CN110156921A - A kind of polyvinyl chloride resin production equipment that stability is high - Google Patents

A kind of polyvinyl chloride resin production equipment that stability is high Download PDF

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Publication number
CN110156921A
CN110156921A CN201910527192.4A CN201910527192A CN110156921A CN 110156921 A CN110156921 A CN 110156921A CN 201910527192 A CN201910527192 A CN 201910527192A CN 110156921 A CN110156921 A CN 110156921A
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CN
China
Prior art keywords
main body
dehydration tube
driving
connecting rod
protective cover
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CN201910527192.4A
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Chinese (zh)
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董赵卜
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Individual
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Individual
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Priority to CN201910527192.4A priority Critical patent/CN110156921A/en
Publication of CN110156921A publication Critical patent/CN110156921A/en
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    • CCHEMISTRY; METALLURGY
    • C08ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
    • C08FMACROMOLECULAR COMPOUNDS OBTAINED BY REACTIONS ONLY INVOLVING CARBON-TO-CARBON UNSATURATED BONDS
    • C08F114/00Homopolymers of compounds having one or more unsaturated aliphatic radicals, each having only one carbon-to-carbon double bond, and at least one being terminated by a halogen
    • C08F114/02Monomers containing chlorine
    • C08F114/04Monomers containing two carbon atoms
    • C08F114/06Vinyl chloride
    • CCHEMISTRY; METALLURGY
    • C08ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
    • C08FMACROMOLECULAR COMPOUNDS OBTAINED BY REACTIONS ONLY INVOLVING CARBON-TO-CARBON UNSATURATED BONDS
    • C08F6/00Post-polymerisation treatments

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  • Chemical & Material Sciences (AREA)
  • Health & Medical Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Medicinal Chemistry (AREA)
  • Polymers & Plastics (AREA)
  • Organic Chemistry (AREA)
  • Main Body Construction Of Washing Machines And Laundry Dryers (AREA)

Abstract

The present invention relates to a kind of polyvinyl chloride resin production equipment that stability is high, including main body, protective cover, dehydration tube, transmission shaft and outlet pipe, the shape of the main body is cylinder, the bottom of main body is arranged in the outlet pipe, the bottom of the main body is equipped with through-hole, the transmission shaft and main body are coaxially disposed, the transmission shaft passes through through-hole, the transmission shaft is slidingly and sealingly connect with through-hole, the dehydration tube is arranged in main body, the bottom of the main body is equipped with driving device, the dehydration tube is mounted on one end of transmission shaft, the transmission connection of the other end of the driving device and transmission shaft, the protective cover is matched with main body, the protective cover lid is located in main body, auxiliary body and stabilizing mechanism are equipped in the main body, the high polyvinyl chloride resin production equipment of the stability improves the function of realizing dehydration by auxiliary body, no Only in this way, also improving the stability of dehydration tube rotation by stabilizing mechanism, avoid dehydration tube that vibration occurs and generates noise.

