CN216313795U - Ridging banking machine for cohesive soil - Google Patents

Ridging banking machine for cohesive soil Download PDF

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Publication number
CN216313795U
CN216313795U CN202122544456.2U CN202122544456U CN216313795U CN 216313795 U CN216313795 U CN 216313795U CN 202122544456 U CN202122544456 U CN 202122544456U CN 216313795 U CN216313795 U CN 216313795U
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China
Prior art keywords
ridging
soil
power
baffle
hiller
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CN202122544456.2U
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Inventor
俞国红
郑航
薛向磊
金昊炫
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Zhejiang Academy of Agricultural Sciences
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Zhejiang Academy of Agricultural Sciences
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Abstract

The utility model discloses a ridging banking machine for cohesive soil, which comprises: a frame; the holding part is arranged at the upper part of the rack; the power device is arranged at the upper part of the frame and is used for providing walking and working power; the ridging and ridging device comprises a spiral disc blade set, and the spiral disc blade set is arranged at a first output end of the power device; the soil baffle device is arranged behind the ridging and ridging device; and the soil compacting and shaping device is arranged at the second output end of the power device. The utility model solves the technical problems that the existing ridging hiller is difficult to control the soil throwing flow direction under the condition of cohesive soil operation, so that the damage to the seedling leaves is caused, the ditching ridge surface molding is poor, and the hilling operation effect is poor.

