CN110331034A - Soybean oil based on motion-captured principle squeezes gradation filler device - Google Patents
Soybean oil based on motion-captured principle squeezes gradation filler device Download PDFInfo
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- CN110331034A CN110331034A CN201910735691.2A CN201910735691A CN110331034A CN 110331034 A CN110331034 A CN 110331034A CN 201910735691 A CN201910735691 A CN 201910735691A CN 110331034 A CN110331034 A CN 110331034A
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- Prior art keywords
- block
- push rod
- outside
- pushing block
- motion
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Classifications
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- C—CHEMISTRY; METALLURGY
- C11—ANIMAL OR VEGETABLE OILS, FATS, FATTY SUBSTANCES OR WAXES; FATTY ACIDS THEREFROM; DETERGENTS; CANDLES
- C11B—PRODUCING, e.g. BY PRESSING RAW MATERIALS OR BY EXTRACTION FROM WASTE MATERIALS, REFINING OR PRESERVING FATS, FATTY SUBSTANCES, e.g. LANOLIN, FATTY OILS OR WAXES; ESSENTIAL OILS; PERFUMES
- C11B1/00—Production of fats or fatty oils from raw materials
- C11B1/06—Production of fats or fatty oils from raw materials by pressing
Abstract
Soybean oil based on motion-captured principle squeezes gradation filler device, it is related to edible fat production technical field, including shell, the inside of the shell offers slideway, the internal activity of the slideway is connected with pushing block, the shape of the pushing block is cylinder, the internal diameter of the slideway is greater than the outer diameter of pushing block, the limited block be socketed in the outside of pushing block and with the central axes of pushing block on the same line, it is connected with retracting spring on the outside of the pushing block, is connected with limited block on the left of the retracting spring.The soybean oil based on motion-captured principle squeezes gradation filler device, push rod can be pushed to move downward by hinged block, that is the movable block of sliding block compressing at this time moves downward, push rod, sliding block and limited block are restored to original position at this time, filler next time can be carried out, filler is recycled by gradation, a filler is can avoid and excessively results in blockage, the stability when device uses is increased, while indirectly improving the efficiency of production.
Description
Technical field
The present invention relates to edible fat production technical fields, and the soybean oil squeezing specially based on motion-captured principle is filled out by several times
Expect device.
Background technique
Soybean oil needs the soybean after broken peeling being rolled into blank just and can be carried out pressure when carrying out physical squeezing production
The process for pressing oil is easy when carrying out filler because of embryo material since the blank shape after rolling is different and has certain hardness
Excessively feed inlet is caused to block, influences the progress and efficiency of production, meanwhile, the feed inlet after blocking will cause the increasing of equipment frictional force
Greatly, the degree of wear increases, and reduces the service life of equipment to a certain extent.
To solve the above problems, inventor proposes the squeezing gradation filler device of the soybean oil based on motion-captured principle,
Have the advantages of gradation filler, filler is recycled by gradation, can avoid a filler and excessively result in blockage, increasing the device makes
The stability of used time, while indirectly improving the efficiency of production.
Summary of the invention
For the purpose for realizing above-mentioned gradation filler, the invention provides the following technical scheme: based on the big of motion-captured principle
Soya-bean oil squeezes gradation filler device, including shell, slideway, pushing block, retracting spring, limited block, push rod, buffer spring, sliding block, company
Bar, Slave Block, movable block, bar, limit hole, reset spring, hinged block, positioning seat, adjusts bolt and loading plate at active block.
Position and connection relationship between above-mentioned each structure is as follows:
The inside of the shell offers slideway, and the internal activity of the slideway is connected with pushing block, the shape of the pushing block
For cylinder, the internal diameter of the slideway is greater than the outer diameter of pushing block, the limited block be socketed in the outside of pushing block and in pushing block
Axis on the same line, is connected with retracting spring on the outside of the pushing block, the left side of the retracting spring is flexibly connected
Have a limited block, the retracting spring is socketed in the outside of pushing block and identical as the outer diameter of limited block, and the retracting spring and
The outer diameter of limited block is all larger than the size of slideway, and the internal activity of the pushing block is connected with push rod, the outside activity of the push rod
It is connected with buffer spring, sliding block is connected on the right side of the buffer spring, the buffer spring is socketed in the outside of push rod
And it is located at the right side of pushing block, the sliding block is socketed in the outside of push rod and is located at the inside of slideway, and the shape of the sliding block is etc.
Waist is trapezoidal and size is less than the size of slideway, the pushing block, limited block, push rod and sliding block central axes on the same line, institute
State the outside that push rod runs through and extends to shell.
