CN113331445A - Method for extracting okra seeds as raw material of health care wine - Google Patents

Method for extracting okra seeds as raw material of health care wine Download PDF

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Publication number
CN113331445A
CN113331445A CN202110465039.0A CN202110465039A CN113331445A CN 113331445 A CN113331445 A CN 113331445A CN 202110465039 A CN202110465039 A CN 202110465039A CN 113331445 A CN113331445 A CN 113331445A
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plate
okra
electric
rotating shaft
seeds
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CN113331445B (en
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罗承山
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    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23NMACHINES OR APPARATUS FOR TREATING HARVESTED FRUIT, VEGETABLES OR FLOWER BULBS IN BULK, NOT OTHERWISE PROVIDED FOR; PEELING VEGETABLES OR FRUIT IN BULK; APPARATUS FOR PREPARING ANIMAL FEEDING- STUFFS
    • A23N15/00Machines or apparatus for other treatment of fruits or vegetables for human purposes; Machines or apparatus for topping or skinning flower bulbs
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B03SEPARATION OF SOLID MATERIALS USING LIQUIDS OR USING PNEUMATIC TABLES OR JIGS; MAGNETIC OR ELECTROSTATIC SEPARATION OF SOLID MATERIALS FROM SOLID MATERIALS OR FLUIDS; SEPARATION BY HIGH-VOLTAGE ELECTRIC FIELDS
    • B03BSEPARATING SOLID MATERIALS USING LIQUIDS OR USING PNEUMATIC TABLES OR JIGS
    • B03B11/00Feed or discharge devices integral with washing or wet-separating equipment
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B03SEPARATION OF SOLID MATERIALS USING LIQUIDS OR USING PNEUMATIC TABLES OR JIGS; MAGNETIC OR ELECTROSTATIC SEPARATION OF SOLID MATERIALS FROM SOLID MATERIALS OR FLUIDS; SEPARATION BY HIGH-VOLTAGE ELECTRIC FIELDS
    • B03BSEPARATING SOLID MATERIALS USING LIQUIDS OR USING PNEUMATIC TABLES OR JIGS
    • B03B5/00Washing granular, powdered or lumpy materials; Wet separating
    • B03B5/28Washing granular, powdered or lumpy materials; Wet separating by sink-float separation
    • B03B5/30Washing granular, powdered or lumpy materials; Wet separating by sink-float separation using heavy liquids or suspensions
    • B03B5/36Devices therefor, other than using centrifugal force

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  • Life Sciences & Earth Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Food Science & Technology (AREA)
  • Polymers & Plastics (AREA)
  • Apparatuses For Bulk Treatment Of Fruits And Vegetables And Apparatuses For Preparing Feeds (AREA)

Abstract

The invention relates to the field of health care wine, and in particular relates to a method for extracting okra seeds serving as a raw material of health care wine. The technical problems of the invention are as follows: provides a method for extracting okra seeds as a raw material of health care wine. The technical implementation scheme of the invention is as follows: a method for extracting okra seeds as a raw material of health care wine adopts the following processing equipment, and the processing equipment comprises a fixing system, an internal and external cutting system, an interception and separation system, a separation cabin and the like; the lower part of the bed plate of the working machine is welded with the supporting foot posts. The invention realizes the integrated extraction of the seeds in the okra under the condition of not splitting the okra integrally, avoids the problems that the knife entering position is incorrect during the splitting, the okra cannot be split to obstruct the acquisition of the seeds or the seeds are cut to be bad, ensures the integrity of peripheral pulp, maintains the use value of the okra, and can also realize the effect of automatically separating the seeds and the pulp.

Description

Method for extracting okra seeds as raw material of health care wine
Technical Field
The invention relates to the field of health care wine, and in particular relates to a method for extracting okra seeds serving as a raw material of health care wine.
Background
The health wine is wine suitable for specific people to drink and has the function of regulating body and no treatment purpose.
At present, the okra seed is widely used as a raw material of health care wine in the prior art, the manual work often needs to use a cutter to integrally split the okra in the prior art, then the seed therein is dug out, under the condition, the okra body is split, the okra body cannot keep the complete state, the body loses the medicinal and edible values, in the splitting process, the lower cutter position cannot be judged, the position of the internal seed cannot be judged, the cutter entering position has the contingency, a part of seeds can be punctured after the cutting edge is inserted, the seeds are cut open and damaged, the integrity of the okra seed cannot be guaranteed, and the medicinal value is lost.
Aiming at the problems, a method for extracting okra seeds serving as a health-care wine raw material is provided.
Disclosure of Invention
In order to overcome the defects that in the prior art, okra seeds are widely used as a raw material of health care wine, in the prior art, a cutter is often used for integrally splitting okra, then seeds in the okra seeds are dug out, under the condition, the okra body is split and cannot be kept complete, the okra body loses medicinal and edible values, the cutting position cannot be judged, the position of the internal seeds cannot be judged, the cutting position has contingency, a part of seeds are punctured after a cutting edge is inserted, the seeds are cut open and damaged, the integrity of the okra seeds cannot be guaranteed, and the medicinal value is lost, the invention has the technical problems that: provides a method for extracting okra seeds as a raw material of health care wine.
