CN205284917U - Denucleate and cut half machine in location - Google Patents

Denucleate and cut half machine in location Download PDF

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Publication number
CN205284917U
CN205284917U CN201521035424.8U CN201521035424U CN205284917U CN 205284917 U CN205284917 U CN 205284917U CN 201521035424 U CN201521035424 U CN 201521035424U CN 205284917 U CN205284917 U CN 205284917U
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CN
China
Prior art keywords
conveyer belt
balancing point
plate
knife plate
ajusting
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CN201521035424.8U
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Chinese (zh)
Inventor
于灵光
孙华强
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YANTAI CHANGDA FOOD MACHINERY MANUFACTURING CO LTD
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YANTAI CHANGDA FOOD MACHINERY MANUFACTURING CO LTD
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Priority to CN201521035424.8U priority Critical patent/CN205284917U/en
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Abstract

The utility model relates to a denucleate and cut half machine in location, examine nose section, conveyer belt, main drivetrain parts, ajust the part, go out nuclear subtotal individual layer brush part including installing dashing in the frame, the strong nose section that examines is located the conveyer belt top, action wheel and rotating of follow driving wheel that the conveyer belt was being placed side by side are crawler -type reciprocating motion under the drive, main drivetrain parts is vigorously examining nose section and the conveyer belt provides power, ajust the part and locate the below of conveyer belt, it ajusts between part and the action wheel to go out the partial conveyer belt below of locating of nuclear, individual layer brush part is installed in conveyer belt and feeding storehouse kneck top, the beneficial effects of the utility model are that: convenient operation does not destroy the integrality of fruit grain, and the core all leaves the fruit grain in the bottom department of fruit grain, makes the fruit grain after denucleating, keeps original shape completely filled fruit.