The underside of the pushing block is connected with connecting rod, and the connecting rod is located at the inside of shell far from one end of limited block,
And the connecting rod and push rod be in arranged in parallel, i.e. the central axes of connecting rod and push rod perpendicular to same straight line, the connecting rod
Right side is connected with active block, and Slave Block, the shape of the active block and Slave Block are connected on the right side of the active block
Shape is identical, is triangular structure of right angle, and the active block is symmetric with Slave Block, i.e., the bevel edge of active block with from
The bevel edge of motion block contacts with each other, and movable block is connected on the outside of the Slave Block, and the right side of the movable block is flexibly connected
There is bar, limit hole is connected on the outside of the bar, the internal activity of the movable block is connected with reset spring.
The right end of the push rod is connected with hinged block, and positioning seat is connected on the outside of the hinged block, described
There are two bolt is adjusted, the bottom of the positioning seat is connected with loading plate for the internal activity connection of positioning seat.
Preferably, the left end at the top of the movable block is planar structure, the right end at top is angled protrusions structure, and
The angle of the angled protrusions structure is adapted with the angle of the waist of sliding block trapezium structure.
Preferably, the bar is located at the inside of limit hole, and the diameter of the limit hole is greater than movable block most
Big movement travel.
Preferably, the shape of the positioning seat is curved surface, and to offer curved surface degree identical for the inside of the positioning seat
Crank slot, the hinged block is located at the inside of crank slot and is slidably connected with positioning seat.
Preferably, the adjusting bolt is located in the crank slot inside positioning seat, and connected by crank slot and positioning seat sliding
It connects.
Preferably, the planar structure of the movable block top left side, in the initial state with the bottom of slideway same
In plane.
Compared with the prior art and product, the beneficial effects of the present invention are:
1, gradation filler device should be squeezed based on soybean oil of motion-captured principle, by shell, can by internal structure with
The external world keeps apart, and prevents from directly contacting the pollution caused to raw material with oil plant, improves health when production, while can prevent oil
Material is directly contacted with internal structure to result in blockage, and by slideway, can provide positioning and support for pushing block, push rod and sliding block, and limit
It makes its position during the motion, guarantees that the position between each structure when in use is stablized, caused by preventing because of structural deflection pair
The influence of using effect, while the size of slideway being made to be greater than the size of sliding block, it can avoid the two and directly contact, reduce motion process
In frictional force and abrasion, the service life of the device is increased while laborsaving.
2, gradation filler device should be squeezed based on soybean oil of motion-captured principle, by positioning seat, can for hinged block and
Adjust bolt and propose positioning and support, and limit its position, improve the integrally-built stability of the device, at the same make positioning seat with
Loading plate connection can push loading plate to move synchronously, since the bottom of loading plate is provided with spring, work as load when positioning seat moves
When the weight of material is greater than the elastic deformation power of spring on flitch, loading plate cannot be restored to original angle, on loading plate
The reduction of material, spring are gradually restored to original size, i.e. promotion loading plate is rotated up, and can be pushed by hinged block at this time
Push rod moves downward, i.e. the movable block of sliding block compressing at this time moves downward, and push rod, sliding block and limited block are restored to original position at this time,
Filler next time can be carried out, filler is recycled by gradation, a filler is can avoid and excessively results in blockage, increases device use
When stability, while indirectly improving the efficiency of production.
3, gradation filler device should be squeezed based on the soybean oil of motion-captured principle, by changing two adjusting bolts and hinge
The position of block is connect, the tilt angle of loading plate, under conditions of push rod stroke is constant, two adjusting bolts and hinged block can be changed
Bigger with a distance from loading plate bottom, then the tilt angle of loading plate is bigger, and corresponding material is more, conversely, two adjusting spiral shells
Bolt and hinged block are smaller with a distance from loading plate bottom, then the tilt angle of loading plate is smaller, and material is also accordingly reduced, and increase
The flexibility when device uses, while the equipment that could be applicable to different production efficiencys, increase the use scope of the device.