The technical implementation scheme of the invention is as follows: a method for extracting okra seeds serving as a health-care wine raw material adopts processing equipment, wherein the processing equipment comprises a working machine bed plate, a supporting foot column, a collecting box, a tool box, a fixing system, an internal and external cutting system, an intercepting and separating system, a first mounting table, an operation control screen, a liquid spraying pipe and a separating cabin; the lower part of the bed plate of the working machine is welded with the supporting leg; the upper part of the working machine tool plate is connected with the collecting box; the upper part of the working machine tool plate is connected with a tool box; the upper part of the working machine tool plate is connected with a fixing system; the upper part of the working machine tool plate is connected with an internal and external cutting system; the upper part of the working machine tool plate is connected with an interception and separation system; welding the upper part of the working machine tool plate with the first mounting table; the upper part of the first mounting table is connected with a fixing system; the operation control screen is connected with the fixing system; the lower part of the liquid spraying pipe is connected with the working machine tool plate; the lower part of the separation cabin is connected with a working machine tool plate;
the method for extracting okra seeds as the raw material of the health care wine comprises the following steps:
the method comprises the following steps: fixing the okra, manually cutting off one end of the okra with a handle, cleaning seeds inside the okra from the section, and then manually fixing the okra to a fixing system to enable the opening side of the okra to face an internal and external cutting system;
step two: the okra is cut and separated inside and outside, after the okra is fixed by the fixing system, the inside and outside cutting system is controlled to move and insert into the okra, namely, the okra is separated from the seeds inside and outside, and meanwhile, the tip part of the okra is cut and separated;
step three: intercepting and separating, wherein the inner and outer cutting systems drive the okra seeds on the inner side and the okra on the outer side to move integrally, and the okra body on the outer side is intercepted and separated through the intercepting and separating systems;
step four: and pushing out the seeds, and controlling the inner and outer cutting systems to separate the seeds on the inner sides after the okra bodies on the outer sides of the inner and outer cutting systems are separated by the intercepting and separating system.
Further, the fixing system comprises a first built-in electric slide rail vertical plate, a first electric rotating shaft seat, an arc-shaped pressing plate, a second electric rotating shaft seat, a second built-in electric slide rail vertical plate, a third electric rotating shaft seat, a fixing sleeve, a fourth electric rotating shaft seat, an electric lifting column, a fifth electric rotating shaft seat and an arc-shaped supporting plate; the lower part of the first built-in electric sliding rail vertical plate is connected with a working machine tool plate through a bolt; the first electric rotating shaft seat is in sliding connection with a first built-in electric sliding rail vertical plate; the arc-shaped pressing plate is connected with the first electric rotating shaft seat; the second electric rotating shaft seat is connected with the arc-shaped pressing plate; the second built-in electric sliding rail vertical plate is in sliding connection with the second electric rotating shaft seat; the lower part of the vertical plate of the second built-in electric sliding rail is connected with a working machine tool plate through bolts; the third electric rotating shaft seat is connected with the first built-in electric sliding rail vertical plate; the fixed sleeve is connected with the third electric rotating shaft seat; the fourth electric rotating shaft seat is connected with a second built-in electric sliding rail vertical plate; the fourth electric rotating shaft seat is connected with the fixed sleeve; the lower part of the electric lifting column is connected with the first mounting table through a bolt; the lower part of the fifth electric rotating shaft seat is connected with an electric lifting column; the lower part of the arc-shaped supporting plate is connected with a fifth electric rotating shaft seat.
Further, the internal and external cutting system comprises a power motor, a first rotating shaft rod, a first driving wheel, a first bearing frame plate, a second driving wheel, a column gear, a second bearing frame plate, a flat gear, a second rotating shaft rod, a bearing seat table, a third driving wheel, a mounting frame plate, a fourth driving wheel, a cutting knife cylinder, a first electric push rod, an ejection disc, a first driving lever, a second driving lever, an electric sliding seat, a first electric sliding rail, a mounting aggregation plate, a second electric push rod and a cutting knife; the lower part of the power motor is connected with a working machine tool plate through a bolt; the first rotating shaft rod is fixedly connected with an output shaft of the power motor; the axle center of the first driving wheel is fixedly connected with the first rotating shaft rod; the first bearing frame plate is rotationally connected with the first rotating shaft rod; the lower part of the first bearing frame plate is connected with a working machine tool plate through a bolt; the outer ring surface of the second driving wheel is in transmission connection with the first driving wheel through a belt; the column gear is fixedly connected with the second transmission wheel; the column gear is rotationally connected with the first bearing frame plate; the lower part of the second bearing frame plate is connected with a working machine tool plate through bolts; the second bearing frame plate is rotationally connected with the column gear; the flat gear is meshed with the column gear; the second rotating shaft rod is fixedly connected with the flat gear; the bearing seat platform is rotationally connected with the second rotating shaft rod; the axle center of the third driving wheel is fixedly connected with the second rotating shaft rod; the mounting frame plate is rotatably connected with the second rotating shaft rod; the mounting frame plate is connected with the bearing seat platform through bolts; the outer ring surface of the fourth driving wheel is in transmission connection with the third driving wheel through a belt; the outer surface of the cutting knife cylinder is fixedly connected with a fourth driving wheel; the cutting knife cylinder is rotatably connected with the mounting frame plate; the first electric push rod is inserted into the bearing seat platform; the ejection disc is connected with the first electric push rod; the ejection disc is in sliding connection with the cutting knife cylinder; the first deflector rod is fixedly connected with the mounting frame plate; the second deflector rod is fixedly connected with the mounting frame plate; the upper part of the electric sliding seat is connected with the mounting frame plate through a bolt; the upper part of the first electric slide rail is in sliding connection with the electric slide seat; the upper part of the mounting assembly plate is connected with a first electric slide rail through a bolt; welding the lower part of the mounting assembly plate with a working machine tool plate; the second electric push rod is connected with the mounting rack plate; the upper part of the cutting knife is connected with a second electric push rod.
Further, the interception and separation system comprises a first interception control mechanism, an arc-shaped interception pressing plate, a second interception control mechanism, a first limiting sliding rod and a second limiting sliding rod; the lower part of the first interception control mechanism is connected with a working machine tool plate; the arc-shaped interception pressing plate is connected with the first interception control mechanism; the second interception control mechanism is connected with the arc-shaped interception pressing plate; the lower part of the second interception control mechanism is connected with the working machine tool plate; the outer surface of the first limiting slide rod is in sliding connection with the arc-shaped intercepting press plate; the lower part of the first limiting slide rod is fixedly connected with a working machine tool plate; the outer surface of the second limiting slide rod is in sliding connection with the arc-shaped intercepting press plate; the lower part of the second limiting slide rod is fixedly connected with a working machine tool plate.
