CN112705426A - Impurity separation device of hydrogenated polyurethane multi-dimensional glue dispenser - Google Patents

Impurity separation device of hydrogenated polyurethane multi-dimensional glue dispenser Download PDF

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Publication number
CN112705426A
CN112705426A CN202011530966.8A CN202011530966A CN112705426A CN 112705426 A CN112705426 A CN 112705426A CN 202011530966 A CN202011530966 A CN 202011530966A CN 112705426 A CN112705426 A CN 112705426A
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CN
China
Prior art keywords
box
linkage
block
column
vibration
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Pending
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CN202011530966.8A
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Chinese (zh)
Inventor
李彦
李沛霖
栗筝
曲媛媛
栗建民
杨东
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Nanjing Hongkuang Silicon Material Co ltd
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Nanjing Hongkuang Silicon Material Co ltd
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Priority to CN202011530966.8A priority Critical patent/CN112705426A/en
Publication of CN112705426A publication Critical patent/CN112705426A/en
Pending legal-status Critical Current

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05CAPPARATUS FOR APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05C11/00Component parts, details or accessories not specifically provided for in groups B05C1/00 - B05C9/00
    • B05C11/10Storage, supply or control of liquid or other fluent material; Recovery of excess liquid or other fluent material
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05CAPPARATUS FOR APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05C11/00Component parts, details or accessories not specifically provided for in groups B05C1/00 - B05C9/00
    • B05C11/11Vats or other containers for liquids or other fluent materials

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Abstract

The invention provides an impurity separation device of a hydrogenated polyurethane multi-dimensional glue dispenser, which comprises a separation box and a supporting base, wherein the separation box is connected with the base through a vibration box, a material collecting box is further arranged on one side of the separation box, a feeding pipe is arranged at the upper part of the separation box, a sieve plate is arranged in the separation box, a flow guide hopper is arranged above the sieve plate and on the separation box, the flow guide hopper is arranged towards the material collecting box, a material guide plate is arranged in the separation box, and a material discharge hole is formed below the material guide plate. The material is fed into the separation box through the feeding pipe, the material is screened through the sieve plate, and the screened material is discharged through the diversion hopper and fed into the material receiving box; after screening, the materials are discharged from the discharge hole through the material guide discharging plate, so that the materials can be conveniently screened and separated.