Detailed description of the invention
Fig. 1 is connection structure cross-sectional view of the present invention, and each structure is in original state at this time, and position change does not occur for sliding block
Change;
Fig. 2 is hinged block of the present invention, positioning seat, adjusts bolt and loading plate attachment structure schematic diagram, and three locates at this time
It does not change in the position of original state, two adjusting bolts;
Fig. 3 is positioning seat of the present invention and loading plate movement locus schematic diagram, and the two deflects down at this time;
Fig. 4 is present invention slider and movable block attachment structure schematic diagram, and the two is in initial position, movable block limitation at this time
The movement of sliding block;
Fig. 5 is present invention slider and moving process at described movable block schematic diagram, and sliding block moves right at this time, and movable block is transported downwards
It is dynamic;
Fig. 6 is present invention slider, push rod and movable block attachment structure schematic diagram, and three is in initial position at this time, does not send out
Raw change in location;
Fig. 7 is present invention slider, push rod and moving process at described movable block schematic diagram, and sliding block is moved right with push rod at this time, living
Motion block moves downward.
In figure: 1- shell, 2- slideway, 3- pushing block, 4- retracting spring, 5- limited block, 6- push rod, 7- buffer spring, 8- are sliding
Block, 9- connecting rod, 10- active block, 11- Slave Block, 12- movable block, 13- bar, 14- limit hole, 15- reset spring, 16- are hinged
Block, 17- positioning seat, 18- adjust bolt, 19- loading plate.
Specific embodiment
Following will be combined with the drawings in the embodiments of the present invention, and technical solution in the embodiment of the present invention carries out clear, complete
Site preparation description, it is clear that described embodiments are only a part of the embodiments of the present invention, instead of all the embodiments.It is based on
Embodiment in the present invention, it is obtained by those of ordinary skill in the art without making creative efforts every other
Embodiment shall fall within the protection scope of the present invention.
Please refer to Fig. 1-7:
The soybean oil based on motion-captured principle squeezes gradation filler device, including shell 1, slideway 2, pushing block 3, backhaul
Spring 4, limited block 5, push rod 6, buffer spring 7, sliding block 8, connecting rod 9, active block 10, Slave Block 11, movable block 12, bar 13,
Limit hole 14, hinged block 16, positioning seat 17, adjusts bolt 18 and loading plate 19 at reset spring 15.
Wherein:
A, the shape of pushing block 3 is cylinder, and the internal diameter of slideway 2 is greater than the outer diameter of pushing block 3, and limited block 5 is socketed in pushing block 3
Outside and with the central axes of pushing block 3 on the same line, the left end at the top of movable block 12 is planar structure, and the right end at top is to incline
Oblique bulge-structure, and the angle of the angled protrusions structure is adapted with the angle of the waist of 8 trapezium structure of sliding block.
B, retracting spring 4 is socketed in the outside of pushing block 3 and identical as the outer diameter of limited block 5, and retracting spring 4 and limit
The outer diameter of block 5 is all larger than the size of slideway 2.
C, buffer spring 7 is socketed in the outside of push rod 6 and is located at the right side of pushing block 3, and sliding block 8 is socketed in the outside of push rod 6
And it is located at the inside of slideway 2, the shape of sliding block 8 is the size that isosceles trapezoid and size are less than slideway 2, and bar 13 is located at limit hole
14 inside, and the diameter of limit hole 14 is greater than the maximum stroke movement of movable block 12
Wherein:
D, on the same line, push rod 6 runs through and extends to shell for the central axes of pushing block 3, limited block 5, push rod 6 and sliding block 8
The shape in the outside of body 1, positioning seat 17 is curved surface, and the inside of positioning seat 17 offers the identical crank slot of curved surface degree, hingedly
Block 16 is located at the inside of crank slot and is slidably connected with positioning seat 17.
E, connecting rod 9 is located at the inside of shell 1 far from one end of limited block 5, and connecting rod 9 and push rod 6 be in arranged in parallel, i.e.,
The central axes of connecting rod 9 and push rod 6 adjust bolt 18 and are located in the crank slot inside positioning seat 17 perpendicular to same straight line, and logical
Crank slot is crossed to be slidably connected with positioning seat 17.
F, active block 10 is identical as the shape of Slave Block 11, is triangular structure of right angle, and active block 10 with it is driven
Block 11 is symmetric, i.e. the bevel edge of the bevel edge with Slave Block 11 of active block 10 contacts with each other, and 12 top left side of movable block is put down
Face structure, in the initial state in the same plane with the bottom of slideway 2.
When in use, the initial position between each structure and connection relationship are as follows:
The inside of shell 1 offers slideway 2, and the internal activity of slideway 2 is connected with pushing block 3, and the outside of pushing block 3 is flexibly connected
There is retracting spring 4, the left side of retracting spring 4 is connected with limited block 5, and the internal activity of pushing block 3 is connected with push rod 6, push rod 6
Outside be connected with buffer spring 7, the right side of buffer spring 7 is connected with sliding block 8.