Description

Half machine is cut in a kind of location enucleation
Technical field
This utility model relates to a kind of stoner, belongs to food machinery field.
Background technology
The stoner being currently in use in the market is to be placed in feed bin by fruit grain, transporting chain plate is uniform-distribution with multiple waiting and expects hole, treat the rubber blanket that material hole makes built with rubber, transporting chain plate be in operation hairbrush will treat material hole outside fruit grain stay, treating that the fruit grain in material hole is transferred carrier bar and is transported under kernel removing cutter, the pit in fruit grain is rushed out by the reciprocating motion of kernel removing cutter, and fruit grain continues to stay to be treated in material hole, transporting chain plate is transported to the other end of equipment, leaves body. Pit runs to the lower section of carrier bar through rubber blanket, gets rid of body. The shortcoming of this stoner is that fruit grain does not have direction in treating material hole, it is uncertain that pit leaves fruit grain direction, fruit grain after such enucleation seems incomplete, serious removes one piece of sarcocarp, have a strong impact on attractive in appearance, food decoration use can not be done, greatly reduce value-added content of product, and feed consumption height increases cost.
Utility model content
The deficiency that this utility model exists for existing stoner, it is provided that half machine is cut in a kind of location enucleation.
The technical scheme that this utility model solves above-mentioned technical problem is as follows:
Half machine is cut in a kind of location enucleation, including the pit-removing machine head part, transport portion, the active force part that include being installed in frame, ajust part, go out core part and monolayer brush element, described transport portion includes conveyer belt, described pit-removing machine head part is positioned at above conveyer belt, described active force part provides power for pit-removing machine head part and conveyer belt, described part of ajusting is located at below the table top of conveyer belt, described go out core part be located at below conveyer belt to ajust between part and drivewheel, described monolayer brush element is installed on above conveyer belt and feeding warehouse seam;
Described pit-removing machine head part includes supporting axle, hinge, knife plate, hold(ing)-down clip, rush core cutter, location-plate, guide pillars and bushes, described support axle is fastened transversely in frame by bearing, described knife plate is connected through the hinge and is supporting on axle, described frame two ends are provided with guide pillar, described knife plate is provided with guide pin bushing, knife plate is moved up and down along guide pillar by guide pin bushing, some core cuttves that rush are pressed on knife plate lower surface by described hold(ing)-down clip, described knife plate both sides are fixed with spring stack, it is provided with spring in described spring stack, described spring connected positioning plate is located at hold(ing)-down clip lower end, described location-plate be provided with some with rush that core cutter size matches run through through hole, described knife plate is connected with power source by being located at the lifting linking member of its one end,
Described transport portion also includes drivewheel, driven pulley, chain, template and be positioned at drivewheel, lowering or hoisting gear below conveyer belt table top between driven pulley, several templates are connected to each other formation conveyer belt by chain, described template is provided with several that be arranged side by side and treats material hole, described treating is provided with rubber cushion layer on the downside of material hole, described rubber cushion layer being treated, material hole lower position is provided with up-thin-low-thick leakage nucleopore, described lowering or hoisting gear includes holder rail, regulate screw mandrel, balance staff, fork, connect connecting rod and undercarriage, described frame is evenly equipped with some leakage nucleopores corresponding with treating material hole, four apex of described holder rail are provided with adjustment screw mandrel, described adjustment screw mandrel has been connected below balance staff, connected by two connection connecting rods parallel with conveyer belt direction of advance between balance staff, balance staff key near pit-removing machine head direction connects fork, fork is connected with undercarriage undercarriage,
Described active force part includes the first motor, reductor, final drive shaft, grooved cam, plane cam and lifting linking member, the output shaft of described reductor is connected with final drive shaft, on described final drive shaft, key is connected to grooved cam and plane cam, described grooved cam drives drivewheel to realize step motion by the driver plate being installed between itself and drivewheel, the eccentric power source being knife plate by lifting linking member on described plane cam, described lifting linking member drives knife plate to move up and down, described plane cam is connected with undercarriage, drive holder rail to move up and down thereby through undercarriage and the connection holding in the palm rail and realize the lifting of conveyer belt,