Description

Impurity separation device of hydrogenated polyurethane multi-dimensional glue dispenser
Technical Field
The invention relates to the technical field of hydrogenated polyurethane multi-dimensional dispensing, in particular to an impurity separation device of a hydrogenated polyurethane multi-dimensional dispensing machine.
Background
Polyurethane is called polyurethane, and is a general name of macromolecular compounds containing repeated carbamate groups on a main chain, and polyurethane products have forms of soft, semi-hard and hard foamed plastics, elastomers, paint coatings, adhesives, sealants, synthetic leather coating resins, elastic fibers and the like, but a dispenser is usually required in the filling process of polyurethane;
the dispenser is also called a glue spreader, a glue dispenser and the like, is an automatic machine which is specially used for controlling fluid, dripping and coating the fluid on the surface of a product or in the product, can realize three-dimensional and four-dimensional path dispensing, can quickly perform spot-forming, line-drawing, circle-drawing and various irregular figures on the surface of the product, on the outer wall, on the vertical surface, in a gap and on a spherical curved surface, and polyurethane raw materials are abundant in impurities and particles in the basic raw materials or processed raw materials, so that the service life of the dispenser is easily influenced if the impurities in the raw materials are not separated, and the dispenser needs an impurity separation device to separate the polyurethane raw materials.
The existing impurity separation device has poor material screening and separating effects, and meanwhile, the separated materials are not easy to separate from the separation box, so that the separation efficiency is reduced.
Disclosure of Invention
The invention aims to provide an impurity separation device of a hydrogenated polyurethane multi-dimensional glue dispenser, which aims to solve the problems in the background technology.
In order to achieve the purpose, the invention provides the following technical scheme:
a impurity separation device of a hydrogenated polyurethane multi-dimensional glue dispenser comprises a separation box and a supporting base, wherein the separation box is connected with the base through a vibration box, a material collecting box is further arranged on one side of the separation box, a feeding pipe is arranged at the upper part of the separation box, a sieve plate is arranged in the separation box, a flow guide hopper is arranged above the sieve plate and on the separation box, the flow guide hopper is arranged towards the material collecting box, a material guide plate is arranged in the separation box, and a material discharge hole is formed below the material guide plate;
the vibration box is internally provided with a mounting box, the upper part of the mounting box is in an open shape and is connected with the top wall in the vibration box, the top of the vibration box is symmetrically provided with reciprocators, and the reciprocators are arranged in the mounting box; the reciprocator is connected with the linkage block, the linkage block is arranged in the mounting box in a sliding manner, and the linkage block is connected with the linkage device;
a power rotating shaft is arranged in the vibration box in a rotating mode, a first threaded area and a second threaded area are arranged on the power rotating shaft, threads of the first threaded area and threads of the second threaded area are opposite, the first threaded area and the second threaded area are in threaded connection with a screw block, the screw block is connected with a power vertical column, the power vertical column is connected with a power transverse column, the power transverse column penetrates through the mounting box to be connected with the reciprocator, a forward and reverse rotation motor is arranged on the outer wall of the vibration box, and an output shaft of the forward and reverse rotation motor is connected with the power rotating shaft; the supporting base side wall is also provided with a controller.
Preferably, the bottom wall is equipped with the spacing groove in the vibration box, and the spacing inslot slides and is equipped with the gag lever post, and the gag lever post is connected with the silk piece, and the spacing groove sets up in the region in first screw thread district, second screw thread district.
Preferably, separation box both sides wall articulates there is stable down tube, vibration box upper portion is equipped with stable slider, and stable slider slides in the stable inslot of vibration box upper wall and sets up, and stabilizes the down tube and stabilize the articulated setting of slider, it passes through stable spring with stable inslot to stabilize the slider and is connected.
Preferably, the reciprocator comprises a reciprocating box, a reciprocating block is slidably arranged in the reciprocating box, a hinge block is arranged on one side of the reciprocating block, the hinge block is hinged to a first hinge rod and a second hinge rod, the first hinge rod and the second hinge rod are connected with a first vibrating column and a second vibrating column, and the first vibrating column and the second vibrating column are slidably arranged in the reciprocating box; two first vibration posts pass through the vibration box and are connected with the separation box together, and two second vibration posts are connected with the linkage block together.
Preferably, the linkage device comprises a linkage box, a linkage sleeve column is arranged in the linkage box, a linkage sleeve block is sleeved on the linkage sleeve column in a sliding mode, linkage transverse columns are arranged on two sides of the linkage sleeve block and connected with linkage vertical columns, the linkage vertical columns penetrate through the linkage box and are connected with the linkage block, and the linkage sleeve block is connected with the bottom wall in the linkage box through linkage springs.
Preferably, linkage pulleys are arranged at two ends of the linkage cross column and are arranged in the linkage box in a sliding mode.
Preferably, the linkage horizontal pole lower part is equipped with the contact post, and the contact post bottom is connected with the contact piece, and the contact piece lower part symmetry is equipped with the branch pole, divides the pole to be connected with the rubber ball.