Description

Ridging banking machine for cohesive soil
Technical Field
The application relates to the technical field of agricultural machinery, in particular to a ridging hiller for cohesive soil.
Background
Ridging and earthing up are operation procedures which are extremely important in field management of agricultural production of a plurality of crops, and one of production links with the greatest labor intensity, ridging can adjust soil moisture, enhance soil air permeability, accelerate soil nutrient conversion, improve soil temperature, and eradicate field weeds; for high-stalk crops such as corn, sugarcane, taro and the like, the lodging resistance of the stalks can be enhanced through ridging, and the yield and the quality are improved, so that various ridging machines are available.
In the process of implementing the utility model, the inventor finds that at least the following problems exist in the prior art:
some existing ridging hillers can complete weeding and hilling operations, but have poor hilling and soil breaking capabilities and are only suitable for sandy soil in the north; the other ridging hillers can work under the condition of cohesive soil, but the throwing flow direction of the soil is not easy to control, so that the damage to the seedling leaves is caused, the ditching ridge surface molding is poor, and the hilling operation effect is poor.
SUMMERY OF THE UTILITY MODEL
The purpose of the embodiment of the application is to provide a cohesive soil ridging banking machine to solve the technical problem that the ridging banking machine that exists among the prior art spills the difficult control of flow direction and causes the damage to the seedling blade under the cohesive soil operating condition to soil.
According to a first aspect of embodiments of the present application, there is provided a cohesive soil ridging hiller, comprising:
a frame;
the holding part is arranged at the upper part of the rack;
the power device is arranged at the upper part of the frame and is used for providing walking and working power;
the ridging and ridging device comprises a spiral disc blade set, and the spiral disc blade set is arranged at a first output end of the power device;
the soil baffle device is arranged behind the ridging and ridging device; and
and the soil compacting and shaping device is arranged at the second output end of the power device.
Further, characterized in that the power unit comprises:
an engine; and
and the input end of the gear box is connected with the output end of the engine.
Further, the gearbox includes:
the power input shaft is in transmission connection with the output end of the engine;
the first power output shaft is in transmission connection with the power input shaft through a first gear set; and
and the second power output shaft is in transmission connection with the power input shaft through a second gear set.
Further, the spiral disc blade group comprises a pair of spiral disc blades which are symmetrically arranged on the left and right of the first output end of the power device.
Further, earth baffle device includes first baffle, first baffle is arranged the rear of ridging hiller device, be fixed with the second baffle that extends to the outside rear on the first baffle.
Furthermore, the second baffle plate comprises a first sub baffle plate and a second sub baffle plate, the first sub baffle plate is vertically fixed on the first baffle plate, and the second sub baffle plate is fixed on the first sub baffle plate and arranged towards the rear of the outer side.
Furthermore, earth baffle device still includes fixed regulation structure, the one end of fixed regulation structure is fixed on the first baffle, the other end of fixed regulation structure is fixed power device or in the frame.
Further, the fixing adjustment structure includes:
the adjusting piece is fixed on the power device or the rack and is provided with a plurality of adjusting positions;
the first hinge support lug is arranged on the adjusting position;
one end of the connecting piece is connected with the first hinge support lug; and
and the second hinge support lug is fixed at the rear part of the first baffle plate and is connected with the other end of the connecting piece.
Furthermore, the soil compacting and shaping device comprises a soil compacting roller and a shaping wheel, and the input ends of the soil compacting roller and the shaping wheel are connected with the second output end of the power device.
Further, the soil compacting roller comprises a roller and a plurality of ribs fixed on the circumference of the roller.
The technical scheme provided by the embodiment of the application can have the following beneficial effects:
according to the embodiment, the cohesive soil ridging and hilling machine is driven by the power device to work, the cohesive soil is discharged from two sides of the spiral disc blade by the spiral disc blade group in the ridging and hilling device, the soil is pushed to two sides of the ridge surface by the soil baffle device, and finally the soil on the ridge surface is compacted and shaped by the soil compacting and shaping device, so that the intertillage throwing flow direction can be controlled during ridging and hilling of the cohesive soil, and the ridge surface is well formed and the hilling height meets the requirement; in addition, the operator can hold the ridging banking machine by the holding part for operation, and the operation is convenient and fast and is not laborious; the ridging hiller is simple and compact in structure, convenient to detach and replace parts, and has the advantages of being reasonable in design, good in machining and assembling process and the like.
It is to be understood that both the foregoing general description and the following detailed description are exemplary and explanatory only and are not restrictive of the application.
Drawings
The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate embodiments consistent with the present application and together with the description, serve to explain the principles of the application.
