KR20100083890A - Elastic member of oil press for a expeller type - Google Patents

Elastic member of oil press for a expeller type Download PDF

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Publication number
KR20100083890A
KR20100083890A KR1020090003204A KR20090003204A KR20100083890A KR 20100083890 A KR20100083890 A KR 20100083890A KR 1020090003204 A KR1020090003204 A KR 1020090003204A KR 20090003204 A KR20090003204 A KR 20090003204A KR 20100083890 A KR20100083890 A KR 20100083890A
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KR
South Korea
Prior art keywords
milking
screw
elastic member
hopper
shaft
Prior art date
Application number
KR1020090003204A
Other languages
Korean (ko)
Inventor
이종배
Original Assignee
이종배
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Publication date
Application filed by 이종배 filed Critical 이종배
Priority to KR1020090003204A priority Critical patent/KR20100083890A/en
Publication of KR20100083890A publication Critical patent/KR20100083890A/en

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    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23DEDIBLE OILS OR FATS, e.g. MARGARINES, SHORTENINGS, COOKING OILS
    • A23D9/00Other edible oils or fats, e.g. shortenings, cooking oils
    • A23D9/02Other edible oils or fats, e.g. shortenings, cooking oils characterised by the production or working-up
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B30PRESSES
    • B30BPRESSES IN GENERAL
    • B30B9/00Presses specially adapted for particular purposes
    • B30B9/02Presses specially adapted for particular purposes for squeezing-out liquid from liquid-containing material, e.g. juice from fruits, oil from oil-containing material

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Mechanical Engineering (AREA)
  • Oil, Petroleum & Natural Gas (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Food Science & Technology (AREA)
  • Polymers & Plastics (AREA)
  • External Artificial Organs (AREA)

Abstract

The present invention relates to an elastic member of an expeller type milking machine which is provided with an elastic member having an elastic deformation component inserted inside the front end of the milking screw to adjust the pressure. Iii) a hopper assembly consisting of a shaft bar having an accommodating portion inside the portion, a milking screw mounted on an inner circumferential surface of one end of the shaft bar, and a hopper body configured to connect the hopper by forming a hopper connector at an upper portion thereof through the milking screw. And a microcylinder, which is partially inserted into one side of the hopper assembly and is cut in the longitudinal direction of the transverse direction by a predetermined length, is locked to the oil collection cylinder in which the milking screw is built, and attached to a part of the outer periphery of the oil collection cylinder. An outer circumferential surface is inserted into a nut part and an inner circumferential part of the lock nut part, and after the milking screw In the XPeller-type milking machine composed of a nut cap installed and installed additionally, the elastic member installed in the shaft bar receiving portion, the driving shaft is formed at one end, the flow shaft is formed on one side of the outer peripheral surface; An elastic deformation member provided on an outer circumferential surface of the driving shaft to adjust the pressure of the milking screw by an elastic force; And a binding hole penetrated horizontally so as to internalize the outer peripheral surface of the other side of the drive shaft, and an insertion hole vertically penetrated from one outer peripheral surface to one inner peripheral surface of the binding hole so that a fixing pin can be inserted into the flow groove of the inner drive shaft. Provides an elastic member of the expeller-type milking machine, characterized in that consisting of;

Description

Elastic member of oil press for a expeller type

The present invention relates to a milking screw pressure control structure of an expeller type milking machine, and more particularly, to an elastic member of an expeller type milking machine which provides pressure control by inserting an elastic member provided with an elastic deformation inside a milking screw shear. It is about absence.

In general, in the conventional milking machine using an Expeller type milking machine driven by a motor to squeeze milked milk such as sesame or perilla, the rotational force of the motor is transmitted to the milking screw through the drive shaft. In the process, the milking material passes through the milking screw and passes through the taper part that controls the ink pressure. The milking occurs as a result of many loads and abrasion of the tapered part that occurs during the process of passing through the taper part. There is a problem that the milking amount of the oil is shaken.