Preferably, the controller comprises a control box, a control slider is slidably arranged in the control box, a control moving rod is arranged at the lower part of the control slider, a fixed plate is arranged in the control box, the control moving rod penetrates through the fixed plate to be connected with a touch piece, a reverse rotation touch piece is arranged on the bottom wall of the control box, a forward rotation touch piece is arranged at the bottom of the fixed plate, a pulling column is arranged at the upper part of the control slider, the pulling column penetrates through the control box to be connected with a pulling ball, a pulling spring is sleeved on the pulling column, one end of the pulling spring is connected with the control box.
Preferably, the contact piece is electrically connected with the forward rotation contact piece in a contact manner to control forward rotation of the forward and reverse rotation motor, and the contact piece is electrically connected with the reverse rotation contact piece in a contact manner to control reverse rotation of the forward and reverse rotation motor.
Compared with the prior art, the invention has the beneficial effects that
(1) The material is fed into the separation box through the feeding pipe, the material is screened through the sieve plate, and the screened material is discharged through the diversion hopper and fed into the material receiving box; the screened materials pass through a material guide plate, and are discharged from a discharge hole; the positive and negative rotation motor is started, the power rotating shaft rotates, the first threaded area and the second threaded area rotate, and the first threaded area and the second threaded area are in threaded connection with the screw blocks, so that the movement of the screw blocks is realized, the power vertical column is driven to move, and the power transverse column is moved; the power transverse column moves, the reciprocating block moves, and the first hinge rod and the second hinge rod are in hinge fit to drive the first vibrating column and the second vibrating column to move so as to drive the separating box and the linkage block to move; the separation box can vibrate up and down through the positive and negative rotation of the positive and negative rotation motor, so that the material screening effect is improved.
(2) The linkage block moves to drive the linkage vertical column to move, then the linkage sleeve block slides on the linkage sleeve column, the linkage spring is compressed, and meanwhile, the contact column moves downwards to drive the rubber ball to move, so that the contact with the linkage box is realized; thereby improving the stability of the vertical vibration of the separation box.
(3) Through pulling the ball, the pulling post pulling, control slider rebound realizes then that the touching piece contacts the reversal of electric connection control positive and negative motor with the reversal contact piece, presses the pulling post, touches the corotation of piece and corotation contact electric connection control positive and negative motor, realizes then the positive and negative rotation of positive and negative motor, and then vibrations about realizing the separator box.
Drawings
FIG. 1 is a schematic perspective view of the present invention;
FIG. 2 is a schematic plan view of the present invention;
FIG. 3 is an enlarged schematic view of FIG. 2 at A in accordance with the present invention;
FIG. 4 is a schematic structural view of a stabilizing slider and a stabilizing slot in accordance with the present invention;
FIG. 5 is a schematic view of the construction of the shuttle of the present invention;
FIG. 6 is a schematic structural view of a linkage according to the present invention;
fig. 7 is a schematic structural diagram of the controller of the present invention.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Referring to fig. 1-3, in the embodiment of the present invention, an impurity separation apparatus for a hydrogenated polyurethane multi-dimensional dispenser includes a separation box 1 and a support base 2, the separation box 1 is connected to the base 2 through a vibration box 3, a material receiving box 4 is further disposed on one side of the separation box 1, a material feeding pipe 5 is disposed on the upper portion of the separation box 1, a sieve plate 6 is disposed in the separation box 1, a flow guide hopper 7 is disposed above the sieve plate 6 and on the separation box 1, the flow guide hopper 7 is disposed toward the material receiving box 4, a material guiding plate 8 is disposed in the separation box 1, and a material discharging port 9 is disposed below the material guiding plate 8;
a mounting box 10 is arranged in the vibration box 3, the upper part of the mounting box 10 is open and is connected with the inner top wall of the vibration box 3, the top of the vibration box 3 is symmetrically provided with reciprocators 11, and the reciprocators 11 are arranged in the mounting box 10; the reciprocator 11 is connected with the linkage block 12, the linkage block 12 is arranged in the mounting box 10 in a sliding way, and the linkage block 12 is connected with the linkage 13;
a power rotating shaft 14 is rotatably arranged in the vibration box 3, a first threaded area 15 and a second threaded area 16 are arranged on the power rotating shaft 14, the threads of the first threaded area 15 and the threads of the second threaded area 16 are opposite, the first threaded area 15 and the second threaded area 16 are in threaded connection with a screw block 17, the screw block 17 is connected with a power vertical post 18, the power vertical post 18 is connected with a power cross post 19, the power cross post 19 penetrates through the mounting box 10 to be connected with the reciprocator 11, a forward and reverse rotation motor 20 is arranged on the outer wall of the vibration box 3, and an output shaft of the forward and reverse rotation motor 20 is connected with the power rotating shaft 14; the side wall of the supporting base 2 is also provided with a controller 26.
The material is fed into a separation box through a feeding pipe 5, the material is screened through a sieve plate 6, and the screened material is discharged through a flow guide hopper 7 and fed into a material receiving box 4; the screened materials pass through a material guide plate 8, and are discharged from a material outlet 9;
