Hydraulic engineering is with planting soil control device in district

文档序号:555899 发布日期:2021-05-18 浏览:16次 中文

阅读说明:本技术 一种水利工程用种植区土壤控制装置 (Hydraulic engineering is with planting soil control device in district ) 是由 陈佳渲 于 2021-02-22 设计创作,主要内容包括:本发明的目的是为了解决水利工程中植物种植的问题,公开了一种水利工程用种植区土壤控制装置,包括固定框,所述固定框左侧面固定连接有手柄,所述固定框前后两侧对称连接有连接板,所述连接板外表面对称装有滚轮,所述固定框右侧面固定连接有连接架,所述连接架右侧固定安装有卡架,所述卡架内部套有第一电机,所述第一电机与卡架之间装有第二转轴,所述第一电机右侧装有第一转轴,所述第一转轴表面均匀安装有搅拌杆,所述第一电机侧面固定安装有导杆,所述导杆外套有滑块,所述滑块与导杆之间装有第一紧固螺钉。本发明合理通过对种植区域土层的搅拌,再利用对土层的冲刷,就便于使用粗沙粒实现对植物的种植,增加对植物的保护。(The invention aims to solve the problem of plant planting in hydraulic engineering, and discloses a planting area soil control device for hydraulic engineering, which comprises a fixing frame, wherein a handle is fixedly connected to the left side surface of the fixing frame, connecting plates are symmetrically connected to the front side and the rear side of the fixing frame, rollers are symmetrically arranged on the outer surfaces of the connecting plates, a connecting frame is fixedly connected to the right side surface of the fixing frame, a clamping frame is fixedly arranged on the right side of the connecting frame, a first motor is sleeved inside the clamping frame, a second rotating shaft is arranged between the first motor and the clamping frame, a first rotating shaft is arranged on the right side of the first motor, stirring rods are uniformly arranged on the surface of the first rotating shaft, a guide rod is fixedly arranged on the side surface of the first motor, a sliding block is sleeved outside the guide rod, and a. The invention reasonably stirs the soil layer of the planting area and utilizes the scouring of the soil layer, thus facilitating the planting of plants by using coarse sand grains and increasing the protection of the plants.)

1. The utility model provides a planting district soil controlling means for hydraulic engineering, includes fixed frame (18), its characterized in that: the utility model discloses a stirring rod, including fixed frame (18), both sides symmetrical connection has connecting plate (13) around fixed frame (18) left surface fixedly connected with handle (19), both sides symmetrical connection has connecting plate (13) around fixed frame (18), gyro wheel (14) are equipped with to connecting plate (13) surface symmetry, fixed frame (18) right flank fixedly connected with link (17), link (17) right side fixed mounting has card frame (15), card frame (15) inside cover has first motor (8), be equipped with second pivot (12) between first motor (8) and card frame (15), first pivot (5) are equipped with on first motor (8) right side, puddler (6) are evenly installed to first pivot (5) surface, first motor (8) side fixed mounting has guide arm (4), guide arm (4) have overcoat slider (9), be equipped with first fastening screw (3) between slider (9) and guide arm (4), the utility model discloses a water pump, including slider (9) and card frame (15) between the first coil spring of fixedly connected with (11), fixed frame (18) middle part fixed mounting has water pump (16), the delivery end switch-on of water pump (16) has first pipe (10), first pipe (10) outer end is connected with shower nozzle (7), the delivery end switch-on of water pump (16) has connecting pipe (20), connecting pipe (20) outer end is connected with second pipe (21), fixed frame (18) downside fixedly connected with connecting rod (22), guide cylinder (28) are installed to connecting rod (22) right-hand member, second fastening screw (27) are equipped with between guide cylinder (28) and connecting rod (22), the inside cover of guide cylinder (28) has slide bar (2), slide bar (2) right-hand member fixed mounting has clamp plate (1), fixedly connected with second coil spring (29) between clamp plate (1) and guide cylinder (28), slide bar (2) upper surface welding has rack (23), fixed surface is connected with sloping (26) on guide cylinder (28), sloping (26) left end fixed mounting has second motor (25), second motor (25) mid-mounting has gear (24).

2. The soil control device of a planting area for hydraulic engineering of claim 1, wherein: the sliding rod (2) is in sliding fit with the guide cylinder (28), the gear (24) is a sector gear, and the gear (24) is in meshing fit with the rack (23).

3. The soil control device of a planting area for hydraulic engineering of claim 1, wherein: the sliding block (9) is in sliding fit with the guide rod (4), and the guide rod (4) is of a U-shaped structure and is provided with a screw hole corresponding to the first fastening screw (3).

