CN205628062U - Rice sheller - Google Patents

Rice sheller Download PDF

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Publication number
CN205628062U
CN205628062U CN201620365347.0U CN201620365347U CN205628062U CN 205628062 U CN205628062 U CN 205628062U CN 201620365347 U CN201620365347 U CN 201620365347U CN 205628062 U CN205628062 U CN 205628062U
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CN
China
Prior art keywords
shelling
air
district
feed
cinder notch
Prior art date
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
CN201620365347.0U
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Chinese (zh)
Inventor
夏召和
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.)
GUIZHOU XINGREN JUFENG COIX Co Ltd
Original Assignee
GUIZHOU XINGREN JUFENG COIX Co Ltd
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Priority to CN201620365347.0U priority Critical patent/CN205628062U/en
Application granted granted Critical
Publication of CN205628062U publication Critical patent/CN205628062U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model discloses a rice sheller, it includes organism and air -blast device, be provided with the feeder hopper on the organism and arrange the cinder notch, the air -blast device sets up on the organism, and the air -out end position of air -blast device is inside the organism, inside first baffle and the second baffle of being provided with of organism, first baffle transversely sets up, the second baffle vertically sets up, be first shelling district between the discharge end of first baffle and feeder hopper, region between the second baffle is held with the air -blast device air -out is the wind -force accelerating region, region between the second baffle and the first row of cinder notch feed end is the disengagement zone, the inside shale shaker that is provided with in disengagement zone, region between shale shaker and the second row cinder notch feed end is distinguished for the second shelling. The utility model discloses an it is clean to aim at providing a paddy husking, and after the shelling, the corn shell can not mix with clean corn, seldom has the rice sheller that corn is pulverized by hulling device.