In order to control the space of the tapered portion of the existing milking machine, the knob installed at one end of the milking screw is rotated to adjust the pressure of the tapered portion, which requires a large number of parts for pressure control, and the wear rate of the taper is increased. Problems of the existing milking machine occur, such as frequent replacement of the deep sea.

It is an object of the present invention to solve such a problem in the prior art, that many components are consumed according to the pressure control of the existing milking machine, the elastic member is provided with an elastic deformation inside the front end of the milking screw inserted pressure control It is intended to be done.

The present invention is a shaft bar which is rotated by the power transmitted from the driving unit and the receiving end is formed in the rear end, a milking screw mounted on an inner circumferential surface of one end of the shaft bar, and the milking screw inside the hopper connector at the top. A hopper assembly formed of a hopper body configured to connect a hopper to the hopper, and a microgroove partially inserted into one side of the hopper assembly and cut in the longitudinal direction by a predetermined length so that the milking screw is embedded therein; A well-known X-Peller comprising a lock nut part which is attached to one side outer circumferential part of the collecting cylinder and a nut cap which is inserted into an outer circumferential part of one side of the inner side of the lock nut part and a milking screw rear end is installed on one inner circumferential surface thereof. In mold milking machine,

The elastic member is installed in the receiving portion of the shaft bar,

A driving portion is formed at one end, the drive shaft formed with a flow path groove on one side of the outer peripheral surface;

An elastic deformation member provided on an outer circumferential surface of the driving shaft to adjust the pressure of the milking screw by an elastic force; And,

A binding hole penetrates horizontally so as to internalize the outer circumferential surface of the other side of the drive shaft, and an insertion hole is vertically penetrated from one outer circumferential surface to one inner circumferential surface of the binding hole so that a fixing pin can be inserted into the flow groove of the inner drive shaft. It provides an elastic member of the expeller-type milking machine, characterized in that consisting of a socket.

In addition, the elastic deformation is to provide an elastic member of the expeller-type milking machine, characterized in that provided alternatively of the dish spring, coil spring.

As described above, the pressure control generated in the milking screw of the present invention can be more easily adjusted to bring about a reduction in production cost due to the simplification of components, and an effect of increasing milking efficiency.

In order to achieve the above object will be described in detail through the following detailed description and drawings.

As shown in FIGS. 1 to 3, the present invention includes a shaft bar 300 which is rotated by the power transmitted from the driving unit 200 and has an accommodating portion 310 formed inside the rear end portion thereof, and the shaft bar. Milking screw 400 is mounted on the inner peripheral surface of one end of the 300 and the hopper connector 620 is formed on the upper end of the milking screw 400 to form a hopper 610 body connecting the hopper 610 The hopper assembly 600, and a microgroove 710 partially inserted into one side of the hopper assembly 600 and cut in the longitudinal direction of a horizontal length by a predetermined length is formed, and a milking cylinder in which the milking screw 400 is embedded. (700), the lock nut portion 800 mounted to one side outer circumference of the collecting cylinder 700 and the outer circumferential surface is inserted into one inner circumference of the lock nut portion 800, and the milking screw 400 is disposed on one inner circumference. The rear end is composed of a nut cap (900) installed and installed In the known expeller type milking machine,

The elastic member 500 is installed in the receiving portion 310 of the shaft bar 300,

A driving portion 511 is formed at one end and a driving shaft 510 having a flow path groove 512 formed at one surface of the other outer peripheral surface thereof;

An elastic deformation member 520 which is internally circumferentially formed on an outer circumferential surface of the driving shaft 510 to adjust the pressure of the milking screw 400 by an elastic force; And,

A binding hole 531 is formed to penetrate the outer circumferential surface of the driving shaft 510 horizontally so that the fixing pin 540 can be inserted into the flow path groove 512 of the driven shaft 510. Binding hole 531 formed with an elastic member 500 of an X-Peller-type milking machine, consisting of; a binding socket 530 having an insertion hole 532 vertically penetrated from one outer circumferential surface to a binding hole 531 and an inner circumferential surface thereof. To provide.

