CN205305583U - Initiative earthing mechanism - Google Patents
Initiative earthing mechanism Download PDFInfo
- Publication number
- CN205305583U CN205305583U CN201620063278.8U CN201620063278U CN205305583U CN 205305583 U CN205305583 U CN 205305583U CN 201620063278 U CN201620063278 U CN 201620063278U CN 205305583 U CN205305583 U CN 205305583U
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- support arm
- axle
- rotation
- sleeve pipe
- coulter
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Abstract
The utility model discloses an initiative earthing mechanism, including being fixed in the actuating mechanism who spreads membrane machine frame axis of rotation and be used for driving the axis of rotation, the both ends of axis of rotation symmetry respectively are equipped with coulter mechanism, the support arm sleeve pipe that coulter mechanism located the outer just one end of axis of rotation and rotated case lateral wall fixed connection including the cover, the support arm sheathed tube other end is fixed with the transmission case, is fixed with on the transmission case to be located axis of rotation below and the coulter axle parallel rotatable with the axis of rotation, and the coulter axle is connected with the axis of rotation transmission, the epaxial still cover of coulter intrinsically is located the coulter rotor that the transmission case is close to the membrane machine of spreading frame center one side. This initiative earthing mechanism, actuating mechanism drive the axis of rotation, and the axis of rotation drives the coulter axle and the coulter rotor rotates, realize the initiative earthing to the film, this initiative earthing mechanism, and the rotatory coulter rotor of taking the initiative rotates soon, and big, high height is measured to the soil of digging, can satisfy various arable land upper berths membrane earthing requirements such as convex alley.
Description
Technical field
This utility model relates to a kind of casing mechanism, particularly relates to a kind of actively casing mechanism.
Background technology
The casing mechanism of existing film-laying machine mostly adopts disc plough, disc plough is mainly when film-laying machine walks operation, rub and rolls forward with earth's surface, the cultivated soil inside disc plough is rotated shipper pole to the both sides of the edge of the thin film completed by rolling process, and then compacting thin film. this kind of casing mechanism, disc plough passively rotates with the walking of film-laying machine, rotary speed is slow, the soil amount dug because of rotation is few, highly low, it still can complete plastic film mulch earthing requirement on smooth arable land, but on convex alley, carry out plastic film mulch operation, particularly higher at alley, when thin film only covers the middle part on inclined-plane, alley both sides, earthing difficulty is very big, and for slipping soil phenomenon after preventing earthing because of the impact of rainwater, earthing amount generally also requires bigger, the casing mechanism of disc plough cannot meet the earthing requirement of above convex alley, another when running into viscous wet soil earth, due to soil poor fluidity, viscosity is big, passive disc plough rotates difficulty, plastic film mulch job requirements cannot be met, so, in the south that China is rainy, current plastic film mulch operation is also entirely dependence manual work.
Summary of the invention
The purpose of this utility model is in that to provide a kind of actively casing mechanism.
For realizing the purpose of this utility model, now describe its technical scheme in detail: a kind of actively casing mechanism, including film-laying machine frame and be fixed on the rotating box in frame, the rotation axle vertical with film-laying machine frame direction of travel is fastened in described rotating box, film-laying machine frame is additionally provided with and rotates, for driving, the driving mechanism that axle rotates, the two ends of rotation axle are respectively symmetrically and are provided with colter mechanism, described colter mechanism includes being sheathed on outside rotation axle and one end and fixes the support arm sleeve pipe being connected with rotating box sidewall, the other end of support arm sleeve pipe is fixed with transmission case, transmission case is fixed with and is positioned at below rotation axle and rotating coulter shaft parallel with rotating axle, coulter shaft is connected with rotating through-drive, described coulter shaft is also overlapped and intrinsic is positioned at the transmission case colter rotor near film-laying machine frame central side.
Further, support arm sleeve pipe includes the first support arm sleeve pipe and one end and the first support arm sleeve pipe is socketed and the second support arm sleeve pipe of being locked by regulation locking device, the free end of the first support arm sleeve pipe and the second support arm sleeve pipe respectively with rotating box, transmission case is fixing to be connected, rotate axle to include fastening rotating short axle and being symmetrically set in the two adjustment axis mechanisms rotating short axle two ends in rotating box, described adjustment axis mechanism includes and rotates spline housing and the splined shaft that short axle is coaxially disposed, spline housing one end is fixing with rotation stud ends to be connected, splined shaft one end is arranged in spline housing and matches with spline housing, it is positioned on the splined shaft outside spline housing to overlap intrinsic outer shroud and the fixing bearing of the second support arm sleeve pipe.This setting, regulate regulation locking device, mobile second support arm sleeve pipe and splined shaft, regulate the first support arm sleeve pipe and the relative position of the second support arm sleeve pipe, splined shaft and spline housing, and then adjust support arm sleeve pipe and rotate the overall length of axle, realize the adjustment of both sides colter rotor spacing, so that this active casing mechanism is suitable for the alley of different in width.
