CN220389978U - Thermoplastic elastomer processing and conveying device with quantitative structure - Google Patents

Thermoplastic elastomer processing and conveying device with quantitative structure Download PDF

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Publication number
CN220389978U
CN220389978U CN202322058508.4U CN202322058508U CN220389978U CN 220389978 U CN220389978 U CN 220389978U CN 202322058508 U CN202322058508 U CN 202322058508U CN 220389978 U CN220389978 U CN 220389978U
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movable
block
box
thermoplastic elastomer
pipe
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CN202322058508.4U
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Chinese (zh)
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吴庆威
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Dongguan Zhiying Rubber Plastic Co ltd
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Dongguan Zhiying Rubber Plastic Co ltd
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Abstract

The utility model discloses a thermoplastic elastomer processing and conveying device with a quantitative structure, which comprises a box body and a sliding mechanism, wherein a fixed block is arranged above the box body, a movable mechanism is arranged on one side of the fixed block, an external block is arranged on one side of the box body, a feeding box is arranged above the external block, a conveying pipe is arranged above the feeding box, a mixing box is arranged above the conveying pipe, a through pipe is arranged above the mixing box, the sliding mechanism is arranged inside the mixing box, the sliding mechanism comprises a movable groove and a movable plate, and a movable groove is arranged on one side of the movable plate. This thermoplastic elastomer processing conveyor with ration structure, movable plate pass through movable groove with whole being connected to inside the mixing box, and the movable plate will wholly remove with the help of the movable groove of side when the inside material that does not have of below feed box, opens inside and conveyer pipe's connector, and a lot of is carried, keeps inside transport smooth, prevents to block up, and material utilization improves.