Further, the first intercepting control mechanism comprises a mounting side plate, a mounting bedplate, a connecting bedplate, a return spring, a wide-head sliding plate, an electric lifting control rod, a connecting sliding plate, a first limiting sliding groove frame, a second limiting sliding groove frame, a linkage rod, a rotating shaft connecting seat, a first triangular torsion spring rotating plate and a second triangular torsion spring rotating plate; the lower part of the mounting side plate is connected with a working machine tool plate through a bolt; the lower part of the mounting bedplate is connected with the mounting side plate through bolts; the lower part of the connecting seat plate is connected with the mounting bedplate through bolts; the return spring is connected with the connecting seat plate; the wide-head sliding plate is connected with a return spring; the electric lifting control rod is connected with the wide-head sliding plate; the connecting sliding plate is sleeved with the electric lifting control rod; the first limiting sliding chute frame is in sliding connection with the connecting sliding plate; the second limiting sliding chute frame is in sliding connection with the connecting sliding plate; the linkage rod is rotationally connected with the wide-head sliding plate; the rotating shaft connecting seat is rotatably connected with the linkage rod; the upper part of the rotating shaft connecting seat is connected with the arc-shaped interception pressing plate; the first triangular torsion spring rotating plate is connected with the mounting bedplate; the second triangular torsion spring rotating plate is connected with the mounting bedplate.
Furthermore, an intercepting layering mesh plate is arranged in the separation cabin.
Further, a rubber pad is arranged on the bottom surface of the arc-shaped intercepting pressing plate.
Furthermore, one side of the interior of the separation cabin is provided with an electric fan blade.
The invention has the beneficial effects that: (1) in order to solve the problems that in the prior art, okra seeds are widely used as a raw material of health care wine, in the prior art, a cutter is often used for integrally splitting the okra, then the seeds in the okra seeds are dug out, under the condition, the okra body is split and cannot be kept complete, the okra body loses medicinal and edible values, in the splitting process, the position of a lower cutter cannot be judged, the position of the internal seeds cannot be judged, the cutter entering position is accidental, a part of seeds are punctured after a cutter edge is inserted, the seeds are cut and damaged, the integrity of the okra seeds cannot be guaranteed, and the medicinal value is lost;
(2) the okra separating device is characterized in that a fixing system is designed, an internal and external cutting system and an intercepting and separating system are designed, the okra is manually fixed to the fixing system when the okra separating device is used, one side of an opening of the okra faces the internal and external cutting system, after the okra is fixed by the fixing system, the internal and external cutting system is controlled to move and insert into the okra, namely, the okra is separated from the seeds inside of the okra inside the okra, the tip end portion of the okra is cut off and separated, the internal and external cutting system drives the okra seeds inside the okra to move integrally with the okra outside the okra, the okra body outside the okra is intercepted and separated by the intercepting and separating system, after the okra bodies outside the internal and external cutting system are separated by the intercepting and separating system, the internal and external cutting system is controlled to separate the seeds inside of the okra, the okra seeds and the okra bodies enter a separating cabin to be separated, and water is sprayed into the separating cabin through a plurality of liquid spraying pipes which are communicated with an external water inlet pipe, further separation of the okra seeds and the okra body is realized;
(3) the utility model discloses a take out the okra, including the okra, the seed is cut open the problem that the seed was got or was cut the seed bad to the okra, realized not wholly cutting open the condition down to the okra, to the integration of the inside seed of okra draw, it is incorrect to go into the sword position when having avoided cutting, can't cut open the okra and hinder the seed to acquire or with the seed problem of cutting bad, guaranteed the integrality of peripheral pulp simultaneously, maintained its use value to can also carry out autosegregation's effect to seed and pulp.
Drawings
FIG. 1 is a first perspective view of the present invention;
FIG. 2 is a second perspective view of the present invention;
FIG. 3 is a perspective view of the fastening system of the present invention;
FIG. 4 is a schematic view of a first perspective structure of the inside and outside cutting system of the present invention;
FIG. 5 is a schematic diagram of a second perspective view of the inside-outside cutting system of the present invention;
FIG. 6 is a schematic perspective view of a portion of the internal and external cutting system of the present invention;
FIG. 7 is a schematic perspective view of an intercepting and separating system of the present invention;
FIG. 8 is a schematic perspective view of a first intercepting control mechanism according to the present invention;
fig. 9 is a schematic perspective view of the pod of the present invention.
The meaning of the reference symbols in the figures: 1: working machine bed board, 2: support leg, 3: collection box, 4: tool box, 5: fixing system, 6: inside and outside cutting system, 7: interception and separation system, 8: first mount, 9: operation control screen, 10: liquid ejecting tube, 11: separation cabin, 501: first built-in electronic slide rail riser, 502: first electric spindle base, 503: arc-shaped pressing plate, 504: second electric spindle base, 505: second built-in electric slide rail riser, 506: third electric spindle base, 507: fixed sleeve, 508: fourth electric spindle base, 509: electric lifting column, 5010: fifth electric spindle base, 5011: arc layer board, 601: power motor, 602: first spindle shaft, 603: first drive wheel, 604: first bearing frame plate, 605: second drive wheel, 606: column gear, 607: second bearing carriage plate, 608: flat gear, 609: second spindle shaft, 6010: bearing block, 6011: third transmission wheel, 6012: mounting frame plate, 6013: fourth transmission wheel, 6014: cutter cylinder, 6015: first electric putter, 6016: ejection disc, 6017: first shift lever, 6018: second lever, 6019: electric slide, 6020: first electric slide rail, 6021: mounting assembly plate, 6022: second electric push rod, 6023: a cutting knife 701: first interception control mechanism, 702: arc interception clamp plate, 703: second interception control mechanism, 704: first limiting slide bar, 705: a second limit slide bar, 70101: mounting side plate, 70102: mounting platen, 70103: engagement seat plate, 70104: return spring, 70105: wide head slide, 70106: electric lifting control rod, 70107: engaging the sliding plate, 70108: first limit chute frame, 70109: second limit chute frame, 70110: linkage rod, 70111: pivot connecting seat, 70112: first triangular torsion spring turn plate, 70113: and the second triangular torsion spring rotating plate.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Example 1
