CN213976203U - Rice conveying pipeline - Google Patents

Rice conveying pipeline Download PDF

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Publication number
CN213976203U
CN213976203U CN202022747541.4U CN202022747541U CN213976203U CN 213976203 U CN213976203 U CN 213976203U CN 202022747541 U CN202022747541 U CN 202022747541U CN 213976203 U CN213976203 U CN 213976203U
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China
Prior art keywords
buffering
connecting rod
rice
buffer board
pipeline body
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CN202022747541.4U
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Chinese (zh)
Inventor
胡学文
刘自斌
翟明东
徐明秀
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Ningxia Saiwaixiang Food Co ltd
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Ningxia Saiwaixiang Food Co ltd
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Abstract

A rice conveying pipeline comprises a pipeline body, wherein a buffering part is fixedly arranged inside the pipeline body and comprises a buffering plate, a first buffering component and a second buffering component, the buffering plate is obliquely arranged inside the pipeline body in a downward mode, one end of the buffering plate is hinged to the inside of the pipeline body, the first buffering component and the second buffering component are oppositely arranged, the upper ends of the first buffering component and the second buffering component are hinged to the lower portion of the buffering plate respectively, the lower ends of the first buffering component and the second buffering component are hinged to the inner wall of the pipeline body respectively, and a buffering component is fixedly arranged on the buffering plate; after the rice falls from the upper portion of pipeline body, the rice can form the impact to the buffer board, through the bradyseism part that sets up, can reduce the effort that the rice directly strikeed the buffer board, and first buffering subassembly, the second buffering subassembly that return through setting up can effectively reduce the impact collision of rice and buffer board, make the impact force between rice and the buffer board reduce to it is broken to reduce the rice.