Description

Thermoplastic elastomer processing and conveying device with quantitative structure
Technical Field
The utility model relates to the technical field of thermoplastic elastomer processing and conveying devices, in particular to a thermoplastic elastomer processing and conveying device with a quantitative structure.
Background
The thermoplastic elastomer has the advantages that the thermoplastic elastomer has the excellent performances of high elasticity, ageing resistance and oil resistance of the traditional crosslinked vulcanized rubber, has the characteristics of convenience in processing and wide processing mode of common plastics, can be produced by adopting processing modes such as injection molding, extrusion, blow molding and the like, is directly used for 100 percent of secondary use after the corners of a water gap are crushed, and compared with the conventional rubber, has no hot vulcanization step, so that the production is more convenient, the produced leftover materials can be recycled, the thermoplastic elastomer is a material which is very environment-friendly and energy-saving, and the quality of the thermoplastic elastomer is easily reduced due to imperfect processing and conveying devices of the internal thermoplastic elastomer in the processing process.
The thermoplastic elastomer processing conveyor on market lacks the component structure in the operation in-process, and the production raw materials of input is more to cause the jam easily, causes inside card shell and damage, and excessive in-process volume leads to machine production quality to descend.
Disclosure of Invention
The utility model aims to provide a thermoplastic elastomer processing and conveying device with a quantitative structure, so as to solve the market problems in the background technology.
In order to achieve the above purpose, the present utility model provides the following technical solutions: the utility model provides a thermoplastic elastomer processing conveyor with ration structure, includes box and slide mechanism, the fixed block is installed to the top of box, and the movable mechanism is installed to one side of fixed block, the external connection piece is installed to one side of box, and the workbin is installed to the top of external connection piece, the conveyer pipe is installed to the top of workbin, and installs the mixing box in the top of conveyer pipe, the siphunculus is installed to the top of mixing box, the internally mounted of mixing box has slide mechanism, slide mechanism includes movable groove and movable plate, and the movable groove is installed to one side of movable plate, the internally mounted of workbin has linking mechanism, the discharging pipe is installed to the below of movable mechanism.
Further, the box body is fixedly connected with the movable mechanism, and the discharging pipe penetrates through the movable mechanism.
Further, the external connection block is movably connected with the feeding box, and the conveying pipe penetrates through the external connection block.
Further, the movable groove is movably connected with the movable plate, and the movable groove is embedded in the mixing box.
Further, the movable mechanism comprises a movable block, an inner connecting groove and an outer connecting pipe, wherein the inner connecting groove is arranged on one side of the movable block, and the outer connecting pipe is arranged outside the movable block.
Further, the inner connecting groove is embedded in the movable block, and the outer connecting tube is embedded in the outer part of the movable block.
Further, the engagement mechanism comprises a sliding plate, an engagement block and a fixed plate, the engagement block is arranged outside the power sliding plate, and the fixed plate is arranged on one side of the engagement block.
Further, the sliding plate is movably connected with the connecting block, and the connecting block is fixedly connected with the fixed plate.
Compared with the prior art, the utility model has the beneficial effects that: this thermoplastic elastomer processing conveyor with ration structure, movable plate pass through movable groove with whole being connected to inside the mixing box, and the movable plate will wholly remove with the help of the movable groove of side when the inside material that does not have of below feed box, opens inside and conveyer pipe's connector, and a lot of is carried, keeps inside transport smooth, prevents to block up, and material utilization improves.
1. When residues exist in internal processing, the internal connecting groove is used for conveying the residues out along the connected discharging pipe, the external connecting pipe connected with the outside is pushed to the inside before the next processing, and the residues are conveyed to the next stage along the external connecting pipe, so that the internal material processing speed is increased, and the damage of the machine caused by a large amount of residues is prevented.
2. When the feeding device is used for feeding, the sliding plate moves to two sides through the connecting block sliding rail, the feeding box and the conveying pipe are connected, the sliding plate is attached to the conveying pipe when the feeding device is closed, the fixed plate provides fixed points for the movement of the sliding plate, the ordering of internal feeding is perfected, the feeding blocking pressure is relieved, and the utilization rate of internal materials is improved.
Drawings
FIG. 1 is a schematic perspective view of the present utility model;
FIG. 2 is a schematic view of the movable mechanism structure of the present utility model;
FIG. 3 is a schematic view of the engagement mechanism of the present utility model.
In the figure: 1. a case; 2. a fixed block; 3. a movable mechanism; 301. a movable block; 302. an inscription groove; 303. an outer connecting pipe; 4. an outer joint block; 5. a feeding box; 6. a mixing box; 7. a through pipe; 8. a sliding mechanism; 801. a movable groove; 802. a moving plate; 9. a linking mechanism; 901. a sliding plate; 902. a joint block; 903. a fixed plate; 10. a delivery tube; 11. and a discharging pipe.
Detailed Description
Example 1
As shown in fig. 1, the present utility model provides a technical solution: the thermoplastic elastomer processing and conveying device with a quantitative structure comprises a box body 1 and a sliding mechanism 8, wherein a fixed block 2 is arranged above the box body 1, a movable mechanism 3 is arranged on one side of the fixed block 2, an external block 4 is arranged on one side of the box body 1, a feed box 5 is arranged above the external block 4, a conveying pipe 10 is arranged above the feed box 5, a mixing box 6 is arranged above the conveying pipe 10, a through pipe 7 is arranged above the mixing box 6, the sliding mechanism 8 is arranged in the mixing box 6, the sliding mechanism 8 comprises a movable groove 801 and a movable plate 802, the movable groove 801 is arranged on one side of the movable plate 802, a connecting mechanism 9 is arranged in the interior of the feed box 5, a discharge pipe 11 is arranged below the movable mechanism 3, the box body 1 is fixedly connected with the movable mechanism 3, the discharge pipe 11 penetrates through the interior of the movable mechanism 3, the box body 1 is fixed with the fixed block 2 by using a threaded part as a connecting platform, a groove formed on the surface of the box body 1 is overlapped with a part which is searched and extended by the fixed block 2, the part which is searched and extended by the fixed block 2 moves by using a sliding rail at the groove of the box body 1, when materials are conveyed into