CN210558626U - A yarn section of thick bamboo transfer mechanism for weaving - Google Patents

A yarn section of thick bamboo transfer mechanism for weaving Download PDF

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Publication number
CN210558626U
CN210558626U CN201920999275.9U CN201920999275U CN210558626U CN 210558626 U CN210558626 U CN 210558626U CN 201920999275 U CN201920999275 U CN 201920999275U CN 210558626 U CN210558626 U CN 210558626U
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transfer
guide plate
clamping cylinder
push rod
lifting
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熊英姿
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Shanghai White Rabbit Weaving Co Ltd
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Shanghai White Rabbit Weaving Co Ltd
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Abstract

The utility model discloses a yarn section of thick bamboo transfer mechanism for weaving belongs to weaving processing machinery equipment field. The utility model discloses a vertical rotation of carousel is connected in transferring the support, be provided with between carousel and the reciprocal baffle and transfer the connecting rod, the lift guide arm that goes up and down even board top both sides slides along vertical direction and sets up in reciprocal baffle, the suit is provided with the lift spring on the lift guide arm between push rod voussoir and the reciprocal baffle, fixed voussoir sets up in push rod voussoir upside, the board below bilateral symmetry that goes up and down is provided with a card section of thick bamboo bull stick, card section of thick bamboo cylinder both sides output is hinged respectively in the card section of thick bamboo bull stick of going up and down even board below both sides, preceding conveyer belt and back-band conveyer are from last to setting up. The utility model has the advantages of reasonable design, can high efficiency with the continuous steady transfer one by one of a yarn section of thick bamboo, the automation degree is high is transferred to a yarn section of thick bamboo, satisfies the needs of plant use.