The underside of pushing block 3 is connected with connecting rod 9, and the right side of connecting rod 9 is connected with active block 10, the right side of active block 10
Side is connected with Slave Block 11, and the outside of Slave Block 11 is connected with movable block 12, and the right side of movable block 12 is flexibly connected
There is bar 13, the outside of bar 13 is connected with limit hole 14, and the internal activity of movable block 12 is connected with reset spring 15.
The right end of push rod 6 is connected with hinged block 16, and the outside of hinged block 16 is connected with positioning seat 17, positioning seat
17 internal activity, which is connected with, adjusts bolt 18, and the bottom of positioning seat 17 is connected with loading plate 19.
Above structure and process please refer to Fig. 1-2.
The working principle and process of the device are as follows:
Push push rod 6 to move right it, due to limited block 5 and sliding block 8 be socketed in the outside of push rod 6 and with its activity
Connection, thus at this time limited block 5 and sliding block 8 can with the synchronous movement in the same direction of push rod 6, since connecting rod 9 is flexibly connected with limited block 5,
So limited block 5 can drive connecting rod 9 to synchronize movement in the same direction at this time, 4 forced compression of retracting spring at this time, active block 10 is in connecting rod 9
Promotion under move right, be triangular structure of right angle since active block 10 is identical as the shape of Slave Block 11, and actively
Block 10 is symmetric with Slave Block 11, i.e. the bevel edge of the bevel edge with Slave Block 11 of active block 10 contacts with each other, and Slave Block
11 connect with movable block 12, so active block 10 can oppress movable block 12 by Slave Block 11 and move downward at this time, sliding block 8 at this time
Not limited by movable block 12 can move right.
Above structure and process please refer to Fig. 4-7.
When push rod 6 moves right, it can be pushed by hinged block 16 and adjust the movement of bolt 18,19 stress of loading plate is sent out at this time
Raw deflection, material can enter on loading plate 19 at this time, since the bottom of loading plate 19 is provided with spring, when material on loading plate 19
Weight be greater than spring elastic deformation power when, loading plate 19 cannot be restored to original angle, with material on loading plate 19
It reduces, spring is gradually restored to original size, i.e. promotion loading plate 19 is rotated up, and can be pushed by hinged block 16 at this time
Bar 6 moves downward, i.e. the movable block 12 of the compressing of sliding block 8 at this time moves downward, and push rod 6, sliding block 8 and limited block 5 are restored to original at this time
Position can carry out filler next time.
Above structure and process please refer to Fig. 2-3.
It is attached:
A, change two positions for adjusting bolt 18 and hinged block 16, the tilt angle of loading plate 19 can be changed, in push rod 6
Under conditions of stroke is constant, two adjusting bolts 18 and hinged block 16 are bigger with a distance from 19 bottom of loading plate, then loading plate 19
Tilt angle it is bigger, corresponding material is more, conversely, two adjust bolts 18 and hinged block 16 from 19 bottom of loading plate away from
From smaller, then the tilt angle of loading plate 19 is smaller, and material is also accordingly reduced.
The foregoing is merely presently preferred embodiments of the present invention, is not intended to limit the invention, it is all in spirit of the invention and
Within principle, any modification, equivalent replacement, improvement and so on be should all be included in the protection scope of the present invention.
Claims (7)
1. the soybean oil based on motion-captured principle squeezes gradation filler device, including shell (1), it is characterised in that: the shell
The inside of body (1) offers slideway (2), and the internal activity of the slideway (2) is connected with pushing block (3), the outside of the pushing block (3)
It is connected with retracting spring (4), is connected with limited block (5) on the left of the retracting spring (4), the pushing block (3)
Internal activity is connected with push rod (6), is connected with buffer spring (7) on the outside of the push rod (6), the buffer spring (7)
Right side be connected with sliding block (8);
The underside of the pushing block (3) is connected with connecting rod (9), is connected with active block (10) on the right side of the connecting rod (9),
It is connected with Slave Block (11) on the right side of the active block (10), is connected with movable block on the outside of the Slave Block (11)
(12), it is connected with bar (13) on the right side of the movable block (12), is connected with limit on the outside of the bar (13)
The internal activity in hole (14), the movable block (12) is connected with reset spring (15);
The right end of the push rod (6) is connected with hinged block (16), is connected with positioning on the outside of the hinged block (16)
Seat (17), there are two bolt (18) are adjusted, the bottom of the positioning seat (17) is living for the internal activity connection of the positioning seat (17)
It is dynamic to be connected with loading plate (19).