the positive and negative rotation motor 20 is started, the power rotating shaft 14 rotates, the first threaded area 15 and the second threaded area 16 rotate, the first threaded area 15 and the second threaded area 16 are in threaded connection with the screw block 17, and then the movement of the screw block 17 is realized, and further the power vertical column 18 is driven to move, and then the movement of the power transverse column 19 is realized;
referring to fig. 4, the bottom wall of the vibrating box 3 of the present embodiment is provided with a limiting groove 21, a limiting rod 22 is slidably disposed in the limiting groove 21, the limiting rod 22 is connected with the screw block 17, and the limiting groove 21 is disposed in the first threaded area 15 and the second threaded area 16.
The 1 both sides wall of separator box of this embodiment articulates there is stable down tube 22, 3 upper portions of vibrating bin are equipped with stable slider 23, and stable slider 23 slides in the stable groove 24 of vibrating bin 3 upper wall and sets up, and stabilizes down tube 22 and stabilize the articulated setting of slider 23, it is connected through stabilizing spring 25 with stable groove 24 to stabilize slider 23.
Referring to fig. 5, the reciprocator 11 of the present embodiment includes a reciprocating box 111, a reciprocating block 112 is slidably disposed in the reciprocating box 111, a hinge block 113 is disposed on one side of the reciprocating block 112, the hinge block 113 is hinged to a first hinge rod 114 and a second hinge rod 115, the first hinge rod 114 and the second hinge rod 115 are connected to a first vibrating column 116 and a second vibrating column 117, and the first vibrating column 116 and the second vibrating column 117 are slidably disposed in the reciprocating box 111; two first vibration columns 116 pass through the vibration box 3 and are connected with the separation box 1 together, and two second vibration columns 117 are connected with the linkage block 12 together.
The power transverse column 19 moves, the reciprocating block 112 moves, and the first hinge rod 114 and the second hinge rod 115 are in hinge fit to drive the first vibration column 116 and the second vibration column 117 to move so as to drive the separation box 1 and the linkage block 12 to move; the separation box 1 can vibrate up and down through the positive and negative rotation of the positive and negative rotation motor 20, so that the material screening effect is improved.
Referring to fig. 6, the linkage 13 of the present embodiment includes a linkage box 131, a linkage sleeve 132 is disposed in the linkage box 131, a linkage sleeve 133 is slidably sleeved on the linkage sleeve 132, linkage cross posts 134 are disposed on two sides of the linkage sleeve 133, the linkage cross posts 134 are connected to a linkage vertical post 1311, the linkage vertical post 1311 passes through the linkage box 131 and is connected to the linkage block 12, and the linkage sleeve 133 is connected to an inner bottom wall of the linkage box 131 through a linkage spring 136.
The linkage cross column 134 of the present embodiment is provided with linkage pulleys 135 at both ends thereof, and the linkage pulleys 135 are slidably disposed in the linkage box 131.
The lower part of the linkage transverse column 134 of the embodiment is provided with a contact column 137, the bottom end of the contact column 137 is connected with a contact block 138, the lower part of the contact block 138 is symmetrically provided with branch rods 139, and the branch rods 139 are connected with a rubber ball 1310.
The linkage block 12 moves to drive the linkage vertical column 1311 to move, then the linkage sleeve block 133 slides on the linkage sleeve column 132, the linkage spring 136 compresses, and meanwhile, the contact column 137 moves downwards to drive the rubber ball 1310 to move, so that the contact with the linkage box 131 is realized; thereby improving the stability of the vertical vibration of the separation box 1;
referring to fig. 7, the controller 26 of the present embodiment includes a control box 261, a control slider 262 is slidably disposed in the control box 261, a control rod 263 is disposed at a lower portion of the control slider 262, a fixed plate 264 is disposed in the control box 261, the control rod 263 passes through the fixed plate 264 and is connected to a touch plate 265, a reverse rotation contact 266 is disposed on a bottom wall of the control box 261, a forward rotation contact 267 is disposed at a bottom of the fixed plate 264, a pulling column 268 is disposed at an upper portion of the control slider 262, the pulling column 268 passes through the control box 261 and is connected to a pulling ball 269, a pulling spring 2610 is sleeved on the pulling column 268, one end of the pulling spring 2610 is connected to the control box 261.
The contact piece 265 of the present embodiment is in contact with the normal rotation contact piece 267 to electrically control the normal rotation of the forward/reverse motor 20, and the contact piece 265 is in contact with the reverse rotation contact piece 266 to electrically control the reverse rotation of the forward/reverse motor 20.
Through pulling ball 269, pulling post 268 pulls, and control slider 262 upward movement realizes then that touching piece 265 contacts the reversal of electric connection control positive reverse rotation motor 20 with reversal contact piece 266, presses and pulls post 268, and touching piece 265 contacts the corotation electric connection control positive reverse rotation motor 20 with corotation contact piece 267 and then realizes the just reverse rotation of positive reverse rotation motor 20, and then realizes the upper and lower vibrations of separator 1.
The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.
Furthermore, it should be understood that although the present description refers to embodiments, not every embodiment may contain only a single embodiment, and such description is for clarity only, and those skilled in the art should integrate the description, and the embodiments may be combined as appropriate to form other embodiments understood by those skilled in the art.

