CN203764535U - Vibrating-type fruit-vegetable grading machine - Google Patents

Vibrating-type fruit-vegetable grading machine Download PDF

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Publication number
CN203764535U
CN203764535U CN201420192911.4U CN201420192911U CN203764535U CN 203764535 U CN203764535 U CN 203764535U CN 201420192911 U CN201420192911 U CN 201420192911U CN 203764535 U CN203764535 U CN 203764535U
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CN
China
Prior art keywords
vibrating
screen cloth
pair
type fruit
screen
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201420192911.4U
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Chinese (zh)
Inventor
刘香
吴正祥
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Yangzhou Flourish Fruit and Vegetable Juice Machine Co Ltd
Original Assignee
Yangzhou Flourish Fruit and Vegetable Juice Machine Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
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Application filed by Yangzhou Flourish Fruit and Vegetable Juice Machine Co Ltd filed Critical Yangzhou Flourish Fruit and Vegetable Juice Machine Co Ltd
Priority to CN201420192911.4U priority Critical patent/CN203764535U/en
Application granted granted Critical
Publication of CN203764535U publication Critical patent/CN203764535U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

The utility model relates to a vibrating-type fruit-vegetable grading machine, and provides a vibrating-type fruit-vegetable grading machine which is safe, sanitary, high in production efficiency and capable of adjusting the grade of fruits and vegetables according to the reality. The vibrating-type fruit-vegetable grading machine comprises a grading mechanism and a hoisting conveying mechanism, wherein the hoisting conveying mechanism is arranged on one side of the grading mechanism, the grading mechanism comprises a support, a collection mechanism, a vibrating mechanism and a screen assembly, the vibrating mechanism is arranged on the support, the screen assembly is arranged on the vibrating mechanism, the vibrating mechanism comprises a vibrating base, a vibrating connecting piece and a pair of vibrating motors, the vibrating base is arranged on the support, the pair of vibrating motors are arranged on the vibrating base, the vibrating connecting piece is arranged on the vibrating base, the screen assembly comprises a screen fixing seat and a plurality of groups of screens which are arranged on the screen fixing seat, and each group of screens comprises at least two crossbars, a pair of screen side plates and a plurality of longitudinal bars. The vibrating-type fruit-vegetable grading machine is safe, sanitary, high in production efficiency and capable of realizing the automatic operation.

