Garden plant plants with device of shoveling soil
Technical Field
The utility model relates to the technical field of soil shoveling devices, in particular to a soil shoveling device for garden plant planting.
Background
The landscape plant is applicable to the plant material of afforestation, including woody and herbaceous sight flower, sight leaf or sight fruit plant to and be applicable to guard plant and the economic plant in gardens, greenery patches and scenery spot, and the ecological environment in gardens can be improved to landscape plant on the one hand, and on the other hand can beautify gardens, and its effect occupies fairly big proportion in landscape.
When plants are planted in traditional gardens, the soil is required to be shoveled manually, when the soil is harder on the surface layer, the soil shoveling process is inconvenient, the condition of the soil which is not moved easily occurs, the efficiency of garden soil shoveling planting is affected, and for this reason, the soil shoveling device for garden plant planting is provided.
Disclosure of utility model
The utility model aims to provide a soil shoveling device for garden plant planting, which aims to solve the problems of the background technology.
In order to achieve the above purpose, the present utility model provides the following technical solutions: the utility model provides a landscape plant plants with device of shovel, includes the bottom plate of device of shovel, the top four corners of bottom plate has welded the support column respectively, four sets of install the backup pad between the support column, the welded firm piece welding in both sides that the backup pad passed through is between four sets of support columns, shovel soil mechanism is installed to the bottom of backup pad, the movable groove has been seted up to the inside of bottom plate, shovel soil mechanism is located the inside of movable groove and carries out automatic shovel soil, firm subassembly is installed respectively to the both sides of bottom plate, firm subassembly improves the steadiness of device of shovel soil at shovel soil in-process.
Preferably, the soil shoveling mechanism comprises a limiting part, a cavity supporting rod, a driving motor, a threaded rod, thread blocks, supporting rods, extension rods and a bucket, wherein the two groups of the cavity supporting rods are respectively welded at the bottom end of the supporting plate, the two groups of the driving motor are respectively embedded in the supporting plate, the output end of the driving motor is connected with one end of the two groups of the threaded rod, the two groups of the threaded rod are respectively located in the two groups of the cavity supporting rods, the thread blocks are respectively connected with the outer sides of the two groups of the threaded rod, the four groups of the supporting rods are respectively welded between the two groups of the thread blocks and the two groups of the extension rods and are in sliding connection with the two groups of the extension rods, the tops of the bucket are respectively welded at the bottoms of the two groups of the extension rods, and the limiting part is respectively installed between the cavity supporting rods and the thread blocks.
Preferably, the limiting piece comprises a limiting sliding groove and a limiting sliding block, wherein two groups of limiting sliding grooves are respectively annularly formed in the inner surface of the cavity supporting rod, and the two groups of limiting sliding blocks are respectively annularly welded on the outer side of the threaded block and are slidably connected in the limiting sliding groove.
Preferably, the bottoms of the two groups of threaded rods are respectively welded with a baffle, and the baffles prevent the threaded blocks from being separated from the outer sides of the threaded rods.
Preferably, the stabilizing assembly comprises mounting seats, rotating rods, connecting plate torsion springs and pedals, wherein four groups of the mounting seats are respectively screwed at four corners of a bottom plate, four groups of the rotating rods are respectively connected in the inside of each group of the mounting seats through bearings, four groups of the connecting plates are respectively welded at the bottom of each group of the rotating rods, multiple groups of the torsion springs are respectively sleeved at two ends of each group of the rotating rods, two ends of each torsion spring are inserted into the inside of the mounting seats and the connecting plates, and four groups of the pedals are respectively welded at the bottom of each group of the connecting plates.
Preferably, four groups of support columns are supported by welding the tops of the support columns with a stabilizing plate, and a stabilizing rod is welded at the tops of the stabilizing plate to facilitate movement or stabilize the soil shoveling device.
Preferably, the bottom four corners of bottom plate are installed the gyro wheel respectively, the gyro wheel is convenient for shovel soil device and removes.
Compared with the prior art, the utility model has the beneficial effects that:
1. According to the utility model, the two groups of driving motors are started to drive the threaded rods to rotate, the threaded blocks connected with the outer sides are driven to move downwards in the rotating process of the threaded rods, the connected support rods and the extension rods welded at the bottoms of the support rods are driven to move downwards in the cavity support rods in the moving process of the threaded blocks, the bucket welded at the bottoms of the two groups of extension rods is driven to automatically shovel soil in the moving process of the two groups of extension rods, the condition that the soil is not moved when the manual shovel faces harder soil is avoided, and the soil-shoveling planting efficiency is improved.
