CN104704947A - Deep rotary tillage mechanism of subsoiling machine - Google Patents

Deep rotary tillage mechanism of subsoiling machine Download PDF

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Publication number
CN104704947A
CN104704947A CN201510100907.XA CN201510100907A CN104704947A CN 104704947 A CN104704947 A CN 104704947A CN 201510100907 A CN201510100907 A CN 201510100907A CN 104704947 A CN104704947 A CN 104704947A
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CN
China
Prior art keywords
bearing
transmission shaft
power transmission
groove ball
deep groove
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Pending
Application number
CN201510100907.XA
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Chinese (zh)
Inventor
李阳铭
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.)
GUANGXI WUFENG MACHINERY CO., LTD.
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李阳铭
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Application filed by 李阳铭 filed Critical 李阳铭
Priority to CN201510100907.XA priority Critical patent/CN104704947A/en
Publication of CN104704947A publication Critical patent/CN104704947A/en
Pending legal-status Critical Current

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Abstract

The invention discloses a deep rotary tillage mechanism of a subsoiling machine. The deep rotary tillage mechanism of the subsoiling machine comprises a box, a driving structure, a plurality of transmission structures and a plurality of drill bits. Each transmission structure comprises a transmission shaft and is connected with the corresponding drill bit. The driving structure is installed on the box and can drive one transmission shaft to rotate, the rest transmission shafts can be driven to rotate by rotation of the transmission shaft, and therefore the corresponding drill bits are made to rotate. Each transmission structure further comprises at least one bearing seat, at least one deep groove ball bearing and at least one bearing cover, wherein the deep groove ball bearing is installed on the bearing seat and arranged on the corresponding transmission shaft in a sleeving mode, the bearing seat and the bearing cover are fixed and are located at the inner side and the outer side of the box respectively, and therefore the corresponding transmission shaft is fixed to the box. According to the deep rotary tillage mechanism of the subsoiling machine, each transmission shaft is sleeved with the corresponding deep groove ball bearing, then, the bending moment of the transmission shafts during rotation is reduced, the stability of the transmission shafts during rotation is improved, and therefore the deep rotary tillage efficiency of the drill bits is improved.