Description

A kind of polyvinyl chloride resin production equipment that stability is high
Technical field
The present invention relates to polyvinyl chloride resin production apparatus field, in particular to a kind of Corvic that stability is high Production equipment.
Background technique
Its main ingredient of Corvic is polyvinyl chloride, additionally incorporates other compositions to enhance its heat resistance, toughness, Ductility etc., be liked deeply in the world today, a kind of rather popular and synthetic material for being also widely used, wherein Suspension polymerization makes one kind of polyvinyl chloride resin production mode, and suspension polymerization is that monomer is made to be in the form of droplets suspended dispersed in water The oil-soluble initiator of Xiang Zhong, selection are then dissolved in monomer, and polymerization reaction just carries out in these droplets, and polymerization reaction heat is timely Be only absorbed by the water, be in pearl dispersion in order to guarantee these droplets in water, need that suspension stabilizer is added, as gelatin, polyvinyl alcohol, Methylcellulose, hydroxyethyl cellulose etc., initiator mostly use organic peroxide and azo-compound, such as dicetyl peroxydicarbonate Diisopropyl ester di-cyclohexylperoxy di-carbonate, dicetyl peroxydicarbonate ethylhexyl and azobisisoheptonitrile, two isobutyl of azo Nitrile etc., polymerization is carried out in the polymeric kettle with blender, and after polymerization, material is flowed into MONOMER RECOVERY tank or stripper and returned Monomer is received, mixing kettle is then flowed into, centrifugal dehydration again is washed, is drying to obtain resin finished product.
During the dehydration process, dewatering type is more single for existing centrifugal dehydrator, and dehydration efficiency is lower, moreover, After long-term use, since abrasion will lead to dehydration tube, concentricity deviates and generates vibration centrifugal dehydrator during rotation It is dynamic, and noise can also be caused by vibrating, and reduce the stability of dehydration.
Summary of the invention
The technical problem to be solved by the present invention is for overcome the deficiencies in the prior art, provide a kind of stability high poly- Vinyl chloride resin production equipment.
The technical solution adopted by the present invention to solve the technical problems is: a kind of polyvinyl chloride resin production that stability is high Equipment, including main body, protective cover, dehydration tube, transmission shaft and outlet pipe, the shape of the main body are cylinder, the outlet pipe The bottom of main body is set, and the bottom of the main body is equipped with through-hole, and the transmission shaft and main body are coaxially disposed, and the transmission shaft is worn Through-hole is crossed, the transmission shaft is slidingly and sealingly connect with through-hole, and the dehydration tube is arranged in main body, and the bottom of the main body is set There is a driving device, the dehydration tube is mounted on one end of transmission shaft, and the other end of the driving device and transmission shaft is sequentially connected, The protective cover is matched with main body, and the protective cover lid is located in main body, and gap, institute are equipped between the protective cover and dehydration tube It states and is equipped with auxiliary body and stabilizing mechanism in main body;
The auxiliary body includes squeezing disk, driving assembly and two transmission components, the extrudings disk be located at dehydration tube with Between protective cover, the extruding disk and dehydration tube are coaxially disposed, and the diameter for squeezing disk is equal with the internal diameter of dehydration tube, described Driving assembly and transmission component are respectively positioned on protective cover and squeeze between disk, and the driving component is located between two transmission components, The driving component is connect with transmission component, and the transmission component driving squeezes disk along the axial movement of dehydration tube;
The stabilizing mechanism includes at least two stable components, and the stable component is circumferential centered on the axis for squeezing disk It is uniformly distributed, the stable component includes connecting rod, the first ball, the second ball, link block, spring, connecting rod and pilot hole, institute Pilot hole setting is stated on squeezing disk, the axis of the connecting rod is vertical with the axis of disk is squeezed, and the connecting rod passes through assembly Hole, the connecting rod are slidingly and sealingly connect with pilot hole, and one end of the separate protective cover of the connecting rod is equipped with the first groove, The centre of sphere of first ball is located in the first groove, first ball and the first matching grooves and is slidably connected, and described The sphere diameter of one ball is greater than the width of rebate of the first groove, and the connecting rod is vertical with connecting rod, and the connecting rod is fixed on connecting rod Close protective cover one end, the spring be located at connecting rod and squeeze disk between, the connecting rod by spring with extruding disk connect, Minimum range between the connecting rod and dehydration tube is less than the minimum range between bottom in the first ball and dehydration tube, the company Block is connect between connecting rod and dehydration tube, the link block is fixed on connecting rod, the close dehydration tube axis of the link block Side is equipped with the second groove, and the centre of sphere of second ball is located in the second groove, second ball and the second matching grooves And be slidably connected, the sphere diameter of second ball is greater than the width of rebate of the second groove, second ball and dehydration tube axis The distance between 2 times it is equal with the outer diameter of dehydration tube.