Described part of ajusting includes ajusting motor, belt pulley, the fixing plate of balancing point and balancing point assembly, described part of ajusting is positioned at below conveyer belt table top, described driven by motor belt pulley of ajusting rotates, belt pulley is being provided with many groups side by side in the described conveyer belt direction of motion, it is connected with a watt seat above described belt pulley, watt seat other end is provided with gear, described gear is cased with balancing point assembly, each balancing point assembly is equipped with the gear of correspondence and engages successively, the rotation of other identical gears around gear driven, described balancing point assembly includes balancing point axle and the balancing point being installed in axle, described balancing point axle is fixed on the fixing plate of balancing point, described motor of ajusting passes through the rotation of driven gear thus driving balancing point to rotate,
Described go out core part include nuclear power machine, go out core spiral and hopper, described in go out core spiral and be connected with discharge bucket, described in go out core driven by motor and go out core spiral rotating, described in go out core spiral and connect core mouth;
Described monolayer brush element includes the second motor, hairbrush, support, and described hairbrush is fixed in frame by support, and described second driven by motor hairbrush rotates.
The beneficial effects of the utility model are:
1) not destroying the integrity of fruit grain, pit all leaves fruit grain at the bottom place of fruit grain, makes the fruit grain after enucleation, keeps original shape completely filled fruit;
2) the easily-consumed products rubber blanket used by this machine greatly reduces, and the rubber blanket of this machine is only used in the lower section of stamping knife;
3) easy to operate.
Further, between described hold(ing)-down clip and location-plate, be additionally provided with stripper, stripper be provided with some with rush the hole that core cutter diameter matches, described stripper is fixed on knife plate by the alignment pin at its two ends.
Adopt above-mentioned further technical scheme to provide the benefit that, when Fructus Pruni pseudocerasi head is less, stripper can make enucleation complete postadhesion the cherry fruit rushed on core cutter reenter treat material hole in.
Accompanying drawing explanation
Fig. 1 is the front view of this utility model stoner;
Fig. 2 is pit-removing machine head part structural representation;
Fig. 3 is drivewheel annexation schematic diagram;
Fig. 4 is for ajusting part-structure schematic diagram;
Fig. 5 is Fig. 4 side-looking thumbnail (for brevity, only drawn and ajusted assembly) ajusting part-structure;
Fig. 6 is for going out core part-structure schematic diagram.
In Fig. 1��6,1, frame; 2, conveyer belt; 3, drivewheel; 4, driven pulley; 5, feeding warehouse; 6, axle is supported; 7, hinge; 8, knife plate; 9, hold(ing)-down clip; 10, core cutter is rushed; 11, location-plate; 12, stripper; 13, alignment pin; 14, guide pillar; 15, guide pin bushing; 16, spring stack; 17, through hole; 18, lifting linking member; 19, chain; 20, template; 21, material hole is treated; 22, rubber cushion layer; 23, leakage nucleopore; 24, holder rail; 25, screw mandrel is regulated; 26, balance staff; 27, fork; 28, connecting rod is connected; 29, undercarriage; 30, the first motor; 31, reductor; 32, final drive shaft; 33, grooved cam; 34, plane cam; 35, driver plate; 36, motor is ajusted; 37, belt pulley; 38, the fixing plate of balancing point; 39, balancing point axle; 40, balancing point; 41, nuclear power machine is gone out; 42, core spiral is gone out; 43, discharge bucket; 44, core mouth is gone out; 45, the second motor; 46, hairbrush; 47, support
Detailed description of the invention
Below in conjunction with example, principle of the present utility model and feature being described, example is served only for explaining this utility model, is not intended to limit scope of the present utility model.
Half machine is cut in a kind of location enucleation, including the pit-removing machine head part being installed in frame 1, transport portion, active force part, ajust part, go out core part and monolayer brush element, described transport portion includes conveyer belt 2, described pit-removing machine head part is positioned at above conveyer belt 2, described active force part provides power for pit-removing machine head part and conveyer belt 2, described part of ajusting is located at below the table top of conveyer belt, described go out core part be located at below conveyer belt to ajust between part and drivewheel 3, described monolayer brush element is installed on above conveyer belt 2 and feeding warehouse 5 seam;
Described pit-removing machine head part includes supporting axle 6, hinge 7, knife plate 8, hold(ing)-down clip 9, rush core cutter 10, location-plate 11, guide pillar 14 and guide pin bushing 15, described support axle 6 is fastened transversely in frame 1 by bearing, described knife plate 8 is connected on support axle 6 by hinge 7, described frame 1 two ends are provided with guide pillar 14, described knife plate 8 both sides are provided with guide pin bushing 15, knife plate 8 is moved up and down along guide pillar 14 by guide pin bushing 15, some core cuttves 10 that rush are pressed on knife plate 8 lower surface by described hold(ing)-down clip 9, described knife plate 8 both sides are fixed with spring stack 16, it is provided with spring in described spring stack 16, described spring connected positioning plate 11 is located at hold(ing)-down clip 9 lower end, described location-plate 11 be provided with some with rush that core cutter 10 size matches run through through hole 17, described knife plate 8 is connected with power source by being located at the lifting linking member 18 of its one end, it is additionally provided with stripper 12 between described hold(ing)-down clip 9 and location-plate 11, stripper 12 be provided with some with rush the hole that core cutter 10 diameter matches, described stripper 12 is fixed on knife plate 8 by the alignment pin 13 at its two ends,
