Forestry engineering is with sapling storage device

文档序号:1854750 发布日期:2021-11-19 浏览:24次 中文

阅读说明:本技术 一种林业工程用树苗存储装置 (Forestry engineering is with sapling storage device ) 是由 刘露 于 2021-07-22 设计创作,主要内容包括:本发明公开了林业工程技术领域的一种林业工程用树苗存储装置,包括存储箱,所述存储箱的顶部均匀设置有放置槽,所述存储箱的右侧设置有推架,所述存储箱的底部四周处均设置有万向轮,所述存储箱的左侧设置有固定板,所述固定板上竖向贯穿有推杆,所述推杆的底部均匀设置有插地刺,所述推杆于插地刺的上方设置有压块,所述推杆的顶端设置有推动机构,在推杆推动插地刺时,压块向下压动压板,使得安装板上的防滑锥插进地面,进而配合插地刺,可以有效防止存储箱从斜坡上滑下,影响拿取放置槽内的树苗,耽误树苗种植的进度。(The invention discloses a sapling storage device for forestry engineering, which belongs to the technical field of forestry engineering and comprises a storage box, wherein a placing groove is uniformly formed in the top of the storage box, a push frame is arranged on the right side of the storage box, universal wheels are arranged on the periphery of the bottom of the storage box, a fixed plate is arranged on the left side of the storage box, a push rod vertically penetrates through the fixed plate, ground stabs are uniformly arranged at the bottom of the push rod, a pressing block is arranged above the ground stabs on the push rod, a pushing mechanism is arranged at the top end of the push rod, and when the ground stabs are pushed by the push rod, the pressing block presses a pressing plate downwards to enable an anti-skidding cone on an installation plate to be inserted into the ground so as to be matched with the ground stabs, so that the storage box can be effectively prevented from slipping down from a slope to influence taking of saplings in the placing groove and delay the sapling planting progress.)

1. The utility model provides a sapling storage device for forestry engineering, includes storage box (1), its characterized in that: the top of storage box (1) evenly is provided with standing groove (2), the right side of storage box (1) is provided with pushes away frame (3), the bottom of storage box (1) all is provided with universal wheel (4) all around, the left side of storage box (1) is provided with fixed plate (5), vertical penetration has push rod (6) on fixed plate (5), the bottom of push rod (6) evenly is provided with inserts ground thorn (7), push rod (6) are provided with briquetting (8) in the top of inserting ground thorn (7), the top of push rod (6) is provided with pushing mechanism (9), the bottom of storage box (1) is provided with anti-skidding mechanism (10).

2. The sapling storage device for forestry engineering according to claim 1, wherein: pushing mechanism (9) is including setting up ring (91) at push rod (6) top, the bottom of ring (91) evenly is provided with supporting spring (92), the bottom of supporting spring (92) is connected on fixed plate (5), the top of push rod (6) is provided with gyro wheel (93), the top and the manual subassembly (94) of gyro wheel (93) are connected, be connected with chucking subassembly (95) on manual subassembly (94).

3. The sapling storage device for forestry engineering according to claim 2, wherein: manual subassembly (94) include bottom and gyro wheel (93) rolling connection's flange (941), flange (941) cup joint in the pivot, and the pivot passes through the bearing and installs on storage box (1), the front end of pivot is connected on turning handle (942), the vertical draw-in groove (943) that have seted up two sets of structures the same of front side of turning handle (942).

4. The sapling storage device for forestry engineering according to claim 3, wherein: chucking subassembly (95) are including pegging graft in the bottom kelly (951) on draw-in groove (943), the front end through connection pole (952) of kelly (951) is connected with handle (953), the rear side of handle (953) is provided with reset spring (954) of cup jointing on kelly (951), reset spring (954)'s rear end is connected on connecting rod (952), vertical penetrating has inserted bar (955) on handle (953), the front side of fixed plate (5) is provided with fixed block (956), the top front side of fixed block (956) is opened and is equipped with slot (957), the bottom and fixed block (956) of inserted bar (955) contact.

5. The sapling storage device for forestry engineering according to claim 4, wherein: the bottom fixed connection of connecting rod (952) is on fixed plate (5), slot (957) and inserted bar (955) phase-match.

6. The sapling storage device for forestry engineering according to claim 1, wherein: antiskid (10) include two sets of slide rails (101) that the structure is the same, and are two sets of the equal fixed connection of slide rail (101) is on storage box (1), and is two sets of slide rail (101) all with clamp plate (102) sliding connection, the left side of clamp plate (102) is located the below of briquetting (8), the bottom of clamp plate (102) is provided with mounting panel (103), the bottom of mounting panel (103) evenly is provided with anti-skidding awl (104), the top of mounting panel (103) is located all around and is provided with stress spring (105) of being connected with storage box (1), the front side of mounting panel (103) is provided with footboard (106).