Preferably, being moved in dehydration tube for the ease of squeezing disk, the side of the separate protective cover for squeezing disk is set There is chamfering.
Preferably, to squeeze disk mobile in order to drive, the driving component includes driving motor, driving bevel gear, driven Bevel gear, rotation axis and two bearing blocks, the driving motor are fixed on protective cover, the driving motor and driving bevel gear Transmission connection, the axis of the rotation axis and the axis of dehydration tube are vertical and intersect, and the driven wheel of differential is mounted on rotation axis On, the driving bevel gear is engaged with driven wheel of differential, and the driven wheel of differential is located between two bearing blocks, the bearing block On the rotating shaft, the bearing block is fixed on protective cover, and two transmission components are located at the both ends of rotation axis for installation.
Preferably, in order to improve the revolving speed of rotation axis, the number of teeth of the driving bevel gear is greater than the tooth of driven wheel of differential Number.
Preferably, the transmission component includes screw rod, sliding block and pushes away in order to realize that driving squeezes disk mobile effect Bar, the screw rod and rotation axis are coaxially disposed, and the screw rod is fixed on the rotating shaft, and the sliding block is set on screw rod, described Being equipped with the junction of screw rod for sliding block is obliquely installed with the matched screw thread of screw rod, the push rod, one end of the push rod and cunning Block is hinged, the other end of the push rod and squeezes that disk is hinged, one end of close the dehydration tube axis of the push rod and protective cover it Between distance be greater than the other end and the distance between protective cover of push rod, the thread rotary orientation of two screw rods is opposite.
Preferably, being coated with lubricating oil on the screw rod to reduce the frictional force between screw rod and sliding block.
Preferably, in order to drive transmission shaft to rotate, the driving device include power motor, driving wheel, driven wheel and Transmission belt, the power motor are fixed in main body, and the power motor and driving wheel are sequentially connected, and the driven wheel is mounted on On transmission shaft, the driving wheel and driven wheel are separately positioned on the both ends on the inside of transmission belt.
Preferably, in order to improve the driving wheel of power motor, the power motor is servo motor.
Preferably, the effect in order to realize buffering, the making material for squeezing disk is rubber.
Preferably, in order to improve safety, the main body is equipped with scram button.
The invention has the advantages that the high polyvinyl chloride resin production equipment of the stability is improved by auxiliary body The function of realizing dehydration, compared with existing auxiliary body, which has a variety of dewatering types, and dehydration efficiency is more Height moreover also improves the stability of dehydration tube rotation by stabilizing mechanism, avoids dehydration tube that vibration occurs and generates and makes an uproar Sound, compared with the stabilizing mechanism first examined goods, the stabilizing mechanism clever structure, practicability is stronger.
Detailed description of the invention
Present invention will be further explained below with reference to the attached drawings and examples.
Fig. 1 is the structural schematic diagram of the high polyvinyl chloride resin production equipment of stability of the invention;
Fig. 2 is the cross-sectional view of the high polyvinyl chloride resin production equipment of stability of the invention;
Fig. 3 is the portion the A enlarged drawing of Fig. 2;
Fig. 4 is the portion the B enlarged drawing of Fig. 2;
In figure: 1. main bodys, 2. protective covers, 3. dehydration tubes, 4. transmission shafts, 5. outlet pipes, 6. extruding disks, 7. connecting rods, 8. First ball, 9. second balls, 10. link blocks, 11. springs, 12. connecting rods, 13. driving motors, 14. driving bevel gears, 15. from Dynamic bevel gear, 16. rotation axis, 17. bearing blocks, 18. screw rods, 19. sliding blocks, 20. push rods, 21. power motors, 22. driving wheels, 23. driven wheel, 24. transmission belts, 25. scram buttons.
Specific embodiment
In conjunction with the accompanying drawings, the present invention is further explained in detail.These attached drawings are simplified schematic diagram, only with Illustration illustrates basic structure of the invention, therefore it only shows the composition relevant to the invention.
As shown in Figs. 1-2, a kind of polyvinyl chloride resin production equipment that stability is high, including main body 1, protective cover 2, dehydration The shape of cylinder 3, transmission shaft 4 and outlet pipe 5, the main body 1 is cylinder, and the bottom of main body 1, institute is arranged in the outlet pipe 5 The bottom for stating main body 1 is equipped with through-hole, and the transmission shaft 4 is coaxially disposed with main body 1, and the transmission shaft 4 passes through through-hole, the transmission Axis 4 is slidingly and sealingly connect with through-hole, and the dehydration tube 3 is arranged in main body 1, and the bottom of the main body 1 is equipped with driving device, The dehydration tube 3 is mounted on one end of transmission shaft 4, the other end transmission connection of the driving device and transmission shaft 4, the protection Lid 2 is matched with main body 1, and the lid of protective cover 2 is set on the body 1, and gap is equipped between the protective cover 2 and dehydration tube 3, described Auxiliary body and stabilizing mechanism are equipped in main body 1;