Description

Oscillatory type fruit and vegetable classifier
Technical field
The utility model relates to agricultrue sideline production processing machinery field, relates in particular to the plant equipment of fruits and vegetables classification.
Background technology
The classification of the fruits and vegetables such as current fruit, vegetables generally completes by some simple classification process equipments or by manual grading skill, make the classification of these fruits and vegetables not meticulous, working (machining) efficiency is low, easily makes fruit and vegetable materials be subject to damage in various degree, affects the sales situation of product.Manual grading skill also easily causes secondary pollution in process simultaneously, harm food security.
Utility model content
The utility model, for above problem, provides a kind of safety and sanitation, and production efficiency is high, can be according to the oscillatory type fruit and vegetable classifier of practical adjustments fruits and vegetables grade.
The technical solution of the utility model is: comprise classification mechanism and elevating conveyor structure, described elevating conveyor structure is positioned at described classification mechanism one side, classification mechanism comprises support, collecting mechanism, vibrating mechanism and screen assemblies, described vibrating mechanism is located on described support, and described screen assemblies is located on described vibrating mechanism;
Described vibrating mechanism involving vibrations base, vibration connector and a pair of vibrating motor, described vibrating base is located on described support, and described a pair of vibrating motor is located on described vibrating base, and described vibration connector is located on described vibrating base;
Described screen assemblies comprises screen cloth holder and some screen clothes being mounted on described screen cloth holder, and described screen cloth holder is located on described vibration connector and is fixedly connected on described vibrating base;
Described in every group, screen cloth comprises at least two cross bars, a pair of screen cloth side plate and some vertical poles, described a pair of screen cloth side plate is located on described screen cloth holder, the two ends of described cross bar are located on described a pair of screen cloth side plate, above described cross bar and bottom surface is equipped with some positions groove one to one, and described vertical pole is located on adjacent two described cross bars.
Described vertical pole one end is located in the groove above of described cross bar, the other end is located in the groove of bottom surface of adjacent described cross bar.
Described vertical pole tilt in level side and incline direction consistent with feedstock direction.
Also comprise collecting mechanism, described collecting mechanism comprises tail material-falling hopper, some material-falling hoppers and some supply lines, and described material-falling hopper is placed in described screen cloth below, and described supply line is located at described material-falling hopper below, and described tail material-falling hopper is located at described screen assemblies end.
Described material-falling hopper, described supply line and described screen cloth are corresponding one by one.
Described elevating conveyor structure comprises conveyer belt, feed hopper and pair of side plates, and described pair of side plates is fixedly located at described conveyer belt both sides, and described feed hopper is located at described conveyer belt lower end.
The utility model is transported to fruits and vegetables by elevating conveyor structure on the screen assemblies of classification mechanism, by vibrating mechanism, fruits and vegetables classification is on one side travelled forward on one side, falls the screen cloth of next grade.Because vertical pole one end is located in the groove above of cross bar, the other end is located in the groove of bottom surface of adjacent crossbars, make vertical pole be skewed, guarantee that the fruits and vegetables by previous graded region can not move backward because of vibration, contrary with feedstock direction.And vertical pole energy flexible modulation on screen cloth, by controlling the spacing of every group of screen cloth upper vertical bar, realizes the classification of the flexibility to fruits and vegetables.For improving the operating efficiency of conditioning equipment, each screen cloth is done as a whole, only needs to make the screen cloth of many group different brackets, if will regulate the grade of fruits and vegetables, by one or more groups screen cloth integral replacing.The utility model safety and sanitation, production efficiency is high, can regulate according to demand fruits and vegetables grade, by collecting mechanism, the fruits and vegetables that classification is good is sent into next process, realizes automated job.
Brief description of the drawings
Fig. 1 is structural representation of the present utility model,
Fig. 2 is the top view of Fig. 1,
Fig. 3 is the structural representation of screen cloth in Fig. 2,
Fig. 4 is the upward view of Fig. 3,
Fig. 5 is local enlarged diagram in Fig. 2,
Fig. 6 is the utility model classification charging schematic flow sheet one,
Fig. 7 is the utility model classification charging schematic flow sheet two;
In figure, 1 is elevating conveyor structure, the 11st, and conveyer bridge, the 12nd, conveyer belt, 13 side plates, the 14th, feed hopper, the 15th, charging aperture, the 2nd, classification mechanism, the 21st, screen assemblies, the 211st, screen cloth holder, the 212nd, screen cloth, the 2121st, cross bar, the 21211st, groove, the 2122nd, vertical pole, the 2123rd, screen cloth side plate, the 22nd, vibrating mechanism, the 221st, vibrating base, the 222nd, vibration connector, the 223rd, vibrating motor, the 224th, damping spring, the 23rd, collecting mechanism, the 231st, material-falling hopper, 232 pipelines, the 233rd, tail material-falling hopper, the 24th, support.
Detailed description of the invention
The utility model, as shown in Fig. 1-7, comprises classification mechanism 2 and portable elevating conveyor structure 1, and described elevating conveyor structure 1 is positioned at described classification mechanism 2 one sides;
Described elevating conveyor structure 1 comprises conveyer bridge 11, conveyer belt 12, feed hopper 14, charging aperture 15 and pair of side plates 13, described conveyer belt 12 is located on described conveyer bridge 11, described pair of side plates 13 is fixedly located at described conveyer belt 12 both sides, described feed hopper 14 is located at described conveyer belt 12 lower ends, can once load more fruits and vegetables, 12 of described conveyer belts need successively be carried fruits and vegetables, can reduce material loading number of times, reduce labour intensity, can prevent that fruits and vegetables from dropping in lifting course of conveying simultaneously, described charging aperture 15 is located at described conveyer belt 12 tops, and be placed in described classification mechanism 2 tops.
Described classification mechanism 2 comprises support 24, collecting mechanism 23, vibrating mechanism 22 and screen assemblies 21, described vibrating mechanism 22 is located on described support 24, described screen assemblies 21 is located on described vibrating mechanism 22, described vibrating mechanism 22 involving vibrations bases 221, vibration connector 222 and a pair of vibrating motor 223, described vibrating base 221 is located on described support 24, described a pair of vibrating motor 223 is located on described vibrating base 221 and is positioned at the initial end of feedstock direction, and described vibration connector 222 is located on described vibrating base 221.
Described vibrating base 221 and described support 24 junctions are provided with damping spring 224, the injury of the vibration producing for reducing described a pair of vibrating motor 223 to described support 24.
Described screen assemblies 21 comprises screen cloth holder 211 and some screen clothes 212 being mounted on described screen cloth holder 211, and described screen cloth holder 211 is located on described vibration connector 222 and is fixedly connected on described vibrating base 221;
Described in every group, screen cloth 212 comprises at least two cross bars 2121, a pair of screen cloth side plate 2123 and some vertical poles 2122, described a pair of screen cloth side plate 2123 is located on described screen cloth holder 211, the two ends of described cross bar 2121 are located on described a pair of screen cloth side plate 2123, above described cross bar 2121 and bottom surface is equipped with some positions groove 21211 one to one, described vertical pole 2122 is located on adjacent two described cross bars 2121, and one end is located in the groove 21211 above of described cross bar 2121, the other end is located in the groove 21211 of bottom surface of adjacent described cross bar 2121, described vertical pole 2122 is tilted in level side, and incline direction is consistent with feedstock direction, on feedstock direction, the feed end of described vertical pole 2122 is lower than discharge end, by regulating the spacing between described vertical pole 2122, for distinguishing the fruits and vegetables of different sizes, thereby can adapt to flexibly different hierarchical levels, spacing between described vertical pole 2121 increases successively on feedstock direction.
Described collecting mechanism 23 comprises tail material-falling hopper 233, some material-falling hoppers 231 and some supply lines 232, described material-falling hopper 231, described supply line 232 and described screen cloth 212 are corresponding one by one, described material-falling hopper 231 is placed in described screen cloth 212 belows, described supply line 232 is located at described material-falling hopper 231 belows, described tail material-falling hopper 233 is located at described screen assemblies 21 ends, for collecting through described screen cloth 212 but do not fall into the fruits and vegetables of described material-falling hopper 231.