4. The soil control device of a planting area for hydraulic engineering of claim 1, wherein: and a rotating shaft is arranged between the roller (14) and the connecting plate (13).

5. The soil control device of a planting area for hydraulic engineering of claim 1, wherein: the first spiral spring (11) is a thrust spring, and the second spiral spring (29) is a tension spring.

Technical Field

The invention relates to the field of hydraulic engineering, in particular to a planting area soil control device for hydraulic engineering.

Background

Hydraulic engineering is an engineering built for controlling and allocating surface water and underground water in nature to achieve the purposes of removing harmful substances and benefiting. Also known as water engineering. Water is a valuable resource essential for human production and life, but its naturally occurring state does not completely meet the needs of human beings. Only when hydraulic engineering is built, water flow can be controlled, flood disasters are prevented, and water quantity is adjusted and distributed to meet the requirements of people on water resources in life and production. Hydraulic engineering needs to build various types of hydraulic buildings such as dams, dikes, spillways, water gates, water inlets, channels, transition troughs, rafts, fishways and the like so as to achieve the aims.

However, when planting plants in some sand locations, because the sand grain is lighter, can cause soil erosion and water loss, also can influence the growth of plant, and to plant planting's region, its sand grain size is difficult for screening control, will make the fine sand grain on top layer blow off like this when planting, influences plant planting's stability to can influence plant's growth, and be difficult for screening control to the soil layer, consequently, need design a planting district soil control device for hydraulic engineering and solve the planting problem of plant urgently.

Disclosure of Invention

The invention aims to overcome the defects in the prior art and provides a planting area soil control device for hydraulic engineering.

The invention is realized by the following technical scheme:

a planting area soil control device for hydraulic engineering comprises a fixed frame, wherein a handle is fixedly connected to the left side face of the fixed frame, connecting plates are symmetrically connected to the front side and the rear side of the fixed frame, rollers are symmetrically arranged on the outer surface of each connecting plate, a connecting frame is fixedly connected to the right side face of the fixed frame, a clamping frame is fixedly mounted on the right side of the connecting frame, a first motor is sleeved inside the clamping frame, a second rotating shaft is mounted between the first motor and the clamping frame, a first rotating shaft is mounted on the right side of the first motor, a stirring rod is uniformly mounted on the surface of the first rotating shaft, a guide rod is fixedly mounted on the side face of the first motor, a sliding block is sleeved outside the guide rod, a first fastening screw is mounted between the sliding block and the guide rod, a first spiral spring is fixedly connected between the sliding block and the clamping frame, a water pump, the utility model discloses a water pump, including first pipe, connecting pipe, fixed frame, connecting rod, guide cylinder and connecting rod, first pipe outer end is connected with the shower nozzle, the access end of water pump is led to and is had the connecting pipe, the connecting pipe outer end is connected with the second pipe, fixed frame downside fixedly connected with connecting rod, the guide cylinder is installed to the connecting rod right-hand member, be equipped with second fastening screw between guide cylinder and the connecting rod, the inside cover of guide cylinder has the slide bar, slide bar right-hand member fixed mounting has the clamp plate, fixedly connected with second coil spring between clamp plate and the guide cylinder, slide bar upper surface welding has the rack, fixed surface is connected with the sloping on the.

Preferably, the sliding rod is in sliding fit with the guide cylinder, the gear is a sector gear, and the gear is in meshing fit with the rack.

Preferably, the sliding block is in sliding fit with the guide rod, and the guide rod is of a U-shaped structure and is provided with a screw hole corresponding to the first fastening screw.

Preferably, a rotating shaft is arranged between the roller and the connecting plate.

Preferably, the first coil spring is a thrust spring, and the second coil spring is a tension spring.

Compared with the prior art, the invention has the beneficial effects that:

according to the invention, the first motor drives the stirring rod to rotate, so that the soil for planting the plants can be stirred, the fine sand particles on the surface layer can be separated conveniently, the fine sand on the surface layer can be washed away by combining with the arrangement of the water pump, the coarse sand particles are reserved to facilitate the planting of the plants, the stirring rod is more attached to the surface of the soil layer by virtue of the thrust provided by the first spiral spring, the coarse sand particles after the fine sand on the surface layer is removed can be compacted by using the pressing plate by virtue of the driving of the second motor, the planting of the plants is helped, the planting of the plants is more stable and safe, and the thrust of the first spiral spring can be controlled by adjusting the position of the sliding block on the guide rod. The invention reasonably stirs the soil layer of the planting area and utilizes the scouring of the soil layer, thus facilitating the planting of plants by using coarse sand grains and increasing the protection of the plants.

Drawings

FIG. 1 is a schematic structural diagram of the present invention.