The auxiliary body includes squeezing disk 6, driving assembly and two transmission components, the extruding disk 6 to be located at dehydration tube 3 Between protective cover 2, the extruding disk 6 is coaxially disposed with dehydration tube 3, the internal diameter phase of the diameter and dehydration tube 3 for squeezing disk 6 Protective cover 2 is respectively positioned on Deng, the driving component and transmission component and is squeezed between disk 6, and the driving component is located at two transmissions Between component, the driving component is connect with transmission component, and the transmission component driving squeezes disk 6 along the axial direction of dehydration tube 3 It is mobile;
After polyvinyl chloride resin production material is put into dehydration tube 3, transmission shaft 4 is set to drive dehydration tube by driving device 3 rotations make the moisture and feed separation on material so that the rotation of dehydration tube 3 be made to generate centrifugal force, realize dehydration, isolate Water again from outlet pipe 5 be discharged, during which, driving device operation, by gear unit make squeeze disk 6 away from 2 side of protective cover To movement, so that extruding disk 6 be made to be moved in dehydration tube 3, squeeze extruding disk 6 to the material in dehydration tube 3, by squeezing Pressure separates the water in material, to promote dehydration efficiency.
As shown in figure 3, the stabilizing mechanism includes at least two stablizing components, the stable component is to squeeze the axis of disk 6 It is circumferentially uniformly distributed centered on line, the stable component includes connecting rod 7, the first ball 8, the second ball 9, link block 10, bullet Spring 11, connecting rod 12 and pilot hole, the pilot hole setting is on squeezing disk 6, the axis of the connecting rod 7 and the axis for squeezing disk 6 Line is vertical, and the connecting rod 7 passes through pilot hole, and the connecting rod 7 is slidingly and sealingly connect with pilot hole, the connecting rod 7 One end far from protective cover 2 is equipped with the first groove, and the centre of sphere of first ball 8 is located in the first groove, first ball 8 With the first matching grooves and be slidably connected, the sphere diameter of first ball 8 is greater than the width of rebate of the first groove, the connecting rod 12 Vertical with connecting rod 7, the connecting rod 12 is fixed on one end of the close protective cover 2 of connecting rod 7, and the spring 11 is located at connecting rod 12 And squeeze between disk 6, the connecting rod 12 is connect by spring 11 with disk 6 is squeezed, the minimum between the connecting rod 12 and dehydration tube 3 Distance is located at connecting rod 12 and dehydration tube less than the minimum range between bottom in the first ball 8 and dehydration tube 3, the link block 10 Between 3, the link block 10 is fixed on connecting rod 12, and the side of 3 axis of close dehydration tube of the link block 10 is equipped with second The centre of sphere of groove, second ball 9 is located in the second groove, second ball 9 and the second matching grooves and is slidably connected, The sphere diameter of second ball 9 is greater than the width of rebate of the second groove, between 3 axis of second ball 9 and dehydration tube away from From 2 times it is equal with the outer diameter of dehydration tube 3.
The movement away from 2 direction of protective cover for squeezing disk 6 makes connecting rod 12 drive connecting rod 7 towards remote by spring 11 It is mobile from 2 direction of protective cover, to make the first ball 8 with the bottom in dehydration tube 3 against the movement of connecting rod 12 passes through link block 10 make the periphery of the second ball 9 and dehydration tube 3 against here, by the first ball 8 and the bottom in dehydration tube 3 against with the The periphery of two balls 9 and dehydration tube 3 is against can reduce the axial deviation that dehydration tube 3 generates during rotating cylinder, reduce vibration It is dynamic, stability is improved, also, because the diameter for squeezing disk 6 is equal with the internal diameter of dehydration tube 3, dehydration tube 3 can be further avoided Generate axial deviation.
Preferably, being moved in dehydration tube 3 for the ease of squeezing disk 6, the one of the separate protective cover 2 for squeezing disk 6 Side is equipped with chamfering.
The effect of chamfering reduces the bore squeezed when disk 6 is moved in dehydration tube 3, improves and squeezes the mobile smoothness of disk 6 Property.
As shown in figure 4, the driving component includes driving motor 13, driving bevel gear 14, driven wheel of differential 15, rotation axis 16 and two bearing blocks 17, the driving motor 13 be fixed on protective cover 2, the driving motor 13 is passed with driving bevel gear 14 Dynamic connection, the axis of the rotation axis 16 is vertical with the axis of dehydration tube 3 and intersects, and the driven wheel of differential 15 is mounted on rotation On axis 16, the driving bevel gear 14 is engaged with driven wheel of differential 15, the driven wheel of differential 15 be located at two bearing blocks 17 it Between, the bearing block 17 is mounted in rotation axis 16, and the bearing block 17 is fixed on protective cover 2, two transmission component difference Positioned at the both ends of rotation axis 16.