A method for extracting okra seeds as a health-care wine raw material adopts processing equipment as shown in figures 1-9, wherein the processing equipment comprises a working machine bed plate 1, a supporting foot column 2, a collecting box 3, a tool box 4, a fixing system 5, an internal and external cutting system 6, an intercepting and separating system 7, a first mounting platform 8, an operation control screen 9, a liquid spraying pipe 10 and a separating cabin 11; the lower part of the bed plate 1 of the working machine is welded with the supporting leg column 2; the upper part of the bed plate 1 of the working machine is connected with a collecting box 3; the upper part of the working machine bed plate 1 is connected with a tool box 4; the upper part of the working machine bed plate 1 is connected with a fixing system 5; the upper part of the working machine bed plate 1 is connected with an internal and external cutting system 6; the upper part of the working machine bed plate 1 is connected with an interception and separation system 7; the upper part of the working machine bed plate 1 is welded with a first mounting table 8; the upper part of the first mounting table 8 is connected with the fixing system 5; the operation control screen 9 is connected with the fixing system 5; the lower part of the liquid spraying pipe 10 is connected with a working machine bed plate 1; the lower part of the separation cabin 11 is connected with a working machine bed plate 1;
the method for extracting okra seeds as the raw material of the health care wine comprises the following steps:
the method comprises the following steps: fixing the okra, manually cutting off one end of the okra with a handle, cleaning seeds inside the okra from the section, and then manually fixing the okra to a fixing system 5 to enable the opening side of the okra to face an internal and external cutting system 6;
step two: the okra is cut and separated inside and outside, after the okra is fixed by the fixing system 5, the inside and outside cutting system 6 is controlled to move and insert into the okra, namely the okra is separated from seeds inside and outside, and meanwhile, the tip part of the okra is cut and separated;
step three: intercepting and separating, wherein the inner and outer cutting systems 6 drive the okra seeds on the inner side and the okra on the outer side to move integrally, and the okra body on the outer side is intercepted and separated through the intercepting and separating systems 7;
step four: and pushing out the seeds, and controlling the inner and outer cutting systems 6 to separate the seeds at the inner sides after the okra bodies at the outer sides of the inner and outer cutting systems 6 are separated by the intercepting and separating system 7.
The working principle is as follows: when the health care wine raw material okra seed extraction method is used, firstly, the device is stably fixed to a working plane, then an external power supply is connected, a controllable device of an operation control screen 9 is manually opened to operate, then, one end of the okra with a handle is manually cut off, the seeds in the okra can be clearly seen from the section, then, the okra is manually fixed to a fixing system 5, the opening side of the okra faces an internal and external cutting system 6, after the okra is fixed by the fixing system 5, the internal and external cutting system 6 is controlled to move and insert into the okra, namely, the okra is separated from the seeds in the okra inside and the seeds in the okra are separated from the seeds inside the okra, the tip end parts of the okra are cut off and separated, the internal and external cutting system 6 drives the okra seeds inside the okra seeds and the okra outside to integrally move, and the okra body outside is intercepted and separated by an intercepting and separating system 7, after the okra body outside the internal and external cutting system 6 is separated by the intercepting and separating system 7, the internal and external cutting system 6 is controlled to separate the seeds on the inner side, the okra seeds and the okra body enter the separating cabin 11 to be separated, water is sprayed into the separating cabin 11 through the external water inlet pipe communicated with the plurality of liquid spraying pipes 10, further separation of the okra seeds and the okra body is realized, the integrated extraction of the seeds in the okra is realized under the condition that the okra is not integrally split, the incorrect knife-entering position during splitting is avoided, the problem that the seeds are blocked to be obtained or the seeds are split is solved due to the fact that the okra cannot be split, the integrity of peripheral pulp is ensured, the use value of the okra is maintained, and the automatic separation effect can be further realized on the seeds and the pulp.
The fixing system 5 comprises a first built-in electric sliding rail vertical plate 501, a first electric rotating shaft seat 502, an arc-shaped pressing plate 503, a second electric rotating shaft seat 504, a second built-in electric sliding rail vertical plate 505, a third electric rotating shaft seat 506, a fixing sleeve 507, a fourth electric rotating shaft seat 508, an electric lifting column 509, a fifth electric rotating shaft seat 5010 and an arc-shaped supporting plate 5011; the lower part of a first built-in electric sliding rail vertical plate 501 is connected with a working machine bed plate 1 through bolts; the first electric rotating shaft seat 502 is connected with a first built-in electric sliding rail vertical plate 501 in a sliding manner; the arc-shaped pressing plate 503 is connected with the first electric rotating shaft seat 502; the second electric rotating shaft seat 504 is connected with the arc-shaped pressing plate 503; a second built-in electric slide rail vertical plate 505 is in sliding connection with a second electric rotating shaft seat 504; the lower part of a vertical plate 505 of a second built-in electric sliding rail is connected with a working machine bed plate 1 through bolts; the third electric rotating shaft seat 506 is connected with the first built-in electric sliding rail vertical plate 501; the fixed sleeve 507 is connected with the third electric rotating shaft seat 506; the fourth electric rotating shaft seat 508 is connected with a second built-in electric sliding rail vertical plate 505; the fourth electric rotating shaft seat 508 is connected with the fixed sleeve 507; the lower part of the electric lifting column 509 is connected with a first mounting table 8 through bolts; the lower part of the fifth electric rotating shaft seat 5010 is connected with an electric lifting column 509; the lower part of the arc-shaped supporting plate 5011 is connected with a fifth electric rotating shaft seat 5010.
