CN217494841U - Intelligent screening machine is used in production of regeneration Eva granule - Google Patents

Intelligent screening machine is used in production of regeneration Eva granule Download PDF

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Publication number
CN217494841U
CN217494841U CN202220360650.7U CN202220360650U CN217494841U CN 217494841 U CN217494841 U CN 217494841U CN 202220360650 U CN202220360650 U CN 202220360650U CN 217494841 U CN217494841 U CN 217494841U
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fixed
frame
discharge gate
rod
sliding
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CN202220360650.7U
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杨嘉俊
杨嘉琳
杨少鸣
黄冬丽
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Quanzhou Haowei Energy Saving Technology Development Co ltd
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Quanzhou Haowei Energy Saving Technology Development Co ltd
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Abstract

The utility model discloses an intelligent sieve separator is used in production of regeneration Eva granule, its structure includes organism, gear train, feed inlet, branch storage bucket, little silo, big silo, first discharge gate, complementary unit, second discharge gate, first dead lever, mount and operation screen, the utility model discloses a be provided with complementary unit bottom first discharge gate, the screening plant of complementary unit inboard setting sieves the Eva granule of sneaking into in the jumbo size, has reduced workman's work load, and has improved the work efficiency of Eva granule, through being provided with pendulous device at the screening plant right-hand member, pendulous device carries out the during operation, is convenient for drive the filter and slides, alright discharge the jumbo size granule on the filter, avoids increasing workman's work load once more.