Driving motor 13 is run, and makes driving bevel gear 14 that driven wheel of differential 15 be driven to rotate, to make rotation axis 16 in axis It holds and drives transmission component operation under the supporting role of seat 17, driven by transmission component and squeeze the movement of disk 6, realize driving and squeeze The mobile function of disk 6.
Preferably, in order to improve the revolving speed of rotation axis 16, the number of teeth of the driving bevel gear 14 is greater than driven wheel of differential 15 number of teeth.
In gear drive, the number of teeth is inversely proportional with revolving speed, so as to improve the revolving speed of driven wheel of differential 15, that is, improves and turns The revolving speed of moving axis 16.
Preferably, the transmission component includes screw rod 18, sliding block 19 in order to realize that driving squeezes the mobile effect of disk 6 With push rod 20, the screw rod 18 is coaxially disposed with rotation axis 16, and the screw rod 18 is fixed in rotation axis 16,19 sets of the sliding block It is located on screw rod 18, being equipped with the junction of screw rod 18 for the sliding block 19 is inclined with the matched screw thread of screw rod 18, the push rod 20 Oblique setting, one end of the push rod 20 and sliding block 19 are hinged, and the other end and extruding disk 6 of the push rod 20 are hinged, the push rod The distance between one end of 20 3 axis of close dehydration tube and protective cover 2 are greater than between the other end and protective cover 2 of push rod 20 The thread rotary orientation of distance, two screw rods 18 is opposite.
The revolving speed of rotation axis 16 drives screw rod 18 to rotate, to make sliding block 19 move on screw rod 18, because of two screw rods 18 Thread rotary orientation on the contrary, so as to so that two sliding blocks 19 close to or far from movement, when two sliding blocks 19 close to it is mobile when, sliding block 19 movement drives that squeeze disk 6 mobile away from 2 direction of protective cover by push rod 20, squeezes disk 6 towards leaning on conversely, then driving Nearly 2 direction of protective cover is mobile, realizes driving and squeezes the mobile function of disk 6.
Preferably, being coated with lubricating oil on the screw rod 18 to reduce the frictional force between screw rod 18 and sliding block 19.
The effect of lubricating oil is the frictional force reduced between screw rod 18 and sliding block 19, improves the mobile fluency of sliding block 19.
Preferably, in order to drive transmission shaft 4 to rotate, the driving device includes power motor 21, driving wheel 22, driven Wheel 23 and transmission belt 24, the power motor 21 is fixed on the body 1, and the power motor 21 is sequentially connected with driving wheel 22, The driven wheel 23 is mounted on transmission shaft 4, and the driving wheel 22 and driven wheel 23 are separately positioned on the two of 24 inside of transmission belt End.
Power motor 21 is run, and rotates driving wheel 22, and the rotation of driving wheel 22 drives driven wheel 23 by transmission belt 24 Rotation realizes the function that driving transmission shaft 4 rotates so that transmission shaft 4 be made to rotate.
Preferably, in order to improve the driving wheel 22 of power motor 21, the power motor 21 is servo motor.
Servo motor has the characteristics that overload capacity is strong, improves the driving force of power motor 21.
Preferably, the effect in order to realize buffering, the making material for squeezing disk 6 is rubber.
It is more soft between rubber, can reduce squeeze disk 6 and material against when impact force, realize buffering and vibration damping effect Fruit.
Preferably, in order to improve safety, the main body 1 is equipped with scram button 25.
When the equipment occurs abnormal, staff, which can press scram button 25, keeps the equipment out of service, avoids occurring Safety accident improves safety.
The equipment squeezes disk 6 and squeezes the material in dehydration tube 3, made in material by squeezing during dehydration Water separation passes through the first ball 8 and the second ball 9 and dehydration to promote dehydration efficiency, also, in 3 rotation process of dehydration tube Cylinder 3 against, can reduce the axial deviation that dehydration tube 3 generates during rotating cylinder, reduce vibration, improve stability, and And because the diameter for squeezing disk 6 is equal with the internal diameter of dehydration tube 3, dehydration tube 3 can be further avoided and generate axial deviation.
Compared with prior art, the high polyvinyl chloride resin production equipment of the stability improves realization by auxiliary body The function of dehydration, compared with existing auxiliary body, which has a variety of dewatering types, and dehydration efficiency is higher, no Only in this way, also improving the stability of the rotation of dehydration tube 3 by stabilizing mechanism, avoid dehydration tube 3 that vibration occurs and generates noise, Compared with the stabilizing mechanism first examined goods, the stabilizing mechanism clever structure, practicability is stronger.
Taking the above-mentioned ideal embodiment according to the present invention as inspiration, through the above description, relevant staff is complete Various changes and amendments can be carried out without departing from the scope of the technological thought of the present invention' entirely.The technology of this invention Property range is not limited to the contents of the specification, it is necessary to which the technical scope thereof is determined according to the scope of the claim.