Firstly, the okra is inserted into the fixing sleeve 507 in a direction that the tip of the okra faces downwards, then the third electric rotating shaft seat 506 and the fourth electric rotating shaft seat 508 are controlled to drive the fixing sleeve 507 to rotate, namely, one side of the top opening of the okra is driven to rotate towards the direction of the arc-shaped supporting plate 5011, when the okra rotates to be horizontal, the first built-in electric sliding rail riser 501 and the second built-in electric sliding rail riser 505 are controlled to respectively drive the first electric rotating shaft seat 502 and the second electric rotating shaft seat 504 to slide downwards, namely, the first electric rotating shaft seat 502 and the second electric rotating shaft seat 504 drive the arc-shaped pressing plate 503 to move downwards, further the arc-shaped pressing plate 503 is driven to move downwards to contact with the side surface of the okra, the upper side surface of the okra is limited and fixed, meanwhile, the other side of the okra is positioned at the inner side of the arc-shaped supporting plate 5011, the electric lifting column 509 is controlled to adjust the heights of the fifth electric rotating shaft seat 5010 and the arc-shaped supporting plate 5011, and the fifth electric rotating shaft seat 5010 is controlled to drive the arc-shaped supporting plate 5011 to rotate, so that the inner side surface of the arc-shaped supporting plate 5011 is ensured to be in contact with the lower side surface of the okra, and the okra is fixed.
The inside and outside cutting system 6 comprises a power motor 601, a first rotating shaft rod 602, a first driving wheel 603, a first bearing frame plate 604, a second driving wheel 605, a column gear 606, a second bearing frame plate 607, a flat gear 608, a second rotating shaft rod 609, a bearing seat bench 6010, a third driving wheel 6011, a mounting frame plate 6012, a fourth driving wheel 6013, a cutting knife cylinder 6014, a first electric push rod 6015, an ejection disc 6016, a first driving lever 6017, a second driving lever 6018, an electric sliding seat 6019, a first electric slide rail 6020, a mounting collection plate 6021, a second electric push rod 6022 and a dividing cutter 6023; the lower part of the power motor 601 is connected with a working machine bed plate 1 through bolts; the first rotating shaft rod 602 is fixedly connected with an output shaft of the power motor 601; the axis of the first driving wheel 603 is fixedly connected with the first rotating shaft 602; the first bearing frame plate 604 is rotatably connected to the first rotating shaft 602; the lower part of the first bearing frame plate 604 is connected with a working machine bed plate 1 through bolts; the outer ring surface of the second driving wheel 605 is in transmission connection with the first driving wheel 603 through a belt; the column gear 606 is fixedly connected with a second driving wheel 605; a column gear 606 is rotatably connected to the first bearing frame plate 604; the lower part of the second bearing frame plate 607 is connected with the working machine bed plate 1 through bolts; the second bearing carrier plate 607 is in rotational connection with the column gear 606; the spur gear 608 meshes with the column gear 606; the second rotating shaft 609 is fixedly connected with the flat gear 608; the bearing pedestal 6010 is rotationally connected with the second rotating shaft 609; the axle center of the third driving wheel 6011 is fixedly connected with the second rotating shaft rod 609; the mounting frame plate 6012 is rotatably connected to the second spindle post 609; the mounting frame plate 6012 is bolted to the bearing pedestal 6010; the outer ring surface of the fourth driving wheel 6013 is in transmission connection with the third driving wheel 6011 through a belt; the outer surface of the cutter barrel 6014 is fixedly connected with a fourth driving wheel 6013; the cutting knife cylinder 6014 is rotatably connected with the mounting frame plate 6012; the first electric push rod 6015 is inserted into the bearing pedestal 6010; the ejecting disc 6016 is connected with a first electric push rod 6015; the ejecting disc 6016 is slidably connected with the cutter cylinder 6014; the first shift lever 6017 is fixedly connected with the mounting frame plate 6012; the second shift lever 6018 is fixedly connected with the mounting frame plate 6012; the upper part of the electric slide 6019 is connected with a mounting frame plate 6012 through bolts; the upper part of the first electric slide rail 6020 is connected with the electric slide seat 6019 in a sliding manner; the upper part of the mounting assembly plate 6021 is connected with a first electric slide rail 6020 through a bolt; the lower part of the assembly plate 6021 is welded with the working machine bed plate 1; the second electric push rod 6022 is connected with the mounting frame plate 6012; the upper part of the dividing cutter 6023 is connected with a second electric push rod 6022.
After the okra is fixed by the fixing system 5, controlling to switch on a power supply of a power motor 601, driving the first rotating shaft 602 to rotate by the power motor 601, driving a first driving wheel 603 to rotate by the first rotating shaft 602, driving a second driving wheel 605 to rotate by the first driving wheel 603, driving a column gear 606 to rotate by the second driving wheel 605, driving a flat gear 608 to rotate by the column gear 606, driving a second rotating shaft 609 to rotate by the flat gear 608, driving a third driving wheel 6011 to rotate by the second rotating shaft 609, driving a fourth driving wheel 6013 to rotate by the third driving wheel 6011, driving a cutting knife barrel 6014 to rotate by the fourth driving wheel 6013, controlling a first electric slide rail 6020 to drive an electric slide 6019 to move, namely, driving a component connected to the top of the electric slide to move integrally by the electric slide 6019, namely, driving the cutting knife barrel 6014 to move in a direction close to the fixing system 5, then the cutting knife cylinder 6014 is inserted from an opening at one side of the okra, the outer diameter of the cutting knife cylinder 6014 is slightly smaller than the inner diameter of the okra, the cutting knife cylinder 6014 is inserted into the okra and then is attached to the inner wall of the okra body to be inserted, the body of the okra is separated from the seeds inside, when the cutting knife cylinder 6014 is inserted from one side of the okra to the other side, namely, the body of the okra is separated from the seeds of the okra, then the second electric push rod 6022 is controlled to drive the dividing cutter 6023 to move downwards, the dividing cutter 6023 moves downwards to cut off the tip of the okra from the position between the fixed sleeve 507 and the arc supporting plate 5011, at this time, the body of the okra is sleeved outside the cutting knife cylinder 6014, the seeds are located inside the cutting knife cylinder 6014, then the first electric slide rail 6020 is controlled to drive the electric slide 6019 to perform a resetting movement, and the mounting frame plate 6012 is driven to move during the movement of the electric slide 6019, namely, the mounting frame plate 6012 drives the first shift lever 6017 and the second shift lever 6018 to move, then the first shift lever 6017 and the second shift lever 6018 can control the intercepting and separating system 7 to operate, namely, the intercepting and separating system 7 intercepts the okra body outside the cutting knife cylinder 6014, then the cutting knife cylinder 6014 continues to move, namely, the cutting knife cylinder 6014 is separated from the okra body, then the first electric push rod 6015 is controlled to push out, namely, the first electric push rod 6015 drives the ejection disc 6016 to move inside the cutting knife cylinder 6014, so that the seeds of the okra inside the cutting knife cylinder 6014 are ejected out, and then the seeds of the okra and the okra body fall into the separation cabin 11 to be subsequently separated, and the separation of the okra seeds and the okra body is completed.