Description

A kind of rice sheller
Technical field
This utility model belongs to grain processing equipment technical field, is specifically related to a kind of rice sheller.
Background technology
Oryza glutinosa, as topmost cereal crops, is requisite food source people's every day, and existing Oryza glutinosa is all machined to meter Yi Hou and sells, or delivers to be then sent through user's hands after processing stand is processed by corn batch In.Oryza glutinosa gathers in return can't directly eat from farmland, will process through peeling.In living like us The rice eaten, after on rice seedlings, harvesting is returned, rice pellets surface also has one layer of crust, crust be removed The rear rice just usually eaten to us.Oryza glutinosa just can carry out decortication process through drying after collecting, existing Flourishing at machinery, existing special decortication machine, the corn dried is poured into machine through the feeding cylinder of machine, Oryza glutinosa rolling through machine, makes seed coat come off, and completes the decortication of Oryza glutinosa, it is possible to obtain the rice that can eat Paddy.
Rolling compared to original craft or husk rice with mortar and pestle by hand, the use of machine saves human and material resources, improves Work efficiency.But more existing decortication machines due to go out during buying rice rice uneven cause peel do not do The problems such as clean or Oryza glutinosa pulverizes, corn from stripping machine (or claiming thresher) out after, be usually associated with Peel sordid Oryza glutinosa, and the Oryza glutinosa granule being grinded up, can increase follow-up corn intractability and Cause economic loss.
Utility model content
For above-mentioned weak point of the prior art, the purpose of this utility model is intended to provide a kind of Oryza glutinosa Shelling is clean, and after shelling, rice hulls will not mix with clean Oryza glutinosa, seldom has Oryza glutinosa by hulling device The rice sheller pulverized.
In order to solve above-mentioned technical problem, this utility model is achieved through the following technical solutions: a kind of rice Paddy hulling machine, it includes body and air-blast device, described body is provided with feed hopper and slag-drip opening, described Slag-drip opening includes first row cinder notch and second row cinder notch, and described air-blast device is arranged on body, air-blast device Outlet air end be positioned at internal body;Described internal body is provided with the first dividing plate and second partition, and described first Dividing plate horizontally set, described second partition is longitudinally disposed, between described first dividing plate and the discharge end of feed hopper Being the first shelling district, the region between second partition and air-blast device outlet air end is wind-force accelerating region, described Region between two dividing plates and first row cinder notch feed end is Disengagement zone, and described Disengagement zone is internally provided with vibration Sieve, the region between described vibrosieve and second row cinder notch feed end is the second shelling district.
Preferably, described first shelling district is internally provided with the first shelling roller, and described first shelling roller sets Being equipped with spiral guide bar and shelling groove, described spiral guide bar is arranged near the discharge end of feed hopper, described de- The end of shell groove is arcuate structure.
Preferably, described first dividing plate being provided with feed opening, the feed end of feed opening is positioned at the first shelling Inside district, the discharge end of described feed opening is positioned at inside Disengagement zone, and the feed end of described feed opening is near shelling Groove is arranged.
Preferably, the air intake of described Disengagement zone is corresponding with the outlet air end of wind-force accelerating region, going out of Disengagement zone Wind end is corresponding with the feed end of first row cinder notch.
Preferably, described second shelling district is internally provided with aggregate bin and the second shelling roller, described aggregate bin Feed end be positioned at below vibrosieve, the discharge end of described aggregate bin is provided with cloth tube, described cloth tube Discharge end is positioned at above the second shelling roller, and the cross section of described cloth tube is alveolate texture, and described second takes off The outlet air end in shell district is corresponding with the feed end of first row cinder notch, and the air intake in described second shelling district adds with wind-force The outlet air end in speed district is corresponding, is additionally provided with second row cinder notch and product outlet inside described second shelling district, the The feed end of the two slag-drip openings outlet air end near the second shelling district is arranged, and described product outlet is near the second shelling The air intake in district is arranged, and the air intake in described second shelling district is additionally provided with air distribution plate.
Preferably, described wind-force accelerating region is internally provided with wind-force accelerator.
Preferably, described air-blast device includes rotating shaft, Fan casing, blade and discharge pipe, described rotating shaft one End is positioned at inside Fan casing, is positioned at the roller end within Fan casing and is provided with blade, entering of described discharge pipe Wind end is connected with Fan casing, and the outlet air end of described discharge pipe is corresponding with the air intake of wind-force accelerating region.
