CN214716651U - Constant-temperature rubber and plastic material synthesizing device facilitating feeding - Google Patents

Constant-temperature rubber and plastic material synthesizing device facilitating feeding Download PDF

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Publication number
CN214716651U
CN214716651U CN202120180609.7U CN202120180609U CN214716651U CN 214716651 U CN214716651 U CN 214716651U CN 202120180609 U CN202120180609 U CN 202120180609U CN 214716651 U CN214716651 U CN 214716651U
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retort
motor
main shaft
fixedly connected
runner
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CN202120180609.7U
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刘忠杰
唐春生
战明强
刘晓平
赵震霖
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Qingdao Haihuida Rubber & Plastic Material Co ltd
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Qingdao Haihuida Rubber & Plastic Material Co ltd
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Abstract

The utility model discloses a make things convenient for thermostatic type rubber and plastic material synthesizer of feeding, including fixed plate, support frame, retort and switch, the top fixedly connected with apron of retort, the inside swing joint of retort has subtend stirring structure, fixedly connected with support frame on the lateral wall of retort. The utility model discloses an install feeding structure on the top of fixed plate, the first motor of device work drives the bull wheel and drives little runner rotation through the belt again during use, little runner drives the main shaft and the auger blade is rotatory, the material is inside to rise by main shaft and auger blade through the chute again from the inside groove, reach inside the retort through the feed chute at last, accomplish the material loading process to the material, it is more convenient to carry out the material loading operation when setting up through feeding structure and making the device use, and first motor also drives subtend stirring structure work when driving feeding structure work, make it energy-conserving province more consume.