Claims (10)

1. a kind of polyvinyl chloride resin production equipment that stability is high, including main body (1), protective cover (2), dehydration tube (3), transmission Axis (4) and outlet pipe (5), the shape of the main body (1) are cylinder, and the outlet pipe (5) is arranged in the bottom of main body (1), The bottom of the main body (1) is equipped with through-hole, and the transmission shaft (4) and main body (1) are coaxially disposed, and the transmission shaft (4) passes through logical Hole, the transmission shaft (4) slidingly and sealingly connect with through-hole, and dehydration tube (3) setting is in main body (1), the main body (1) Bottom be equipped with driving device, the dehydration tube (3) is mounted on one end of transmission shaft (4), the driving device and transmission shaft (4) Other end transmission connection, the protective cover (2) matches with main body (1), and the protective cover (2) is covered and is located on main body (1), described Gap is equipped between protective cover (2) and dehydration tube (3), which is characterized in that be equipped with auxiliary body in the main body (1) and stablize machine Structure;
The auxiliary body includes squeezing disk (6), driving assembly and two transmission components, the extruding disk (6) to be located at dehydration tube (3) between protective cover (2), the extruding disk (6) and dehydration tube (3) are coaxially disposed, the diameter for squeezing disk (6) and dehydration The internal diameter of cylinder (3) is equal, and the driving component and transmission component are respectively positioned on protective cover (2) and squeeze between disk (6), the driving Component is located between two transmission components, and the driving component is connect with transmission component, and the transmission component driving squeezes disk (6) Along the axial movement of dehydration tube (3);
The stabilizing mechanism includes at least two stable components, and the stable component is circumferential centered on the axis for squeezing disk (6) It is uniformly distributed, the stable component includes connecting rod (7), the first ball (8), the second ball (9), link block (10), spring (11), connecting rod (12) and pilot hole, the pilot hole setting is on squeezing disk (6), the axis and extruding disk of the connecting rod (7) (6) axis is vertical, and the connecting rod (7) passes through pilot hole, and the connecting rod (7) slidingly and sealingly connect with pilot hole, institute The one end for stating the separate protective cover (2) of connecting rod (7) is equipped with the first groove, and it is recessed that the centre of sphere of first ball (8) is located at first It in slot, first ball (8) and the first matching grooves and is slidably connected, it is recessed that the sphere diameter of first ball (8) is greater than first The width of rebate of slot, the connecting rod (12) is vertical with connecting rod (7), and the connecting rod (12) is fixed on the close anti-of connecting rod (7) One end of protecting cover (2), the spring (11) are located at connecting rod (12) and squeeze between disk (6), and the connecting rod (12) passes through spring (11) it is connect with extruding disk (6), the minimum range between the connecting rod (12) and dehydration tube (3) is less than the first ball (8) and de- Minimum range between water drum (3) interior bottom, the link block (10) are located between connecting rod (12) and dehydration tube (3), the company Block (10) is connect to be fixed on connecting rod (12), the side of close dehydration tube (3) axis of the link block (10) is equipped with the second groove, The centre of sphere of second ball (9) is located in the second groove, second ball (9) and the second matching grooves and is slidably connected, The sphere diameter of second ball (9) is greater than the width of rebate of the second groove, second ball (9) and dehydration tube (3) axis it Between 2 times of distance it is equal with the outer diameter of dehydration tube (3).
2. the high polyvinyl chloride resin production equipment of stability as described in claim 1, which is characterized in that the extruding disk (6) side of separate protective cover (2) is equipped with chamfering.