Further, transmission case is provided with the soil deflector covered on colter rotor on the sidewall of film-laying machine frame central. The soil guiding inner side that colter rotor can be dug by soil deflector, concentrates and falls within thin film both sides of the edge, it is to avoid the soil that colter rotor is dug is scattered everywhere, and earthing is not tight.
Further, coulter shaft overlaps intrinsic corresponding the second drive sprocket of transmission case and position and the first drive sprocket of being positioned on axle respectively with rotating, the first drive sprocket and a sheathed driving-chain jointly on the second drive sprocket. This drive mechanism is simple, and is arranged at transmission case and can avoid in earthing process, and the soil dug splashes and blocks to the first drive sprocket, the second drive sprocket or driving-chain, causes device damage, and earthing lost efficacy.
This utility model is casing mechanism actively, driving mechanism drives and rotates axle, rotating axle drives coulter shaft and colter rotor to rotate, realize the active earthing to thin film, this is casing mechanism actively, the colter rotor of active rotation rotates fast, the soil amount dug greatly, highly high, plastic film mulch earthing requirement on the various arable lands such as convex alley can be met.
Accompanying drawing explanation
Fig. 1 is the main TV structure schematic diagram of this utility model actively casing mechanism;
Fig. 2 is the plan structure schematic diagram rotating axle and colter mechanism of this utility model actively casing mechanism;
Fig. 3 is Fig. 2 structural representation of half-twist counterclockwise after line A-A section.
Detailed description of the invention
Below in conjunction with accompanying drawing, the detailed description of the invention of this utility model actively casing mechanism is described in detail:
As shown in Figure 1 to Figure 3, this utility model is casing mechanism actively, including film-laying machine frame 10 and be fixed on the rotating box 1 in frame 10, the rotation axle 2 vertical with film-laying machine frame 10 direction of travel is fastened in described rotating box 1, film-laying machine frame 10 is additionally provided with and rotates, for driving, the driving mechanism 3 that axle 2 rotates, the two ends of rotation axle 2 are respectively symmetrically and are provided with colter mechanism 4, described colter mechanism 4 includes being sheathed on outside rotation axle 2 and one end and fixes, with rotating box 1 sidewall, the support arm sleeve pipe 41 being connected, the other end of support arm sleeve pipe 41 is fixed with transmission case 42, transmission case 42 is fixed with and is positioned at below rotation axle 2 and rotating coulter shaft 43 parallel with rotating axle 2, coulter shaft 43 is in transmission connection with rotating axle 2, described coulter shaft 43 is also overlapped and intrinsic is positioned at the transmission case 42 colter rotor 47 near side, film-laying machine frame 10 center. support arm sleeve pipe 41 includes the first support arm sleeve pipe 411, and one end and the first support arm sleeve pipe 411 are socketed and pass through the second support arm sleeve pipe 412 that regulation locking device 413 locks, the free end of the first support arm sleeve pipe 411 and the second support arm sleeve pipe 412 respectively with rotating box 1, transmission case 42 is fixing to be connected, rotate axle 2 to include fastening rotating short axle 21 and being symmetrically set in the two adjustment axis mechanisms 22 rotating short axle 21 two ends in rotating box 1, described adjustment axis mechanism 22 includes and rotates spline housing 221 and the splined shaft 222 that short axle 21 is coaxially disposed, spline housing 221 one end is fixing with short axle 21 end of rotation to be connected, splined shaft 222 one end is arranged in spline housing 221 and matches with spline housing 221, it is positioned on the splined shaft 222 outside spline housing 221 to overlap intrinsic outer shroud and the fixing bearing 223 of the second support arm sleeve pipe 412.Transmission case 42 is provided with the soil deflector 48 covered on colter rotor 47 on the sidewall of film-laying machine frame central. Coulter shaft 43 intrinsic is positioned at corresponding the second drive sprocket 44 and the first drive sprocket 45 of transmission case 42 and position with rotating to overlap respectively on axle 2, a sheathed driving-chain 46 jointly on the first drive sprocket 45 and the second drive sprocket 44.
This utility model is casing mechanism actively, driving mechanism 3 drives and rotates axle 2, rotating axle 2 drives coulter shaft 43 and colter rotor 47 to rotate, realize the active earthing to thin film, this is casing mechanism actively, the colter rotor 47 of active rotation dig soil amount greatly, highly high, plastic film mulch earthing requirement on the various arable lands such as convex alley can be met.