Description

Song Gengjifen ridge mechanism
Technical field
The present invention relates to a kind of farm machinery, particularly relate to a kind of Song Gengjifen ridge mechanism with drive mechanism.
Background technology
Traditional deep ploughing subsoiling operation is ploughed, beats, harrows, and not only requires great effort, and complex procedures, efficiency are low.Therefore, for the large-area soil needing pine to plough, utilize traditional mode cannot adapt to, for this reason, occurred the Song Gengji of a lot of automation.
Be in the patent document of 2011.2.16, disclose a kind of rotatably processing powder ridge multi-functional mechanical as be 201010270614.3 applyings date at application number being 2010.9.3 authorized announcement date, specifically disclose with tractor is rely on, add after tractor and interlock turnery drill bit device, hydraulic mechanism and connecting rod are installed, this hydraulic mechanism drive link, thus drive described turnery drill bit rotational, be easy to during this turnery drill bit rotational swing, unstable, thus affect powder ridge effect and the efficiency of this turnery drill bit.
Summary of the invention
In view of above content, be necessary to provide a kind of structure simple and the Song Gengjifen ridge mechanism of slow-roll stabilization.
A kind of Song Gengjifen ridge mechanism, include casing, drives structure, some drive mechanisms and some drill bits, each drive mechanism includes power transmission shaft, and be connected with each drill bit, described drives structure is arranged on described casing, and a wherein drive axis can be driven, a described wherein drive axis can drive remaining drive axis, thus rotate corresponding drill bit, each drive mechanism also includes at least one bearing block, at least one deep groove ball bearing and at least one bearing cap, described at least one deep groove ball bearing is arranged on described at least one bearing block, and be enclosed within described power transmission shaft, described at least one bearing block and described at least one bearing cap are fixed, and lay respectively at the inside and outside both sides of described casing, thus the power transmission shaft of correspondence is fixed on described casing.
Further, each drive mechanism also includes travelling gear, described at least one bearing block, at least one deep groove ball bearing and at least one bearing cap be enclosed within corresponding power transmission shaft and is two, deep groove ball bearing described in two is arranged on bearing block described in two respectively, and laying respectively at the both sides of described travelling gear, bearing cap described in two and described diaxon bearing are fixed respectively.
Further, each drive mechanism also includes two adjusting sleeves and two adjustment pads, described two adjusting sleeves are enclosed within described power transmission shaft respectively, and respectively near deep groove ball bearing described in two, described two adjustment pads are installed between described diaxon bearing and described two bearings lid respectively.
Further, each drill bit includes adpting flange, and each drive mechanism also includes mounting flange, and described mounting flange is arranged on corresponding power transmission shaft, and fixes with corresponding adpting flange.
Further, each drill bit also includes drilling rod, helical blade and drill body, and described adpting flange is positioned at described drilling rod one end, and described drill body is positioned at the other one end of described drilling rod, and described helical blade is located at the periphery of described drilling rod.
Further, the central shaft of each drive mechanism overlaps with the central shaft of each drill bit.
Compared with prior art, in above-mentioned Song Gengjifen ridge mechanism, on power transmission shaft, cover has deep groove ball bearing, thus reduces the moment of flexure of described power transmission shaft when rotating, and improves stability during drive axis, thus improves the powder ridge efficiency of drill bit.
Accompanying drawing explanation
Fig. 1 is a three-dimensional assembly diagram of a better embodiment of Song Gengjifen ridge mechanism of the present invention.
Fig. 2 is another visual angle figure of Song Gengjifen ridge mechanism in Fig. 1.
Fig. 3 is that in Fig. 2, Song Gengjifen ridge mechanism, along a cutaway view in III-III direction, does not wherein show casing.
Main element symbol description
Song Gengjifen ridge mechanism 100
Casing 10
Drives structure 20
Drive mechanism 30
Drill bit 40
Header board 11
Door-plate 111
Top board 12
Base plate 13
Power transmission shaft 31
Travelling gear 32
Bearing block 33
Deep groove ball bearing 34
Bearing cap 35
Adjusting sleeve 36
Adjustment pad 37
Mounting flange 38
Adpting flange 41
Drilling rod 42
Helical blade 43
Drill body 44
Neck 411
Through hole 421
Central shaft 50
Following embodiment will further illustrate the present invention in conjunction with above-mentioned accompanying drawing.
Embodiment
Refer to Fig. 1, in a better embodiment of the present invention, a Song Gengjifen ridge mechanism 100 includes casing 10, drives structure 20, some drive mechanisms 30 and some drill bits 40.Described Song Gengjifen ridge mechanism 100 in order to plantation various crop, as paddy rice, corn, sugarcane, soybean etc., soil carry out powder ridge.The quantity of described some drive mechanisms 30 is suitable with the quantity of described some drill bits 40.
Please also refer to Fig. 2 and Fig. 3, described casing 10 is enclosed housing, and on header board 11, be provided with some openable door-plates 111, with keeping in repair described Song Gengjifen ridge mechanism 100 for staff or monitoring etc.Described casing 10 also includes top board 12 and a base plate 13.Described top board 12 is parallel to each other with described base plate 13, and connects described header board 11 respectively.