1 to 3, when the operation process of the elastic member 500 of the expeller type milking machine of the present invention is described, milking material such as sesame or perilla is introduced through the hopper 610 to the hopper ( The milking screw 400 is moved to the milking screw 400 through the hopper connector 620 connected to the 610, and at the same time, the driving unit 200 is operated to cause the milking screw 400 to rotate, thereby compressing the milking milk introduced into the milking screw 400. Oil flows out through a collecting cylinder 700 formed with a horizontal microgroove 710 installed on one circumferential surface thereof, and flows into the inclined oil guide rail 750 installed under the collecting cylinder 700 so as to receive the collecting tank 760. After the milking process of the step of collecting oil in, the milked residues are pushed to the rear end through the rotating milking screw 400, installed in the receiving portion 310 shown in Figs. To the elastic member 500 There is, the engaging portion 511 is formed at one end, the drive shaft 510 formed with a flow path groove 512 on one surface of the other outer peripheral surface; and the inner shaft of the drive shaft 510 is internalized on the milking screw 400 by the elastic force Elastic deformation 520 is provided to adjust the pressure of the; And a binding hole 531 which is horizontally penetrated so as to internalize the outer peripheral surface of the other side of the driving shaft 510, and the fixing pin 540 is inserted into the flow path groove 512 of the extended driving shaft 510. It provides an elastic member 500 consisting of; a binding socket 530 formed with an insertion hole 532 vertically penetrated from one outer peripheral surface to one inner peripheral surface of the binding hole 531.

When milking grains having large grains or thick shells during the milking process, the milking screw 400 is gradually recruited into the milking screw 400 due to the enormous size of the milking residues, which makes it difficult to discharge the milking residues to the outside. Internal pressure is generated and eventually the milking screw 400 is stopped.

4 to 6, the elastic deformation 520 formed on the drive shaft 510 of the elastic member 500 to adjust the internal pressure generated in the milking screw 400 to a constant pressure is internal pressure. The elastic force caused by the pressure will be adjusted.

As shown in FIGS. 7 to 8, when internal pressure occurs on the milking screw 400, the elastic deformation 520 causes contraction, and the driving shaft 510 moves forward. In order to limit the driving distance of the drive shaft 510, the flow path groove 512 is provided on one side of the outer circumferential surface of the drive shaft 510, and the fixing pin 540 for driving the drive distance of the flow path groove 512 is provided. Bound and provided.

The reason why the flow path groove 512 is formed to limit the driving distance of the driving shaft 510 is that the elastic member 500 is operated even when minute pressure is generated in the milking screw 400 during the milking process. Grains are not milked so that no oil is generated.

Accordingly, the flow path groove 512 is formed on the drive shaft 510 of the elastic member 500 to have a constant pressure to have a high milking yield milking pressure in the milking screw 400, and at the same time, the elastic member 500. It is important that the elastic deformation of the 520 to resist the constant pressure generated in the milking screw 400.

Therefore, the elastic deformation 520 is provided in one of the disc spring, the coil spring alternatively the disc spring shown in Figures 7 to 8 are embedded in the outer peripheral surface of the drive shaft 510 in a plurality of constant arrangement, the coil It will be apparent that the spring (not shown) uses a highly elastic coil spring.

As described through the above embodiments, the elastic member of the expeller type milking machine can be manufactured and changed in various designs, and can be applied to tension adjusting portions of various milking machines. It is limited to manufacture, but the mechanism through the principle reveals that a person with ordinary knowledge can easily manufacture by design change.

1 is a perspective perspective view of an expeller type milking machine according to the present invention;

Figure 2 is a vertical cross-sectional perspective view of the expeller type milking machine according to the present invention of Figure 1;

Figure 3 is a front sectional view of the expeller type milking machine according to the present invention of Figure 1;

4 is an exploded view of a shaft bar-elastic member-milking screw operation part of an expeller type milking machine according to the present invention.

5 is a vertical cross-sectional perspective view of a shaft bar-elastic member-milking screw of an expeller type milking machine according to the present invention;

Figure 6 is a front view of the shaft bar-elastic member-milking screw vertical section of the expeller type milking machine according to the invention of Figure 5;

Figure 7 is an exploded view of the elastic member of the expeller type milking machine according to the present invention.