Description

A yarn section of thick bamboo transfer mechanism for weaving
Technical Field
The utility model belongs to weaving processing machinery equipment field especially relates to a yarn section of thick bamboo transfer mechanism for weaving, mainly is applied to the continuous material loading field that moves of a yarn section of thick bamboo.
Background
Along with the continuous improvement of living standard, the requirement of people on the quality of clothes is higher and higher, the clothes are not only the function of initially resisting cold and keeping warm, people also pay attention to the aesthetic degree and wearing comfort degree of the clothes gradually, the sweater fabric is taken as a high-end fabric in the market and is deeply loved by consumers, the sweater fabric is a garment fabric woven by wool serving as a main raw material, the sweater fabric is knitted by a circular knitting machine in the production and processing process, the circular knitting machine needs to feed and transmit a plurality of strands of yarns simultaneously in the fabric weaving process, the existing yarns are mainly stored and released in a yarn barrel form, therefore, in order to realize the continuous and efficient feeding of the plurality of strands of yarns, workers need to move and feed the yarn barrel regularly and manually, the working strength of the workers is higher, and the feeding efficiency of the yarn barrel is lower, the existing yarn drum transfer mechanism is complex in structure and troublesome in operation, the yarn drum is difficult to transfer and feed stably and accurately one by one due to the fact that the transfer mechanism is limited in operation, the yarn drum cannot be transferred in the horizontal direction, and is transferred in the vertical direction, so that when the conditions of horizontal distance difference and vertical height difference exist in the front process and the rear process, the transfer of the yarn drum needs two sets of transfer mechanisms to be sequentially and respectively driven, the efficiency and the quality of continuous transfer of the yarn drum are influenced, and the requirements of production and use cannot be met.
SUMMERY OF THE UTILITY MODEL
The utility model aims to solve the technical problem that overcome the above-mentioned not enough that exists among the prior art, and provide a structural design reasonable, can high efficiency with the continuous steady transfer one by one of yarn section of thick bamboo, the automation degree is high is transferred to a yarn section of thick bamboo, satisfies the yarn section of thick bamboo transfer mechanism that is used for weaving that the plant use needs.
In order to solve the technical problem, the utility model discloses the technical scheme who adopts is: a yarn section of thick bamboo transfer mechanism for weaving which characterized in that: the yarn barrel transfer mechanism for spinning comprises a transfer support, a rotary disc, a transfer motor, a reciprocating guide plate, a fixed wedge block, a push rod wedge block, a lifting guide rod, a lifting connecting plate, a clamping cylinder rotary rod, a clamping cylinder, a front conveyor belt and a rear conveyor belt, wherein the rotary disc is vertically and rotatably connected to the transfer support, a rotary rack with a circular structure is fixedly attached to the outer side surface of the rotary disc, a driving gear is vertically and rotatably connected to the transfer support on the upper side of the rotary disc and meshed with the rotary rack, the transfer motor is horizontally and fixedly arranged on one side of the transfer support, the output end of the transfer motor is vertically and rotatably connected with a main belt pulley, an auxiliary belt pulley is vertically and coaxially arranged on one side of the driving gear, the main belt pulley and the auxiliary belt pulley are in transmission connection by the transfer belt, the guide plate, the reciprocating guide plate is arranged on the guide plate bracket in a sliding manner along the horizontal direction, a transfer connecting rod is arranged between the rotating disc and the reciprocating guide plate, two ends of the transfer connecting rod are respectively hinged to the outer side of the rotating disc and the end part of the reciprocating guide plate, a lifting connecting plate is horizontally arranged below one side of the reciprocating guide plate, lifting guide rods are respectively and vertically and fixedly arranged on two sides above the lifting connecting plate, the lifting guide rods are arranged on the reciprocating guide plate in a sliding manner along the vertical direction, a push rod wedge block is horizontally and fixedly arranged at the upper end of the lifting guide rods, a push rod inclined plane is arranged on the upper side of the push rod wedge block, a lifting spring is sleeved on the lifting guide rods between the push rod wedge block and the reciprocating guide plate, a fixed wedge block is horizontally and fixedly arranged on the transfer bracket on the upper side of the reciprocating guide plate, the upper end of the clamping cylinder rotating rod is hinged to the lifting connecting plate, the lower end of the clamping cylinder rotating rod is provided with a clamping cylinder fixing claw of an arc-shaped structure, the clamping cylinder is horizontally arranged on the lower side of the lifting connecting plate, the clamping cylinder is a double-piston-rod cylinder, the output ends of the two sides of the clamping cylinder are hinged to the clamping cylinder rotating rods on the two sides of the lower side of the lifting connecting plate respectively, and the front conveying belt and the rear conveying belt are sequentially horizontally arranged on the conveying support on the lower side of the reciprocating guide plate from top to bottom.