Technical Field

The invention relates to the technical field of forestry engineering, in particular to a sapling storage device for forestry engineering.

Background

Forestry engineering refers to and uses the high-efficient utilization and sustainable development of forest resources as the principle, with the activity of various engineering techniques applied to forest resource cultivation, development utilization and forest product processing, forestry engineering includes forest zone planning, forest cultivation forest protection, forest exploitation, woodwork design and processing, the manufacturing and design of exploitation equipment, the manufacturing and design of woodwork processing equipment, forest zone fire prevention technique and equipment etc. at present, when planting sapling in a department, generally pack the sapling earlier and place on sapling storage device, promote sapling storage device to remove to this department and plant again, when planting sapling on the too big slope of slope, sapling storage device slides down easily in the slope, influences the user and takes out the sapling from sapling storage device, for this reason, we propose a sapling storage device for forestry engineering.

Disclosure of Invention

The invention aims to provide a seedling storage device for forestry engineering, which aims to solve the problems in the background technology.

In order to achieve the purpose, the invention provides the following technical scheme: the utility model provides a sapling storage device for forestry engineering, includes the storage box, the top of storage box evenly is provided with the standing groove, the right side of storage box is provided with pushes away the frame, the bottom of storage box all is provided with the universal wheel all around, the left side of storage box is provided with the fixed plate, the vertical push rod that has run through on the fixed plate, the bottom of push rod evenly is provided with inserts ground thorn, the push rod is provided with the briquetting in the top of inserting ground thorn, the top of push rod is provided with pushing mechanism, the bottom of storage box is provided with anti-skidding mechanism.

Preferably, pushing mechanism is including setting up the ring at the push rod top, the bottom of ring evenly is provided with supporting spring, supporting spring's bottom is connected on the fixed plate, the top of push rod is provided with the gyro wheel, the top and the manual subassembly of gyro wheel are connected, be connected with the chucking subassembly on the manual subassembly.

Preferably, the manual component comprises a convex plate with the bottom in rolling connection with the roller, the convex plate is sleeved on the rotating shaft, the rotating shaft is installed on the storage box through a bearing, the front end of the rotating shaft is connected to the rotating handle, and two groups of clamping grooves with the same structure are vertically formed in the front side of the rotating handle.

Preferably, the chucking subassembly is including pegging graft in the bottom the kelly on the draw-in groove, the front end through connection pole of kelly is connected with the handle, the rear side of handle is provided with the reset spring who cup joints on the kelly, reset spring's rear end is connected on the connecting rod, it has the inserted bar to vertically run through on the handle, the front side of fixed plate is provided with the fixed block, the top front side of fixed block is seted up the slot, the bottom and the fixed block of inserted bar contact.

Preferably, the bottom end of the connecting rod is fixedly connected to the fixing plate, and the slot is matched with the inserted rod.

Preferably, the anti-skidding mechanism includes the same slide rail of two sets of structures, and is two sets of the equal fixed connection of slide rail is on the storage box, and is two sets of the slide rail all with clamp plate sliding connection, the left side of clamp plate is located the below of briquetting, the bottom of clamp plate is provided with the mounting panel, the bottom of mounting panel evenly is provided with the anti-skidding awl, the top of mounting panel all is provided with the stress spring who is connected with the storage box all around, the front side of mounting panel is provided with the footboard.

Compared with the prior art, the invention has the beneficial effects that: according to the invention, the lug extrudes the roller through rotating the rotating handle, and the ground inserting prick is pushed by the push rod to be inserted into the slope, so that the storage box can be prevented from sliding down the slope, the clamping rod can be inserted into the clamping groove of the rotating handle through the elasticity of the return spring, and the rotation of the rotating handle can be avoided.

Drawings

FIG. 1 is a schematic structural view of the present invention;

FIG. 2 is a schematic bottom view of the structure of the present invention;

FIG. 3 is a schematic structural view at A of the present invention;

FIG. 4 is a schematic view of the structure of the present invention B.

In the figure: 1. a storage box; 2. a placement groove; 3. pushing the frame; 4. a universal wheel; 5. a fixing plate; 6. a push rod; 7. inserting a ground thorn; 8. briquetting; 9. a pushing mechanism; 91. a circular ring; 92. a support spring; 93. a roller; 94. a manual assembly; 941. a convex plate; 942. a handle is rotated; 943. a card slot; 95. a clamping assembly; 951. a clamping rod; 952. a connecting rod; 953. a handle; 954. a return spring; 955. inserting a rod; 956. a fixed block; 957. a slot; 10. an anti-slip mechanism; 101. a slide rail; 102. pressing a plate; 103. mounting a plate; 104. an anti-slip cone; 105. a stress spring; 106. a pedal.