Claims (9)

1. The impurity separation device of the hydrogenated polyurethane multi-dimensional glue dispenser comprises a separation box (1) and a supporting base (2), and is characterized in that the separation box (1) is connected with the base (2) through a vibration box (3), a material collecting box (4) is further arranged on one side of the separation box (1), a feeding pipe (5) is arranged on the upper portion of the separation box (1), a sieve plate (6) is arranged in the separation box (1), a flow guide hopper (7) is arranged above the sieve plate (6) and above the separation box (1), the flow guide hopper (7) is arranged towards the material collecting box (4), a material guide plate (8) is arranged inside the separation box (1), and a discharge hole (9) is formed below the material guide plate (8);
a mounting box (10) is arranged in the vibration box (3), the upper part of the mounting box (10) is open and is connected with the inner top wall of the vibration box (3), the top of the vibration box (3) is symmetrically provided with reciprocators (11), and the reciprocators (11) are arranged in the mounting box (10); the reciprocating device (11) is connected with the linkage block (12), the linkage block (12) is arranged in the mounting box (10) in a sliding mode, and the linkage block (12) is connected with the linkage device (13);
a power rotating shaft (14) is arranged in the vibration box (3) in a rotating mode, a first threaded area (15) and a second threaded area (16) are arranged on the power rotating shaft (14), threads of the first threaded area (15) and the second threaded area (16) are opposite, a thread block (17) is connected to the first threaded area (15) and the second threaded area (16) in a threaded mode, the thread block (17) is connected with a power vertical column (18), the power vertical column (18) is connected with a power transverse column (19), the power transverse column (19) penetrates through the mounting box (10) to be connected with the reciprocator (11), a forward and reverse rotation motor (20) is arranged on the outer wall of the vibration box (3), and an output shaft of the forward and reverse rotation motor (20) is connected with the power rotating shaft (14); the side wall of the supporting base (2) is also provided with a controller (26).
2. The impurity separation device for the hydrogenated polyurethane multi-dimensional glue dispenser according to claim 1, wherein a limiting groove (21) is formed in the inner bottom wall of the vibration box (3), a limiting rod (22) is slidably arranged in the limiting groove (21), the limiting rod (22) is connected with the screw block (17), and the limiting groove (21) is formed in the region of the first threaded region (15) and the second threaded region (16).
3. The impurity separating device for the hydrogenated polyurethane multi-dimensional glue dispenser according to claim 1, wherein two side walls of the separating box (1) are hinged with stabilizing inclined rods (22), the upper part of the vibrating box (3) is provided with a stabilizing sliding block (23), the stabilizing sliding block (23) is arranged in a stabilizing groove (24) on the upper wall of the vibrating box (3) in a sliding manner, the stabilizing inclined rods (22) are hinged with the stabilizing sliding block (23), and the stabilizing sliding block (23) is connected with the stabilizing groove (24) through stabilizing springs (25).
4. The impurity separation device of the hydrogenated polyurethane multi-dimensional glue dispenser according to claim 1, wherein the reciprocator (11) comprises a reciprocator box (111), a reciprocator block (112) is slidably arranged in the reciprocator box (111), a hinge block (113) is arranged on one side of the reciprocator block (112), the hinge block (113) is hinged to a first hinge rod (114) and a second hinge rod (115), the first hinge rod (114) and the second hinge rod (115) are connected to a first vibration column (116) and a second vibration column (117), and the first vibration column (116) and the second vibration column (117) are slidably arranged in the reciprocator box (111); the two first vibrating columns (116) penetrate through the vibrating box (3) and are connected with the separating box (1) together, and the two second vibrating columns (117) are connected with the linkage block (12) together.
5. The impurity separating device of the hydrogenated polyurethane multi-dimensional glue dispenser according to claim 1, wherein the linkage device (13) comprises a linkage box (131), a linkage sleeve column (132) is arranged in the linkage box (131), a linkage sleeve block (133) is slidably sleeved on the linkage sleeve column (132), linkage cross columns (134) are arranged on two sides of the linkage sleeve block (133), the linkage cross columns (134) are connected with a linkage vertical column (1311), the linkage vertical column (1311) penetrates through the linkage box (131) to be connected with the linkage block (12), and the linkage sleeve block (133) is connected with the inner bottom wall of the linkage box (131) through a linkage spring (136).
6. The impurity separating device of the hydrogenated polyurethane multi-dimensional glue dispenser according to claim 5, wherein linkage pulleys (135) are arranged at two ends of the linkage cross column (134), and the linkage pulleys (135) are arranged in the linkage box (131) in a sliding manner.
7. The impurity separating device of the hydrogenated polyurethane multi-dimensional glue dispenser according to claim 5, wherein the lower part of the linkage cross column (134) is provided with a contact column (137), the bottom end of the contact column (137) is connected with a contact block (138), the lower part of the contact block (138) is symmetrically provided with a branch rod (139), and the branch rod (139) is connected with a rubber ball (1310).
8. The impurity separating device of the hydrogenated polyurethane multi-dimensional glue dispenser according to claim 1, wherein the controller (26) comprises a control box (261), a control slider (262) is slidably arranged in the control box (261), a control moving rod (263) is arranged at the lower part of the control slider (262), a fixed plate (264) is arranged in the control box (261), the control moving rod (263) passes through the fixed plate (264) to be connected with a touch plate (265), a reverse rotation contact plate (266) is arranged on the inner bottom wall of the control box (261), a forward rotation contact plate (267) is arranged at the bottom of the fixed plate (264), a pulling column (268) is arranged at the upper part of the control slider (262), the pulling column (268) passes through the control box (261) to be connected with a pulling ball (269), a pulling spring (2610) is sleeved on the pulling column (268), and one end of the pulling spring (2610) is connected with the control box, the other end is connected with a control slide block (262).
9. The impurity separating device for the hydrogenated polyurethane multi-dimensional glue dispenser according to claim 8, wherein the contact piece (265) is in contact with the forward rotation contact piece (267) to electrically control the forward rotation of the forward and reverse rotation motor (20), and the contact piece (265) is in contact with the reverse rotation contact piece (266) to electrically control the reverse rotation of the forward and reverse rotation motor (20).
CN202011530966.8A 2020-12-22 2020-12-22 Impurity separation device of hydrogenated polyurethane multi-dimensional glue dispenser Pending CN112705426A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202011530966.8A CN112705426A (en) 2020-12-22 2020-12-22 Impurity separation device of hydrogenated polyurethane multi-dimensional glue dispenser