Furthermore, a translation sleeve matched with the reciprocating guide plate is horizontally and fixedly arranged on one side of the guide plate bracket.
Furthermore, a plurality of push rod guide wheels are sequentially and horizontally connected to the push rod inclined plane on the upper side of the push rod wedge block in a rotating mode along the inclined direction.
Further, a clamping cylinder rubber layer is arranged on the inner side of a clamping cylinder fixing claw at the lower end of the clamping cylinder rotating rod.
Compared with the prior art, the utility model, have following advantage and effect: the utility model has reasonable structural design, the rotary disc is vertically and rotationally connected with the transfer bracket through the rotary disc, the surface outside the rotary disc is fixedly provided with the rotary rack with a circular structure in a laminating way, the drive gear of the transfer bracket on the upper side of the rotary disc is meshed with the rotary rack and is connected with the auxiliary belt pulley on one side of the drive gear through the transfer belt transmission, the drive gear is continuously driven to rotate by the transfer motor, so that the rotary disc can be continuously and stably rotated under the drive of the drive gear, the rotary disc is arranged on the guide plate bracket through the reciprocating guide plate in a sliding way along the horizontal direction, the transfer connecting rod is arranged between the rotary disc and the reciprocating guide plate, the rotary disc can utilize the transfer connecting rod to drive the reciprocating guide plate to continuously reciprocate to carry out translational motion in the rotating process, and the translation sleeve matched with the, the reciprocating guide plate can stably and accurately reciprocate to perform translational motion, the lifting guide rods on two sides above the lifting connecting plate are arranged on the reciprocating guide plate in a sliding manner along the vertical direction, the push rod wedge block is horizontally and fixedly arranged at the upper end of the lifting guide rod, the push rod inclined plane is arranged on the upper side of the push rod wedge block, the lifting spring is sleeved on the lifting guide rod between the push rod wedge block and the reciprocating guide plate, the fixed wedge block is horizontally and fixedly arranged on the transferring bracket on the upper side of the reciprocating guide plate, the transferring inclined plane matched with the push rod inclined plane is arranged on the lower side of the fixed wedge block, the reciprocating guide plate is utilized to drive the lifting guide rod to perform translational motion, when the push rod wedge block performs translational motion along the fixed wedge block, the push rod wedge block can perform translational motion along the vertical direction under the guiding action of the transferring, the yarn feeding device is characterized in that clamping cylinder rotating rods are symmetrically arranged on two sides below a lifting connecting plate, the upper ends of the clamping cylinder rotating rods are hinged to the lifting connecting plate, clamping cylinder fixing claws with arc structures are arranged at the lower ends of the clamping cylinder rotating rods, output ends on two sides of a clamping cylinder air cylinder are respectively hinged to the clamping cylinder rotating rods on two sides below the lifting connecting plate, a front conveying belt and a rear conveying belt are sequentially and horizontally arranged on a transfer support on the lower side of a reciprocating guide plate from top to bottom, a clamping cylinder air cylinder is used for pushing the clamping cylinder rotating rods to reciprocate, so that yarn cylinders can be conveniently and stably clamped, fixed and separated to be placed, efficient and smooth one-by-one continuous transfer of the yarn cylinders is realized, a plurality of push rod guide wheels are sequentially and horizontally rotatably connected on push rod inclined planes on the upper sides of push rod wedge blocks in the inclined plane of the push rod wedge blocks in an inclined plane manner, and a, the high-efficient steady chucking of a yarn section of thick bamboo is fixed through such structure is realized to the messenger, the utility model has the advantages of reasonable design, can high efficiency with the continuous steady transferring one by one of a yarn section of thick bamboo, the automation degree height is transferred to a yarn section of thick bamboo, satisfies the needs of plant use.