Described transport portion also includes drivewheel 3, driven pulley 4, chain 19, template 20 and be positioned at drivewheel 3, lowering or hoisting gear below conveyer belt 2 table top between driven pulley 4, several templates 20 are connected to each other by chain 19 and form conveyer belt 2, described template 20 is provided with several that be arranged side by side and treats material hole 21, described treating is provided with rubber cushion layer 22 on the downside of material hole 21, described rubber cushion layer 22 being treated, material hole 21 lower position is provided with up-thin-low-thick leakage nucleopore 23, described lowering or hoisting gear includes holder rail 24, regulate screw mandrel 25, balance staff 26, fork 27, connect connecting rod 28 and undercarriage 29, described holder rail 24 is evenly equipped with some leakage nucleopores corresponding with treating material hole 21, four apex of described holder rail 24 are provided with described adjustment screw mandrel 25, described adjustment screw mandrel 25 has been connected below balance staff 26, connected by two connection connecting rods 28 parallel with conveyer belt direction of advance between balance staff 26, balance staff 26 key near pit-removing machine head direction connects fork 27, fork 27 is connected with undercarriage 29,
Described active force part includes the first motor 30, reductor 31, final drive shaft 32, grooved cam 33, plane cam 34 and lifting linking member 18, the output shaft of described reductor 31 is connected with final drive shaft 32, on described final drive shaft 32, key is connected to grooved cam 33 and plane cam 34, described grooved cam 33 drives drivewheel 3 to realize step motion by the driver plate 35 being installed between itself and drivewheel 3, the eccentric power source being knife plate 8 by lifting linking member 18 on described plane cam 34, described lifting linking member 18 drives knife plate 8 to move up and down, described plane cam 34 is connected with undercarriage 29, drive holder rail 24 to move up and down thereby through undercarriage 29 and the connection holding in the palm rail 24 and realize the lifting of conveyer belt 2,
Described part of ajusting includes ajusting motor 36, belt pulley 37, the fixing plate 38 of balancing point and balancing point assembly, described part of ajusting is positioned at below holder rail 24, described motor 36 of ajusting drives belt pulley 37 to rotate, belt pulley 37 is being provided with many groups side by side in the described conveyer belt direction of motion, it is connected with a watt seat above described belt pulley 37, watt seat other end is provided with gear, described gear is cased with balancing point assembly, each balancing point assembly is equipped with the gear of correspondence and engages successively, the rotation of other identical gears around gear driven, described balancing point assembly includes balancing point axle 39 and the balancing point 40 being installed in axle, described balancing point 40 axle is fixed on the fixing plate 38 of balancing point, described motor 36 of ajusting passes through the rotation of driven gear thus driving balancing point 40 to rotate.
Described go out core part include nuclear power machine 41, go out core spiral 42 and discharge bucket 43, described in go out core spiral 42 and be connected with discharge bucket 43, described in go out nuclear power machine 41 and drive out core spiral 42 to rotate, described in go out core spiral 42 and connect core mouth 44;
Described monolayer brush element includes the second motor 45, hairbrush 46, support 47, and described hairbrush 46 is fixed in frame by support 47, and described second motor 45 band electric brush 46 rotates.
The work process that half machine is cut in the enucleation of above-mentioned location is as follows:
1) Fructus Pruni pseudocerasi in feed bin 5 enters conveyer belt 2, is stayed by unnecessary Fructus Pruni pseudocerasi and only retain the Fructus Pruni pseudocerasi of monolayer distribution on conveyer belt in feed bin under the rotary cleaning effect of hairbrush 46 so that each the waiting on conveyer belt expects equal only one of which Fructus Pruni pseudocerasi in hole;
2) Fructus Pruni pseudocerasi moves ahead under the drive of conveyer belt 2, now conveyer belt lowering or hoisting gear starts with ajusting part, after conveyer belt 2 rises to upper height limit, conveyer belt takes a step forward, rear conveyer belt is down to height lower limit, the balancing point 40 now ajusted in part contacts with Fructus Pruni pseudocerasi through holder rail 24 with leakage nucleopore 23 and constantly rotates under dynamic action, the state making Fructus Pruni pseudocerasi is continually changing, and after conveyer belt 2 rise and fall several times, the final side with stalk of Fructus Pruni pseudocerasi is towards ground;
3) Fructus Pruni pseudocerasi moves to after below knife plate 8, knife plate 8 declines under dynamic action, location-plate 11 is pushed down fruit grain and is kept fruit grain to fix, rush core cutter 10 and the Nux Pruni pseudocerasi treated in material hole is gone out outside fruit grain, pit menometrorrhagia nucleopore 23 drops in discharge bucket 43, rear knife plate 8 rises, and conveyer belt takes a step forward and delivers to below knife plate 10 by Fructus Pruni pseudocerasi below;
4) Fructus Pruni pseudocerasi pit is collected by going out core mouth 44 through discharging spiral 42, and the fruit grain after enucleation transports collection through conveyer belt.
The foregoing is only preferred embodiment of the present utility model, not in order to limit this utility model, all within spirit of the present utility model and principle, any amendment of making, equivalent replacement, improvement etc., should be included within protection domain of the present utility model.