and out of the groove from the conveying pipe 10, the fixed block 2 covers the groove of the box body 1 by extending an internal structure to carry out internal processing, the fixed block 2 is attached with the movable mechanism 3, the fixed block 2 is fixed with the box body 1 by using the movable mechanism 3 as a connecting medium, a discharging pipe 11 penetrates through the movable mechanism 3 to be connected to the inside of the fixed block 2, the materials are remained after each processing, the residues are conveyed out by the discharging pipe 11 which is conveyed to the lower part of the movable mechanism 3 through the inside of the fixed block 2, the external connecting block 4 is movably connected with the material-feeding box 5, the conveying pipe 10 penetrates through the inside of the external connecting block 4, the conveying pipe 10 penetrates through the external connecting block 4 and the material-feeding box 5, the inside quantitative structure that exists of workbin 5 utilizes conveyer pipe 10 to carry the material to the inside processing of box 1, external piece 4 inner structure fixed conveying pipe 10, guarantee stability of carrying, conveyer pipe 10 is connected to the siphunculus 7 of top, siphunculus 7 is the inlet pipe along the pipeline entering mixing box 6, mixing box 6 and workbin 5 internal joint divide into two parts with the pay-off, mixing box 6 carries out the material of carrying and mixes, send into workbin 5 with the aid of slide mechanism 8, reuse linking mechanism 9 carries out, be swing joint between movable groove 801 and the movable plate 802, and the movable groove 801 gomphosis is in the inside of mixing box 6, slide mechanism 8 is equivalent to mixing box 6 internal department valve, movable plate 802 will wholly be connected to inside of mixing box 6 through movable groove 801, movable plate 802 will wholly remove with the aid of the movable groove 801 of side when the inside workbin 5 of below is not had the material, open inside and the connector of conveyer pipe 10, seal siphunculus 7 and mixing box 6 connector simultaneously, let the material remove to workbin 5 inside, progressive structure carries, keep material transportation stability and conveying capacity, the residue is reduced, the improvement utilization ratio.
Example 2
As shown in fig. 2 and 3, the present utility model provides a technical solution: a thermoplastic elastomer processing and conveying device with a quantitative structure, wherein a movable mechanism 3 comprises a movable block 301, an inner connecting groove 302 and an outer connecting pipe 303, wherein the inner connecting groove 302 is arranged on one side of the movable block 301, the outer connecting pipe 303 is arranged outside the movable block 301, the inner connecting groove 302 is embedded in the movable block 301, the outer connecting pipe 303 is embedded in the movable block 301, the movable mechanism 3 is used as a connecting medium to connect a fixed block 2 and a discharging pipe 11, the movable block 301 is integrally fixed at a connecting position by using a protruding position, the inner connecting groove 302 is embedded in the movable block 301, when residues exist in internal processing, the residues are conveyed out along the connected discharging pipe 11 by using the inner connecting groove 302, the outer connecting pipe 303 connected outside is pushed inwards to cover the inner connecting groove 302 before the next processing, and the internally processed materials are conveyed to the next stage along the outer connecting pipe 303, the convenience of installation is provided, the internal material processing speed is accelerated simultaneously, the connection mechanism 9 comprises a sliding plate 901, a connection block 902 and a fixed plate 903, the connection block 902 is arranged on the outer portion of the power sliding plate 901, the fixed plate 903 is arranged on one side of the connection block 902, movable connection is arranged between the sliding plate 901 and the connection block 902, the connection block 902 is fixedly connected with the fixed plate 903, the connection mechanism 9 is utilized to serve as a door valve in the material feeding box 5, the connection block 902 is embedded at the inner wall of the material feeding box 5, the sliding plate 901 is arranged along the sliding rail in the connection block 902, during material feeding, the sliding plate 901 moves to two sides through the sliding rail of the connection block 902, the material feeding box 5 is connected with the conveying pipe 10 in a connecting mode, the sliding plate 901 is attached to the conveying pipe 10 in a closing mode, the fixed plate 903 provides fixed points for the movement of the sliding plate 901, the order of internal material feeding is perfected, the labor cost is reduced, and the processing efficiency is improved.
In summary, this thermoplastic elastomer processing conveyor with quantitative structure uses screw parts to fix box 1 as connecting platform with fixed block 2, the recess that box 1 surface was seted up overlaps with the part that fixed block 2 searched for to extend, the part that fixed block 2 searched for to extend utilizes the slide rail of box 1 recess department to remove, when material is carried into the recess from conveyer pipe 10, fixed block 2 carries out inside processing through extending inner structure cover box 1 recess, all will remain material in every processing, pass through discharging pipe 11 below movable mechanism 3, carry out the residue, carry the material to the inside processing of box 1 with conveyer pipe 10, external piece 4 inner structure fixed conveyer pipe 10, conveyer pipe 10 is connected to the siphunculus 7 of top, siphunculus 7 is that the inlet pipe gets into mixing box 6 along the pipeline, mixing box 6 and the inside joint of feed box 5 divide the pay-off into two parts, the material to be conveyed is mixed by the mixing box 6, the material to be conveyed is sent into the material feeding box 5 by the sliding mechanism 8, and then is conveyed out by the connection mechanism 9, the sliding mechanism 8 corresponds to a valve in the material feeding box 6, the movable plate 802 is integrally connected to the inside of the material feeding box 6 by the movable groove 801, when no material exists in the material feeding box 5 below, the movable plate 802 is integrally moved by the side movable groove 801, the connection port between the inside and the conveying pipe 10 is opened, the connection port between the through pipe 7 and the material feeding box 6 is closed, the material is moved to the inside of the material feeding box 5, the movable block 301 is integrally fixed at the connection position by the protruding position, the inscription groove 302 is embedded in the movable block 301, when residues exist in the internal processing, the residues are conveyed out along the connected discharging pipe 11 by the inscription groove 302, the externally connected external connection pipe 303 is pushed to the inside before the next processing, covering the internal groove 302, conveying the material processed inside to the next stage along the external pipe 303, embedding the connecting block 902 at the inner wall of the material feeding box 5, installing the sliding plate 901 along the sliding rail inside the connecting block 902, moving the sliding plate 901 to two sides through the sliding rail of the connecting block 902 during discharging, connecting the material feeding box 5 and the conveying pipe 10, attaching the sliding plate 901 to the conveying pipe 10 during closing, and fixing the sliding plate 901 to a fixed point during moving the sliding plate 901.