Description

Rice conveying pipeline
Technical Field
The utility model relates to a rice processing equipment technical field especially relates to a rice pipeline.
Background
The rice is in the course of working, generally need carry the rice through the pipeline, and at the in-process of carrying, the rice grain can bump, rub with the inner wall of pipeline, can lead to the rice grain to be broken. The utility model with application number 201820285528.1 discloses a rice transportation pipeline with buffering function, which buffers falling rice by arranging a buffer plate in the pipeline, thereby preventing the rice from being broken; but can discover when using, because buffer board and pipeline inner wall are the rigid connection, when the rice down falls from last, the rice is on the buffer board back of falling, has just slowed down the falling speed, and the buffer board of the superiors still collides with the rice, does not play effectual leakage force buffering to the rice of whereabouts, can not the broken problem of effectual solution rice.
Disclosure of Invention
In view of the above, there is a need for a rice transportation pipeline.
The utility model provides a rice pipeline, includes the pipeline body, the fixed buffering part that is provided with in inside of pipeline body, buffering part along the inside from the top down crisscross setting in proper order of pipeline body, buffering part includes buffer board, first buffering subassembly, second buffering subassembly, the buffer board downward sloping sets up inside the pipeline body, and the one end of buffer board is articulated with the inside of pipeline body, first buffering subassembly, second buffering subassembly subtend setting, and the upper end of first buffering subassembly, second buffering subassembly is articulated with the lower part surface of buffer board respectively, and the lower extreme of first buffering subassembly, second buffering subassembly is articulated with the inner wall of pipeline body respectively, the fixed bradyseism part that is provided with on the buffer board.
Preferably, the buffer plates are arranged in a staggered mode from top to bottom in sequence along the interior of the pipeline body, and the inclination directions of the two upper and lower adjacent buffer plates are opposite.
Preferably, first buffering subassembly, second buffering subassembly have the same structure, first buffering subassembly includes head rod, second connecting rod, elastic component, the inside cavity of second connecting rod, and one end is opened, and the lower extreme of second connecting rod is articulated with the inner wall of pipeline body, the upper end of head rod is articulated with the lower part surface of buffer board, and inside the lower extreme of head rod inserted the second connecting rod to can follow the inside relative slip of second connecting rod, the elastic component sets up in the inside of second connecting rod, the one end of elastic component and the inside bottom fixed connection of second connecting rod, the other end of elastic component and the lower extreme fixed connection of head rod.
Preferably, the lower end of the first connecting rod is fixedly provided with a connector.
Preferably, an installation groove for installing the elastic piece is formed in the end face, away from the first connecting rod, of the connector.
Preferably, an end cover is fixedly arranged at the open end of the second connecting rod, and a round hole for the first connecting rod to pass through is formed in the end cover.
Preferably, the end cover is sleeved at the open end of the second connecting rod, and the end cover is connected with the second connecting rod through threads.
Preferably, the buffer plate is provided with a T-shaped clamping groove, and the edge position of the buffer plate is provided with a positioning hole.
Preferably, the cushioning component comprises an upper rubber pad, a middle spongy cushion and a lower rubber pad, the upper rubber pad and the lower rubber pad are respectively bonded on the upper part and the lower part of the middle spongy cushion, and the middle spongy cushion is clamped between the upper rubber pad and the lower rubber pad.
Preferably, the lower rubber pad is fixedly provided with an installation convex strip corresponding to the T-shaped clamping groove, and the lower rubber pad is fixedly provided with a connecting convex block corresponding to the positioning hole.
The utility model adopts the above technical scheme, its beneficial effect lies in: the utility model discloses an including the pipeline body, the inside of pipeline body is fixed and is provided with buffering parts, buffering parts stagger from top to bottom along the inside of pipeline body in proper order, buffering parts include buffer board, first buffering subassembly, the second buffering subassembly, the buffer board downward sloping sets up inside the pipeline body, one end of buffer board is articulated with the inside of pipeline body, first buffering subassembly, the opposite direction of second buffering subassembly sets up, and the upper end of first buffering subassembly, the upper end of second buffering subassembly is articulated with the lower part surface of buffer board respectively, the lower extreme of first buffering subassembly, the lower extreme of second buffering subassembly is articulated with the inner wall of pipeline body respectively, the fixed bradyseism part that is provided with on the buffer board; when the rice falls down from the upper part of the pipeline body and contacts with the buffer plate, the rice can impact the buffer plate and extrude the buffer plate, at the moment, the first buffer assembly and the second buffer assembly retract to enable the buffer plate to press downwards, so that the impact force generated by the rice can form the effect of leakage, the impact collision between the rice and the buffer plate is effectively reduced, the impact force between the rice and the buffer plate is reduced, and the rice is reduced from being crushed; after rice and buffer board contact, through the bradyseism part that sets up, can reduce the effort of rice direct impact buffer board to slow down the collision between rice and the buffer board, thereby the cushioning effect that plays that can be better, thereby it is broken to reduce the rice.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a schematic structural view of the buffering component of the present invention.
Fig. 3 is a schematic cross-sectional structure of fig. 2.
Fig. 4 is a schematic structural view of the buffering member of the present invention.
Fig. 5 is a schematic structural view of fig. 4 from another angle.
Fig. 6 is a schematic structural view of the shock absorption component of the present invention.
