CN218514898U - A bearing structure for after arbor is transplanted - Google Patents

A bearing structure for after arbor is transplanted Download PDF

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Publication number
CN218514898U
CN218514898U CN202222011444.8U CN202222011444U CN218514898U CN 218514898 U CN218514898 U CN 218514898U CN 202222011444 U CN202222011444 U CN 202222011444U CN 218514898 U CN218514898 U CN 218514898U
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China
Prior art keywords
arbor
gear
spring
supporting
supporting shoe
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CN202222011444.8U
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Chinese (zh)
Inventor
刘嘉洁
葛明丰
熊书旺
邱建安
黄植程
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Shenzhen Guanghuiyuan Water Conservancy Building Engineering Co ltd
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Shenzhen Guanghuiyuan Water Conservancy Building Engineering Co ltd
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Abstract

The utility model discloses a bearing structure for after arbor is transplanted, including supporting shoe and hydraulic pressure post, both sides are provided with the connecting rod around the right-hand member of supporting shoe, and the connecting rod keeps away from one side of supporting shoe water flat line and be provided with the support frame, the right-hand member of support frame is provided with spring one, one side that spring one is close to supporting shoe water flat line is provided with anchor clamps, and the left end of anchor clamps is provided with the connective bar, the hydraulic pressure post sets up the left end at the connective bar. This a bearing structure for after arbor transplants, compare with current ordinary bearing structure, the radian that anchor clamps were opened just can be controlled in the flexible of hydraulic pressure post to the arbor trunk of the different thicknesses of centre gripping makes equipment utilization higher, wave the hand crank, make thin flexible post stretch out or retract in the thick support post, thereby equipment can adjust the height, conveniently be used for not co-altitude arbor to come fixed position, press down the spike and make the base fix subaerial, bearing structure bulk strength has been increased, the toppling over of arbor has been prevented.

