CN210390178U - Winding and weaving integrated machine for composite pipeline - Google Patents

Winding and weaving integrated machine for composite pipeline Download PDF

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Publication number
CN210390178U
CN210390178U CN201920817180.0U CN201920817180U CN210390178U CN 210390178 U CN210390178 U CN 210390178U CN 201920817180 U CN201920817180 U CN 201920817180U CN 210390178 U CN210390178 U CN 210390178U
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machine
weaving
rod
chassis
winding
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CN201920817180.0U
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Chinese (zh)
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崔玉利
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Xuzhou Juzheng Machinery Co Ltd
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Xuzhou Juzheng Machinery Co Ltd
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Abstract

The utility model relates to the technical field of composite pipeline manufacturing equipment, and discloses a composite pipeline winding and weaving integrated machine, which comprises a braiding machine, a chassis and a supporting seat; the top intermediate position on chassis is provided with the motor, the upside output of motor is rotated and is connected with vertical branch, four groups of connecting rods are installed to the upper portion side equidistance of branch, the terminal fixed mounting of connecting rod has the mounting panel, the outside of mounting panel is the horizontal ejector pin of a plurality of groups of rectangle arrangement, the equal fixed supporting seat of having placed in the position of the left and right sides on chassis, the fixed cylinder that is provided with in top of supporting seat, the terminal fixed mounting that is located the left side piston rod has first mounting bracket, the terminal fixed mounting that is located the right side piston rod has the second mounting bracket, the detachable sleeve pipe of installing in position of ejector pin on the corresponding mounting panel in left side of second mounting bracket, the right side. The utility model has the advantages that: simple structure, degree of automation is high, and work efficiency is high.