Description

Intelligent screening machine is used in production of regeneration Eva granule
Technical Field
The utility model relates to an intelligent sieve separator is used in production of regeneration Eva granule belongs to the Eva granule field.
Background
EVA is copolymerized by ethylene and acetic acid, and has the Chinese cultural name: the ethylene-vinyl acetate copolymer and EVA have wide application fields, the annual market consumption of China is continuously increased, particularly in the shoe manufacturing industry, the ethylene-vinyl acetate copolymer and EVA are applied to soles and interior materials of medium and high-grade sneakers, climbing shoes, slippers and sandals, the ethylene-vinyl acetate copolymer and EVA are also widely applied to the field of new energy resources such as photovoltaic materials, solar cell adhesives and the like, and after the production of the Eva particles is finished, a screening machine is required to screen and separate the Eva particles.
Because the existing intelligent screening machine for producing the regenerated Eva particles screens the Eva particles, but in the screening process, the smaller particles are easily mixed with the large particles, so that the workload of workers is increased, and the working efficiency of screening the Eva particles is reduced.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a not enough to prior art exists, the utility model aims at providing a production of regeneration Eva granule is with intelligent sieve separator to solve prior art because current production of regeneration Eva granule is with intelligent sieve separator, screening the Eva granule, nevertheless the in-process of screening, less granule mixes with the large granule easily, thereby increases workman's work load, and has reduced the problem of the work efficiency of screening Eva granule.
In order to achieve the above purpose, the present invention is realized by the following technical solution: an intelligent screening machine for production of regenerated Eva particles comprises a machine body, a gear set, a feeding hole, a material distribution barrel, a small material groove, a large material groove, a first discharging hole, an auxiliary mechanism, a second discharging hole, a first fixing rod, a fixing frame and an operation screen, wherein the lower end of the first discharging hole is fixed with the auxiliary mechanism into a whole; the auxiliary mechanism comprises a screening device and a swinging device, the right end of the screening device is fixed with the swinging device, and the lower end of the first discharge port is fixed with the screening device into a whole.
Further, organism front side upper end is provided with the gear train, the organism top is provided with the feed inlet perpendicularly, the organism right-hand member is provided with the branch storage bucket, divide storage bucket left end bottom and little silo fixed mutually, divide storage bucket right-hand member bottom and big silo fixed an organic whole, first discharge gate has been seted up to big silo front side lower extreme, little silo lower extreme front side is linked together with the second discharge gate, second discharge gate bottom and first dead lever laminate mutually, divide the storage bucket right-hand member to rotate with the mount and be connected, the upper right end of mount is provided with the operation screen.
Further, screening plant includes frame, third discharge gate, flitch, opening, filter, first spout and stopper down, the third discharge gate has been seted up to frame front side lower extreme, frame inboard bottom is fixed as an organic whole with the flitch down, the opening has been seted up at the frame top, the frame inboard is provided with the filter, the filter outside and first spout sliding connection, both ends are fixed mutually with the stopper about the frame inboard, the frame top is fixed as an organic whole with first discharge gate.
Furthermore, the swinging device comprises a shell, a supporting rod, a motor, a reciprocating device, a first limiting cylinder and a second limiting cylinder, the right end of the inner side of the shell is fixed with the supporting rod, the top of the supporting rod is fixed with the motor into a whole, the rear side of the motor is rotatably connected with the reciprocating device, the upper end of the rear side of the reciprocating device is fixed with the first limiting cylinder, the lower end of the rear side of the reciprocating device is connected with the second limiting cylinder in a penetrating manner, the left end of the shell is fixed with an outer frame, and the left end of the reciprocating device is fixed with the filter plate into a whole.
Further, the reciprocating device comprises a rotating shaft, a first rotating disc, a second fixing rod, a second sliding groove, a sliding block, a sliding rod, a base, a connecting rod and a third fixing rod, wherein the rear side of the rotating shaft is in penetrating connection with the first rotating disc, the rear side of the rotating shaft is in rotating connection with the second rotating disc, the left front end of the second rotating disc is in rotating connection with the second fixing rod, the front end of the second fixing rod is fixed with the second sliding groove into a whole, the middle part of the inner side of the second sliding groove is in sliding connection with the sliding block, the left end of the sliding block is fixed with the sliding rod, the left end of the sliding rod is in penetrating connection with the base, the upper end of the rear side of the second sliding groove is in rotating connection with the connecting rod, the third fixing rod is arranged at the upper end of the rear side of the connecting rod, the front end of the rotating shaft is connected with a motor, the rear side of the second fixing rod is fixed with a second limiting cylinder, and the bottom of the base is fixed with the shell into a whole, the left end of the sliding rod is in through connection with the shell, and the rear side of the third fixing rod is in through connection with the first limiting cylinder.
Further, the notch has been seted up to frame upper right end, and the width that the notch set up is greater than the filter and sets up 1cm of width.