Description

Constant-temperature rubber and plastic material synthesizing device facilitating feeding
Technical Field
The utility model relates to a rubber and plastic materials processing technology field specifically is a make things convenient for thermostatic type rubber and plastic material synthesizer of feeding.
Background
Rubber and plastic is a novel material, it is lower and use application scope more extensive to compare its manufacturing cost of natural rubber material, it is made by rubber and plastics processing mixture, the rubber and plastic material of daily contact has the plastic course, rubber and plastic tubular product etc., the processing synthesis of rubber and plastic material needs multichannel process, wherein include the mixed reaction process to raw materials such as rubber after the purification and polyethylene, finally can obtain synthetic rubber and plastic raw materials after the mixed reaction, it is convenient to need a material loading when using now, can carry out the rubber and plastic material synthesizer that the intensive reaction mixes and can constant temperature heating, but there are many problems or defects in the constant temperature formula rubber and plastic material synthesizer of current convenient feeding:
1. when the traditional rubber and plastic material synthesis device is used, the integral feeding operation is inconvenient, the feeding height operation is inconvenient, and the energy and the consumption are saved due to insufficient use;
2. when the traditional rubber and plastic material synthesis device is used, the mixing and stirring effects on internal raw materials are poor, and the stirring is insufficient when the traditional rubber and plastic material synthesis device is used;
3. traditional rubber and plastic material synthesizer is inconvenient to the temperature regulation and control of inside retort when using, uses and can't realize constant temperature heating.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a constant temperature type rubber and plastic material synthesizer of convenient feeding to solve the whole material loading operation that proposes in the above-mentioned background art inconvenient, not good to the mixed stirring effect of internal raw materials and to the inconvenient problem of temperature regulation and control of internal retort.
In order to achieve the above object, the utility model provides a following technical scheme: a constant-temperature rubber and plastic material synthesizer facilitating feeding comprises a fixed plate, a support frame, a reaction tank and a switch, wherein a cover plate is fixedly connected to the top end of the reaction tank, a counter stirring structure is movably connected inside the reaction tank, the support frame is fixedly connected to the outer side wall of the reaction tank, a fixed plate is fixedly welded between the support frames, the fixed plate is fixedly welded to the bottom end of the reaction tank, the switch is fixedly connected to the outer side wall of the reaction tank, a feeding structure is fixedly welded to the top end of the fixed plate and comprises a feeding groove, a material pipe, auger blades, a main shaft, a hopper, an inner groove, a chute, a small runner, a large runner and a belt, the hopper is fixedly connected to the top end of the fixed plate, the material pipe is fixedly connected to one side of the hopper, the feeding groove is fixedly connected to one side of the material pipe, the inner groove is arranged inside the hopper, chute fixed connection is in the inside of hopper, main shaft swing joint is in the inside of chute and material pipe, auger blade fixed connection is on the lateral wall of main shaft, small runner swing joint is in the bottom of fixed plate, the bottom at the retort is connected to the bull wheel, the bottom of bull wheel is connected with first motor, the belt parcel is at the outer wall of bull wheel and small runner, one side fixedly connected with blown down tank of retort.
Preferably, subtend stirring structure includes second motor, (mixing) shaft, swivel mount, stirring leaf, transmission groove and movable tank, second motor fixed connection is on the top of apron, transmission groove swing joint is at the inside both ends of retort, swivel mount fixed connection is between the transmission groove, position department between the swivel mount of (mixing) shaft swing joint, the top of (mixing) shaft is run through the inside through the transmission groove and is connected with the second motor, stirring leaf fixed connection is on the lateral wall of swivel mount.
Preferably, the transmission groove and the rotating frame can be driven to rotate by the first motor, and the stirring blades are symmetrically distributed on the outer side wall of the rotating frame at equal intervals.
Preferably, the movable groove is formed in the bottom end of the inner wall of the rotating frame, and the second motor can drive the stirring shaft to rotate reversely with the rotating frame.
Preferably, the auger blade is snakelike evenly distributed on the lateral wall of main shaft, thereby first motor can drive big runner rotation and drive little runner rotation through the belt, accomplishes the rotatory material loading to the main shaft, first motor accessible belt drives big runner and little runner synchronous revolution, first motor can drive the swivel mount and the main shaft is rotatory simultaneously.
Preferably, a thermostatic controller is fixedly connected to the outer side wall of the reaction tank, an inner separation cavity is fixedly connected to the inner side wall of the reaction tank, electric heating wires are installed inside the inner separation cavity, and the electric heating wires are distributed in the inner separation cavity at equal intervals.