Description

A bearing structure for after arbor is transplanted
Technical Field
The utility model relates to a bearing structure technical field specifically is a bearing structure that is used for after arbor transplants.
Background
In order to enable greening to take effect as soon as possible for some newly-built landscaping lands or urban key streets, a method for transplanting large trees is usually considered, in addition, the transplanting of the large trees is also required to be implemented for keeping trees in the construction land range, and obviously, the transplanting of the large trees is also an important project in landscaping construction, so that how to improve the survival rate of the large trees in the transplanting process is a problem which is valued by landscaping workers.
The prior patent with the publication number of CN209931079U, namely 'a fixing support for transplanting arbor tea leaves', the fixing sleeve cannot mechanically apply arbor trunks with different thicknesses, and an operator finds that the size is not appropriate after mechanically applying the fixing sleeve and often needs to replace other equipment, so that the time is wasted, and technical innovation is performed on the basis of the prior supporting structure aiming at the situation.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a bearing structure for after arbor transplants to solve the problem that proposes among the above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme: the utility model provides a bearing structure for after arbor is transplanted, includes supporting shoe and hydraulic pressure post, both sides are provided with the connecting rod around the right-hand member of supporting shoe, and the connecting rod keeps away from supporting shoe water flat line one side and is provided with the support frame, the right-hand member of support frame is provided with spring one, one side that is close to supporting shoe water flat line of spring is provided with anchor clamps, and the left end of anchor clamps is provided with the connective bar, the hydraulic pressure post sets up the left end at the connective bar.
Furthermore, the lower extreme of supporting shoe is provided with thin flexible post, and has run through thick support column below the outside of thin flexible post.
Further, both ends set up lifting unit about thin flexible post, lifting unit includes rack one, gear one and rack two, one side that thin flexible post axis was kept away from to rack one is provided with gear one, and one side that thin flexible post axis was kept away from to gear one is provided with rack two.
Further, the lower extreme of thin flexible post is provided with sliding assembly, sliding assembly includes slider and threaded rod, threaded rod is run through to the inside of slider.
Furthermore, the sliding assembly further comprises a second gear, a third gear and a rotating rod, the lower end of the threaded rod is arranged on the second gear, the left end of the second gear is provided with a third gear, and the left end of the third gear is provided with the rotating rod.
Furthermore, the left end of dwang is provided with the crank, the lower extreme of thick support column is provided with the base.
Furthermore, the spike penetrates through the left side and the right side of the upper end of the base, a limiting block is arranged on the outer side of the spike, a second spring is arranged at the lower end of the limiting block, and a sliding groove is formed in the base.
Compared with the prior art, the beneficial effects of the utility model are that: the radian that the clamp is opened can be controlled through the extension and retraction of the hydraulic column, so that the tree trunks with different thicknesses can be clamped, the equipment utilization rate is higher, the hand crank is shaken, the thin extension column can extend out of or retract back from the thick support column, the equipment can be adjusted in height, the equipment can be conveniently used for fixing the positions of the trees with different heights, the long nail is pressed to fix the base on the ground, the integral strength of the support structure is increased, and the trees are prevented from toppling over;
1. the utility model discloses a connecting rod, spring one, anchor clamps, connective bar and hydraulic column's setting, the hydraulic column pressurization promotes the connective bar and opens to both sides, the connective bar opens and makes the connecting axle on anchor clamps and the connecting rod take place to rotate, thereby make anchor clamps open to both sides, anchor clamps open and make spring one compressed, retract through the hydraulic column, make the connective bar draw close inwards, thereby make anchor clamps fold from both sides and carry out the centre gripping to the trunk, the radian that the control anchor clamps opened, thereby can the different thickness arbor trunks of centre gripping, make equipment utilization higher, spring one rebounds when anchor clamps fold, the compression and the rebounding of spring one make anchor clamps more steady in the motion;
2. the utility model discloses a setting of slider, threaded rod, gear two, gear three, dwang, thin flexible post and crank, operating personnel rotates the crank, and the crank rotation drives the dwang rotation, and the dwang rotation drives gear two, gear three and threaded rod rotation, and the threaded rod rotation makes the slider reciprocate, and the slider removal drives thin flexible post and reciprocates, makes thin flexible post stretch out or retract from thick support column, thereby equipment can adjust the height, conveniently is used for not the tall arbor to come the fixed position;
3. the utility model discloses a setting of base, spike, spout, stopper and spring two, the spout has been seted up to the inside of base, operating personnel presses down the spike, make the spike pass the base nail and go into ground, bump on the spike slides in the spout, press down the spike and make stopper compression spring two, bump on the spike meets the recess in the spout, make bump and recess block under the promotion of spring two to make the base fixed subaerial by the spike, increased bearing structure bulk strength, prevented empting of arbor.
Drawings
Fig. 1 is a schematic front view, partially cross-sectional structural view of a support structure for transplanted trees of the present invention;
fig. 2 is a schematic top view of the supporting structure and the clamp for the support structure after arbor transplantation of the present invention;
fig. 3 is an enlarged schematic structural view of a supporting structure after arbor transplantation in fig. 1 according to the present invention;
fig. 4 is a schematic view of a three-dimensional structure of a slider for a support structure after arbor transplantation.