Furtherly, the stopper is provided with two altogether, and the stopper is the symmetric distribution along the horizontal center pin of filter to highly being less than the height that the filter set up of stopper setting.
Furthermore, the blanking plate is in a right trapezoid shape, a smooth layer is arranged on the surface of the blanking plate, and the size of the upper bottom of the right trapezoid is one fifth of the width of the outer frame.
Further, the shell is made of stainless steel.
Further, the first fixing rod is made of an aluminum alloy material.
The method has the advantages that: the utility model discloses an intelligent sieve separator is used in production of regeneration Eva granule through being provided with complementary unit bottom first discharge gate, and the screening plant of complementary unit inboard setting sieves the Eva tiny particle of sneaking into in the jumbo size, has reduced workman's work load, and has improved the work efficiency of Eva granule.
The method has the advantages that: the utility model discloses an intelligent sieve separator is used in production of regeneration Eva granule through being provided with pendulous device at the screening plant right-hand member, and pendulous device carries out the during operation, is convenient for drive the filter and slides, alright will remain the jumbo size granule discharge on the filter, avoid increasing workman's work load once more.
Drawings
Other features, objects and advantages of the invention will become more apparent upon reading of the detailed description of non-limiting embodiments with reference to the following drawings:
fig. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic structural view of the auxiliary mechanism of the present invention;
FIG. 3 is a schematic structural view of the sieving device of the present invention;
fig. 4 is a schematic top view of the screening device of the present invention;
fig. 5 is a schematic view of the swing device of the present invention;
fig. 6 is a schematic structural view of the shuttle device of the present invention.
In the figure: machine body-1, gear set-2, feed inlet-3, material distribution barrel-4, small material tank-5, large material tank-6, first discharge outlet-7, auxiliary mechanism-8, second discharge outlet-9, first fixing rod-10, fixing frame-11, operation screen-12, screening device-81, swinging device-82, outer frame-811, third discharge outlet-812, blanking plate-813, opening-814, filter plate-815, first sliding chute-816, limiting block-817, shell-821, supporting rod-822, motor-823, reciprocating device-824, first limiting cylinder-825, second limiting cylinder-826, rotating shaft-8241, first rotating disc-8242, second rotating disc-8243, second fixing rod-8244, small material tank-4, small material tank-8, large material tank-6, second rotating disc-7, auxiliary mechanism-8, second discharge outlet-9, first fixing rod-10, fixing rod-11, fixing rod-17, second rotating disc-150, second rotating disc-825, rotating disc-8, rotating disc-8, and rotating disc-8, A second chute-8245, a slide block-8246, a slide bar-8247, a base-8248, a connecting rod-8249 and a third fixed rod-82410.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
Referring to fig. 1, the present invention provides an intelligent screening machine for producing regenerated Eva particles through improvement, comprising a machine body 1, a gear set 2, a feed inlet 3, a material separating barrel 4, a small material tank 5, a large material tank 6, a first discharge outlet 7, an auxiliary mechanism 8, a second discharge outlet 9, a first fixing rod 10, a fixing frame 11 and an operation screen 12, wherein the lower end of the first discharge outlet 7 is fixed with the auxiliary mechanism 8, the upper end of the front side of the machine body 1 is provided with the gear set 2, the top of the machine body 1 is vertically provided with the feed inlet 3, the right end of the machine body 1 is provided with the material separating barrel 4, the bottom of the left end of the material separating barrel 4 is fixed with the small material tank 5, the bottom of the right end of the material separating barrel 4 is fixed with the large material tank 6, the lower end of the front side of the large material tank 6 is provided with the first discharge outlet 7, the front side of the lower end of the small material tank 5 is communicated with the second discharge outlet 9, the bottom of the second discharge outlet 9 is attached with the first fixing rod 10, the right end of the material distributing barrel 4 is rotatably connected with the fixing frame 11, the upper right end of the fixing frame 11 is provided with an operation screen 12, and the operation screen 12 is convenient for operators to observe and operate.
Please refer to fig. 2, the utility model provides an improve here that a production of regeneration Eva granule is with intelligent sieve separator, complementary unit 8 includes screening plant 81 and pendulous device 82, and screening plant 81 right-hand member is fixed mutually with pendulous device 82, and first discharge gate 7 lower extreme is fixed as an organic whole with screening plant 81, and the setting of screening plant 81 can be better make the granule select separately.
Referring to fig. 3 and 4, the present invention provides an intelligent screening machine for producing regenerated Eva particles through improvement, wherein the screening device 81 comprises an outer frame 811, a third discharge port 812, a blanking plate 813, an opening 814, a filter plate 815, a first chute 816 and a stopper 817, the lower end of the front side of the outer frame 811 is provided with the third discharge port 812, the upper right end of the outer frame 811 is provided with a notch, the bottom of the inner side of the outer frame 811 is fixed with the blanking plate 813 into a whole, the blanking plate 813 is in a right trapezoid shape, the surface of the blanking plate 813 is provided with a smooth layer, the top of the outer frame 811 is provided with the opening 814, the inner side of the outer frame 811 is provided with the filter plate 815, the outer side of the filter plate 815 is slidably connected with the first chute 816, the left and right ends of the inner side of the outer frame 811 are fixed with the stopper 817, the stoppers 817 are provided with two stoppers, the stoppers 817 are symmetrically distributed along the transverse central axis of the filter plate 815, the top of the outer frame 811 is fixed with the first discharge port 7 into a whole, the opening 814 is arranged to facilitate the blanking operation of the first discharge hole 7.