Claims (2)

1. half machine is cut in a location enucleation, including the pit-removing machine head part being installed in frame, transport portion, active force part, ajust part, go out core part and monolayer brush element, described pit-removing machine head part is positioned at above conveyer belt, described transport portion includes conveyer belt, described active force part provides power for pit-removing machine head part and conveyer belt, described part of ajusting is located at the lower section of conveyer belt table top, described go out core part be located at below conveyer belt to ajust between part and drivewheel, described monolayer brush element is installed on above conveyer belt and feeding warehouse seam;
Described pit-removing machine head part includes supporting axle, hinge, knife plate, hold(ing)-down clip, rush core cutter, location-plate, guide pillars and bushes, described support axle is fastened transversely in frame by bearing, described knife plate is connected through the hinge and is supporting on axle, described frame two ends are provided with guide pillar, described knife plate is provided with guide pin bushing, knife plate is moved up and down along guide pillar by guide pin bushing, some core cuttves that rush are pressed on knife plate lower surface by described hold(ing)-down clip, described knife plate both sides are fixed with spring stack, it is provided with spring in described spring stack, described spring connected positioning plate is located at hold(ing)-down clip lower end, described location-plate be provided with some with rush that core cutter size matches run through through hole, described knife plate is connected with power source by being located at the lifting linking member of its one end,
Described transport portion also includes drivewheel, driven pulley, chain, template and be positioned at drivewheel, lowering or hoisting gear below conveyer belt table top between driven pulley, several templates are connected to each other formation conveyer belt by chain, described template is provided with several that be arranged side by side and treats material hole, described treating is provided with rubber cushion layer on the downside of material hole, described rubber cushion layer being treated, material hole lower position is provided with up-thin-low-thick leakage nucleopore, described lowering or hoisting gear includes holder rail, regulate screw mandrel, balance staff, fork, connect connecting rod and undercarriage, described frame is evenly equipped with some leakage nucleopores corresponding with treating material hole, four apex of described holder rail are provided with adjustment screw mandrel, described adjustment screw mandrel has been connected below balance staff, connected by two connection connecting rods parallel with conveyer belt direction of advance between balance staff, balance staff key near pit-removing machine head direction connects fork, fork is connected with undercarriage undercarriage,
Described active force part includes the first motor, reductor, final drive shaft, grooved cam, plane cam and lifting linking member, the output shaft of described reductor is connected with final drive shaft, on described final drive shaft, key is connected to grooved cam and plane cam, described grooved cam drives drivewheel to realize step motion by the driver plate being installed between itself and drivewheel, the eccentric power source being knife plate by lifting linking member on described plane cam, described lifting linking member drives knife plate to move up and down, described plane cam is connected with undercarriage, drive holder rail to move up and down thereby through undercarriage and the connection holding in the palm rail and realize the lifting of conveyer belt,
Described part of ajusting includes ajusting motor, belt pulley, the fixing plate of balancing point and balancing point assembly, described part of ajusting is positioned at below conveyer belt table top, described driven by motor belt pulley of ajusting rotates, belt pulley is being provided with many groups side by side in the described conveyer belt direction of motion, it is connected with a watt seat above described belt pulley, watt seat other end is provided with gear, described gear is cased with balancing point assembly, each balancing point assembly is equipped with the gear of correspondence and engages successively, the rotation of other identical gears around gear driven, described balancing point assembly includes balancing point axle and the balancing point being installed in axle, described balancing point axle is fixed on the fixing plate of balancing point, described motor of ajusting passes through the rotation of driven gear thus driving balancing point to rotate,
Described go out core part include nuclear power machine, go out core spiral and hopper, described in go out core spiral and be connected with discharge bucket, described in go out core driven by motor and go out core spiral rotating, described in go out core spiral and connect core mouth;
Described monolayer brush element includes the second motor, hairbrush, support, and described hairbrush is fixed in frame by support, and described second driven by motor hairbrush rotates.
2. half machine is cut in a kind of location enucleation according to claim 1, it is characterised in that being additionally provided with stripper between described hold(ing)-down clip and location-plate, described stripper is connected on knife plate by the alignment pin at its two ends.
CN201521035424.8U 2015-12-10 2015-12-10 Denucleate and cut half machine in location Active CN205284917U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201521035424.8U CN205284917U (en) 2015-12-10 2015-12-10 Denucleate and cut half machine in location

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201521035424.8U CN205284917U (en) 2015-12-10 2015-12-10 Denucleate and cut half machine in location

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106333372A (en) * 2016-08-23 2017-01-18 沈阳东之昕智能科技有限公司 Image identification-based kernel removal assembly line robot for kernel-type fruits
CN114916679A (en) * 2022-03-29 2022-08-19 轻工业杭州机电设计研究院有限公司 Drawing type continuous automatic half-cutting and half-cutting stoning machine

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106333372A (en) * 2016-08-23 2017-01-18 沈阳东之昕智能科技有限公司 Image identification-based kernel removal assembly line robot for kernel-type fruits
CN106333372B (en) * 2016-08-23 2018-05-22 沈阳东之昕智能科技有限公司 A kind of core class fruit based on image identification digs core pipeline machine people
CN114916679A (en) * 2022-03-29 2022-08-19 轻工业杭州机电设计研究院有限公司 Drawing type continuous automatic half-cutting and half-cutting stoning machine

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