3. the high polyvinyl chloride resin production equipment of stability as described in claim 1, which is characterized in that the driving component Including driving motor (13), driving bevel gear (14), driven wheel of differential (15), rotation axis (16) and two bearing blocks (17), institute It states driving motor (13) to be fixed on protective cover (2), the driving motor (13) and driving bevel gear (14) are sequentially connected, described The axis of rotation axis (16) is vertical with the axis of dehydration tube (3) and intersects, and the driven wheel of differential (15) is mounted on rotation axis (16) on, the driving bevel gear (14) is engaged with driven wheel of differential (15), and the driven wheel of differential (15) is located at two bearings Between seat (17), the bearing block (17) is mounted on rotation axis (16), and the bearing block (17) is fixed on protective cover (2), Two transmission components are located at the both ends of rotation axis (16).
4. the high polyvinyl chloride resin production equipment of stability as claimed in claim 3, which is characterized in that tooth is bored in the driving The number of teeth for taking turns (14) is greater than the number of teeth of driven wheel of differential (15).
5. the high polyvinyl chloride resin production equipment of stability as described in claim 1, which is characterized in that the transmission component Including screw rod (18), sliding block (19) and push rod (20), the screw rod (18) and rotation axis (16) are coaxially disposed, the screw rod (18) It is fixed on rotation axis (16), the sliding block (19) is set on screw rod (18), the company with screw rod (18) of the sliding block (19) It connects to locate to be equipped with and be obliquely installed with screw rod (18) matched screw thread, the push rod (20), one end of the push rod (20) and sliding block (19) hingedly, the other end of the push rod (20) and squeeze disk (6) hingedly, close dehydration tube (3) axis of the push rod (20) One end and the distance between protective cover (2) be greater than the distance between the other end and protective cover (2) of push rod (20), two screw rods (18) thread rotary orientation is opposite.
6. the high polyvinyl chloride resin production equipment of stability as claimed in claim 5, which is characterized in that the screw rod (18) On be coated with lubricating oil.
7. the high polyvinyl chloride resin production equipment of stability as described in claim 1, which is characterized in that the driving device Including power motor (21), driving wheel (22), driven wheel (23) and transmission belt (24), the power motor (21) is fixed on main body (1) on, the power motor (21) and driving wheel (22) are sequentially connected, and the driven wheel (23) is mounted on transmission shaft (4), institute It states driving wheel (22) and driven wheel (23) is separately positioned on both ends on the inside of transmission belt (24).
8. the high polyvinyl chloride resin production equipment of stability as claimed in claim 7, which is characterized in that the power motor It (21) is servo motor.
9. the high polyvinyl chloride resin production equipment of stability as described in claim 1, which is characterized in that the extruding disk (6) making material is rubber.
10. the high polyvinyl chloride resin production equipment of stability as described in claim 1, which is characterized in that the main body (1) It is equipped with scram button (25).
CN201910527192.4A 2019-06-18 2019-06-18 A kind of polyvinyl chloride resin production equipment that stability is high Withdrawn CN110156921A (en)

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CN110744710A (en) * 2019-10-29 2020-02-04 深圳市文地科技有限公司 A mortar preparation equipment that is used for high stirring degree of road construction
CN112452692A (en) * 2020-10-16 2021-03-09 广东中晨电子科技有限公司 Preparation method of high-performance composite base plate

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CN109763283A (en) * 2019-02-28 2019-05-17 广州市淞滨工程技术有限公司 A kind of high efficient type processing equipment of stability for cashmere dehydration

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CN108253738A (en) * 2018-01-22 2018-07-06 广安市嘉乐电子科技有限公司 A kind of diode dehydration device
CN109763283A (en) * 2019-02-28 2019-05-17 广州市淞滨工程技术有限公司 A kind of high efficient type processing equipment of stability for cashmere dehydration

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* Cited by examiner, † Cited by third party
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CN110744710A (en) * 2019-10-29 2020-02-04 深圳市文地科技有限公司 A mortar preparation equipment that is used for high stirring degree of road construction
CN112452692A (en) * 2020-10-16 2021-03-09 广东中晨电子科技有限公司 Preparation method of high-performance composite base plate

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