Operation principle of the present utility model is: operationally, it would be desirable to the Oryza glutinosa of shelling is positioned in feed hopper Portion, needs the Oryza glutinosa of shelling to enter inside the first shelling district from the discharge end of feed hopper, and the first shelling roller rotates, The Oryza glutinosa needing shelling is once shelled in shelling groove, owing to Oryza glutinosa is being taken off by the first shelling roller There will be Oryza glutinosa during shell and run the phenomenon of material, spiral guide bar then pushes the Oryza glutinosa running material to the groove that shells, and makes The Oryza glutinosa needing shelling realizes shelling to greatest extent inside the first shelling district, through the first shelling roller shelling After Oryza glutinosa enter Disengagement zone from discharging opening;Drop down onto vibrosieve from the discharge end of discharging opening Oryza glutinosa out, Oryza glutinosa is in dropping process, and wind-force accelerating region air-flow out carries out primary screening to Oryza glutinosa, and air-flow is by Oryza glutinosa In Oryza glutinosa skin discharge from first row cinder notch, Oryza glutinosa carries out secondary together with heavier foreign material on the vibrating Screening, Oryza glutinosa is being carried out in screening process by vibrosieve, and the Oryza glutinosa skin of the non-emptying of primary screening can be in vibrosieve Jolting under be less easily entrained by from first row cinder notch discharge;Vibrosieve carries out three screenings, Jing Guosan to Oryza glutinosa The Oryza glutinosa of secondary screening enters in aggregate bin, is delivered to inside the second shelling district by cloth tube, due to collection flitch Cross section be alveolate texture arrange, Oryza glutinosa by cloth tube when, in tiny direct current shape, it is simple to Air-flow carries out four screenings to Oryza glutinosa, and at air-flow in four screening processes of Oryza glutinosa, a part of Oryza glutinosa skin passes through First row cinder notch is discharged, and another part Oryza glutinosa skin is discharged by second row cinder notch, and Oryza glutinosa is entered by the second shelling roller Row secondary shells, and after secondary shelling, Oryza glutinosa realizes shelling completely, and finished product is discharged from product outlet.
Being disposed to of wind-force accelerator guarantees to enter Disengagement zone and second shelling current rate within district Arrival realizes Oryza glutinosa and separates with Oryza glutinosa skin.
Accompanying drawing explanation
Fig. 1 is this utility model structural representation.
Detailed description of the invention
As it is shown in figure 1, a kind of rice sheller, it includes body 1 and air-blast device, on described body 1 Being provided with feed hopper 2 and slag-drip opening, described slag-drip opening includes first row cinder notch 3 and second row cinder notch 20, institute Stating air-blast device to be arranged on body 1, it is internal that the outlet air end of air-blast device is positioned at body 1;Described body 1 It is internally provided with the first dividing plate 4 and second partition 5, described first dividing plate 4 horizontally set, described second partition 5 is longitudinally disposed, is the first shelling district 6 between described first dividing plate 4 and the discharge end of feed hopper 2, second every Region between plate 5 and air-blast device outlet air end is wind-force accelerating region 7, described second partition 5 and the first deslagging Region between mouthful 3 feed ends is Disengagement zone 8, and described Disengagement zone 8 is internally provided with vibrosieve 9, described in shake Region between dynamic sieve 9 and second row cinder notch 20 feed end is the second shelling district 10;Described first shelling district 6 It is internally provided with the first shelling roller 11, described first shelling roller 11 is provided with spiral guide bar 12 and shelling Groove 13, described spiral guide bar 12 is arranged near the discharge end of feed hopper 2, the end of described shelling groove 13 For arcuate structure;Being provided with feed opening 14 on described first dividing plate 4, the feed end of feed opening 14 is positioned at first Shelling district 6 is internal, and it is internal that the discharge end of described feed opening 14 is positioned at Disengagement zone 8, described feed opening 14 Feed end is arranged near shelling groove 13;The air intake of described Disengagement zone 8 and the outlet air end pair of wind-force accelerating region 7 Should, the outlet air end of Disengagement zone 8 is corresponding with the feed end of first row cinder notch 3;Described second shelling district 10 is internal Being provided with aggregate bin 16 and the second shelling roller 18, the feed end of described aggregate bin 16 is positioned at below vibrosieve 9, The discharge end of described aggregate bin 16 is provided with cloth tube 17, and the discharge end of described cloth tube 17 is positioned at second and takes off Above shell roller 18, the cross section of described cloth tube 17 is alveolate texture, and described second shelling district 10 goes out Wind end is corresponding with the feed end of first row cinder notch 3, the air intake in described second shelling district 10 and wind-force accelerating region The outlet air end of 7 is corresponding, and described second shelling district 10 is internal is additionally provided with second row cinder notch 20 and product outlet 19, the feed end of second row cinder notch 20 outlet air end near the second shelling district 10 is arranged, described product outlet 19 air intakes near the second shelling district 10 are arranged, and the air intake in described second shelling district 10 is additionally provided with cloth Aerofoil 21;Described wind-force accelerating region 7 is internally provided with wind-force accelerator 15;Described air-blast device includes turning Axle 24, Fan casing 22, blade 23 and discharge pipe 25, it is internal that described rotating shaft 24 one end is positioned at Fan casing 22, It is positioned at rotating shaft 24 end within Fan casing 22 and is provided with blade 23, the air intake of described discharge pipe 25 and wind Casing 22 connects, and the outlet air end of described discharge pipe 25 is corresponding with the air intake of wind-force accelerating region 7.