Fig. 1 is a schematic structural diagram of a clay-ridging hiller according to an exemplary embodiment.
FIG. 2 is a schematic diagram illustrating the construction of a power plant according to an exemplary embodiment.
Fig. 3 is a schematic structural view illustrating a ridging hilling apparatus according to an exemplary embodiment.
FIG. 4 is a schematic view of a soil baffle device according to an exemplary embodiment.
Fig. 5 is a schematic structural view of a soil compacting and shaping apparatus according to an exemplary embodiment.
FIG. 6 is a schematic illustration of a shaping wheel shape shown in accordance with an exemplary embodiment.
The reference numerals in the figures include:
100. a frame; 200. a grip portion; 300. a power plant; 310. an engine; 311. a third power take-off shaft; 320. a gear case; 321. a power input shaft; 322. a first power take-off shaft; 323. a second power take-off shaft; 400. a ridging and ridging device; 410. a spiral disc blade set; 411. a spiral disk blade; 500. a soil baffle device; 510. a first baffle plate; 520. a second baffle; 521. a first sub-baffle; 522. a second sub-baffle; 530. fixing the adjusting structure; 531. an adjustment member; 532. adjusting the position; 533. a first hinge lug; 534. a connecting member; 535. a second hinge lug; 540. a pin shaft; 600. a soil compacting and shaping device; 610. a soil compacting roller; 620. and (7) shaping wheels.
Detailed Description
Reference will now be made in detail to the exemplary embodiments, examples of which are illustrated in the accompanying drawings. When the following description refers to the accompanying drawings, like numbers in different drawings represent the same or similar elements unless otherwise indicated. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with the present application. Rather, they are merely examples of apparatus and methods consistent with certain aspects of the present application, as detailed in the appended claims.
The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the application. As used in this application and the appended claims, the singular forms "a", "an", and "the" are intended to include the plural forms as well, unless the context clearly indicates otherwise. It should also be understood that the term "and/or" as used herein refers to and encompasses any and all possible combinations of one or more of the associated listed items.
It is to be understood that although the terms first, second, third, etc. may be used herein to describe various information, such information should not be limited to these terms. These terms are only used to distinguish one type of information from another. For example, first information may also be referred to as second information, and similarly, second information may also be referred to as first information, without departing from the scope of the present application. The word "if" as used herein may be interpreted as "at … …" or "when … …" or "in response to a determination", depending on the context.
Fig. 1 is a schematic structural view illustrating a cohesive soil ridging banking machine according to an exemplary embodiment, as shown in fig. 1, the ridging banking machine may include a frame 100, a holding portion 200, a power device 300, a ridging banking device 400, a soil blocking device 500, and a soil compacting and shaping device 600, the holding portion 200 being disposed at an upper portion of the frame 100; the power device 300 is installed at the upper part of the frame 100 and is used for providing walking and working power; the ridging and hilling device 400 comprises a spiral disc blade set 410, wherein the spiral disc blade set 410 is installed at a first output end of the power device 300; the soil baffle device 500 is arranged behind the ridging and hilling device 400; the soil compacting and shaping device 600 is installed at a second output end of the power device 300.
According to the embodiment, the power device 300 is used for driving the cohesive soil ridging and hilling machine to work, the spiral disc blade set 410 in the ridging and hilling device 400 discharges cohesive soil from two sides of the spiral disc blade 411, the soil is pushed to two sides of the ridge surface through the soil baffle device 500, and finally the soil on the ridge surface is compacted and shaped through the soil compacting and shaping device 600, so that the ridging and hilling of the cohesive soil can be carried out, the intertillage throwing flow direction can be controlled, the ridge surface is shaped, and the hilling height meets the requirement; in addition, the operator can hold the ridging banking machine by the holding part 200 for operation, and the operation is convenient and fast and is not laborious; the ridging hiller is simple and compact in structure, convenient to detach and replace parts, and has the advantages of being reasonable in design, good in machining and assembling process and the like.
In one embodiment, the holding part 200 is installed at the upper part of the frame 100, the power device 300 is installed below the holding part 200, and the ridging and ridging device 400, the soil blocking device 500 and the soil compacting and shaping device 600 are sequentially installed below the power device 300 from front to back. Soil is slowly discharged to the two sides of the machine through the hilling device, the discharged soil is covered around the crop roots and stems by matching with the soil baffle device 500 at the back, and finally the soil covered around the crop roots and stems is compacted by the soil compacting and shaping device 600, so that the hilling operation effect is achieved.
Specifically, as shown in fig. 2, the power device 300 includes an engine 310 and a gear box 320, an input end of the gear box 320 is connected to an output end of the engine 310, in this embodiment, the engine 310 is a gasoline engine 310, and an output end of the gasoline engine 310 outputs power through a third power output shaft 311.