2. According to the utility model, through the stable components arranged on the two sides of the bottom plate, when the pedal is shoveled, the foot of a worker steps on the pedal, so that the pedal is propped against the ground, the welded connecting plate and the rotating rod are driven to rotate in the mounting seat when the pedal is propped against the ground, the connecting plate drives the rotating rod to rotate, so that the torsion spring sleeved on the outer side of the rotating rod is in an extrusion state in the rotating process of the rotating rod, and the shoveling device is prevented from shaking in the shoveling process when the pedal is propped against the ground.
Drawings
FIG. 1 is a schematic diagram of a front view structure of the present utility model;
FIG. 2 is a schematic view of the interior of the soil scraping mechanism of the present utility model;
FIG. 3 is a schematic top view of the present utility model;
FIG. 4 is an enlarged schematic view of the utility model at A;
Fig. 5 is an enlarged schematic view of the present utility model at B.
In the figure: 1. bottom plate, 2, support column, 3, backup pad, 4, firm piece, 5, cavity bracing piece, 6, driving motor, 7, threaded rod, 8, threaded piece, 9, bracing piece, 10, extension rod, 11, scraper bowl, 12, baffle, 13, firm board, 14, firm pole, 15, mount pad, 16, bull stick, 17, connecting plate, 18, torsional spring, 19, footboard, 20, movable groove, 21, gyro wheel, 22, spacing spout, 23, spacing slider.
Detailed Description
The technical solutions of the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model, and it is apparent that the described embodiments are only some embodiments of the present utility model, but not all embodiments, and all other embodiments obtained by those skilled in the art without making creative efforts based on the embodiments of the present utility model are included in the protection scope of the present utility model.
Referring to fig. 1-5, the utility model discloses a soil shoveling device for garden plant planting, which comprises a bottom plate 1 of the soil shoveling device, support columns 2 are welded at four corners of the top of the bottom plate 1, support plates 3 are arranged between the four groups of support columns 2, two side welded stable blocks 4 passing through the support plates 3 are welded between the four groups of support columns 2, a soil shoveling mechanism is arranged at the bottom of the support plates 3, a movable groove 20 is formed in the bottom plate 1, the soil shoveling mechanism is positioned in the movable groove 20 to automatically shovel soil, and two sides of the bottom plate 1 are respectively provided with a stable component, wherein the stability of the soil shoveling device is improved by the stable components in the soil shoveling process.
In this embodiment, by opening the soil shoveling mechanism installed at the bottom of the supporting plate 3, two groups of driving motors 6 drive the threaded rods 7 to rotate, the threaded rods 7 drive the threaded blocks 8 connected to the outer sides to move downwards in the process of rotating, the supporting rods 9 connected with the threaded blocks 8 and the extension rods 10 welded at the bottom of the supporting rods 9 move downwards in the cavity supporting rods 5, the two groups of extension rods 10 drive the buckets 11 welded at the bottom to automatically shovel the soil in the process of moving downwards, and through the stabilizing assemblies installed at the two sides of the bottom plate 1, when shoveling soil, a worker steps on the pedals 19 to enable the pedals 19 to prop against the ground, when the pedals 19 prop against the ground, the connecting plates 17 and the rotating rods 16 are driven to rotate in the installation seat 15, the connecting plates 17 drive the rotating rods 16 to enable the torsion springs 18 sleeved on the outer sides of the rotating rods 16 to be in an extrusion state, and when the pedals 19 prop against the ground, the soil shoveling device is prevented from shaking in the process of shoveling soil.
Referring to fig. 2 and 4, the soil shoveling mechanism includes a limiting member, a cavity supporting rod 5, a driving motor 6, a threaded rod 7, a threaded block 8, a supporting rod 9, an extension rod 10 and a bucket 11, wherein the two sets of cavity supporting rods 5 are respectively welded at the bottom ends of the supporting plate 3, the two sets of driving motors 6 are respectively embedded in the supporting plate 3, the output ends of the two sets of driving motors are connected with one ends of the two sets of threaded rods 7, the two sets of threaded rods 7 are respectively positioned in the two sets of cavity supporting rods 5, the two sets of threaded blocks 8 are respectively in threaded connection with the outer sides of the two sets of threaded rods 7, the two ends of the four sets of supporting rods 9 are respectively welded between the two sets of threaded blocks 8 and the two sets of extension rods 10, the two sets of extension rods 10 are in sliding connection with the inner parts of the cavity supporting rod 5, the tops of the two sets of bucket 11 are respectively welded at the bottoms of the two sets of extension rods 10 for shoveling soil, and the limiting member is respectively installed between the cavity supporting rod 5 and the threaded block 8.