Claims (6)

1. oscillatory type fruit and vegetable classifier, comprise classification mechanism and elevating conveyor structure, described elevating conveyor structure is positioned at described classification mechanism one side, it is characterized in that, classification mechanism comprises support, collecting mechanism, vibrating mechanism and screen assemblies, described vibrating mechanism is located on described support, and described screen assemblies is located on described vibrating mechanism;
Described vibrating mechanism involving vibrations base, vibration connector and a pair of vibrating motor, described vibrating base is located on described support, and described a pair of vibrating motor is located on described vibrating base, and described vibration connector is located on described vibrating base;
Described screen assemblies comprises screen cloth holder and some screen clothes being mounted on described screen cloth holder, and described screen cloth holder is located on described vibration connector and is fixedly connected on described vibrating base;
Described in every group, screen cloth comprises at least two cross bars, a pair of screen cloth side plate and some vertical poles, described a pair of screen cloth side plate is located on described screen cloth holder, the two ends of described cross bar are located on described a pair of screen cloth side plate, above described cross bar and bottom surface is equipped with some positions groove one to one, and described vertical pole is located on adjacent two described cross bars.
2. oscillatory type fruit and vegetable classifier according to claim 1, is characterized in that, described vertical pole one end is located in the groove above of described cross bar, the other end is located in the groove of bottom surface of adjacent described cross bar.
3. oscillatory type fruit and vegetable classifier according to claim 2, is characterized in that, described vertical pole tilt in level side and incline direction consistent with feedstock direction.
4. oscillatory type fruit and vegetable classifier according to claim 1, it is characterized in that, also comprise collecting mechanism, described collecting mechanism comprises tail material-falling hopper, some material-falling hoppers and some supply lines, described material-falling hopper is placed in described screen cloth below, described supply line is located at described material-falling hopper below, and described tail material-falling hopper is located at described screen assemblies end.
5. oscillatory type fruit and vegetable classifier according to claim 4, is characterized in that, described material-falling hopper, described supply line and described screen cloth are corresponding one by one.
6. oscillatory type fruit and vegetable classifier according to claim 1, is characterized in that, described elevating conveyor structure comprises conveyer belt, feed hopper and pair of side plates, and described pair of side plates is fixedly located at described conveyer belt both sides, and described feed hopper is located at described conveyer belt lower end.
CN201420192911.4U 2014-04-18 2014-04-18 Vibrating-type fruit-vegetable grading machine Expired - Fee Related CN203764535U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201420192911.4U CN203764535U (en) 2014-04-18 2014-04-18 Vibrating-type fruit-vegetable grading machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201420192911.4U CN203764535U (en) 2014-04-18 2014-04-18 Vibrating-type fruit-vegetable grading machine

Publications (1)

Publication Number Publication Date
CN203764535U true CN203764535U (en) 2014-08-13

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105964561A (en) * 2016-07-12 2016-09-28 扬州福尔喜果蔬汁机械有限公司 Sorting machine and sorting method thereof
CN107008638A (en) * 2017-05-12 2017-08-04 巢湖学院 A kind of vegetables and fruits vibration separation device

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105964561A (en) * 2016-07-12 2016-09-28 扬州福尔喜果蔬汁机械有限公司 Sorting machine and sorting method thereof
CN107008638A (en) * 2017-05-12 2017-08-04 巢湖学院 A kind of vegetables and fruits vibration separation device

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GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20140813

Termination date: 20160418