Specifically, the gearbox 320 includes a power input shaft 321, a first power output shaft 322 and a second power output shaft 323, wherein the power input shaft 321 is in transmission connection with the output end of the engine 310; the first power output shaft 322 is connected with the power input shaft 321 through a first gear set; the second power output shaft 323 is connected to the power input shaft 321 via a second gear set.
Specifically, the power input shaft 321 is in transmission connection with the third power output shaft 311, in a specific implementation, the power input shaft 321 and the third power output shaft 311 may be in transmission connection through a belt transmission, a chain transmission or a gear transmission, and in this embodiment, the power input shaft 321 and the third power output shaft 311 are in transmission connection through a belt.
Specifically, the first gear set may include four gears sequentially engaged with each other, the power input shaft 321 is disposed on the first gear, and the first power output shaft 322 is disposed on the last gear; the second gear set may include four gears sequentially engaged with each other, the power input shaft 321 being disposed on the first gear, and the second power output shaft 323 being disposed on the last gear. The above is only an example of two gear sets, and the number of gears and the number of teeth (or gear ratio) between the gears in a specific gear set can be set according to the actual situation, and the setting is a conventional means in the field.
In an embodiment, the first gear of the first gear set and the first gear of the second gear set are two gears arranged in parallel, at this time, a first power input shaft 321 and a second power input shaft 321 are respectively arranged on the two gears, and the first power input shaft 321 and the second power input shaft 321 receive the power transmitted by the third power output shaft 311 and respectively transmit the power to the first power output shaft 322 and the second power output shaft 323.
In another embodiment, the first gear of the first gear set and the first gear of the second gear set are also provided as the same gear, and the power input shaft 321 receives the power transmitted by the engine 310 through the third power output shaft 311 and transmits the power to the first power input shaft 321 and the second power input shaft 321 through the first gear set and the second gear set, respectively.
Specifically, as shown in fig. 3, the spiral disc blade set 410 includes a pair of spiral disc blades 411 symmetrically installed on the left and right of the first output end of the power device 300, and the spiral disc blades 411 include two intersecting disc blades, in an embodiment, the spiral disc blade set 410 is installed on the first power output shaft 322, the first power output shaft 322 may be a hexagonal shaft, the left and right sides of the first power output shaft 322 are respectively provided with shaft sleeves in clearance fit with the first power output shaft 322, and the pair of spiral disc blades 411 are respectively fixed on the shaft sleeves on the two sides by welding; the spiral disc blades 411 on both sides are driven to rotate by the first power output shaft 322, so that clay is cut up and slowly discharged from both sides of the blades, and soil and weeds between furrows can be removed.
In specific implementation, parameters such as blade length and diameter of the spiral disc blade 411 can be determined according to the ridging width and the ridging height of the ridging operation required so as to meet the agricultural operation requirement of ditching and ridging.
Specifically, as shown in fig. 4, the soil barrier device 500 includes a first barrier 510, the first barrier 510 is disposed behind the ridging and hilling device 400, and a second barrier 520 extending outward and rearward is fixed to the first barrier 510; in a specific implementation, the first baffle 510 may be a flat plate or an arc plate, the first baffle 510 and the second baffle 520 may be made of any hard material, the soil baffle device 500 may be hinged to the power device 300 or the frame 100 through the first baffle 510 or the second baffle 520, the first baffle 510 is used to prevent soil discharged by the spiral disc blade set 410 from being thrown backwards, the second baffle 520 is used to push soil discharged by the spiral disc blade set 410 to around roots of crops, and in addition, resistance of the baffles in bulldozing can be reduced.
Specifically, the second baffle plate 520 includes a first sub-baffle plate 521 and a second sub-baffle plate 522, the first sub-baffle plate 521 is vertically fixed on the first baffle plate 510, and the second sub-baffle plate 522 is fixed on the first sub-baffle plate 521 and is arranged towards the rear of the outer side; in a specific implementation, the shape of the first sub-barrier 521 and the second sub-barrier 522 may be any shape, the material of the first sub-barrier 521 and the second sub-barrier 522 may be any hard material, the first sub-barrier 521 is used to connect the first barrier 510 and the second sub-barrier 522, and the second sub-barrier 522 is used to block soil discharged by the spiral disc blade set 410 to the surrounding of crop rhizomes and reduce resistance of the barriers when the soil is pushed.
In an embodiment, the first baffle plate 510 is an arc steel plate, the first sub-baffle plate 521 and the second sub-baffle plate 522 are flat steel plates, two sides of the first sub-baffle plate 521 are fixedly connected with the first baffle plate 510 and the second sub-baffle plate 522 respectively by welding, an arc coinciding with the first baffle plate 510 is arranged on one side of the first sub-baffle plate 521 connected with the first baffle plate 510, and the upper end of the first sub-baffle plate 521 is hinged to the gear box 320 by a pin shaft 540. It should be noted that the above is only an example of the hinge connection between the soil guard device 500 and the frame 100 or the power device 300, and the specific hinge connection can be set according to the actual situation, which is set as the conventional means in the art.