Described drives structure 20 includes a CD-ROM drive motor and a speed changer.Described CD-ROM drive motor is arranged on speed changer, and described speed changer is arranged on the top board 12 of casing 10, and the output of described CD-ROM drive motor is connected with the input of described speed changer, and the output of described speed changer is connected with a wherein drive mechanism 30.
Please continue to refer to Fig. 1 and Fig. 3, described some drive mechanisms 30 have identical structure, and are arranged on respectively on described casing 10.Each drive mechanism 30 includes power transmission shaft 31, travelling gear 32, diaxon bearing 33, two deep groove ball bearing 34, two bearings lid 35, two adjusting sleeve 36, two adjustment pad 37 and a mounting flange 38.Described power transmission shaft 31 part is positioned at described casing 10, and part stretches out described base plate 13.Described travelling gear 32 is enclosed within described power transmission shaft 31, and near the center of described power transmission shaft 31.Adjacent travelling gear 32 engages each other, in order to transfer motion power.This travelling gear 32 can be spur gear, cylindric spiral gear or cylinder herringbone bear etc.Described power transmission shaft 31, described travelling gear 32, described diaxon bearing 33, described two deep groove ball bearings 34, described two bearings lid 35, described two adjusting sleeves 36, described two adjustment pads 37 and described mounting flange 38 all have identical central shaft 50.
Described two deep groove ball bearings 34 are arranged in described diaxon bearing 33 respectively, and are enclosed within respectively on described power transmission shaft 31.Described two deep groove ball bearings 34 lay respectively at the both sides of described travelling gear 32, and can rotate relative to described diaxon bearing 33 together with described power transmission shaft 31, to reduce the moment of flexure of described power transmission shaft 31.Described diaxon bearing 33 is respectively against the inner side of described top board 12 and described base plate 13.Described two bearings lid 35 lays respectively at the outside of described top board 12 and described base plate 13, and is fixed with described diaxon bearing 33 respectively by the mode that screw locks, thus described power transmission shaft 31 rotation is fixed on described casing 10.Described two adjusting sleeves 36 are enclosed within described power transmission shaft 31 respectively, and respectively near described two deep groove ball bearings 34, to adjust the gap of two deep groove ball bearings 34.In addition, each adjusting sleeve 36 is between each deep groove ball bearing 34 and described travelling gear 32.Further, for reducing the gap of described two deep groove ball bearings 34, described two adjustment pads 37 are arranged between described diaxon bearing 33 and described two bearings lid 35 respectively.Described mounting flange 38 is arranged on the lower end of described power transmission shaft 31, and is positioned at the below of described base plate 13, in order to connect corresponding drill bit 40.
Refer to Fig. 1 and Fig. 2, described some drill bits 40 have identical structure, and include adpting flange 41, drilling rod 42, helical blade 43 and a drill body 44 respectively.Described adpting flange 41 is connected with described mounting flange 38, and by conventional fixed form, the mode as screw locking or welding is fixed together.In the present embodiment, the mode that described adpting flange 41 is locked by screw and described mounting flange 38 are fixed together, thus can described adpting flange 41 for convenience detach, to repair or replace described drill bit 40.Described adpting flange 41 is also extended with one downwards in order to connect the neck 411 of described drilling rod 42.In embodiments of the present invention, the external diameter of described neck 411 is less than the external diameter of described adpting flange 41, and internal diameter is greater than the external diameter of described drilling rod 42.
Described drilling rod 42 is a strip, and its one end is fixed by described neck 411 and described adpting flange 41, and the other end is connected with described drill body 44.In embodiments of the present invention, described drilling rod 42 and described adpting flange 41 and described drill body 44 integrally welded or one-body molded.Described drilling rod 42 is arranged to hollow, to hold agrochemical.Described drilling rod 42 offers some through holes 421, flows out outside described drilling rod 42 with for described insecticide.In the embodiment that the present invention is other, described drilling rod 42 also can be designed as solid, to strengthen the intensity of described drilling rod 42.Described drilling rod 42 is cylinder, installs described helical blade 43 to facilitate.In other embodiment, described drilling rod 42 can be cuboid, hexagon cylinder or dodecagon cylinder etc.
Described drill body 44 makes described Song Gengjifen ridge mechanism 100 easily go deep into earth, and its shape can be triangle, cross etc.Plough process pine, described drill body 44 can make the orlop of earth scratch one aqua storage tank, for water storage, makes crops more drought resisting.
Described helical blade 43 is arranged on the periphery of described drilling rod 42, and is fixed on described drilling rod 42 by modes such as welding or screw lockings.The lower end of described helical blade 43, near described drill body 44, is followed described drill body 44 enter earth to be facilitated.In the present embodiment, the central shaft of described drive mechanism 30 overlaps with the central shaft of described drill bit 40, thus makes described drill bit 40 have identical rotating speed with corresponding drive mechanism 30, does not have energy loss.
Plough process pine, owing to using above-mentioned deep groove ball bearing 34, moment of flexure when described power transmission shaft 31 rotates reduces, thus improves the stability of drill bit 40, and powder ridge efficiency is improved, and this structure is simple, deep groove ball bearing 34 is cheap in addition, can be cost-saving.