The interception and separation system 7 comprises a first interception control mechanism 701, an arc-shaped interception pressing plate 702, a second interception control mechanism 703, a first limit sliding rod 704 and a second limit sliding rod 705; the lower part of the first interception control mechanism 701 is connected with a working machine bed plate 1; the arc-shaped intercepting press plate 702 is connected with the first intercepting control mechanism 701; the second interception control mechanism 703 is connected with the arc-shaped interception pressing plate 702; the lower part of the second interception control mechanism 703 is connected with a working machine bed plate 1; the outer surface of the first limiting slide bar 704 is in sliding connection with the arc-shaped intercepting press plate 702; the lower part of the first limit slide bar 704 is fixedly connected with a working machine bed plate 1; the outer surface of the second limiting slide rod 705 is in sliding connection with the arc-shaped intercepting press plate 702; the lower part of the second limit slide rod 705 is fixedly connected with a working machine bed plate 1.
When the first electric slide rail 6020 drives the electric slide seat 6019 to perform a resetting movement, and the electric slide seat 6019 drives the mounting frame plate 6012 to move during a movement process, that is, the mounting frame plate 6012 drives the first shift rod 6017 and the second shift rod 6018 to move, that is, the first shift rod 6017 and the second shift rod 6018 drive the second intercepting control mechanism 703 and the first intercepting control mechanism 701 to operate during a movement process, and then the second intercepting control mechanism 703 and the first intercepting control mechanism 701 drive the arc-shaped intercepting press plate 702 to slide downwards on the surfaces of the first limit slide bar 704 and the second limit slide bar 705, and then the bottom of the arc-shaped intercepting press plate 702 presses the surface of the okra body outside the cutting knife cylinder 6014, and further when the cutting knife cylinder 6014 continues to move, the arc-shaped intercepting press plate 702 presses the surface of the okra body outside the cutting knife cylinder 6014, that is, that the arc-shaped intercepting press plate 702 intercepts the okra body outside the cutting knife cylinder 6014 by friction force, thereby completing the separation of the cutter cylinder 6014 from the okra body.
The first interception control mechanism 701 comprises a mounting side plate 70101, a mounting bedplate 70102, a connecting base plate 70103, a return spring 70104, a wide head sliding plate 70105, an electric lifting control rod 70106, a connecting sliding plate 70107, a first limit sliding chute frame 70108, a second limit sliding chute frame 70109, a linkage rod 70110, a rotating shaft connecting seat 70111, a first triangular torsion spring rotating plate 70112 and a second triangular torsion spring rotating plate 70113; the lower part of the installation side plate 70101 is connected with a working machine bed plate 1 through bolts; the lower part of the installation bedplate 70102 is connected with an installation side plate 70101 through bolts; the lower part of the connecting seat plate 70103 is connected with the mounting bedplate 70102 through bolts; the return spring 70104 is connected with the connecting seat plate 70103; the wide head sliding plate 70105 is connected with a return spring 70104; the electric lifting control rod 70106 is connected with the wide head sliding plate 70105; the sliding plate 70107 is connected with the electric lifting control rod 70106 in a sleeved mode; the first limit chute frame 70108 is in sliding connection with the engaging sliding plate 70107; the second limit chute frame 70109 is slidably connected to the engaging sliding plate 70107; the linkage rod 70110 is rotatably connected with the wide-head sliding plate 70105; the rotating shaft connecting seat 70111 is rotatably connected with the linkage rod 70110; the upper part of the rotating shaft connecting seat 70111 is connected with the arc-shaped interception pressing plate 702; the first triangular torsion spring rotating plate 70112 is connected with the installation bedplate 70102; the second leg spring rocker 70113 is connected to the mounting plate 70102.
When the mounting frame plate 6012 drives the first driving rod 6017 and the second driving rod 6018 to move during the resetting movement, the electric lifting control rod 70106 is controlled to extend upwards, and then the first driving rod 6017 will abut against the electric lifting control rod 70106 during the movement, and then the electric lifting control rod 70106 drives the connecting sliding plate 70107 to slide inside the first limiting sliding slot frame 70108 and the second limiting sliding slot frame 70109, and at the same time the electric lifting control rod 70106 drives the wide head sliding plate 70105 to move, so that the tips of the two sides of the wide head sliding plate 70105 respectively contact the first triangular torsion spring rotating plate 70112 and the second triangular torsion spring rotating plate 70113, and then the first triangular torsion spring rotating plate 70112 and the second triangular torsion spring rotating plate 70113 rotate, and at the same time the wide head sliding plate 70105 drives the linkage rod 70110 to move, and the linkage rod 70110 drives the arc-shaped intercepting pressing plate 702 to move downwards on the surfaces of the first limiting sliding bar 704 and the second limiting sliding bar 705 through the rotation connecting seat 70111, the lifting control of the arc-shaped intercepting press plate 702 is completed, after the movement of the wide-head sliding plate 70105 is finished, two tip parts of the wide-head sliding plate 70105 already pass through the tips of the first triangular torsion spring rotating plate 70112 and the second triangular torsion spring rotating plate 70113, namely, the wide-head sliding plate 70105 is clamped and fixed, at the moment, the electric lifting control rod 70106 is controlled to contract, namely, the electric lifting control rod 70106 loses the blocking of the first driving lever 6017, at the moment, the return spring 70104 rebounds to drive the wide-head sliding plate 70105 to reset.
The separation cabin 11 is internally provided with an intercepting layered screen plate.
After the seeds of the okra and the okra body fall into the separating cabin 11, the okra seeds fall into the bottom of the separating cabin 11 from the grid holes of the intercepting layered screen plate, and the okra body can be intercepted above the intercepting layered screen plate.
