutch stick A010 has A kind of trend being moved to the left.When clutch stick A010 is not by active force to the right, clutch stick A010 and right linkage turn Axis B104 is to be detached from, and at this moment dividing disc A001 is rotary, can reset station.
The right linkage shaft B104 and clutch stick A010 be can disengaging type connect.Specifically, the clutch stick A010 is right End sliding is embedded at right linkage shaft B104, and the clutch stick A010 right end is provided with the second clutch key A017 of protrusion;It is described Right linkage shaft B104 inner wall is provided with the clutch slot to be embedded the second clutch key A017.When clutch stick A010 is in power to the right Under effect, clutch stick A010 right end is embedded at right linkage shaft B104, and the second clutch key A017 is embedded at clutch slot, so that Right linkage shaft B104 drives clutch stick A010 rotation.
Vinyl disc A019 is sheathed on the left of coiling shaft A009, and the side the vinyl disc A019 opens up pin hole;It is described around Line shaft A009 outer wall fixing sleeve is equipped with right driver plate A020;It is fixedly installed on the left of the right driver plate A020 to be inserted in plastics The finger A021 of disk A019 pin hole;Left card convex A012 contacts right driver plate A020, plays the role of the right driver plate A020 of limit.Work as plastics When disk A019 is by active force to the right, right driver plate A020 is bonded on the right side of vinyl disc A019, finger A021 is inserted in plastics Disk A019 pin hole rotates synchronously vinyl disc A019, right driver plate A020 and coiling shaft A009.
The coiling shaft A009 of Left-wing Federation's turn axis B210 and coiling station is coaxially disposed.
When this equipment works, under the drive of actuator servo motor B001, right linkage shaft is driven by right transmission mechanism B104 rotation drives Left-wing Federation's turn axis B210 rotation, also, Left-wing Federation turn axis B210 and right linkage shaft by Left Drive mechanism B104 revolving speed is identical.Under the ejection effect of ejecting mechanism, Left-wing Federation turn axis B210 moves forward to the right, and left driver plate B211 contacts coiling Vinyl disc A019 on station, Left-wing Federation turn axis B210 push clutch stick A010 to move right so that clutch stick A010 and right linkage Shaft B104 clamping.Right linkage shaft B104 drives coiling shaft A009 rotation by clutch stick A010.Due to vinyl disc A019 Right end is contacted with right driver plate A020, and finger A021 is inserted in vinyl disc A019 pin hole, the left end vinyl disc A019 and left driver plate B211 is contacted, and Left-wing Federation turn axis B210 is identical with right linkage shaft B104 revolving speed, and ejecting mechanism is in dead-centre position, vinyl disc A019 stress equalization, revolving speed is steady, carries out layer around process.The process that remaining station can carry out disk and/rear lower wall.
When the rollback of ejecting mechanism, Left-wing Federation turn axis B210 is moved back to the left, Left-wing Federation turn axis B210 and clutch stick A010 It is detached from, clutch stick A010 is moved to the left under the drive of spring A018, so that clutch stick A010 is detached from right linkage shaft B104.At this point, there are gap, clutch stick A010 and right rack C002 there are gap by Left-wing Federation turn axis B210 and vinyl disc A019, Dividing disc A001 rotates by a certain angle, and the full vinyl disc of coiling is gone in discharge station, in case subsequent progress lower wall operation, Empty vinyl disc is gone on coiling station from upper disk station, in case carrying out next winding process.
This equipment not only realizes coiling shaft A009 and the clutch connection of main drive gear of coiling station, and coiling turns Synchronous rotation of the vinyl disc A019 by the left and right sides on axis A009, rotation is more reliable, and take-up is more accurate.
In the present embodiment, remaining is same as Example 1, repeats no more.
The noun of locality in the application, such as up, down, left, right, before and after, simply to illustrate that component in the technical program Relative position does not do absolute limitation.It is understood that for those of ordinary skills, it can be according to the present invention Technical solution and its inventive concept are subject to equivalent substitution or change, and all these changes or replacement all should belong to appended by the present invention Scope of protection of the claims.

Claims (9)