Description of reference numerals: 1. the device comprises a pressure plate, 2, a sliding rod, 3, a first fastening screw, 4, a guide rod, 5, a first rotating shaft, 6, a stirring rod, 7, a spray head, 8, a first motor, 9, a sliding block, 10, a first guide pipe, 11, a first spiral spring, 12, a second rotating shaft, 13, a connecting plate, 14, a roller, 15, a clamping frame, 16, a water pump, 17, a connecting frame, 18, a fixing frame, 19, a handle, 20, a connecting pipe, 21, a second guide pipe, 22, a connecting rod, 23, a rack, 24, a gear, 25, a second motor, 26, an inclined frame, 27, a second fastening screw, 28, a guide cylinder, 29 and a second spiral spring.

Detailed Description

The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.

Referring to fig. 1, the present invention provides a technical solution:

a planting area soil control device for hydraulic engineering comprises a fixed frame 18, wherein a handle 19 is fixedly connected to the left side face of the fixed frame 18, connecting plates 13 are symmetrically connected to the front side and the rear side of the fixed frame 18, rollers 14 are symmetrically arranged on the outer surfaces of the connecting plates 13, a connecting frame 17 is fixedly connected to the right side face of the fixed frame 18, a clamping frame 15 is fixedly arranged on the right side of the connecting frame 17, a first motor 8 is sleeved inside the clamping frame 15, a second rotating shaft 12 is arranged between the first motor 8 and the clamping frame 15, a first rotating shaft 5 is arranged on the right side of the first motor 8, a stirring rod 6 is uniformly arranged on the surface of the first rotating shaft 5, a guide rod 4 is fixedly arranged on the side face of the first motor 8, a sliding block 9 is sleeved outside the guide rod 4, a first fastening screw 3 is arranged between the sliding block 9 and the guide rod 4, a first spiral spring 11, the middle part of the fixed frame 18 is fixedly provided with a water pump 16, the water outlet end of the water pump 16 is communicated with a first guide pipe 10, the outer end of the first conduit 10 is connected with a spray head 7, the water inlet end of the water pump 16 is communicated with a connecting pipe 20, the outer end of the connecting pipe 20 is connected with a second guide pipe 21, the lower side of the fixed frame 18 is fixedly connected with a connecting rod 22, a guide cylinder 28 is arranged at the right end of the connecting rod 22, a second fastening screw 27 is arranged between the guide cylinder 28 and the connecting rod 22, a slide bar 2 is sleeved in the guide cylinder 28, a press plate 1 is fixedly arranged at the right end of the slide bar 2, a second helical spring 29 is fixedly connected between the pressure plate 1 and the guide cylinder 28, a rack 23 is welded on the upper surface of the sliding rod 2, the upper surface of the guide cylinder 28 is fixedly connected with an inclined frame 26, the left end of the inclined frame 26 is fixedly provided with a second motor 25, and the middle part of the second motor 25 is provided with a gear 24.

The slide rod 2 is in sliding fit with the guide cylinder 28, the gear 24 is a sector gear, and the gear 24 is in meshing fit with the rack 23.

The sliding block 9 is in sliding fit with the guide rod 4, and the guide rod 4 is of a U-shaped structure and is provided with a screw hole corresponding to the first fastening screw 3.

And a rotating shaft is arranged between the roller 14 and the connecting plate 13.

The first coil spring 11 is a thrust spring, and the second coil spring 29 is a tension spring.

The method comprises the following operation steps: in order to improve the planting effect of the plants and increase the planting stability of the plants, firstly, an operator holds the handle 19, moves the device to a planting area, places a balancing weight on the device, increases the weight of the whole device, enables the stirring rod 6 to be tightly attached to the ground through the elastic action of the first spiral spring 11, opens the switch of the first motor 8 to drive the first rotating shaft 5 to rotate, uses the stirring rod 6 to stir the soil layer of the planting area to enable the fine sand grains to be positioned on the surface layer, then inserts the second conduit 21 into a nearby water source, enables the first conduit 10 to face the planting area, opens the switch of the water pump 16 to flush the fine sand grains on the surface layer, then adjusts the second fastening screw 27 to enable the pressing plate 1 to face the ground, opens the switch of the second motor 25 to compact the soil of the planting area by using the pressing plate 1, and then can improve the stability of planting, prevent wind and scrape and the water-washed, just further realize the protection of planting the plant.

The present embodiment is only for explaining the present invention, and not for limiting the present invention, and those skilled in the art can make modifications without inventive contribution to the present embodiment as needed after reading the present specification, but all of which are protected by patent law within the scope of the claims of the present invention.

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