Specifically, earth baffle device 500 still includes fixed regulation structure 530, the one end of fixed regulation structure 530 is fixed on first baffle 510, the other end of fixed regulation structure 530 is fixed power device 300 or on the frame 100, be used for adjusting the elasticity between first baffle 510 and the ridging hilling device 400.
Specifically, the fixing adjustment structure 530 includes: the adjusting device 531 is fixed on the power device 300 or the rack 100, and the adjusting device 531 is provided with a plurality of adjusting positions 532; the first hinge lug 533 is disposed on the adjustment location 532; one end of the connecting member 534 is connected to the first hinge lug 533; the second hinge support lug 535 is fixed at the rear of the first baffle plate 510, the second hinge support lug 535 is connected with the other end of the connecting piece 534, the tightness between the first baffle plate 510 and the ridging banking device 400 is adjusted by arranging the first hinge support lug 533 at different adjusting positions 532, and because the first baffle plate 510 is fixedly connected with the second baffle plate 520 and the first baffle plate 510 or the second baffle plate 520 is hinged on the power device 300 or the rack 100, the angle of the second baffle plate 520 can be adjusted at the same time when the tightness between the first baffle plate 510 and the ridging banking device 400 is adjusted by the fixed adjusting structure 530.
In an embodiment, the adjusting member 531 may be fixed on the gear box 320 by a bolt connection, the first hinge support leg 533 is fixed on the adjusting position 532 by a bolt connection, the second hinge support leg 535 is fixed behind the lower end of the baffle by welding, and two ends of the connecting member 534 are respectively connected with the first hinge support leg 533 and the second hinge support leg 535 by a screw thread. It should be noted that the above only provides an example of the connection manner of the components in the fixing and adjusting structure 530, and the specific connection manner can be set according to the actual situation, which is set as the conventional means in the art.
Specifically, as shown in fig. 5, the soil compacting and shaping device 600 includes a soil compacting roller 610 and a shaping wheel 620, and the input ends of the soil compacting roller 610 and the shaping wheel 620 are connected to the second output end of the power device 300.
Specifically, the soil compacting roller 610 can include the roller and fix a plurality of ribs on the circumference of roller make the soil compacting roller 610 appearance is the profile of tooth structure, plays the effect of increase ground friction, prevents that the soil compacting roller 610 from skidding.
Specifically, as shown in fig. 6, the shaping wheel 620 may be in the shape of a circular truncated cone, the shaping wheel 620 is used for shaping the slope of the furrow, and the soil compacting roller 610 is used for compacting soil discharged to the edge of the furrow, so as to ensure the ridging effect.
In an embodiment, the second power output shaft 323 may be a hexagonal shaft, the large end of the shaping wheel 620 faces inward, the small end faces outward, the soil compacting roller 610 is fixed on the small end of the shaping wheel 620 by welding, the soil compacting roller 610 is disposed on the shaping wheel 620 along the outer side of the second power output shaft 323, the shaping wheel 620 and the second power output shaft 323 are cooperatively connected by a hexagonal bushing, and the hexagonal bushing is welded on the shaping wheel 620 to facilitate installation and removal of working components.
The application a cohesive soil ridging banking machine's working process include:
the worker adjusts the tightness between the soil guard device 500 and the ridging hilling device 400 by placing the first hinge lugs 533 at different adjustment positions 532. After the proper tightness is adjusted, a worker holds the grip 200, starts the engine 310, the power generated by the engine 310 is transmitted to the power input shaft 321 in the gear box 320 through the third power output shaft 311, the power input shaft 321 transmits the power to the first power output shaft 322 and the second power output shaft 323 through two gear shafts, the power transmitted to the first power output shaft 322 drives the spiral disk blade set 410 to operate, the cohesive soil is chopped, soil and weeds between furrows are slowly discharged from two sides of the blades and removed, the power transmitted to the second power output shaft 323 drives the shaping wheel 620 and the soil compacting roller 610 to perform operation, the slope of the furrows is shaped, and the soil discharged to the ridge edges is compacted.
Other embodiments of the present application will be apparent to those skilled in the art from consideration of the specification and practice of the disclosure disclosed herein. This application is intended to cover any variations, uses, or adaptations of the utility model following, in general, the principles of the application and including such departures from the present disclosure as come within known or customary practice within the art to which the utility model pertains. It is intended that the specification and examples be considered as exemplary only, with a true scope and spirit of the application being indicated by the following claims.
It will be understood that the present application is not limited to the precise arrangements described above and shown in the drawings and that various modifications and changes may be made without departing from the scope thereof. The scope of the application is limited only by the appended claims.