The bottom surface of the arc-shaped intercepting press plate 702 is provided with a rubber pad.
So that when the bottom of the arc-shaped intercepting press plate 702 is in contact with the okra, the arc-shaped intercepting press plate 702 does not damage the surface of the okra body.
One side of the interior of the separation chamber 11 is provided with an electric fan blade.
All drop to 11 inside backs of disengagement chamber at the seed of okra and okra body, the okra seed can drop to 11 bottoms of disengagement chamber, and this can be intercepted in interception layering otter board top to the okra, adds water to 11 insides of disengagement chamber this moment, and this can float to the surface of water promptly to okra, then control electric fan blade rotates, and electric fan blade can promote floated okra to 11 opposite sides of disengagement chamber through water conservancy promptly and accomplish the gathering.
Finally, it should be noted that the above embodiments are only used for illustrating the technical solutions of the present invention and not for limiting the protection scope of the present invention, and although the present invention is described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that modifications or equivalent substitutions can be made on the technical solutions of the present invention without departing from the spirit and scope of the technical solutions of the present invention.

Claims (8)

1. A method for extracting okra seeds serving as a health-care wine raw material adopts the following processing equipment, wherein the processing equipment comprises a working machine bed plate (1), supporting foot columns (2) and a collecting box (3), and is characterized by further comprising a tool box (4), a fixing system (5), an internal and external cutting system (6), an intercepting and separating system (7), a first mounting table (8), an operation control screen (9), a liquid spraying pipe (10) and a separating cabin (11); the lower part of the working machine bed plate (1) is welded with the supporting leg column (2); the upper part of the working machine bed plate (1) is connected with the collecting box (3); the upper part of the working machine bed plate (1) is connected with a tool box (4); the upper part of the working machine bed plate (1) is connected with a fixing system (5); the upper part of the working machine bed plate (1) is connected with an internal and external cutting system (6); the upper part of the working machine bed plate (1) is connected with an interception and separation system (7); the upper part of the working machine bed plate (1) is welded with the first mounting table (8); the upper part of the first mounting table (8) is connected with the fixing system (5); the operation control screen (9) is connected with the fixing system (5); the lower part of the liquid spraying pipe (10) is connected with a working machine bed plate (1); the lower part of the separation cabin (11) is connected with a working machine bed plate (1);
the method for extracting okra seeds as the raw material of the health care wine comprises the following steps:
the method comprises the following steps: fixing the okra, manually cutting off one end of the okra with a handle, cleaning seeds inside the okra from the section, and then manually fixing the okra to a fixing system (5) to enable the opening side of the okra to face an internal and external cutting system (6);
step two: the okra is cut and separated inside and outside, after the okra is fixed by the fixing system (5), the inside and outside cutting system (6) is controlled to move and insert into the okra, namely the okra is separated from the seeds inside and outside, and meanwhile, the tip part of the okra is cut and separated;
step three: intercepting and separating, wherein the inner and outer cutting systems (6) drive the okra seeds on the inner side and the okra on the outer side to move integrally, and the okra body on the outer side is intercepted and separated through the intercepting and separating systems (7);
step four: pushing out the seeds, and controlling the inner and outer cutting systems (6) to separate the seeds at the inner side after the okra body at the outer side of the inner and outer cutting systems (6) is separated by the intercepting and separating system (7).
2. The method for extracting okra seeds as the raw material of the health care wine according to claim 1, which is characterized by comprising the following steps: the fixing system (5) comprises a first built-in electric sliding rail vertical plate (501), a first electric rotating shaft seat (502), an arc-shaped pressing plate (503), a second electric rotating shaft seat (504), a second built-in electric sliding rail vertical plate (505), a third electric rotating shaft seat (506), a fixing sleeve (507), a fourth electric rotating shaft seat (508), an electric lifting column (509), a fifth electric rotating shaft seat (5010) and an arc-shaped supporting plate (5011); the lower part of a first built-in electric sliding rail vertical plate (501) is connected with a working machine bed plate (1) through bolts; the first electric rotating shaft seat (502) is in sliding connection with the first built-in electric sliding rail vertical plate (501); the arc-shaped pressing plate (503) is connected with the first electric rotating shaft seat (502); the second electric rotating shaft seat (504) is connected with the arc-shaped pressing plate (503); the second built-in electric sliding rail vertical plate (505) is in sliding connection with the second electric rotating shaft seat (504); the lower part of a vertical plate (505) of a second built-in electric sliding rail is connected with a working machine bed plate (1) through a bolt; the third electric rotating shaft seat (506) is connected with the first built-in electric sliding rail vertical plate (501); the fixed sleeve (507) is connected with the third electric rotating shaft seat (506); the fourth electric rotating shaft seat (508) is connected with a second built-in electric sliding rail vertical plate (505); the fourth electric rotating shaft seat (508) is connected with the fixed sleeve (507); the lower part of the electric lifting column (509) is connected with a first mounting table (8) through a bolt; the lower part of the fifth electric rotating shaft seat (5010) is connected with an electric lifting column (509); the lower part of the arc-shaped supporting plate (5011) is connected with a fifth electric rotating shaft seat (5010).