Description

Winding and weaving integrated machine for composite pipeline
Technical Field
The utility model relates to a composite pipe makes equipment technical field, specifically is an all-in-one is woven in composite pipe winding.
Background
A closed motor requires a composite sleeve with a wound sleeve inside and a braided sleeve outside. At present, no special equipment is used for producing the composite sleeve, the composite sleeve is manually fed into a knitting machine on a common knitting machine, and the composite sleeve is taken down before entering a traction wheel of the knitting machine after a section of the composite sleeve is knitted.
Chinese patent (publication No. CN 208472313U, publication No. 2019.02.05) discloses a composite pipeline winding and weaving all-in-one machine, which comprises: the device comprises a wrapping and weaving device, a horizontal type weaving machine, a rack and a base; the lapping and weaving device is positioned at the front end, the horizontal type braiding machine is positioned behind the lapping and weaving device, the lapping and weaving device and the horizontal type braiding machine are both horizontally placed and connected to the rack, and the rack is connected to the base; the wrapping and weaving device comprises: a wrapping device and a horizontal knitting machine; the wrapping device is arranged at the central annular hole of the horizontal knitting machine; the horizontal braiding machine of the wrapping braiding device has the same structure as the horizontal braiding machine arranged behind the wrapping braiding device. However, the device has the disadvantages of complex structure, high manufacturing cost, manual participation, general automation degree and low working efficiency.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide an all-in-one is woven in compound pipeline winding to solve the problem that proposes among the above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme: a winding and weaving integrated machine for a composite pipeline comprises a weaving machine, a chassis and a supporting seat; the top intermediate position on chassis is provided with the motor, and the upside output of motor rotates and is connected with vertical branch, and four groups of connecting rods are installed to the upper portion side equidistance of branch, and the end of connecting rod has the mounting panel through cushion fixed mounting, and the outside of mounting panel is the horizontal ejector pin of a plurality of groups of rectangle arrangements, orders about branch through starter motor and rotates, and then drives the four groups of mounting panels around in branch top and rotate. The supporting seat has all been fixed in the position of the left and right sides on chassis, the front side position on chassis is provided with the braider, the fixed cylinder that is provided with in top of supporting seat, one side output of cylinder is provided with the piston rod, the terminal fixed mounting that is located the piston rod in left side has first mounting bracket, the terminal fixed mounting that is located the piston rod in right side has the second mounting bracket, the detachable sleeve pipe of installing in position of ejector pin on the corresponding mounting panel in left side of second mounting bracket, drive the piston rod through starting the cylinder and remove left, and then drive the left sleeve pipe suit of second mounting bracket on. Then the motor is started to drive the sleeved ejector rod to rotate leftwards to the interior of the braiding machine, then the sleeve on the ejector rod is subjected to winding braiding processing through the braiding machine, and after the sleeve is wound and braided, the sleeve is rotated to the left side of the chassis through the motor. The right side of the first mounting bracket corresponds to a rotary groove fixed mounting on the mounting plate and is provided with a cross rod, the upper side and the lower side of the cross rod are fixedly provided with clamping rods, the piston rod is driven to move rightwards by starting the air cylinder, the sucking disc adsorbs the woven composite pipeline, then the sucking disc is driven to move leftwards by the air cylinder, and the composite pipeline is separated from the ejector rod.
As a further aspect of the present invention: the clamping rod is of an L-shaped structure.
As a further aspect of the present invention: the tail end of the clamping rod is fixedly provided with a sucker.
As a further aspect of the present invention: the outside of mounting panel is the rectangle and arranges and has seted up a plurality of groups of swivelling chute, and the inside rotation of swivelling chute is connected with horizontal ejector pin, through rotating the ejector pin and connect on the mounting panel, and the ejector pin of being convenient for carries out the suit with the swivelling chute to improve the efficiency of work.
Compared with the prior art, the beneficial effects of the utility model are that: firstly, ejector rods are installed on four groups of installation plates, then a cylinder is started to drive a sleeve on the left side of a second installation frame to be sleeved on the ejector rods, then a support rod is rotated, the ejector rods sleeved with the sleeves are rotated to the inside of a braiding machine to be wound and braided, then the support rod is rotated to rotate the ejector rods wound and braided to the opposite side of a sucker, then the cylinder is started to drive the sucker to adsorb the ejector rods, then the cylinder moves leftwards, the sleeves wound and braided are separated from the ejector rods, and the operation is carried out repeatedly. The whole process is carried out by adopting an integrated flow, does not need artificial participation, and has high automation degree, simple structure and high production efficiency.
Drawings
Fig. 1 is a schematic structural diagram of a winding and weaving all-in-one machine for composite pipes.
Fig. 2 is a schematic view of a three-dimensional connection structure of a support rod and a mounting plate in a composite pipeline winding and weaving all-in-one machine.
Fig. 3 is an enlarged schematic view of a in fig. 1.
Wherein: the knitting machine comprises a knitting machine 10, a supporting seat 11, a first mounting frame 12, a supporting rod 13, a mounting plate 14, a push rod 15, a rotating groove 16, a sleeve 17, a second mounting frame 18, a piston rod 19, an air cylinder 20, a connecting rod 21, a cross rod 22, a clamping rod 23, a suction cup 24, a chassis 25 and a motor 26.
Detailed Description
The technical solution of the present patent will be described in further detail with reference to the following embodiments.
Example one
Referring to fig. 1-3, a composite pipe winding and braiding machine includes a braiding machine 10, a chassis 25 and a supporting base 11; the top intermediate position of chassis 25 is provided with motor 26, and the upside output of motor 26 rotates and is connected with vertical branch 13, and four groups of connecting rods 21 are installed to the upper portion side equidistance of branch 13, and there is mounting panel 14 at the end of connecting rod 21 through cushion fixed mounting, and the outside of mounting panel 14 is the horizontal ejector pin 15 of a plurality of groups of rectangle arrangements, drives branch 13 through starter motor 26 and rotates, and then drives branch 13 top four groups of mounting panel 14 all around and rotate. Supporting seat 11 has all been fixed in the position of the left and right sides of chassis 25, chassis 25's front side position is provided with braider 10, the fixed cylinder 20 that is provided with in top of supporting seat 11, one side output of cylinder 20 is provided with piston rod 19, the terminal fixed mounting that is located left side piston rod 19 has first mounting bracket 12, the terminal fixed mounting that is located right side piston rod 19 has second mounting bracket 18, the detachable sleeve pipe 17 of installing in ejector pin 15's position on the corresponding mounting panel 14 in left side of second mounting bracket 18, drive piston rod 19 and move left through actuating cylinder 20, and then drive the left sleeve pipe 17 suit of second mounting bracket 18 on swivelling chute 16. Then the motor 26 is started to drive the sleeved ejector rod 15 to rotate to the left inside the knitting machine 10, then the sleeve 17 on the ejector rod 15 is wound and knitted by the knitting machine 10, and after the sleeve 17 is wound and knitted, the sleeve is rotated to the left side of the bottom disc 25 by the motor 26.
The right side of the first mounting frame 12 corresponds to the rotary groove 16 on the mounting plate 14 and is fixedly provided with a cross rod 22, the upper side and the lower side of the cross rod 22 are fixedly provided with clamping rods 23, the clamping rods 23 are arranged to be L-shaped structures, the tail ends of the clamping rods 23 are fixedly provided with sucking discs 24, the piston rod 19 is driven to move rightwards by starting the air cylinder 20, the sucking discs 24 are made to adsorb the braided composite pipeline, then the sucking discs 24 are driven by the air cylinder 20 to move leftwards, and the composite pipeline is separated from the ejector rod 15.
The utility model discloses a theory of operation is: firstly, ejector rods 15 are installed on four groups of installation plates 14, then an air cylinder 20 is started to drive a sleeve 17 on the left side of a second installation frame 18 to be sleeved on the ejector rods 15, then a support rod 13 is rotated, the ejector rods 15 of the sleeved sleeve 17 are rotated into a braiding machine 10 to be wound and braided, then the support rod 13 is rotated to rotate the ejector rods 15 wound and braided to be opposite to a suction disc 24, then the air cylinder 20 is started to drive the suction disc 24 to adsorb the ejector rods 15, then the support rod moves leftwards, the sleeve 17 wound and braided is separated from the ejector rods 15, and the operation is repeatedly carried out.
Example two
On the basis of embodiment one, the outside of mounting panel 14 is the rectangle and arranges and has seted up a plurality of sets of swivelling chute 16, and the inside rotation of swivelling chute 16 is connected with horizontal ejector pin 15, through rotating ejector pin 15 and connecting on mounting panel 14, and the ejector pin 15 of being convenient for carries out the suit with swivelling chute 16 to improve the efficiency of work.
Although the preferred embodiments of the present patent have been described in detail, the present patent is not limited to the above embodiments, and various changes can be made without departing from the spirit of the present patent within the knowledge of those skilled in the art.