Claims (10)

1. a Song Gengjifen ridge mechanism, include casing, drives structure, some drive mechanisms and some drill bits, each drive mechanism includes power transmission shaft, and be connected with each drill bit, described drives structure is arranged on described casing, and a wherein drive axis can be driven, a described wherein drive axis can drive remaining drive axis, thus rotate corresponding drill bit, it is characterized in that: each drive mechanism also includes at least one bearing block, at least one deep groove ball bearing and at least one bearing cap, described at least one deep groove ball bearing is arranged on described at least one bearing block, and be enclosed within described power transmission shaft, described at least one bearing block and described at least one bearing cap are fixed, and lay respectively at the inside and outside both sides of described casing, thus the power transmission shaft of correspondence is fixed on described casing.
2. Song Gengjifen ridge mechanism as claimed in claim 1, it is characterized in that: each drive mechanism also includes travelling gear, described at least one bearing block, at least one deep groove ball bearing and at least one bearing cap be enclosed within corresponding power transmission shaft and is two, deep groove ball bearing described in two is arranged on bearing block described in two respectively, and laying respectively at the both sides of described travelling gear, bearing cap described in two and described diaxon bearing are fixed respectively.
3. Song Gengjifen ridge mechanism as claimed in claim 2, it is characterized in that: each drive mechanism also includes two adjusting sleeves and two adjustment pads, described two adjusting sleeves are enclosed within described power transmission shaft respectively, and respectively near deep groove ball bearing described in two, described two adjustment pads are installed between described diaxon bearing and described two bearings lid respectively.
4. Song Gengjifen ridge mechanism as claimed in claim 1, it is characterized in that: each drill bit includes adpting flange, each drive mechanism also includes mounting flange, and described mounting flange is arranged on corresponding power transmission shaft, and fixes with corresponding adpting flange.
5. Song Gengjifen ridge mechanism as claimed in claim 4, it is characterized in that: each drill bit also includes drilling rod, helical blade and drill body, described adpting flange is positioned at described drilling rod one end, described drill body is positioned at the other one end of described drilling rod, and described helical blade is located at the periphery of described drilling rod.
6. Song Gengjifen ridge mechanism as claimed in claim 1, is characterized in that: the central shaft of each drive mechanism overlaps with the central shaft of each drill bit.
7. a drive mechanism, be applied in Song Gengjifen ridge mechanism according to claim 1, and include power transmission shaft, it is characterized in that: described drive mechanism also includes at least one bearing block, at least one deep groove ball bearing and at least one bearing cap, described at least one deep groove ball bearing is arranged on described at least one bearing block, and be enclosed within described power transmission shaft, described at least one bearing block and described at least one bearing cap are fixed, and the inside and outside both sides of the casing of described Song Gengjifen ridge mechanism can be laid respectively at, thus described drive axis is fixed on described casing.
8. drive mechanism as claimed in claim 7, it is characterized in that: described drive mechanism also includes the travelling gear be enclosed within described power transmission shaft, described at least one bearing block, at least one deep groove ball bearing and at least one bearing cap and is two, deep groove ball bearing described in two is arranged on bearing block described in two respectively, and laying respectively at the both sides of described travelling gear, bearing cap described in two and described diaxon bearing are fixed respectively.
9. drive mechanism as claimed in claim 8, it is characterized in that: described drive mechanism also includes two adjusting sleeves and two adjustment pads, described two adjusting sleeves are enclosed within described power transmission shaft respectively, and respectively near deep groove ball bearing described in two, described two adjustment pads are installed between described diaxon bearing and described two bearings lid respectively.
10. drive mechanism as claimed in claim 7, it is characterized in that: described drive mechanism also includes mounting flange, described mounting flange is arranged on described power transmission shaft, and can be connected with the drill bit structure of described Song Gengjifen ridge mechanism.
CN201510100907.XA 2015-03-06 2015-03-06 Deep rotary tillage mechanism of subsoiling machine Pending CN104704947A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201510100907.XA CN104704947A (en) 2015-03-06 2015-03-06 Deep rotary tillage mechanism of subsoiling machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201510100907.XA CN104704947A (en) 2015-03-06 2015-03-06 Deep rotary tillage mechanism of subsoiling machine