3. The method for extracting okra seeds as the raw material of the health care wine according to claim 2, which is characterized by comprising the following steps: the inner and outer cutting system (6) comprises a power motor (601), a first rotating shaft rod (602), a first transmission wheel (603), a first bearing frame plate (604), a second transmission wheel (605), a column gear (606), a second bearing frame plate (607), a flat gear (608), a second rotating shaft rod (609), a bearing seat platform (6010), a third transmission wheel (6011), a mounting frame plate (6012), a fourth transmission wheel (6013), a cutting knife cylinder (6014), a first electric push rod (6015), an ejection disc (6016), a first driving lever (6017), a second driving lever (6018), an electric slide seat (6019), a first electric slide rail (6020), a mounting collection plate (6021), a second electric push rod (6022) and a cutting knife (6023); the lower part of the power motor (601) is connected with a working machine bed plate (1) through bolts; the first rotating shaft rod (602) is fixedly connected with an output shaft of the power motor (601); the axle center of the first driving wheel (603) is fixedly connected with the first rotating shaft rod (602); the first bearing frame plate (604) is in rotary connection with the first rotating shaft rod (602); the lower part of the first bearing frame plate (604) is connected with a working machine bed plate (1) through bolts; the outer ring surface of the second transmission wheel (605) is in transmission connection with the first transmission wheel (603) through a belt; the column gear (606) is fixedly connected with a second transmission wheel (605); the column gear (606) is in rotary connection with the first bearing frame plate (604); the lower part of the second bearing frame plate (607) is connected with a working machine bed plate (1) through bolts; the second bearing frame plate (607) is in rotary connection with the column gear (606); the flat gear (608) is meshed with the column gear (606); the second rotating shaft rod (609) is fixedly connected with the flat gear (608); the bearing seat platform (6010) is in rotary connection with the second rotating shaft rod (609); the axle center of the third driving wheel (6011) is fixedly connected with the second rotating shaft rod (609); the mounting frame plate (6012) is rotatably connected with the second rotating shaft rod (609); the mounting frame plate (6012) is in bolted connection with the bearing seat stand (6010); the outer ring surface of the fourth driving wheel (6013) is in transmission connection with the third driving wheel (6011) through a belt; the outer surface of the cutter cylinder (6014) is fixedly connected with a fourth driving wheel (6013); the cutting knife cylinder (6014) is rotatably connected with the mounting frame plate (6012); the first electric push rod (6015) is inserted into the bearing seat stand (6010); the ejection disc (6016) is connected with a first electric push rod (6015); the ejecting disc (6016) is in sliding connection with the cutting knife cylinder (6014); the first deflector rod (6017) is fixedly connected with the mounting frame plate (6012); the second deflector rod (6018) is fixedly connected with the mounting frame plate (6012); the upper part of the electric sliding seat (6019) is connected with a mounting frame plate (6012) through bolts; the upper part of the first electric slide rail (6020) is connected with an electric slide seat (6019) in a sliding way; the upper part of the mounting assembly plate (6021) is connected with a first electric slide rail (6020) through a bolt; the lower part of the assembly plate (6021) is welded with the working machine bed plate (1); the second electric push rod (6022) is connected with the mounting frame plate (6012); the upper part of the dividing cutter (6023) is connected with a second electric push rod (6022).
4. The method for extracting okra seeds as the raw material of the health care wine according to claim 3, which is characterized by comprising the following steps: the interception and separation system (7) comprises a first interception control mechanism (701), an arc-shaped interception pressing plate (702), a second interception control mechanism (703), a first limiting sliding rod (704) and a second limiting sliding rod (705); the lower part of the first interception control mechanism (701) is connected with a working machine bed plate (1); the arc-shaped intercepting pressure plate (702) is connected with the first intercepting control mechanism (701); the second interception control mechanism (703) is connected with the arc-shaped interception pressing plate (702); the lower part of the second interception control mechanism (703) is connected with a working machine bed plate (1); the outer surface of the first limiting slide bar (704) is in sliding connection with the arc-shaped intercepting press plate (702); the lower part of the first limit slide bar (704) is fixedly connected with a working machine bed plate (1); the outer surface of the second limiting sliding rod (705) is in sliding connection with the arc-shaped intercepting press plate (702); the lower part of the second limit slide rod (705) is fixedly connected with a working machine bed plate (1).
5. The method for extracting okra seeds as the raw material of the health care wine according to claim 4, which is characterized by comprising the following steps: the first intercepting control mechanism (701) comprises a mounting side plate (70101), a mounting bedplate (70102), a connecting seat plate (70103), a return spring (70104), a wide head sliding plate (70105), an electric lifting control rod (70106), a connecting sliding plate (70107), a first limiting sliding groove frame (70108), a second limiting sliding groove frame (70109), a linkage rod (70110), a rotating shaft connecting seat (70111), a first triangular torsion spring rotating plate (70112) and a second triangular torsion spring rotating plate (70113); the lower part of the mounting side plate (70101) is connected with a working machine bed plate (1) through bolts; the lower part of the mounting bedplate (70102) is connected with a mounting side plate (70101) through bolts; the lower part of the connecting seat plate (70103) is connected with the mounting bedplate (70102) by bolts; the return spring (70104) is connected with the connecting seat plate (70103); the wide-head sliding plate (70105) is connected with a return spring (70104); the electric lifting control rod (70106) is connected with the wide head sliding plate (70105); the connecting sliding plate (70107) is sleeved with the electric lifting control rod (70106); the first limit sliding chute frame (70108) is in sliding connection with the connecting sliding plate (70107); the second limit sliding chute frame (70109) is in sliding connection with the connecting sliding plate (70107); the linkage rod (70110) is rotationally connected with the wide-head sliding plate (70105); the rotating shaft connecting seat (70111) is rotationally connected with the linkage rod (70110); the upper part of the rotating shaft connecting seat (70111) is connected with the arc-shaped interception pressing plate (702); the first triangular torsion spring rotating plate (70112) is connected with the installation bedplate (70102); the second triangular torsion spring rotating plate (70113) is connected with the installation bedplate (70102).
6. The method for extracting okra seeds as the raw material of the health care wine according to claim 5, which is characterized by comprising the following steps: an intercepting layered screen plate is arranged in the separation cabin (11).
7. The method for extracting okra seeds as the raw material of the health care wine according to claim 6, which is characterized by comprising the following steps: the bottom surface of the arc-shaped intercepting pressing plate (702) is provided with a rubber pad.
8. The method for extracting okra seeds as the raw material of the health care wine according to claim 7, which is characterized by comprising the following steps: one side of the interior of the separation cabin (11) is provided with an electric fan blade.
CN202110465039.0A 2021-04-28 2021-04-28 Method for extracting okra seeds serving as health-care wine raw material Active CN113331445B (en)

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KR20090059581A (en) * 2007-12-07 2009-06-11 이문호 Pericarp separation device of red pepper
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