Claims (5)

1. A composite pipe winding and weaving integrated machine comprises a weaving machine (10), a chassis (25) and a supporting seat (11); the knitting machine is characterized in that a motor (26) is arranged in the middle of the top of a chassis (25), the output end of the upper side of the motor (26) is rotatably connected with a vertical support rod (13), four groups of connecting rods (21) are equidistantly installed on the side surface of the upper portion of the support rod (13), a mounting plate (14) is fixedly installed at the tail end of each connecting rod (21), a plurality of groups of transverse ejector rods (15) are arranged on the outer side of the mounting plate (14) in a rectangular mode, supporting seats (11) are fixedly placed at the positions of the left side and the right side of the chassis (25), a knitting machine (10) is arranged at the front side of the chassis (25), an air cylinder (20) is fixedly arranged at the top of each supporting seat (11), a piston rod (19) is arranged at the output end of one side of the air cylinder (20), a first mounting frame, the left side of the second mounting frame (18) corresponds to the position of the upper ejector rod (15) of the mounting plate (14) and is detachably provided with a sleeve (17), the right side of the first mounting frame (12) corresponds to the rotary groove (16) of the mounting plate (14) and is fixedly provided with a cross rod (22), and the upper side and the lower side of the cross rod (22) are fixedly provided with clamping rods (23).
2. The winding and weaving all-in-one machine for composite pipes according to claim 1, characterized in that a cushion block is arranged between the connecting rod (21) and the mounting plate (14).
3. The winding and weaving all-in-one machine for composite pipes as claimed in claim 2, characterized in that the clamping bar (23) is arranged in an L-shaped structure.
4. The winding and weaving all-in-one machine for composite pipes as claimed in claim 3, characterized in that the tail end of the clamping rod (23) is fixedly provided with a suction cup (24).
5. The winding and weaving all-in-one machine for the composite pipeline is characterized in that a plurality of groups of rotating grooves (16) are formed in the outer side of the mounting plate (14) in a rectangular arrangement mode, and transverse ejector rods (15) are rotatably connected to the inner portions of the rotating grooves (16).
CN201920817180.0U 2019-06-03 2019-06-03 Winding and weaving integrated machine for composite pipeline Active CN210390178U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920817180.0U CN210390178U (en) 2019-06-03 2019-06-03 Winding and weaving integrated machine for composite pipeline

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920817180.0U CN210390178U (en) 2019-06-03 2019-06-03 Winding and weaving integrated machine for composite pipeline

Publications (1)

Publication Number Publication Date
CN210390178U true CN210390178U (en) 2020-04-24

Family

ID=70346416

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920817180.0U Active CN210390178U (en) 2019-06-03 2019-06-03 Winding and weaving integrated machine for composite pipeline

Country Status (1)

Country Link
CN (1) CN210390178U (en)

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