Drawings
Fig. 1 is a schematic structural view of a yarn bobbin transfer mechanism for spinning according to the present invention.
Fig. 2 is a schematic view of the structure of the rotary rod of the cartridge and its related mechanism.
In the figure: 1. the automatic conveying device comprises a conveying support, 2. a rotating disc, 3. a conveying motor, 4. a reciprocating guide plate, 5. a fixed wedge block, 6. a push rod wedge block, 7. a lifting guide rod, 8. a lifting connecting plate, 9. a clamping cylinder rotating rod, 10. a clamping cylinder air cylinder, 11. a front conveying belt, 12. a rear conveying belt, 13. a rotating rack, 14. a driving gear, 15. a main belt pulley, 16. an auxiliary belt pulley, 17. a conveying belt, 18. a guide plate support, 19. a conveying connecting rod, 20. a push rod inclined plane, 21. a lifting spring, 22. a conveying inclined plane, 23. a clamping cylinder fixing claw, 24. a translation sleeve, 25. a push rod guide wheel and 26. a clamping cylinder rubber layer.
Detailed Description
To further describe the present invention, a specific embodiment of a yarn package transferring mechanism for spinning will be further explained with reference to the drawings, and the following embodiments are illustrative of the present invention and the present invention is not limited to the following embodiments.
As shown in figure 1, the utility model relates to a yarn cylinder transferring mechanism for spinning, which comprises a transferring bracket 1, a rotating disc 2, a transferring motor 3, a reciprocating guide plate 4, a fixed wedge block 5, a push rod wedge block 6, a lifting guide rod 7, a lifting connecting plate 8, a cylinder rotating rod 9, a cylinder air cylinder 10, a front conveying belt 11 and a rear conveying belt 12, the rotating disc 2 of the utility model is vertically and rotatably connected with the transferring bracket 1, a rotating rack 13 with a circular structure is fixedly attached to the outer surface of the rotating disc 2, a driving gear 14 is vertically and rotatably connected on the transferring bracket 1 at the upper side of the rotating disc 2, the driving gear 14 is meshed with the rotating rack 13, the transferring motor 3 is horizontally and fixedly arranged at one side of the transferring bracket 1, the output end of the transferring motor 3 is vertically and rotatably connected with a main belt pulley 15, an auxiliary belt pulley 16 is vertically and coaxially arranged at one side of the driving gear 14, and the main, guide plate brackets 18 are fixedly arranged on two sides of the transfer bracket 1 on one side of the rotating disc 2 respectively, the reciprocating guide plate 4 is arranged on the guide plate brackets 18 in a sliding mode along the horizontal direction, a transfer connecting rod 19 is arranged between the rotating disc 2 and the reciprocating guide plate 4, and two ends of the transfer connecting rod 19 are hinged to the outer side of the rotating disc 2 and the end portion of the reciprocating guide plate 4 respectively. As shown in figure 2, a lifting connecting plate 8 is horizontally arranged below one side of a reciprocating guide plate 4 of the utility model, a lifting guide rod 7 is vertically and fixedly arranged on each of two sides above the lifting connecting plate 8, the lifting guide rod 7 is arranged on the reciprocating guide plate 4 in a sliding way along the vertical direction, a push rod wedge block 6 is horizontally and fixedly arranged at the upper end of the lifting guide rod 7, a push rod inclined plane 20 is arranged on the upper side of the push rod wedge block 6, a lifting spring 21 is sleeved on the lifting guide rod 7 between the push rod wedge block 6 and the reciprocating guide plate 4, a fixed wedge block 5 is horizontally and fixedly arranged on a transfer bracket 1 on the upper side of the reciprocating guide plate 4, the fixed wedge block 5 is arranged on the upper side of the push rod wedge block 6, a transfer inclined plane 22 matched with the push rod inclined plane 20 is arranged on the lower side of the fixed wedge block 5, a block barrel rotating rod 9 is symmetrically arranged on two sides below the, card section of thick bamboo cylinder 10 level sets up in even board 8 downside of going up and down, and card section of thick bamboo cylinder 10 is double piston rod cylinder, and card section of thick bamboo cylinder 10 both sides output is articulated respectively in the card section of thick bamboo bull stick 9 of even board 8 below both sides of going up and down, the utility model discloses a preceding conveyer belt 11 and back conveyer belt 12 from last to down in proper order the level set up in the support 1 of transferring of reciprocal baffle 4 downside.