Please refer to fig. 5, the utility model provides a regeneration Eva granule production is with intelligent sieve separator through the improvement here, pendulous device 82 includes shell 821, bracing piece 822, motor 823, come and go device 824, first spacing cylinder 825 and second spacing cylinder 826, the inboard right-hand member of shell 821 is fixed mutually with bracing piece 822, bracing piece 822 top is fixed integrative with motor 823, the motor 823 rear side is rotated with coming and going device 824 and is connected, it is fixed mutually with first spacing cylinder 825 to come and go device 824 rear side upper end, come and go device 824 rear side lower extreme and second spacing cylinder 826 through connection, shell 821 left end is fixed mutually with frame 811, bracing piece 822 has good spacing bracing piece effect.
Referring to fig. 6, the present invention provides, through improvement, an intelligent screening machine for producing regenerative Eva particles, wherein a shuttle 824 includes a rotation shaft 8241, a first rotary plate 8242, a second rotary plate 8243, a second fixing rod 8244, a second sliding groove 8245, a slider 8246, a sliding rod 8247, a base 8248, a connecting rod 8249, and a third fixing rod 82410, a rear side of the rotation shaft 8241 is connected to the first rotary plate 8242 in a penetrating manner, a rear side of the rotation shaft 8241 is connected to the second rotary plate 8243 in a rotating manner, a left front end of the second rotary plate 8243 is connected to the second fixing rod 8244 in a rotating manner, a front end of the second fixing rod 8244 is fixed to the second sliding groove 8245 in a penetrating manner, a middle portion of an inner side of the second sliding groove 8245 is connected to the slider 8246 in a sliding manner, a left end of the slider 8247 is fixed to the sliding rod 8247, a left end of the sliding rod 8247 is connected to the base 8248 in a penetrating manner, a rear end of the second sliding groove 8245 is connected to the connecting rod 8249 in a rotating manner, a third fixing rod 82410 is provided at a rear end of the connecting rod 8249, a front end of the rotation shaft 8241 is connected to the motor 82823, the sliding grooves formed in the inner sides of the second sliding grooves 8245 facilitate the sliding operation of the sliding blocks 8246.
The motor 823 in this patent refers to an electromagnetic device that realizes the conversion or transmission of electric energy according to the law of electromagnetic induction, the motor is represented by letter M (old standard is D) in the circuit, its main function is to generate driving torque as the power source of electrical appliances or various machines, the generator is represented by letter G in the circuit, its main function is to convert mechanical energy into electric energy,
the working principle is as follows:
the first embodiment is as follows: an operator can firstly place the machine body 1 horizontally at a place needing to be used, then the device is connected with external power supply equipment, particles needing to be screened can be poured into the machine body from the feeding hole 3, a user can control the machine body 1 to start working through the operation screen 12 at the right end of the fixing frame 11, the rear gear set 2 can drive the material distribution barrel 4 to rotate, the Eva particles on the inner side of the material distribution barrel 4 can be screened, the smaller Eva particles fall into the small trough 5 and are discharged from the second discharging hole 9, the larger Eva particles fall into the large trough 6 and are discharged from the first discharging hole 7 arranged at the lower end of the front side of the large trough 6;
example two: the Eva particles discharged from the first discharge hole 7 enter the outer frame 811 through the opening 814, the small particles mixed in the large-sized particles are screened at the bottom of the outer frame 811 through the filter plate 815, and the screened small particles are discharged from the third discharge hole 812 through the blanking plate 813;
example three: when the Eva large granule on the later need be discharged with the filter 815, motor 823 output shaft drives rotation axis 8241 and rotates work, first carousel 8242 and second carousel 8243 normal running fit each other, alright drive second spout 8245 and swing, thereby alright make slider 8246 slide in second spout 8245, then alright make slide bar 8247 slide work in base 8248, and connecting rod 8249 set up and can carry out good work for second spout 8245, alright accomodate the filter 815 to in the shell 821, alright discharge in follow unloading board 813.
The utility model discloses a control mode is through controller come automatic control, and the control circuit of controller can realize through the simple programming of technical staff in this field, and the providing of power also belongs to the common general knowledge in this field, and the utility model discloses mainly be used for protecting mechanical device, so the utility model discloses no longer explain control mode and circuit connection in detail.
The basic principle and the main characteristics of the utility model and the advantages of the utility model have been shown and described above, and the utility model discloses the standard part that uses all can purchase from the market, and dysmorphism piece all can be customized according to the record of the description with the drawing, and the concrete connection mode of each part all adopts conventional means such as ripe bolt rivet among the prior art, welding, and machinery, part and equipment all adopt prior art, conventional model, and conventional connection mode in the prior art is adopted in addition to circuit connection, and the details are not repeated here.
It will be evident to those skilled in the art that the invention is not limited to the details of the foregoing illustrative embodiments, and that the present invention may be embodied in other specific forms without departing from the spirit or essential attributes thereof. 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 (8)