1. a kind of clutch transmission of fully automatic high-speed layer winder, which is characterized in that including actuator servo motor (B001), pass Dynamic main shaft (B002), right transmission mechanism and Left Drive mechanism;Transmission main shaft (B002) is installed on actuator servo motor (B001) Output end;Right transmission mechanism one end connection transmission main shaft (B002), the other end connect right linkage shaft (B104);The left side Transmission mechanism one end connects transmission main shaft (B002), and the other end connects Left-wing Federation's turn axis (B210);Left-wing Federation's turn axis (B210) it is coaxially disposed with right linkage shaft (B104) and revolving speed is identical.
2. a kind of clutch transmission of fully automatic high-speed layer winder as described in claim 1, which is characterized in that the transmission Shaft coupling (B003) is installed between main shaft (B002) and actuator servo motor (B001);The actuator servo motor (B001) is solid Dingan County is loaded on rack;Transmission main shaft (B002) rotational installation is in rack.
3. a kind of clutch transmission of fully automatic high-speed layer winder as described in claim 1, which is characterized in that the right biography Motivation structure includes right driving pulley (B101), right synchronous belt (B102) and right passive belt wheel (B103);The right driving pulley (B101) it is fixedly installed in transmission main shaft (B002), the right passive belt wheel (B103) is fixedly installed in right linkage shaft (B104);Described right synchronous belt one end (B102) connects right driving pulley (B101), the right passive belt wheel (B103) of other end connection; Right linkage shaft (B104) rotational installation is in right rack (C002).
4. a kind of clutch transmission of fully automatic high-speed layer winder as claimed in claim 3, which is characterized in that described right Turn axis (B104) detachable connection has clutch stick (A010);Clutch stick (A010) the right end sliding is embedded at right linkage and turns Axis (B104), clutch stick (A010) right end are provided with the second clutch key (A017) of protrusion;The right linkage shaft (B104) inner wall is provided with the clutch slot to be embedded the second clutch key (A017).
5. a kind of clutch transmission of fully automatic high-speed layer winder as claimed in claim 4, which is characterized in that the left biography Motivation structure, including left driving wheel (B203), left synchronous belt (B204), left follower (B205), breadth sliding panel (B206) and top Mechanism out;Underdrive sliding sleeve (B202) is provided between the left driving wheel (B203) and transmission main shaft (B002);The biography Dynamic main shaft (B002) outer wall is fixedly installed the lower locating piece (B201) of protrusion;The underdrive sliding sleeve (B202) is sheathed on biography Dynamic main shaft (B002), and its inner wall is axially provided with the lower slider slot to be embedded lower locating piece (B201);Underdrive sliding sleeve (B202) it can slide axially relative to transmission main shaft (B002), and underdrive sliding sleeve (B202) can be with transmission main shaft (B002) Synchronous rotary;The left driving wheel (B203) is arranged and is fixed on underdrive sliding sleeve (B202);The underdrive sliding sleeve (B202) it is rotatablely connected with breadth sliding panel (B206);Between the underdrive sliding sleeve (B202) and breadth sliding panel (B206) Right bearing (B209) under left bearing (B208), breadth is provided under breadth lower bearing sleeve (B207), breadth;Left axle under the breadth Right bearing (B209) under (B208), breadth is held to be set between breadth lower bearing sleeve (B207) and underdrive sliding sleeve (B202), The breadth lower bearing sleeve (B207) is fixedly connected with breadth sliding panel (B206).
6. a kind of clutch transmission of fully automatic high-speed layer winder as claimed in claim 5, which is characterized in that described left same Step band one end (B204) connects left driving wheel (B203), and the other end connects left follower (B205);The left follower (B205) It is fixedly installed in Left-wing Federation's turn axis (B210);Left-wing Federation's turn axis (B210) right end is provided with plunger tip disk (B211);The left side Shaft (B210) rotational installation link in upper transmission sliding sleeve (B212);The upper transmission sliding sleeve (B212) and breadth sliding panel (B206) it is fixedly connected, and upper transmission sliding sleeve (B212) is slidably connected with left frame (C001);Left-wing Federation's turn axis (B210) transmission left bearing (B213) and upper transmission right bearing (B214) are provided between upper transmission sliding sleeve (B212);Institute It states and is provided with sliding seat (B215) between transmission sliding sleeve (B212) and left frame (C001);The sliding seat (B215) is fixed It is installed on left frame (C001), and upper transmission sliding sleeve (B212) and sliding seat (B215) are slidably connected.
7. a kind of clutch transmission of fully automatic high-speed layer winder as claimed in claim 6, which is characterized in that the ejection Mechanism, including cylinder (B301), plunger tip (B302), V-type connecting rod (B303), right connecting rod (B304);Cylinder (B301) rotation It is installed on left frame (C001);The plunger tip (B302) is installed on the output end of cylinder (B301);The V-type connecting rod (B303) is in V-shaped, left end rotational installation are rotatablely installed in left frame (C001), right end in plunger tip (B302);The right connecting rod (B304) is left End rotational installation is rotatablely installed in the middle part inflection point of V-type connecting rod (B303), right end in breadth sliding panel (B206).
8. a kind of clutch transmission of fully automatic high-speed layer winder as claimed in claim 7, which is characterized in that described right Right driver plate (A020) is fixedly installed on the left of turn axis (B104);It is fixedly installed on the left of the right driver plate (A020) to plug In the finger (A021) of vinyl disc (A019) pin hole;Left driver plate (B211) is fixedly installed on the right side of Left-wing Federation's turn axis (B210).
9. a kind of clutch transmission of fully automatic high-speed layer winder as claimed in claim 7, which is characterized in that further include point Cut disk (A001), coiling shaft (A009) and clutch stick (A010);The coiling shaft (A009) is in hollow cylindric;Coiling Shaft (A009) is laterally arranged, and inside is inserted with clutch stick (A010);Coiling shaft (A009) inner wall is provided with lateral Sliding groove, clutch stick (A010) outer wall are provided with the first clutch key (A011) for being embedded at sliding groove;The coiling shaft (A009) it is provided between clutch stick (A010) horizontal spring (A018);Spring (A018) left end contacts clutch stick (A010) protrusion of outer wall, right end contact coiling shaft (A009);Vinyl disc is arranged on the left of the coiling shaft (A009) (A019), vinyl disc (A019) side opens up pin hole;Coiling shaft (A009) the outer wall fixing sleeve is equipped with right driver plate (A020);The finger (A021) to be inserted in vinyl disc (A019) pin hole is fixedly installed on the left of the right driver plate (A020).
CN201822044218.3U 2018-12-06 2018-12-06 A kind of clutch transmission of fully automatic high-speed layer winder Active CN209210061U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201822044218.3U CN209210061U (en) 2018-12-06 2018-12-06 A kind of clutch transmission of fully automatic high-speed layer winder

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201822044218.3U CN209210061U (en) 2018-12-06 2018-12-06 A kind of clutch transmission of fully automatic high-speed layer winder

Publications (1)

Publication Number Publication Date
CN209210061U true CN209210061U (en) 2019-08-06

Family

ID=67463335

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201822044218.3U Active CN209210061U (en) 2018-12-06 2018-12-06 A kind of clutch transmission of fully automatic high-speed layer winder

Country Status (1)

Country Link
CN (1) CN209210061U (en)

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