Claims (7)

1. a rice sheller, it is characterised in that include body and air-blast device, described body sets Being equipped with feed hopper and slag-drip opening, described slag-drip opening includes first row cinder notch and second row cinder notch, and described air blast fills Installing and be placed on body, the outlet air end of air-blast device is positioned at internal body;Described internal body is provided with first Dividing plate and second partition, described first dividing plate horizontally set, described second partition is longitudinally disposed, and described first It is the first shelling district between dividing plate and the discharge end of feed hopper, between second partition and air-blast device outlet air end Region is wind-force accelerating region, and the region between described second partition and first row cinder notch feed end is Disengagement zone, Described Disengagement zone is internally provided with vibrosieve, and the region between described vibrosieve and second row cinder notch feed end is Second shelling district.
A kind of rice sheller the most according to claim 1, it is characterised in that described first shelling District is internally provided with the first shelling roller, and described first shelling roller is provided with spiral guide bar and shelling groove, institute Stating spiral guide bar and arrange near the discharge end of feed hopper, the end of described shelling groove is arcuate structure.
A kind of rice sheller the most according to claim 1 and 2, it is characterised in that described first Being provided with feed opening on dividing plate, the feed end of feed opening is positioned at inside the first shelling district, going out of described feed opening Material end is positioned at inside Disengagement zone, and the feed end of described feed opening is arranged near shelling groove.
A kind of rice sheller the most according to claim 1, it is characterised in that described Disengagement zone Air intake is corresponding with the outlet air end of wind-force accelerating region, the outlet air end of Disengagement zone and the feed end pair of first row cinder notch Should.
A kind of rice sheller the most according to claim 1, it is characterised in that described second shelling District is internally provided with aggregate bin and the second shelling roller, and the feed end of described aggregate bin is positioned at below vibrosieve, institute The discharge end stating aggregate bin is provided with cloth tube, and the discharge end of described cloth tube is positioned at above the second shelling roller, The cross section of described cloth tube is alveolate texture, the outlet air end in described second shelling district and first row cinder notch Feed end is corresponding, and the air intake in described second shelling district is corresponding with the outlet air end of wind-force accelerating region, and described second Shelling is additionally provided with second row cinder notch and product outlet inside district, and the feed end of second row cinder notch takes off near second The outlet air end in shell district is arranged, and the described product outlet air intake near the second shelling district is arranged, and described second takes off The air intake in shell district is additionally provided with air distribution plate.
A kind of rice sheller the most according to claim 1, it is characterised in that described wind-force accelerates District is internally provided with wind-force accelerator.
A kind of rice sheller the most according to claim 1, it is characterised in that described air-blast device Including rotating shaft, Fan casing, blade and discharge pipe, described rotating shaft one end is positioned at inside Fan casing, is positioned at blower fan Roller end within shell is provided with blade, and the air intake of described discharge pipe is connected with Fan casing, described air-out The outlet air end of pipe is corresponding with the air intake of wind-force accelerating region.
CN201620365347.0U 2016-04-27 2016-04-27 Rice sheller Expired - Fee Related CN205628062U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201620365347.0U CN205628062U (en) 2016-04-27 2016-04-27 Rice sheller

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201620365347.0U CN205628062U (en) 2016-04-27 2016-04-27 Rice sheller

Publications (1)

Publication Number Publication Date
CN205628062U true CN205628062U (en) 2016-10-12

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201620365347.0U Expired - Fee Related CN205628062U (en) 2016-04-27 2016-04-27 Rice sheller

Country Status (1)

Country Link
CN (1) CN205628062U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107262192A (en) * 2017-07-27 2017-10-20 苏州蓝碧农产品发展有限公司 A kind of grain processing peeling cleaning integration apparatus
CN108970677A (en) * 2018-09-03 2018-12-11 绩溪袁稻农业产业科技有限公司 A kind of dust protection rice sheller

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107262192A (en) * 2017-07-27 2017-10-20 苏州蓝碧农产品发展有限公司 A kind of grain processing peeling cleaning integration apparatus
CN108970677A (en) * 2018-09-03 2018-12-11 绩溪袁稻农业产业科技有限公司 A kind of dust protection rice sheller

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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: 20161012

Termination date: 20180427