Compared with the prior art, the beneficial effects of the utility model are that: this make things convenient for thermostatic type rubber and plastic material synthesizer of feeding is rational in infrastructure, has following advantage:
(1) the feeding structure is arranged at the top end of the fixed plate, when the device is used, the first motor drives the large rotating wheel to rotate through the belt, the small rotating wheel drives the main shaft and the auger blade to rotate, materials are conveyed upwards from the inner groove through the chute by the main shaft and the auger blade and finally reach the inner part of the reaction tank through the feeding groove, the feeding process of the materials is completed, the feeding operation is more convenient when the device is used through the arrangement of the feeding structure, and the first motor can drive the opposite stirring structure to work while driving the feeding structure to work, so that the device is more energy-saving and consumption-saving;
(2) the opposite-direction stirring structure is arranged in the reaction tank, so that when the reaction tank is used, the first motor can drive the rotating frame to synchronously rotate while driving the feeding structure to work, the second motor can drive the stirring shaft and the rotating frame to reversely rotate while the rotating frame rotates, the rotation of the stirring shaft and the rotating frame is not influenced mutually, materials in the reaction tank can be stirred and mixed in a two-way manner, and the mixing and stirring effects are better;
(3) install the interior compartment rather than the even laminating through the inner wall at the retort, and the inner wall in compartment is provided with the electric heating wire of evenly distributed range, can carry out the even heating to the inside of retort when setting up the use through thermostatic control ware, uses to carry out thermostatic control to device internal temperature, uses reaction operation effect better.
Drawings
Fig. 1 is a schematic view of a front view partial section structure of the present invention;
fig. 2 is a schematic front view of the structure of the present invention;
FIG. 3 is a schematic diagram of a half-section structure of a reaction tank of the present invention;
fig. 4 is a schematic top view of the present invention.
In the figure: 1. a counter stirring structure; 101. a second motor; 102. a stirring shaft; 103. a rotating frame; 104. stirring blades; 105. a transmission groove; 106. a movable groove; 2. a feed structure; 201. a feed chute; 202. a material pipe; 203. a screw blade; 204. a main shaft; 205. a hopper; 206. an inner tank; 207. a chute; 208. a small rotating wheel; 209. a large rotating wheel; 210. a belt; 3. a fixing plate; 4. a first motor; 5. a support frame; 6. a discharge chute; 7. a reaction tank; 8. a cover plate; 9. a switch; 10. an electric heating wire; 11. an inner compartment; 12. a thermostatic controller.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-4, the present invention provides an embodiment: a constant-temperature rubber and plastic material synthesis device convenient for feeding comprises a fixing plate 3, a support frame 5, a reaction tank 7 and a switch 9, wherein a cover plate 8 is fixedly connected to the top end of the reaction tank 7, an opposite stirring structure 1 is movably connected to the inside of the reaction tank 7, the opposite stirring structure 1 comprises a second motor 101, a stirring shaft 102, a rotating frame 103, stirring blades 104, a transmission groove 105 and a movable groove 106, the second motor 101 is fixedly connected to the top end of the cover plate 8, the model of the second motor 101 is Y112M-2, the transmission groove 105 is movably connected to two ends of the inside of the reaction tank 7, the rotating frame 103 is fixedly connected between the transmission groove 105, the stirring shaft 102 is movably connected to positions between the rotating frames 103, the top end of the stirring shaft 102 penetrates through the inside of the transmission groove 105 and is connected with the second motor 101, and the stirring blades 104 are fixedly connected to the outer side wall of the rotating frame 103;
the transmission groove 105 and the rotating frame 103 can be driven to rotate by the first motor 4, and the stirring blades 104 are symmetrically distributed on the outer side wall of the rotating frame 103 at equal intervals;
the movable groove 106 is arranged at the bottom end of the inner wall of the rotating frame 103, and the second motor 101 can drive the stirring shaft 102 to rotate reversely with the rotating frame 103;
specifically, as shown in fig. 1, fig. 2 and fig. 3, when in use, the opposite direction stirring structure 1 is installed inside the reaction tank 7, when in use, the first motor 4 drives the feeding structure 2 to work and simultaneously drive the rotating frame 103 to synchronously rotate, and the second motor 101 drives the stirring shaft 102 and the rotating frame 103 to reversely rotate while the rotating frame 103 rotates, so that the rotation of the stirring shaft 102 and the rotating frame 103 are not influenced by each other, and the materials inside the reaction tank 7 can be subjected to bidirectional stirring and mixing, so that the mixing and stirring effects are better;