The utility model discloses a fixed translation sleeve 24 that is provided with 4 looks adaptations of reciprocal baffle with baffle support 18 one side level for reciprocating motion that carries out that reciprocal baffle 4 can be steady accurate. The utility model discloses a follow the incline direction and rotate horizontally in proper order on the push rod inclined plane 20 of the 6 upsides of push rod voussoir and be connected with a plurality of push rod guide pulleys 25 for push rod voussoir 6 can follow the high-efficient smooth and easy guided motion of the inclined plane 22 that transfers of fixed voussoir 5. The utility model discloses a card section of thick bamboo stationary dog 23 inboard of card section of thick bamboo bull stick 9 lower extreme is provided with card section of thick bamboo rubber layer 26, and it is fixed to enable the high-efficient steady chucking of a yarn section of thick bamboo.
By adopting the technical scheme, the utility model relates to a yarn barrel transfer mechanism for spinning, when using, through rotating disc 2 vertical rotation connect to transfer support 1, rotating disc 2 outside surface laminating fixed be provided with the rotating rack 13 of circular structure, rotating disc 2 upside transfer support 1 drive gear 14 with rotate rack 13 meshing connection, adopt transfer belt 17 transmission connection between the main belt pulley 15 of transfer motor 3 output and the auxiliary belt pulley 16 of drive gear 14 one side, utilize transfer motor 3 to drive gear 14 continuously and rotate, make rotating disc 2 can be in the continuous steady rotation under drive gear 14's drive, slide along the horizontal direction through reciprocating guide 4 and set up in baffle support 18, be provided with transfer connecting rod 19 between rotating disc 2 and reciprocating guide 4, make rotating disc 2 can utilize transfer connecting rod 19 to drive reciprocating guide 4 to reciprocate the translation motion continuously in the rotation process, a translation sleeve 24 matched with the reciprocating guide plate 4 is horizontally and fixedly arranged on one side of the guide plate bracket 18, so that the reciprocating guide plate 4 can stably and accurately reciprocate to perform translation motion, the lifting guide rods 7 on two sides above the lifting connecting plate 8 are arranged on the reciprocating guide plate 4 in a sliding manner along the vertical direction, the push rod wedge block 6 is horizontally and fixedly arranged at the upper end of the lifting guide rod 7, a push rod inclined plane 20 is arranged on the upper side of the push rod wedge block 6, a lifting spring 21 is sleeved on the lifting guide rod 7 between the push rod wedge block 6 and the reciprocating guide plate 4, a fixed wedge block 5 is horizontally and fixedly arranged on the transfer bracket 1 on the upper side of the reciprocating guide plate 4, a transfer inclined plane 22 matched with the push rod inclined plane 20 is arranged on the lower side of the fixed wedge block 5, the lifting guide rod 7 is driven by the reciprocating guide plate 4 to perform translation motion, when the push rod wedge block 6, when the lifting connecting plate 8 at the lower side of the lifting guide rod 7 carries out translational motion along the horizontal direction, the lifting motion can be synchronously carried out along the vertical direction, the clamping cylinder rotating rods 9 are symmetrically arranged at two sides below the lifting connecting plate 8, the upper ends of the clamping cylinder rotating rods 9 are hinged to the lifting connecting plate 8, clamping cylinder fixing claws 23 with arc structures are arranged at the lower ends of the clamping cylinder rotating rods 9, the output ends at two sides of a clamping cylinder 10 are respectively hinged to the clamping cylinder rotating rods 9 at two sides below the lifting connecting plate 8, the front conveying belt 11 and the rear conveying belt 12 are sequentially and horizontally arranged on the transfer support 1 at the lower side of the reciprocating guide plate 4 from top to bottom, the clamping cylinder rotating rods 9 are pushed by the clamping cylinder 10 to rotate in a reciprocating manner, so that yarn cylinders can be conveniently and stably clamped, fixed and placed in a releasing manner, the efficient one-by-one continuous transfer of the yarn cylinders is realized, a plurality of push rods 25 are, the push rod wedge block 6 can move along the transferring inclined plane 22 of the fixed wedge block 5 in a high-efficiency and smooth guiding manner, and the clamping cylinder rubber layer 26 is arranged on the inner side of the clamping cylinder fixing claw 23 at the lower end of the clamping cylinder rotating rod 9, so that the yarn cylinder can be clamped and fixed stably and efficiently. Through such structure, the utility model has the advantages of reasonable design, can high efficiency transfer a yarn section of thick bamboo steadily one by one in succession, the degree of automation height is transferred to a yarn section of thick bamboo, satisfies the needs of plant use.
The above description in this specification is merely illustrative of the present invention. Various modifications, additions and substitutions may be made by those skilled in the art without departing from the scope of the invention as defined in the accompanying claims.