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Application Number Priority Date Filing Date Title
CN202011530966.8A CN112705426A (en) 2020-12-22 2020-12-22 Impurity separation device of hydrogenated polyurethane multi-dimensional glue dispenser

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US3442381A (en) * 1966-04-25 1969-05-06 Louis W Johnson Vibratory screening apparatus
JPH1043689A (en) * 1996-05-28 1998-02-17 Komaki Kogyo Kk Vibrating screen
CN108541958A (en) * 2018-05-09 2018-09-18 钱红双 A kind of high efficiency groundnut sheller
CN208600148U (en) * 2018-07-13 2019-03-15 韩阳 A kind of sandstone of building field quickly filters miscellaneous equipment
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CN111030334A (en) * 2019-12-25 2020-04-17 扬中市飞达通信设备有限公司 Novel motor stator and rotor punching sheet
CN211802298U (en) * 2020-03-22 2020-10-30 贵州省霖生木业有限公司 Machine-made charcoal raw material vibration screening device
CN211989641U (en) * 2020-04-20 2020-11-24 安徽中宝分子筛有限公司 Impurity removing device for molecular sieve production
CN111644382A (en) * 2020-06-03 2020-09-11 湖南一方天江药业有限公司 A screening gumming device for production of traditional chinese medicine granule
CN111840797A (en) * 2020-08-03 2020-10-30 吴新标 Magnetic therapy moxibustion bed

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