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.

Example 1

The utility model provides a sapling storage device for forestry engineering, please refer to fig. 1 to 4, including storage box 1, the top of storage box 1 evenly is provided with standing groove 2, a sapling for placing the package, the right side of storage box 1 is provided with pushes away frame 3, the bottom of storage box 1 all is provided with universal wheel 4 all around, the person of facilitating the use promotes storage box 1, the left side of storage box 1 is provided with fixed plate 5, vertical penetration has push rod 6 on fixed plate 5, the bottom of push rod 6 evenly is provided with inserts ground thorn 7, push rod 6 is provided with briquetting 8 in the top of inserting ground thorn 7, the top of push rod 6 is provided with pushing mechanism 9, the bottom of storage box 1 is provided with anti-skidding mechanism 10.

Pushing mechanism 9 is including setting up ring 91 at push rod 6 top, and the bottom of ring 91 evenly is provided with supporting spring 92, and supporting spring 92's bottom is connected on fixed plate 5, and supporting spring 92 is used for inserting ground thorn 7 and resets, and the top of push rod 6 is provided with gyro wheel 93, and the top and the manual subassembly 94 of gyro wheel 93 are connected, are connected with chucking subassembly 95 on the manual subassembly 94.

Manual subassembly 94 includes bottom and gyro wheel 93 roll connection's flange 941, and flange 941 cup joints in the pivot, and the pivot passes through the bearing and installs on storage box 1, and not drawn in the bearing picture, it is used for installing the pivot, and the front end of pivot is connected on the turning handle 942, and the vertical draw-in groove 943 of having seted up two sets of structures the same of the front side of turning handle 942.

Chucking subassembly 95 is including pegging graft card pole 951 on bottom draw-in groove 943, the front end of card pole 951 runs through the connecting rod 952 and is connected with handle 953, handle 953's rear side is provided with the reset spring 954 of cup jointing on card pole 951, the rear end of reset spring 954 is connected on connecting rod 952, reset spring 954 is used for driving card pole 951 and injects in the draw-in groove 943, vertical penetrating has inserted bar 955 on handle 953, the front side of fixed plate 5 is provided with fixed block 956, the top front side of fixed block 956 is equipped with slot 957, the bottom and the fixed block 956 of inserted bar 955 contact.

Bottom fixed connection of connecting rod 952 is on fixed plate 5, and slot 957 and inserted bar 955 phase-match for inserted bar 955 can inject in the slot 957, and then can carry on spacingly to handle 953.

The storage box 1 is pushed to a required position on a slope, the handle 953 is pulled forwards, when the inserted rod 955 on the handle 953 moves to the slot 957, the inserted rod 955 is inserted into the slot 957, the handle 953 is loosened at the moment, the handle 953 is fixed, the clamping rod 951 is further moved out of the clamping groove 943 on the rotating handle 942, the rotating handle 942 can be rotated, the extruding roller 93 is rotated by the convex plate 941, the push rod 6 drives the ground insertion thorn 7 to be inserted into the slope, the storage box 1 is prevented from sliding down the slope, after the ground insertion thorn 7 is inserted into the slope, the inserted rod 955 is pulled upwards, the clamping rod 951 can be inserted into the clamping groove 943 after the movement, and the rotation of the rotating handle 942 is avoided.

Example 2

Referring to fig. 1, 2 and 4, the anti-slip mechanism 10 includes two sets of slide rails 101 with the same structure, the two sets of slide rails 101 are both fixedly connected to the storage box 1, the two sets of slide rails 101 are both slidably connected to the pressing plate 102, the left side of the pressing plate 102 is located below the pressing block 8, the bottom of the pressing plate 102 is provided with an installation plate 103, the bottom of the installation plate 103 is uniformly provided with anti-slip cones 104, the top of the installation plate 103 is provided with stress springs 105 connected to the storage box 1 at the periphery, and the front side of the installation plate 103 is provided with a pedal 106.

The rest of the structure was the same as in example 1.

When push rod 6 moves down, briquetting 8 pushes down clamp plate 102, make mounting panel 103 can press anti-skidding awl 104 into the slope, and then improved the stability of storage box 1 on slope, when needs continue to promote storage box 1 on slope, make insert ground thorn 7 and anti-skidding awl 104 reset can, step on footboard 106 through the user regularly, make mounting panel 103 flexible back and forth through stress spring 105, and then can shake off the earth on the anti-skidding awl 104, so that follow-up anti-skidding awl 104 can smoothly inject in the slope, insert ground earth on thorn 7 through user's independent processing can.

Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

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