the outer side wall of the reaction tank 7 is fixedly connected with support frames 5, a fixing plate 3 is fixedly welded between the support frames 5, one side of the reaction tank 7 is fixedly connected with a discharge chute 6, the fixing plate 3 is fixedly welded with the bottom end of the reaction tank 7, the outer side wall of the reaction tank 7 is fixedly connected with a switch 9, the top end of the fixing plate 3 is fixedly welded with a feeding structure 2, the feeding structure 2 comprises a feeding chute 201, a material pipe 202, auger blades 203, a main shaft 204, a hopper 205, an inner groove 206, a chute 207, a small rotating wheel 208, a large rotating wheel 209 and a belt 210, the hopper 205 is fixedly connected with the top end of the fixing plate 3, the material pipe 202 is fixedly connected with one side of the hopper 205, the feeding chute 201 is fixedly connected with one side of the material pipe 202, the inner groove 206 is arranged inside the hopper 205, the chute 207 is fixedly connected with the inside of the hopper 205, the main shaft 204 is movably connected with the insides of the chute 207 and the material pipe 202, the auger blades 203 are fixedly connected with the outer side wall of the main shaft 204, the small rotating wheel 208 is movably connected to the bottom end of the fixing plate 3, the large rotating wheel 209 is connected to the bottom end of the reaction tank 7, the bottom end of the large rotating wheel 209 is connected with the first motor 4, the model of the first motor 4 is Y90S-2, and the belt 210 is wrapped on the outer walls of the large rotating wheel 209 and the small rotating wheel 208;
the auger blades 203 are uniformly distributed on the outer side wall of the main shaft 204 in a snake shape, the first motor 4 can drive the large rotating wheel 209 to rotate so as to drive the small rotating wheel 208 to rotate through the belt 210, the rotary feeding of the main shaft 204 is completed, the first motor 4 can drive the large rotating wheel 209 and the small rotating wheel 208 to synchronously rotate through the belt 210, and the first motor 4 can simultaneously drive the rotating frame 103 and the main shaft 204 to rotate;
specifically, as shown in fig. 1, fig. 2 and fig. 4, when in use, the feeding structure 2 is installed at the top end of the fixing plate 3, when in use, the device works, the first motor 4 drives the large rotating wheel 209 and then drives the small rotating wheel 208 to rotate through the belt 210, the small rotating wheel 208 drives the main shaft 204 and the auger blade 203 to rotate, materials rise from the inner groove 206 through the chute 207 and then are conveyed by the main shaft 204 and the auger blade 203, and finally reach the inside of the reaction tank 7 through the feeding groove 201, so that the feeding process of the materials is completed, the feeding operation is more convenient when the device is used through the arrangement of the feeding structure 2, and the first motor 4 can drive the opposite stirring structure 1 to work while driving the feeding structure 2 to work, so that the opposite stirring structure 1 is more energy-saving and consumption-saving;
constant temperature controller 12 is fixedly connected to the lateral wall of retort 7, the model of this constant temperature controller 12 is OHR-A300, compartment 11 in the fixedly connected with on the inside wall of retort 7, and the internally mounted of compartment 11 has electric heater strip 10 in, electric heater strip 10 is the equidistant range distribution in the inside of compartment 11 in, compartment 11 in through the inner wall of retort 7 install rather than the interior compartment 11 of even laminating, and the inner wall of interior compartment 11 is provided with the electric heater strip 10 of evenly distributed range, can carry out the even heating to the inside of retort 7 when setting up the use through constant temperature controller 12, the use carries out thermostatic control to the inside temperature of device, it is better to use the reaction operation effect.
The working principle is as follows: when the device is used, the device is externally connected with a power supply, firstly, raw materials required to be used for processing and synthesizing rubber and plastic materials are poured into an inner groove 206 arranged in the feeding structure 2, the switch 9 is used for controlling the internal kinetic energy of the starting device to start to operate, and the first motor 4 drives the feeding structure 2 to work and transmit to complete the uniform feeding process of the raw materials;
secondly, the first motor 4 can drive the opposite stirring structure 1 to start working, raw materials are required to be fully stirred, mixed and reacted after being poured into the reaction tank 7, the first motor 4 drives the rotating frame 103 to rotate, the second motor 101 drives the stirring shaft 102 and the rotating frame 103 to reversely rotate, uniform mixing and stirring of the raw materials in the reaction tank 7 are completed, the raw materials are stirred and mixed more fully, the first motor 4 can drive the opposite stirring structure 1 and the feeding structure 2 to simultaneously work, two advantages of driving by one power source are realized, and energy consumption is saved;
finally, the inner partition 11 which is uniformly attached to the inner wall of the reaction tank 7 is installed on the inner wall of the reaction tank, the electric heating wires 10 which are uniformly distributed and arranged are arranged on the inner wall of the inner partition 11, when the reaction tank is used, the inside of the reaction tank 7 can be uniformly heated through the arrangement of the constant temperature controller 12, the temperature inside the reaction tank is controlled by the constant temperature controller, and the reaction operation effect is better.
It is obvious to a person skilled in the art that the invention is not restricted to details of the above-described exemplary embodiments, but that it can be implemented in other specific forms without departing from the spirit or essential characteristics of the invention. 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.