Claims (8)

1. Thermoplastic elastomer processing conveyor with ration structure, including box (1) and slide mechanism (8), its characterized in that: fixed block (2) are installed to the top of box (1), and movable mechanism (3) are installed to one side of fixed block (2), external piece (4) are installed to one side of box (1), and the top of external piece (4) is installed workbin (5), conveyer pipe (10) are installed to the top of workbin (5), and the top of conveyer pipe (10) is installed mixing box (6), siphunculus (7) are installed to the top of mixing box (6), the internally mounted of mixing box (6) has slide mechanism (8), slide mechanism (8) include movable groove (801) and movable plate (802), and movable groove (801) are installed to one side of movable plate (802), the internally mounted of workbin (5) has link up mechanism (9), discharging pipe (11) are installed to the below of movable mechanism (3).
2. A thermoplastic elastomer processing and conveying device with a quantitative structure according to claim 1, wherein: the fixed block (2) is fixedly connected with the movable mechanism (3), and the discharging pipe (11) penetrates through the movable mechanism (3).
3. A thermoplastic elastomer processing and conveying device with a quantitative structure according to claim 1, wherein: the external connection block (4) is movably connected with the material feeding box (5), and the conveying pipe (10) penetrates through the external connection block (4).
4. A thermoplastic elastomer processing and conveying device with a quantitative structure according to claim 1, wherein: the movable groove (801) is movably connected with the movable plate (802), and the movable groove (801) is embedded in the mixing box (6).
5. A thermoplastic elastomer processing and conveying device with a quantitative structure according to claim 1, wherein: the movable mechanism (3) comprises a movable block (301), an inner connecting groove (302) and an outer connecting pipe (303), wherein the inner connecting groove (302) is arranged on one side of the movable block (301), and the outer connecting pipe (303) is arranged outside the movable block (301).
6. A thermoplastic elastomer processing and conveying device with a quantitative structure according to claim 5, wherein: the inner connecting groove (302) is embedded in the movable block (301), and the outer connecting tube (303) is embedded outside the movable block (301).
7. A thermoplastic elastomer processing and conveying device with a quantitative structure according to claim 1, wherein: the connecting mechanism (9) comprises a sliding plate (901), a connecting block (902) and a fixed plate (903), wherein the connecting block (902) is arranged outside the power sliding plate (901), and the fixed plate (903) is arranged on one side of the connecting block (902).
8. A thermoplastic elastomer processing and conveying device with a quantitative structure according to claim 7, wherein: the sliding plate (901) is movably connected with the connecting block (902), and the connecting block (902) is fixedly connected with the fixed plate (903).
CN202322058508.4U 2023-08-02 2023-08-02 Thermoplastic elastomer processing and conveying device with quantitative structure Active CN220389978U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322058508.4U CN220389978U (en) 2023-08-02 2023-08-02 Thermoplastic elastomer processing and conveying device with quantitative structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322058508.4U CN220389978U (en) 2023-08-02 2023-08-02 Thermoplastic elastomer processing and conveying device with quantitative structure

Publications (1)

Publication Number Publication Date
CN220389978U true CN220389978U (en) 2024-01-26

Family

ID=89609856

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322058508.4U Active CN220389978U (en) 2023-08-02 2023-08-02 Thermoplastic elastomer processing and conveying device with quantitative structure

Country Status (1)

Country Link
CN (1) CN220389978U (en)

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