Claims (4)

1. A yarn section of thick bamboo transfer mechanism for weaving which characterized in that: the yarn barrel transfer mechanism for spinning comprises a transfer support, a rotary disc, a transfer motor, a reciprocating guide plate, a fixed wedge block, a push rod wedge block, a lifting guide rod, a lifting connecting plate, a clamping cylinder rotary rod, a clamping cylinder, a front conveyor belt and a rear conveyor belt, wherein the rotary disc is vertically and rotatably connected to the transfer support, a rotary rack with a circular structure is fixedly attached to the outer side surface of the rotary disc, a driving gear is vertically and rotatably connected to the transfer support on the upper side of the rotary disc and meshed with the rotary rack, the transfer motor is horizontally and fixedly arranged on one side of the transfer support, the output end of the transfer motor is vertically and rotatably connected with a main belt pulley, an auxiliary belt pulley is vertically and coaxially arranged on one side of the driving gear, the main belt pulley and the auxiliary belt pulley are in transmission connection by the transfer belt, the guide plate, the reciprocating guide plate is arranged on the guide plate bracket in a sliding manner along the horizontal direction, a transfer connecting rod is arranged between the rotating disc and the reciprocating guide plate, two ends of the transfer connecting rod are respectively hinged to the outer side of the rotating disc and the end part of the reciprocating guide plate, a lifting connecting plate is horizontally arranged below one side of the reciprocating guide plate, lifting guide rods are respectively and vertically and fixedly arranged on two sides above the lifting connecting plate, the lifting guide rods are arranged on the reciprocating guide plate in a sliding manner along the vertical direction, a push rod wedge block is horizontally and fixedly arranged at the upper end of the lifting guide rods, a push rod inclined plane is arranged on the upper side of the push rod wedge block, a lifting spring is sleeved on the lifting guide rods between the push rod wedge block and the reciprocating guide plate, a fixed wedge block is horizontally and fixedly arranged on the transfer bracket on the upper side of the reciprocating guide plate, the upper end of the clamping cylinder rotating rod is hinged to the lifting connecting plate, the lower end of the clamping cylinder rotating rod is provided with a clamping cylinder fixing claw of an arc-shaped structure, the clamping cylinder is horizontally arranged on the lower side of the lifting connecting plate, the clamping cylinder is a double-piston-rod cylinder, the output ends of the two sides of the clamping cylinder are hinged to the clamping cylinder rotating rods on the two sides of the lower side of the lifting connecting plate respectively, and the front conveying belt and the rear conveying belt are sequentially horizontally arranged on the conveying support on the lower side of the reciprocating guide plate from top to bottom.
2. A bobbin transfer mechanism for spinning according to claim 1, wherein: and a translation sleeve matched with the reciprocating guide plate is horizontally and fixedly arranged on one side of the guide plate bracket.
3. A bobbin transfer mechanism for spinning according to claim 1, wherein: and a plurality of push rod guide wheels are sequentially and horizontally connected to the push rod inclined plane on the upper side of the push rod wedge block in a rotating manner along the inclined direction.
4. A bobbin transfer mechanism for spinning according to claim 1, wherein: and a clamping cylinder rubber layer is arranged on the inner side of the clamping cylinder fixing claw at the lower end of the clamping cylinder rotating rod.
CN201920999275.9U 2019-06-30 2019-06-30 A yarn section of thick bamboo transfer mechanism for weaving Active CN210558626U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920999275.9U CN210558626U (en) 2019-06-30 2019-06-30 A yarn section of thick bamboo transfer mechanism for weaving

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920999275.9U CN210558626U (en) 2019-06-30 2019-06-30 A yarn section of thick bamboo transfer mechanism for weaving

Publications (1)

Publication Number Publication Date
CN210558626U true CN210558626U (en) 2020-05-19

Family

ID=70632748

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920999275.9U Active CN210558626U (en) 2019-06-30 2019-06-30 A yarn section of thick bamboo transfer mechanism for weaving

Country Status (1)

Country Link
CN (1) CN210558626U (en)

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