This utility model is casing mechanism actively, for adapting to the alley of different in width, preferably, support arm sleeve pipe 41 includes the first support arm sleeve pipe 411, and one end and the first support arm sleeve pipe 411 are socketed and pass through the second support arm sleeve pipe 412 that regulation locking device 413 locks, the free end of the first support arm sleeve pipe 411 and the second support arm sleeve pipe 412 respectively with rotating box 1, transmission case 42 is fixing to be connected, rotate axle 2 to include fastening rotating short axle 21 and being symmetrically set in the two adjustment axis mechanisms 22 rotating short axle 21 two ends in rotating box 1, described adjustment axis mechanism 22 includes and rotates spline housing 221 and the splined shaft 222 that short axle 21 is coaxially disposed, spline housing 221 one end is fixing with short axle 21 end of rotation to be connected, splined shaft 222 one end is arranged in spline housing 221 and matches with spline housing 221, it is positioned on the splined shaft 222 outside spline housing 221 to overlap intrinsic outer shroud and the fixing bearing 223 of the second support arm sleeve pipe 412, thin film both sides of the edge are fallen within for making the soil that colter rotor 47 is dug concentrate, the soil that colter rotor 47 is dug is avoided to be scattered everywhere, earthing is not tight, it is preferred that, transmission case 42 is provided with the soil deflector 48 covered on colter rotor 47 on the sidewall of film-laying machine frame central, for making drive mechanism simple, and avoid in earthing process, the soil dug splashes and blocks to first drive sprocket the 45, second drive sprocket 44 or driving-chain 46, cause device damage, earthing lost efficacy, it is preferred that coulter shaft 43 intrinsic is positioned at corresponding the second drive sprocket 44 and the first drive sprocket 45 of transmission case 42 and position with rotating to overlap respectively on axle 2, a sheathed driving-chain 46 jointly on the first drive sprocket 45 and the second drive sprocket 44.
This utility model is casing mechanism actively, the assembly of rotating box 1 and rotation axle 2 can directly adopt the clutch of driving mechanism 3, namely now rotating box 1 is clutch box, rotating axle 2 is clutch shaft, can also adopting and set an independent engagement type positive clutch in rotating box 1, now rotating box 1 is clutch shaft; The cross section of first support arm sleeve pipe the 411, second support arm sleeve pipe 412, spline housing 221 and splined shaft 222 can be circular, it is also possible to is square or hexagon.
Claims (4)
1. an active casing mechanism, it is characterized in that: include film-laying machine frame and the rotating box being fixed in frame, the rotation axle vertical with film-laying machine frame direction of travel is fastened in described rotating box, film-laying machine frame is additionally provided with and rotates, for driving, the driving mechanism that axle rotates, the two ends of rotation axle are respectively symmetrically and are provided with colter mechanism, described colter mechanism includes being sheathed on outside rotation axle and one end and fixes the support arm sleeve pipe being connected with rotating box sidewall, the other end of support arm sleeve pipe is fixed with transmission case, transmission case is fixed with and is positioned at below rotation axle and rotating coulter shaft parallel with rotating axle, coulter shaft is connected with rotating through-drive, described coulter shaft is also overlapped and intrinsic is positioned at the transmission case colter rotor near film-laying machine frame central side.
2. active casing mechanism according to claim 1, it is characterized in that: support arm sleeve pipe includes the first support arm sleeve pipe and one end and the first support arm sleeve pipe is socketed and the second support arm sleeve pipe of being locked by regulation locking device, the free end of the first support arm sleeve pipe and the second support arm sleeve pipe respectively with rotating box, transmission case is fixing to be connected, rotate axle to include fastening rotating short axle and being symmetrically set in the two adjustment axis mechanisms rotating short axle two ends in rotating box, described adjustment axis mechanism includes and rotates spline housing and the splined shaft that short axle is coaxially disposed, spline housing one end is fixing with rotation stud ends to be connected, splined shaft one end is arranged in spline housing and matches with spline housing, it is positioned on the splined shaft outside spline housing to overlap intrinsic outer shroud and the fixing bearing of the second support arm sleeve pipe.
3. active casing mechanism according to claim 1, it is characterised in that: transmission case is provided with the soil deflector covered on colter rotor on the sidewall of film-laying machine frame central.
4. active casing mechanism according to claim 1, it is characterized in that: coulter shaft overlaps intrinsic corresponding the second drive sprocket of transmission case and position and the first drive sprocket of being positioned on axle respectively with rotating, the first drive sprocket and a sheathed driving-chain jointly on the second drive sprocket.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201620063278.8U CN205305583U (en) | 2016-01-22 | 2016-01-22 | Initiative earthing mechanism |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201620063278.8U CN205305583U (en) | 2016-01-22 | 2016-01-22 | Initiative earthing mechanism |
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CN205305583U true CN205305583U (en) | 2016-06-15 |
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CN201620063278.8U Active CN205305583U (en) | 2016-01-22 | 2016-01-22 | Initiative earthing mechanism |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111742670A (en) * | 2020-07-10 | 2020-10-09 | 福建永顺机械有限公司 | Combined machine for ditching, fertilizing and earthing |
-
2016
- 2016-01-22 CN CN201620063278.8U patent/CN205305583U/en active Active
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111742670A (en) * | 2020-07-10 | 2020-10-09 | 福建永顺机械有限公司 | Combined machine for ditching, fertilizing and earthing |
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