In the figure: 1. a support block; 2. a connecting rod; 3. a support frame; 4. a first spring; 5. a clamp; 6. a connecting rod; 7. a hydraulic column; 8. a lifting assembly; 801. a first gear rack; 802. a first gear; 803. a gear rack II; 9. a sliding assembly; 901. a slider; 902. a threaded rod; 903. a second gear; 904. a third gear; 905. rotating the rod; 10. a base; 11. a long nail; 12. a chute; 13. a limiting block; 14. a second spring; 15. a coarse support column; 16. a thin telescopic column; 17. a hand crank.
Detailed Description
As shown in fig. 1-2 and 4, a supporting structure for transplanted trees comprises a supporting block 1 and a hydraulic column 7, wherein connecting rods 2 are arranged on the front side and the rear side of the right end of the supporting block 1, a supporting frame 3 is arranged on the side, away from the horizontal line of the supporting block 1, of the connecting rod 2, a first spring 4 is arranged on the right end of the supporting frame 3, a clamp 5 is arranged on the side, close to the horizontal line of the supporting block 1, of the first spring 4, a connecting rod 6 is arranged on the left end of the clamp 5, the hydraulic column 7 is arranged on the left end of the connecting rod 6, the hydraulic column 7 is pressurized to push the connecting rod 6 to open towards two sides, the connecting rod 6 is opened to enable the clamp 5 and the connecting shaft on the connecting rod 2 to rotate, so that the clamp 5 opens towards two sides, the clamp 5 is opened to enable the first spring 4 to be compressed, the connecting rod 6 retracts through the hydraulic column 7, the connecting rod 6 draws close inwards, so that the clamp 5 closes from two sides to clamp a trunk, and controls the opening radian of the clamp 5, thereby can the centre gripping different thickness arbor trunks, make equipment utilization ratio higher, the first 4 spring-backs of spring when anchor clamps 5 are closed, the compression and the resilience of first 4 spring make anchor clamps 5 more steady in the motion, the lower extreme of supporting shoe 1 is provided with thin flexible post 16, and the outside below of thin flexible post 16 runs through thick support column 15, the left and right ends of thin flexible post 16 set up lift assembly 8, lift assembly 8 includes rack 801, rack 802 and rack two 803, rack 801 keeps away from one side of thin flexible post 16 axis and is provided with rack 802, and rack 802 keeps away from one side of thin flexible post 16 axis and is provided with rack two 803, the lower extreme of thin flexible post 16 is provided with slip assembly 9, slip assembly 9 includes slider 901 and threaded rod 902, the inside of slider 901 runs through the threaded rod, slip assembly 9 still includes rack two 903, three 904 and dwang 905 of gear, the lower extreme of threaded rod 902 sets up in two 903 of gear, and the left end of two 903 of gear is provided with three 904 of gear, the left end of three 904 of gear is provided with dwang 905, the left end of dwang 905 is provided with hand crank 17, operating personnel rotates hand crank 17, hand crank 17 is rotatory to drive dwang 905 and rotates, dwang 905 is rotatory to drive two 903 of gear, three 904 of gear and the rotation of threaded rod 902, the rotation of threaded rod 902 makes slider 901 reciprocate, slider 901 removes to drive thin flexible post 16 and reciprocates, make thin flexible post 16 can follow and stretch out or retract in the thick support column 15, thereby equipment can adjust the height, conveniently be used for not co-altitude arbor to come fixed position.
As shown in fig. 3, the lower extreme of thick support column 15 is provided with base 10, spike 11 has been run through to the upper end left and right sides of base 10, and the outside of spike 11 is provided with stopper 13, the lower extreme of stopper 13 is provided with spring two 14, the inside of base 10 is provided with spout 12, spout 12 has been seted up to the inside of base 10, operating personnel presses spike 11, make the spike pass base 10 and follow closely ground, bump on spike 11 slides in spout 12, it makes stopper 13 compression spring two 14 to press spike 11, bump on spike 11 meets the recess in spout 12, make bump and recess block under the promotion of spring two 14, thereby make base 10 fixed subaerial by spike 11, the overall strength of bearing structure has been increased, the toppling over of arbor has been prevented.
The working principle is as follows: when the supporting structure for the transplanted arbor is used, firstly, an operator holds the hand crank 17 according to the height of the arbor and slightly rotates the hand crank 17, the hand crank 17 rotates to drive the rotating rod 905 to rotate, the rotating rod 905 rotates to drive the gear three 904 to rotate, the gear three 904 rotates to drive the gear two 903 to rotate, the gear two 903 rotates to drive the threaded rod 902 to rotate, the threaded rod 902 rotates to enable the slider 901 to move up and down, the slider 901 moves to drive the fine telescopic column 16 to move up and down, the fine telescopic column 16 drives the gear strip one 801 to move in the moving process, the gear strip 801 one moves to enable the gear strip one 802 to rotate, the gear strip one 802 moves in the gear strip two 803 to enable the fine telescopic column 16 to stretch in the coarse supporting column 15, so that the height of the equipment can be adjusted, the arbor with different heights can be measured to fix the position, after the height is adjusted, the operator turns on a power supply, the hydraulic column 7 starts to pressurize, the hydraulic rod on the hydraulic column 7 stretches out to push the connecting rod 6 to open towards two sides, the connecting rod 6 opens to enable the clamp 5 and the connecting shaft on the connecting rod 2 to rotate, so that the clamp 5 opens towards two sides, the spring I4 on the support frame 3 is compressed when the clamp 5 opens, the tree trunk is placed into the opened clamp 5, the hydraulic column 7 retracts to enable the connecting rod 6 to draw close inwards, so that the clamp 5 folds from two sides, the tree trunk is clamped by the clamp 5, the spring I4 rebounds when the clamp 5 folds, the clamp 5 is more stable in folding and unfolding due to the arrangement of the spring I4, the radian of the clamp 5 in opening can be controlled through the expansion and contraction of the hydraulic column 7, so that the tree trunks with different thicknesses can be clamped, after the tree trunks are clamped, an operator presses the long nail 11 to enable the long nail to penetrate through the base 10 to be nailed into the ground, and salient points on the long nail 11 slide in the sliding groove 12 when pressing, stopper 13 on the spike 11 compresses two springs 14 simultaneously, and the bump on spike 11 meets the recess in the spout 12, makes bump and recess block under two springs 14's promotion to make spike 11 can be fixed to ground, base 10 is fixed subaerial by spike 11 this moment, thereby has increased bearing structure bulk strength, has prevented empting of arbor.