Fig. 7 is a schematic structural diagram of a first connecting rod according to the present invention.
Fig. 8 is a schematic structural view of the second connecting rod of the present invention.
In the figure: the pipeline comprises a pipeline body 01, a buffer component 02, a buffer plate 21, a clamping groove 211, a positioning hole 212, a first buffer component 22, a first connecting rod 221, a second connecting rod 222, an elastic piece 223, a second buffer component 23, a connector 03, a mounting groove 31, an end cover 04, a round hole 41, a shock absorption component 05, an upper-layer rubber pad 51, a middle sponge pad 52, a lower-layer rubber pad 53, a mounting convex strip 531 and a connecting convex block 532.
Detailed Description
Referring to fig. 1 to 8, an embodiment of the present invention provides a rice conveying pipeline, including a pipeline body 01, the fixed buffer part 02 that is provided with in inside of pipeline body 01, buffer part 02 is along the inside from top to bottom of pipeline body 01 crisscross setting in proper order, buffer part 02 includes buffer plate 21, first buffer component 22, second buffer component 23, the downward sloping setting of buffer plate 21 is inside pipeline body 01, and the one end of buffer plate 21 is articulated with the inside of pipeline body 01, first buffer component 22, second buffer component 23 opposite direction set up, and the upper end of first buffer component 22, second buffer component 23 is articulated with the lower part surface of buffer plate 21 respectively, and the lower extreme of first buffer component 22, second buffer component 23 is articulated with the inner wall of pipeline body 01 respectively. After the rice falls from the upper part of the pipeline body 01 and contacts with the buffer plate 21, the rice can impact the buffer plate 21 and extrude the buffer plate 21, at the moment, the first buffer component 22 and the second buffer component 23 retract to enable the buffer plate 21 to be pressed downwards, the impact force generated by the rice can form the effect of pressure relief, the impact collision between the rice and the buffer plate 21 is effectively reduced, the impact force between the rice and the buffer plate 21 is reduced, and therefore the rice is reduced to be broken; after rice and buffer board 21 contact, through the bradyseism part 05 that sets up, can reduce the effort that the rice directly assaulted buffer board 21 to slow down the collision between rice and the buffer board 21, thereby can be better play the cushioning effect, thereby reduce the rice breakage.
Buffer board 21 sets up along the inside from top to bottom crisscross in proper order of pipeline body 01, and two adjacent buffer board 21's of upper and lower incline direction is opposite, through the buffer board 21 of crisscross setting from top to bottom, can be better play the cushioning effect to the rice.
The first buffer assembly 22 and the second buffer assembly 23 have the same structure, the first buffer assembly 22 includes a first connection rod 221, a second connection rod 222, and an elastic member 223, the second connection rod 222 is hollow, and has an open end, the lower end of the second connection rod 222 is hinged to the inner wall of the pipe body 01, the upper end of the first connection rod 221 is hinged to the lower surface of the buffer plate 21, the lower end of the first connection rod 221 is inserted into the second connection rod 222 and can relatively slide along the inside of the second connection rod 222, the elastic member 223 is disposed inside the second connection rod 222, and the elastic member 223 can be a spring with a restoring property; one end of the elastic member 223 is fixedly connected to the bottom of the inside of the second connecting rod 222, and the other end of the elastic member 223 is fixedly connected to the lower end of the first connecting rod 221. At rice from the continuous whereabouts under the top, form the impact back to buffer board 21, buffer board 21 can contract and push down, and the head rod 221 can extrude elastic component 223 downwards this moment, and elastic component 223 is compressed, and the impact force that buffer board 21 received is by most earial discharge, just so can reduce impact, the collision of rice to buffer board 21, to the rice forms effectual buffering at the whereabouts in-process to can reduce rice transportation in-process percentage of damage.
The lower end of the first connecting rod 221 is fixedly provided with a connector 03. The end face, away from the first connecting rod 221, of the connecting head 03 is provided with the mounting groove 31 for mounting the elastic member 223, so that the elastic member 223 can be connected and the elastic member 223 can be positioned.
An end cover 04 is fixedly arranged at the open end of the second connecting rod 222, and a circular hole 41 for the first connecting rod 221 to pass through is formed in the end cover 04. The end cover 04 is sleeved at the open end of the second connecting rod 222, and the end cover 04 is connected with the second connecting rod 222 through threads.
The buffer plate 21 is provided with a T-shaped clamping groove 211, and the edge position of the buffer plate 21 is provided with a positioning hole 212. The cushioning component 05 comprises an upper rubber pad 51, a middle sponge pad 52 and a lower rubber pad 53, wherein the upper rubber pad 51 and the lower rubber pad 53 are respectively bonded on the upper part and the lower part of the middle sponge pad 52, and the middle sponge pad 52 is clamped between the upper rubber pad 51 and the lower rubber pad 53, so that the buffering and force releasing effect of sponge can be utilized, and the front impact force of rice on the buffer plate 21 is relieved. The lower-layer rubber gasket 53 is fixedly provided with an installation convex strip 531 corresponding to the T-shaped clamping groove 211, and the installation convex strip 531 is inserted into the T-shaped clamping groove 211, so that the lower-layer rubber gasket 53 can be connected with the buffer plate 21, the buffer effect can be achieved, and the upper-layer rubber gasket 51 can be conveniently detached and replaced after being worn; the connecting convex block 532 corresponding to the positioning hole 212 is fixedly arranged on the lower rubber pad 53, and the connecting convex block 532 is inserted into the positioning hole 212, so that the integral positioning effect on the cushioning component 05 can be effectively realized, and the phenomenon that the cushioning component 05 falls off after long-time use is prevented.
While the invention has been described with reference to a preferred embodiment, it will be understood by those skilled in the art that various changes in form and details may be made therein without departing from the spirit and scope of the invention.