Claims (6)

1. The utility model provides a make things convenient for thermostatic type rubber and plastic material synthesizer of feeding, includes fixed plate (3), support frame (5), retort (7) and switch (9), its characterized in that: the top fixedly connected with apron (8) of retort (7), the inside swing joint of retort (7) has subtend stirring structure (1), fixedly connected with support frame (5) on the lateral wall of retort (7), and fixed welding has fixed plate (3) between support frame (5), fixed plate (3) and the bottom welded fastening of retort (7), fixedly connected with switch (9) on the lateral wall of retort (7), the fixed welding in top of fixed plate (3) has feeding structure (2), and feeding structure (2) include feed chute (201), material pipe (202), auger blade (203), main shaft (204), hopper (205), inside groove (206), chute (207), small runner (208), big runner (209) and belt (210), hopper (205) fixed connection is on the top of fixed plate (3), the utility model discloses a reactor, including material pipe (202), feed chute (201), main shaft (204), inner groove (206), little runner (208), reaction tank (7), belt (210), charging chute (6), inner groove (206) and charging chute (207) are connected to the one side of hopper (205), chute (207) fixed connection is in the inside of hopper (205), main shaft (204) swing joint is in the inside of chute (207) and material pipe (202), auger blade (203) fixed connection is on the lateral wall of main shaft (204), little runner (208) swing joint is in the bottom of fixed plate (3), the bottom at retort (7) is connected to big runner (209), the bottom of big runner (209) is connected with first motor (4), belt (210) parcel is at the outer wall of big runner (209) and little runner (208), one side fixedly connected with blown down tank (6) of retort (7).
2. A conveniently-fed thermostatic rubber and plastic material synthesis device as claimed in claim 1, wherein: subtend stirring structure (1) includes second motor (101), (mixing) shaft (102), swivel mount (103), stirring leaf (104), transmission groove (105) and activity groove (106), second motor (101) fixed connection is on the top of apron (8), transmission groove (105) swing joint is at the inside both ends of retort (7), swivel mount (103) fixed connection is between transmission groove (105), position department between (mixing) shaft (102) swing joint is in swivel mount (103), the top of (mixing) shaft (102) is run through the inside through transmission groove (105) and is connected with second motor (101), stirring leaf (104) fixed connection is on the lateral wall of swivel mount (103).
3. A conveniently-fed thermostatic rubber and plastic material synthesis device as claimed in claim 2, wherein: the transmission groove (105) and the rotating frame (103) can be driven to rotate by the first motor (4), and the stirring blades (104) are symmetrically distributed on the outer side wall of the rotating frame (103) at equal intervals.
4. A conveniently-fed thermostatic rubber and plastic material synthesis device as claimed in claim 2, wherein: the movable groove (106) is arranged at the bottom end of the inner wall of the rotating frame (103), and the second motor (101) can drive the stirring shaft (102) and the rotating frame (103) to rotate reversely.
5. A conveniently-fed thermostatic rubber and plastic material synthesis device as claimed in claim 1, wherein: auger blade (203) is snakelike evenly distributed on the lateral wall of main shaft (204), thereby first motor (4) can drive big runner (209) rotation and drive little runner (208) through belt (210) and rotate, accomplish the rotatory material loading to main shaft (204), first motor (4) accessible belt (210) drive big runner (209) and little runner (208) synchronous revolution, first motor (4) can drive swivel mount (103) and main shaft (204) simultaneously and rotate.
6. A conveniently-fed thermostatic rubber and plastic material synthesis device as claimed in claim 1, wherein: the reactor is characterized in that a constant temperature controller (12) is fixedly connected to the outer side wall of the reaction tank (7), an inner separation cavity (11) is fixedly connected to the inner side wall of the reaction tank (7), an electric heating wire (10) is arranged inside the inner separation cavity (11), and the electric heating wire (10) is arranged inside the inner separation cavity (11) at equal intervals.
CN202120180609.7U 2021-01-22 2021-01-22 Constant-temperature rubber and plastic material synthesizing device facilitating feeding Active CN214716651U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120180609.7U CN214716651U (en) 2021-01-22 2021-01-22 Constant-temperature rubber and plastic material synthesizing device facilitating feeding

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120180609.7U CN214716651U (en) 2021-01-22 2021-01-22 Constant-temperature rubber and plastic material synthesizing device facilitating feeding

Publications (1)

Publication Number Publication Date
CN214716651U true CN214716651U (en) 2021-11-16

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CN202120180609.7U Active CN214716651U (en) 2021-01-22 2021-01-22 Constant-temperature rubber and plastic material synthesizing device facilitating feeding

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CN (1) CN214716651U (en)

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