Claims (7)

1. The utility model provides a bearing structure for after arbor is transplanted, includes supporting shoe (1) and hydraulic pressure post (7), its characterized in that, both sides are provided with connecting rod (2) around the right-hand member of supporting shoe (1), and one side that supporting shoe (1) water flat line was kept away from in connecting rod (2) is provided with support frame (3), the right-hand member of support frame (3) is provided with spring (4), one side that spring (4) are close to supporting shoe (1) water flat line is provided with anchor clamps (5), and the left end of anchor clamps (5) is provided with connective bar (6), hydraulic pressure post (7) set up the left end at connective bar (6).
2. The supporting structure after arbor transplantation according to claim 1, wherein the supporting block (1) is provided with a thin telescopic column (16) at the lower end thereof, and a thick supporting column (15) penetrates through the outer lower part of the thin telescopic column (16).
3. The supporting structure used after arbor transplantation according to claim 2, wherein the left and right ends of the thin telescopic column (16) are provided with lifting components (8), each lifting component (8) comprises a first gear rack (801), a first gear (802) and a second gear rack (803), one side of the first gear rack (801) away from the central axis of the thin telescopic column (16) is provided with the first gear (802), and one side of the first gear rack (802) away from the central axis of the thin telescopic column (16) is provided with the second gear rack (803).
4. Support structure for trees after transplantation according to claim 2, wherein the lower end of said thin telescopic column (16) is provided with a sliding assembly (9), said sliding assembly (9) comprises a sliding block (901) and a threaded rod (902), and the interior of said sliding block (901) is penetrated by the threaded rod (902).
5. The support structure for the arbor after transplantation according to claim 4, wherein the sliding assembly (9) further comprises a second gear (903), a third gear (904) and a rotating rod (905), the lower end of the threaded rod (902) is arranged on the second gear (903), the left end of the second gear (903) is provided with the third gear (904), and the left end of the third gear (904) is provided with the rotating rod (905).
6. The supporting structure used after arbor transplantation according to claim 5, wherein the left end of the rotating rod (905) is provided with a hand crank (17), and the lower end of the coarse supporting column (15) is provided with a base (10).
7. The supporting structure for the transplanted arbor as defined in claim 6, wherein spikes (11) penetrate through the left and right sides of the upper end of the base (10), the outer side of the spikes (11) is provided with a limiting block (13), the lower end of the limiting block (13) is provided with a second spring (14), and the inside of the base (10) is provided with a sliding groove (12).
CN202222011444.8U 2022-07-31 2022-07-31 A bearing structure for after arbor is transplanted Active CN218514898U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222011444.8U CN218514898U (en) 2022-07-31 2022-07-31 A bearing structure for after arbor is transplanted

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222011444.8U CN218514898U (en) 2022-07-31 2022-07-31 A bearing structure for after arbor is transplanted

Publications (1)

Publication Number Publication Date
CN218514898U true CN218514898U (en) 2023-02-24

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ID=85242259

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222011444.8U Active CN218514898U (en) 2022-07-31 2022-07-31 A bearing structure for after arbor is transplanted

Country Status (1)

Country Link
CN (1) CN218514898U (en)

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