In this embodiment, the two sets of driving motors 6 are turned on to drive the threaded rods 7 to rotate, the threaded rods 7 rotate to drive the threaded blocks 8 connected to the outer sides to move downwards, the support rods 9 connected with the threaded blocks 8 are driven to move downwards in the moving process, the extension rods 10 welded at the bottoms of the support rods 9 move downwards in the cavity support rods 5, and the two sets of extension rods 10 drive the bucket 11 welded at the bottoms to automatically shovel the soil in the moving process.
Referring to fig. 4, the limiting member includes a limiting sliding groove 22 and a limiting sliding block 23, wherein two sets of limiting sliding grooves 22 are respectively and annularly arranged on the inner surface of the cavity supporting rod 5, the two sets of limiting sliding blocks 23 are respectively and annularly welded on the outer side of the threaded block 8, and the limiting sliding blocks 23 are slidably connected in the limiting sliding groove 22.
In this embodiment, the threaded block 8 moves downward outside the threaded rod 7, and in the process of moving downward the threaded block 8 drives the limit slide block 23 welded outside the threaded block 8 to move downward in the limit slide groove 22 formed in the inner wall of the cavity supporting rod 5, so as to prevent the threaded block 8 from synchronously rotating along with the threaded rod 7 when moving downward.
Referring to fig. 4, the bottoms of the two sets of threaded rods 7 are respectively welded with a baffle 12, and the baffle 12 prevents the threaded block 8 from separating from the outer side of the threaded rod 7.
In this embodiment, the stop 12 prevents the screw block 8 from coming out of the threaded rod 7 when moving outside the threaded rod 7, by means of the stop 12 welded at the bottom of the threaded rod 7.
Referring to fig. 3 and 5, the stabilizing assembly includes a mounting seat 15, a rotating rod 16, a connecting plate 17, a torsion spring 18 and a pedal 19, wherein the four groups of mounting seats 15 are respectively screwed at four corners of the bottom plate 1, the four groups of rotating rods 16 are respectively connected in the interior of each group of mounting seats 15 in a bearing manner, the four groups of connecting plates 17 are respectively welded at the bottom of each group of rotating rods 16, the plurality of groups of torsion springs 18 are respectively sleeved at two ends of each group of rotating rods 16, two ends of the torsion springs 18 are inserted into the interiors of the mounting seats 15 and the connecting plates 17, and the four groups of pedals 19 are respectively welded at the bottom of each group of connecting plates 17.
In this embodiment, the pedal 19 is pressed by a worker, so that the pedal 19 is pressed against the ground, the welded connecting plate 17 and the rotating rod 16 are driven to rotate in the mounting seat 15 when the pedal 19 is pressed against the ground, the connecting plate 17 drives the rotating rod 16 to rotate, the torsion spring 18 sleeved on the outer side of the rotating rod 16 is in an extrusion state in the process of rotating the rotating rod 16, the soil shoveling device is prevented from shaking in the soil shoveling process when the pedal 19 is pressed against the ground, and after soil shoveling is completed, the pedal 19 is loosened, and the torsion spring 18 is driven to reset by inertia.
Referring to fig. 1, the top of the four sets of support columns 2 is welded with a stabilizing plate 13 for supporting, and the top of the stabilizing plate 13 is welded with a stabilizing rod 14 for facilitating movement or stabilizing the soil shoveling device.
In this embodiment, through shouting the steady plate 13 of the volume of being lucky at four group's support column 2 tops, the top welding of firm class 13 has firm pole 14, and the staff is with holding down firm pole 14, prevents the shovel device removal when shoveling, simultaneously, the staff pulls firm pole 14, is convenient for remove the shovel device.
Referring to fig. 2, rollers 21 are respectively mounted at four corners of the bottom of the base plate 1, and the rollers 21 facilitate the movement of the soil shoveling device.
In the present embodiment, the rollers 21 are provided at four corners of the bottom of the base plate 1, so that the shovel can be moved easily by rolling the rollers 21.
What is not described in detail in this specification is prior art known to those skilled in the art.
Although the present utility model has been described with reference to the foregoing embodiments, it will be apparent to those skilled in the art that modifications may be made to the embodiments described, or equivalents may be substituted for elements thereof, and any modifications, equivalents, improvements and changes may be made without departing from the spirit and principles of the present utility model.