1. The utility model provides a production of regeneration Eva granule is with intelligent sieve separator which characterized in that: the automatic feeding device comprises a machine body (1), a gear set (2), a feeding hole (3), a distributing barrel (4), a small trough (5), a large trough (6), a first discharging hole (7), an auxiliary mechanism (8), a second discharging hole (9), a first fixing rod (10), a fixing frame (11) and an operation screen (12), wherein the lower end of the first discharging hole (7) is fixed with the auxiliary mechanism (8) into a whole;
the auxiliary mechanism (8) comprises a screening device (81) and a swinging device (82), the right end of the screening device (81) is fixed with the swinging device (82), and the lower end of the first discharge hole (7) is fixed with the screening device (81) into a whole.
2. The intelligent screening machine for producing the regenerated Eva particles as claimed in claim 1, wherein: organism (1) front side upper end is provided with gear train (2), organism (1) top is provided with feed inlet (3) perpendicularly, organism (1) right-hand member is provided with branch storage bucket (4), divide storage bucket (4) left end bottom to be fixed mutually with little silo (5), divide storage bucket (4) right-hand member bottom to be fixed as an organic whole with big silo (6), first discharge gate (7) have been seted up to big silo (6) front side lower extreme, little silo (5) lower extreme front side is linked together with second discharge gate (9), laminating mutually with first dead lever (10) second discharge gate (9) bottom, divide storage bucket (4) right-hand member to rotate with mount (11) and be connected, mount (11) upper right end is provided with operation screen (12).
3. The intelligent screening machine for producing the regenerated Eva particles as claimed in claim 1, wherein: screening plant (81) include frame (811), third discharge gate (812), lower feed plate (813), opening (814), filter (815), first spout (816) and stopper (817), third discharge gate (812) have been seted up to frame (811) front side lower extreme, frame (811) inboard bottom is fixed as an organic whole with lower flitch (813), opening (814) have been seted up at frame (811) top, frame (811) inboard is provided with filter (815), filter (815) outside and first spout (816) sliding connection, both ends are fixed mutually with stopper (817) about frame (811) inboard, frame (811) top is fixed as an organic whole with first discharge gate (7).
4. The intelligent screening machine for producing the regenerated Eva particles as claimed in claim 1, wherein: the swinging device (82) comprises a shell (821), a supporting rod (822), a motor (823), a reciprocating device (824), a first limiting cylinder (825) and a second limiting cylinder (826), wherein the right end of the inner side of the shell (821) is fixed to the supporting rod (822), the top of the supporting rod (822) is fixed to the motor (823) into a whole, the rear side of the motor (823) is rotatably connected with the reciprocating device (824), the upper end of the rear side of the reciprocating device (824) is fixed to the first limiting cylinder (825), the lower end of the rear side of the reciprocating device (824) is in through connection with the second limiting cylinder (826), and the left end of the shell (821) is fixed to an outer frame (811).
5. The intelligent screening machine for producing the regenerated Eva particles as claimed in claim 4, wherein: the reciprocating device (824) comprises a rotating shaft (8241), a first rotary disc (8242), a second rotary disc (8243), a second fixing rod (8244), a second sliding groove (8245), a sliding block (8246), a sliding rod (8247), a base (8248), a connecting rod (8249) and a third fixing rod (82410), wherein the rear side of the rotating shaft (8241) is connected with the first rotary disc (8242) in a penetrating manner, the rear side of the rotating shaft (8241) is connected with the second rotary disc (8243) in a rotating manner, the left front end of the second rotary disc (8243) is connected with the second fixing rod (8244) in a rotating manner, the front end of the second fixing rod (8244) is connected with the second sliding groove (8245) in a fixing manner, the middle of the inner side of the second sliding groove (8245) is connected with the sliding block (8246) in a sliding manner, the left end of the sliding block (8246) is fixed with the sliding rod (8247), the left end of the sliding rod (8248) is connected with the base (8248) in a penetrating manner, the upper end of the rear side of the second sliding groove (8245) is connected with the connecting rod (8249), the upper end of the rear side of the connecting rod (8249) is provided with a third fixing rod (82410), and the front end of the rotating shaft (8241) is connected with a motor (823).
6. The intelligent screening machine for producing the regenerated Eva particles as claimed in claim 3, wherein: the upper right end of the outer frame (811) is provided with a notch.
7. The intelligent screening machine for producing the regenerated Eva particles as claimed in claim 3, wherein: the number of the limiting blocks (817) is two, and the limiting blocks (817) are symmetrically distributed along the transverse central axis of the filter plate (815).
8. The intelligent screening machine for producing the regenerated Eva particles as claimed in claim 3, wherein: the blanking plate (813) is in a right-angle trapezoidal shape, and a smooth layer is arranged on the surface of the blanking plate (813).
CN202220360650.7U 2022-02-22 2022-02-22 Intelligent screening machine is used in production of regeneration Eva granule Active CN217494841U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220360650.7U CN217494841U (en) 2022-02-22 2022-02-22 Intelligent screening machine is used in production of regeneration Eva granule

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220360650.7U CN217494841U (en) 2022-02-22 2022-02-22 Intelligent screening machine is used in production of regeneration Eva granule

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CN217494841U true CN217494841U (en) 2022-09-27

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