Claims (10)

1. The utility model provides a rice pipeline, includes the pipeline body, its characterized in that: the fixed buffering part that is provided with in inside of pipeline body, the inside from top to bottom of buffering part along pipeline body is crisscross the setting in proper order, buffering part includes buffer board, first buffering subassembly, second buffering subassembly, the buffer board downward sloping sets up inside pipeline body, and the one end of buffer board is articulated with the inside of pipeline body, first buffering subassembly, second buffering subassembly subtend setting, and the upper end of first buffering subassembly, second buffering subassembly is articulated with the lower part surface of buffer board respectively, and the lower extreme of first buffering subassembly, second buffering subassembly is articulated with the inner wall of pipeline body respectively, the fixed bradyseism part that is provided with on the buffer board.
2. The rice conveying pipeline according to claim 1, wherein: the buffer plates are arranged in a staggered mode from top to bottom along the interior of the pipeline body, and the inclination directions of the two upper and lower adjacent buffer plates are opposite.
3. The rice conveying pipeline according to claim 2, wherein: first buffering subassembly, second buffering subassembly have the same structure, first buffering subassembly includes head rod, second connecting rod, elastic component, the inside cavity of second connecting rod, and one end is opened, and the lower extreme of second connecting rod is articulated with the inner wall of pipeline body, the upper end of head rod is articulated with the lower part surface of buffer board, and inside the lower extreme of head rod inserted the second connecting rod to can follow the inside relative slip of second connecting rod, the elastic component sets up in the inside of second connecting rod, the one end of elastic component and the inside bottom fixed connection of second connecting rod, the other end of elastic component and the lower extreme fixed connection of head rod.
4. The rice conveying pipeline according to claim 3, wherein: the lower end of the first connecting rod is fixedly provided with a connector.
5. The rice conveying pipeline according to claim 4, wherein: and a mounting groove for mounting the elastic piece is formed in the end face, far away from the first connecting rod, of the connector.
6. The rice conveying pipeline according to claim 3, wherein: the open one end of second connecting rod is fixed and is provided with the end cover, sets up the round hole that supplies the first connecting rod to pass on the end cover.
7. The rice conveying pipeline according to claim 6, wherein: the end cover is sleeved at the open end of the second connecting rod, and the end cover is connected with the second connecting rod through threads.
8. The rice conveying pipeline according to claim 1, wherein: the buffer board is provided with a T-shaped clamping groove, and the edge position of the buffer board is provided with a positioning hole.
9. The rice conveying pipeline according to claim 8, wherein: the cushioning component comprises an upper-layer rubber pad, a middle-layer spongy cushion and a lower-layer rubber pad, wherein the upper-layer rubber pad and the lower-layer rubber pad are respectively bonded on the upper part and the lower part of the middle-layer spongy cushion, and the middle-layer spongy cushion is clamped between the upper-layer rubber pad and the lower-layer rubber pad.
10. The rice conveying conduit according to claim 9, wherein: the lower rubber pad is fixedly provided with an installation raised line corresponding to the T-shaped clamping groove, and the lower rubber pad is fixedly provided with a connecting lug corresponding to the positioning hole.
CN202022747541.4U 2020-11-24 2020-11-24 Rice conveying pipeline Active CN213976203U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022747541.4U CN213976203U (en) 2020-11-24 2020-11-24 Rice conveying pipeline

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022747541.4U CN213976203U (en) 2020-11-24 2020-11-24 Rice conveying pipeline

Publications (1)

Publication Number Publication Date
CN213976203U true CN213976203U (en) 2021-08-17

Family

ID=77266122

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022747541.4U Active CN213976203U (en) 2020-11-24 2020-11-24 Rice conveying pipeline

Country Status (1)

Country Link
CN (1) CN213976203U (en)

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