Publications (1)

Publication Number Publication Date
CN104704947A true CN104704947A (en) 2015-06-17

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201510100907.XA Pending CN104704947A (en) 2015-03-06 2015-03-06 Deep rotary tillage mechanism of subsoiling machine

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Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4018289A (en) * 1974-01-10 1977-04-19 Lely Ary Van Der Soil cultivating tines
US4213504A (en) * 1977-11-07 1980-07-22 Schneider Fred A Rotary, hand-held apparatus for performing various soil working operations
CN1820562A (en) * 2006-03-17 2006-08-23 王本平 Soil loosener for planting Chinese yam
CN102518643A (en) * 2011-12-22 2012-06-27 江阴大地装备股份有限公司 Driving shaft device
CN103659596A (en) * 2012-09-20 2014-03-26 苏州赫瑞特电子专用设备科技有限公司 Lifting rotating driving device for upper polishing heads of polishing machine
CN103782677A (en) * 2014-02-17 2014-05-14 衢州市煜鑫农产品加工技术开发有限公司 Traction soil loosening machine tool
CN204810829U (en) * 2015-03-06 2015-12-02 李阳铭 Song gengji powder ridge mechanism

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4018289A (en) * 1974-01-10 1977-04-19 Lely Ary Van Der Soil cultivating tines
US4213504A (en) * 1977-11-07 1980-07-22 Schneider Fred A Rotary, hand-held apparatus for performing various soil working operations
CN1820562A (en) * 2006-03-17 2006-08-23 王本平 Soil loosener for planting Chinese yam
CN102518643A (en) * 2011-12-22 2012-06-27 江阴大地装备股份有限公司 Driving shaft device
CN103659596A (en) * 2012-09-20 2014-03-26 苏州赫瑞特电子专用设备科技有限公司 Lifting rotating driving device for upper polishing heads of polishing machine
CN103782677A (en) * 2014-02-17 2014-05-14 衢州市煜鑫农产品加工技术开发有限公司 Traction soil loosening machine tool
CN204810829U (en) * 2015-03-06 2015-12-02 李阳铭 Song gengji powder ridge mechanism

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Effective date of registration: 20160519

Address after: 537500 Rongxian County Economic Development Zone, the Guangxi Zhuang Autonomous Region Industrial Road, No. 87 (Guangxi Feng Machinery Co., Ltd.) five

Applicant after: GUANGXI WUFENG MACHINERY CO., LTD.

Address before: Yuzhou District People's road 537000 the Guangxi Zhuang Autonomous Region Yulin City No. 398

Applicant before: Li Yangming

RJ01 Rejection of invention patent application after publication

Application publication date: 20150617

RJ01 Rejection of invention patent application after publication