Figure 8 is a vertical cross-sectional perspective view of the elastic member of the expeller type milking machine according to the present invention.

9 is a vertical cross-sectional front view of the elastic member of the expeller type milking machine according to the present invention.

<Description of the symbols for the main parts of the drawings>

Expelling machine 100 Driving part 200 Shaft bar 300 Receiving part 310 Milking screw 400 Elastic member 500 Driving shaft 510 Locking part 511 Euro groove 512 Elastic deformation 520 Binding socket 530 Binding hole 531 Insertion hole 532 Fixing pin 540

Claims (2)

The shaft bar is rotated by the power transmitted from the driving unit and the receiving portion is formed in the rear end portion, the milking screw mounted on the inner circumferential surface of one end of the shaft bar, and the milking screw inside the hopper connector are formed at the upper end thereof. A hopper assembly comprising a hopper body for connecting a hopper, a microgroove partially inserted into one side of the hopper assembly and cut in the longitudinal direction by a predetermined length, and the milking cylinder having the milking screw embedded therein; A well-known X-Peller type milking machine comprising a lock nut part which is attached to a part of the outer circumference of one side of the cylinder, and a nut cap which is inserted with an outer circumferential part of one side of the lock nut part and a rear end of the milking screw is installed on one inner circumference of the cylinder. In The elastic member is installed in the receiving portion of the shaft bar, A driving portion is formed at one end, the drive shaft formed with a flow path groove on one side of the outer peripheral surface; An elastic deformation member provided on an outer circumferential surface of the driving shaft to adjust the pressure of the milking screw by an elastic force; And A binding hole penetrates horizontally so as to internalize the outer circumferential surface of the other side of the drive shaft, and an insertion hole is vertically penetrated from one outer circumferential surface to one inner circumferential surface of the binding hole so that a fixing pin can be inserted into the flow groove of the inner drive shaft. An elastic member of the expeller type milking machine, characterized in that consisting of; The elastic member of claim 1, wherein the elastic deformation member is alternatively provided among a dish spring and a coil spring.
KR1020090003204A 2009-01-15 2009-01-15 Elastic member of oil press for a expeller type KR20100083890A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
KR1020090003204A KR20100083890A (en) 2009-01-15 2009-01-15 Elastic member of oil press for a expeller type

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Application Number Priority Date Filing Date Title
KR1020090003204A KR20100083890A (en) 2009-01-15 2009-01-15 Elastic member of oil press for a expeller type

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KR20100083890A true KR20100083890A (en) 2010-07-23

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Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102825818A (en) * 2012-05-30 2012-12-19 胡开标 Oil extraction method of oil press
CN103240902A (en) * 2013-04-26 2013-08-14 唐华 Oil press
CN103660347A (en) * 2012-09-13 2014-03-26 珠海格力电器股份有限公司 Domestic oil press
CN103660346A (en) * 2012-09-13 2014-03-26 珠海格力电器股份有限公司 Oil press
CN103660345A (en) * 2012-09-13 2014-03-26 珠海格力电器股份有限公司 Domestic oil press
CN107599473A (en) * 2017-09-13 2018-01-19 山东花园食品有限公司 One cultivates peanut low-temperature cold pressing machine

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102825818A (en) * 2012-05-30 2012-12-19 胡开标 Oil extraction method of oil press
CN103660347A (en) * 2012-09-13 2014-03-26 珠海格力电器股份有限公司 Domestic oil press
CN103660346A (en) * 2012-09-13 2014-03-26 珠海格力电器股份有限公司 Oil press
CN103660345A (en) * 2012-09-13 2014-03-26 珠海格力电器股份有限公司 Domestic oil press
CN103240902A (en) * 2013-04-26 2013-08-14 唐华 Oil press
CN107599473A (en) * 2017-09-13 2018-01-19 山东花园食品有限公司 One cultivates peanut low-temperature cold pressing machine

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