Claims (10)

1. The utility model provides a cohesive soil ridging banking machine which characterized in that includes:
a frame;
the holding part is arranged at the upper part of the rack;
the power device is arranged at the upper part of the frame and is used for providing walking and working power;
the ridging and ridging device comprises a spiral disc blade set, and the spiral disc blade set is arranged at a first output end of the power device;
the soil baffle device is arranged behind the ridging and ridging device; and
and the soil compacting and shaping device is arranged at the second output end of the power device.
2. The cohesive soil ridging hiller of claim 1, wherein the power device comprises:
an engine; and
and the input end of the gear box is connected with the output end of the engine.
3. The cohesive soil ridging hiller of claim 2, wherein the gearbox comprises:
the power input shaft is in transmission connection with the output end of the engine;
the first power output shaft is in transmission connection with the power input shaft through a first gear set; and
and the second power output shaft is in transmission connection with the power input shaft through a second gear set.
4. The cohesive soil ridging hiller of claim 1, wherein the spiral disk blade set includes a pair of spiral disk blades mounted side-to-side symmetrically on the first output end of the power plant.
5. The cohesive soil ridging hiller of claim 1, wherein the soil barrier device includes a first barrier disposed behind the ridging hiller, and a second barrier is secured to the first barrier that extends rearwardly outward.
6. The cohesive soil ridging hiller of claim 5, wherein the second baffle includes a first sub-baffle and a second sub-baffle, the first sub-baffle is vertically fixed on the first baffle, and the second sub-baffle is fixed on the first sub-baffle and arranged outward and rearward.
7. The cohesive soil ridging hiller of claim 5, wherein the soil baffle device further comprises a fixed adjustment structure, one end of the fixed adjustment structure is fixed to the first baffle, and the other end of the fixed adjustment structure is fixed to the power device or the frame.
8. The cohesive soil ridging hiller of claim 7, wherein the fixed adjustment structure comprises:
the adjusting piece is fixed on the power device or the rack and is provided with a plurality of adjusting positions;
the first hinge support lug is arranged on the adjusting position;
one end of the connecting piece is connected with the first hinge support lug; and
and the second hinge support lug is fixed at the rear part of the first baffle plate and is connected with the other end of the connecting piece.
9. The cohesive soil ridging hiller of claim 1, wherein the soil compacting and shaping device comprises a soil compacting roller and a shaping wheel, and input ends of the soil compacting roller and the shaping wheel are both connected with the second output end of the power device.
10. The cohesive soil ridging hiller of claim 9, wherein the soil compacting roller comprises a roller and a plurality of ribs fixed on a circumference of the roller.
CN202122544456.2U 2021-10-21 2021-10-21 Ridging banking machine for cohesive soil Active CN216313795U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122544456.2U CN216313795U (en) 2021-10-21 2021-10-21 Ridging banking machine for cohesive soil

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122544456.2U CN216313795U (en) 2021-10-21 2021-10-21 Ridging banking machine for cohesive soil

Publications (1)

Publication Number Publication Date
CN216313795U true CN216313795U (en) 2022-04-19

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115053662A (en) * 2022-06-22 2022-09-16 华南农业大学 Banana planting ridging device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115053662A (en) * 2022-06-22 2022-09-16 华南农业大学 Banana planting ridging device

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