2. the soybean oil according to claim 1 based on motion-captured principle squeezes gradation filler device, it is characterised in that:
The shape of the pushing block (3) is cylinder, and the internal diameter of the slideway (2) is greater than the outer diameter of pushing block (3), limited block (5) set
Connect the outside in pushing block (3) and with the central axes of pushing block (3) on the same line.
3. the soybean oil according to claim 1 based on motion-captured principle squeezes gradation filler device, it is characterised in that:
The retracting spring (4) is socketed in the outside of pushing block (3) and identical as the outer diameter of limited block (5), and the retracting spring (4)
The size of slideway (2) is all larger than with the outer diameter of limited block (5).
4. the soybean oil according to claim 1 based on motion-captured principle squeezes gradation filler device, it is characterised in that:
The buffer spring (7) is socketed in the outside of push rod (6) and is located at the right side of pushing block (3), and the sliding block (8) is socketed in push rod
(6) outside and the inside positioned at slideway (2), the shape of the sliding block (8) are the ruler that isosceles trapezoid and size are less than slideway (2)
It is very little.
5. the soybean oil according to claim 1 based on motion-captured principle squeezes gradation filler device, it is characterised in that:
The pushing block (3), limited block (5), push rod (6) and sliding block (8) central axes on the same line, the push rod (6) is through simultaneously
Extend to the outside of shell (1).
6. the soybean oil according to claim 1 based on motion-captured principle squeezes gradation filler device, it is characterised in that:
The connecting rod (9) is located at the inside of shell (1) far from the one end of limited block (5), and the connecting rod (9) and push rod (6) are in flat
Row arrangement, i.e., the central axes of connecting rod (9) and push rod (6) are perpendicular to same straight line.
7. the soybean oil according to claim 1 based on motion-captured principle squeezes gradation filler device, it is characterised in that:
The active block (10) is identical as the shape of Slave Block (11), is triangular structure of right angle, and the active block (10) with
Slave Block (11) is symmetric, i.e. the bevel edge of active block (10) and the bevel edge of Slave Block (11) contacts with each other.
Priority Applications (1)
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CN201910735691.2A CN110331034B (en) | 2019-08-09 | 2019-08-09 | Soybean oil squeezing and grading filling device based on motion capture principle |
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CN201910735691.2A CN110331034B (en) | 2019-08-09 | 2019-08-09 | Soybean oil squeezing and grading filling device based on motion capture principle |
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CN110331034A true CN110331034A (en) | 2019-10-15 |
CN110331034B CN110331034B (en) | 2020-04-17 |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111517350A (en) * | 2020-05-14 | 2020-08-11 | 绍兴上虞联谊化工有限公司 | A equipment that is used for polyaluminium chloride production of sewage flocculation treatment |
Citations (3)
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CN103350519A (en) * | 2013-08-05 | 2013-10-16 | 中国农业科学院油料作物研究所 | New method for preparing oil by squeezing and oil presser |
CN207207203U (en) * | 2017-08-09 | 2018-04-10 | 徐晓歌 | A kind of automatic oil mill |
CN208146095U (en) * | 2018-03-13 | 2018-11-27 | 宁夏鸿兴农工贸发展有限公司 | A kind of soybean squeezer for soybean-cake flour production |
-
2019
- 2019-08-09 CN CN201910735691.2A patent/CN110331034B/en active Active
Patent Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103350519A (en) * | 2013-08-05 | 2013-10-16 | 中国农业科学院油料作物研究所 | New method for preparing oil by squeezing and oil presser |
CN207207203U (en) * | 2017-08-09 | 2018-04-10 | 徐晓歌 | A kind of automatic oil mill |
CN208146095U (en) * | 2018-03-13 | 2018-11-27 | 宁夏鸿兴农工贸发展有限公司 | A kind of soybean squeezer for soybean-cake flour production |
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111517350A (en) * | 2020-05-14 | 2020-08-11 | 绍兴上虞联谊化工有限公司 | A equipment that is used for polyaluminium chloride production of sewage flocculation treatment |
CN111517350B (en) * | 2020-05-14 | 2022-07-01 | 绍兴上虞联谊化工有限公司 | A equipment that is used for polyaluminium chloride production of sewage flocculation treatment |
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Effective date of registration: 20200313 Address after: 236000 Weiliu Road, Fuyang Development Zone, Anhui Province Applicant after: ANHUI JINLONG GRAIN AND OIL Co.,Ltd. Address before: 311199 Four No.1 601 Silver Collar Age Apartments, Xingqiao Street, Yuhang District, Hangzhou City, Zhejiang Province Applicant before: Shen Lingcheng |
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