CN107558317B - Road with greenbelt - Google Patents

Road with greenbelt Download PDF

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Publication number
CN107558317B
CN107558317B CN201710955773.9A CN201710955773A CN107558317B CN 107558317 B CN107558317 B CN 107558317B CN 201710955773 A CN201710955773 A CN 201710955773A CN 107558317 B CN107558317 B CN 107558317B
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plate
side plate
plate body
road
planting
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CN107558317A (en
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杨艳
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Dongyang Yan'an Construction Engineering Co., Ltd
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Dongyang Yan'an Construction Engineering Co Ltd
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Abstract

The invention provides a road with a greening isolation belt, which belongs to the field of road construction and comprises a road body, wherein the isolation belt is arranged in the middle of the road body and comprises a plurality of isolation grooves which are sequentially connected; each isolation groove comprises a left side plate, a right side plate, a front panel, a rear panel and a bottom plate, wherein the left side plate and the right side plate are oppositely arranged; a vertical plate is vertically arranged on the inner side of the isolation groove, the vertical plate is parallel to the left side plate and is equal to the left side plate in height, and the two sides of the vertical plate are respectively connected with a front panel and a rear panel; the parts of the front panel and the rear panel between the left side plate and the vertical plate are as high as the left side plate; the parts of the front panel and the rear panel between the right side plate and the vertical plate are as high as the right side plate; a first planting area is formed between the left side plate and the vertical plate, and a plurality of water permeable holes are formed in the bottom of the vertical plate. The road just can set up the afforestation median structure when the construction, and the afforestation median is convenient to be under construction, keeps apart effectually, maintains the facility, can provide good current effect for the road.

Description

road with greenbelt
Technical Field
The invention relates to the field of road construction, in particular to a road with a green isolation belt.
Background
the median structure is generally not set up in the road construction process at present, or the median structure of setting is comparatively simple, adds the median in road later stage use, perhaps changes the median, can cause the road to block up. And the isolation belt with a simple structure has poor use effect and high maintenance cost.
Disclosure of Invention
The invention provides a road with a green isolation belt, and aims to solve the problems in the prior art.
The invention is realized by the following steps:
A road with a greening isolation belt comprises a road body, wherein the isolation belt is arranged in the middle of the road body and comprises a plurality of isolation grooves which are sequentially connected; each isolation groove comprises a left side plate, a right side plate, a front panel, a rear panel and a bottom plate, wherein the left side plate and the right side plate are oppositely arranged; the two sides of the left side plate are respectively connected with a front panel and a rear panel, the two sides of the right side plate are respectively connected with a front panel and a rear panel, and the left side plate, the right side plate, the front panel and the rear panel are vertically arranged on the bottom plate;
the left side plate is higher than the right side plate, a vertical plate is vertically arranged on the inner side of the isolation groove, the vertical plate is parallel to the left side plate and is equal to the left side plate in height, and the two sides of the vertical plate are respectively connected with a front panel and a rear panel; the parts of the front panel and the rear panel between the left side plate and the vertical plate are as high as the left side plate; the parts of the front panel and the rear panel between the right side plate and the vertical plate are as high as the right side plate;
A first planting area is formed between the left side plate and the vertical plate, a water permeable area is formed at the bottom of the vertical plate, and a plurality of water permeable holes are formed in the water permeable area.
preferably, a partition plate is arranged at a position, close to the right side plate, in the isolation groove, the partition plate is parallel to the right side plate and is arranged at the same height with the right side plate, a second planting area is formed between the partition plate and the vertical plate, a cache area is formed between the partition plate and the right side plate, and a plurality of water leakage holes are formed in the partition plate;
The right side plate is provided with a first connecting hole, the left side plate is provided with a second connecting hole, the first connecting hole and the second connecting hole are equal in height and diameter, the left side plate and the right side plate of two adjacent isolation grooves are connected through a connecting ring, the connecting ring is of a flexible structure, two ends of the connecting ring form protruding parts protruding outwards, and the connecting ring penetrates through the first connecting hole and the second connecting hole, so that the two protruding parts are attached to the inner side of the left side plate and the inner side of the right side plate respectively.
Preferably, the first planting area is internally and horizontally provided with a planting plate, and the planting plate is higher than the water permeable area and higher than the second connecting hole.
Preferably, the planting plate comprises an upper plate body and a lower plate body which are hinged with each other, the upper plate body is arranged above the lower plate body, one side of the upper plate body is hinged with the left side plate, a through hole is formed in the upper plate body, a threaded hole coaxial with the through hole is formed in the lower plate body, and the upper plate body and the lower plate body are connected through a bolt; planting holes are formed in the upper plate body, and water through holes are formed in the lower plate body; the diameter of the planting hole is larger than 10cm, and the diameter of the limber hole is smaller than 5 mm;
A support piece is arranged on the vertical plate, and the planting plate is placed on the support piece; the supporting piece comprises fixing pieces positioned at two ends, the fixing pieces are fixedly connected to the vertical plate, and a supporting strip is arranged between the two fixing pieces; the supporting bar is horizontally arranged, and two ends of the supporting bar are connected with the fixing piece through springs; a blind hole is formed in one side, facing the left side plate, of the fixing piece, a sleeve perpendicular to the support bar is arranged at the end of the support bar, one end of the spring is located in the blind hole, the other end of the spring is arranged in the sleeve, and a part of the sleeve is arranged in the blind hole;
two convex blocks are arranged on one side of the lower plate body at intervals and are respectively arranged right above the two ends of the supporting bar, and the edges of the side parts of the convex blocks are hinged with the side edges of the upper plate body; the edge of the upper plate body is positioned above the side of the fixing piece;
after the bolt breaks away from the lower plate body, the lower plate body overturns downwards under the action of gravity, so that the lug of the lower plate body pushes the support bar and compresses the spring, the lower plate body and the upper plate body are separated from the support bar, the lower plate body and the upper plate body can overturn downwards to a vertical position, and the lower plate body can shield the second connecting hole.
Further preferably, the width of the upper plate body is the same as that of the lower plate body, and the width of the upper plate body is half of the distance between the upper plate body and the bottom plate, so that the bottom of the lower plate body can be in contact with the bottom plate when the upper plate body and the lower plate body are in vertical positions.
further preferably, the connection ring is made of rubber, and the protrusion has a tapered structure.
More preferably, the adjacent two isolation grooves are connected by a screw.
According to the road with the greening isolation belt, the greening isolation belt structure can be arranged during road construction, the greening isolation belt is convenient to construct, good in isolation effect and convenient to maintain, and a good passing effect can be provided for the road.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to the drawings without creative efforts.
FIG. 1 is a schematic structural diagram of a road with a green isolation belt according to an embodiment of the present invention;
FIG. 2 is a schematic top view of an isolation groove in a road with a green isolation belt provided by an embodiment of the invention;
FIG. 3 is a schematic cross-sectional view of an isolation groove in a road with a green isolation belt, provided by an embodiment of the invention, when a planting plate is horizontally placed;
FIG. 4 is a schematic cross-sectional view of an isolation groove in a road with a green isolation belt, provided by an embodiment of the invention, when a planting plate is vertically placed;
FIG. 5 is a schematic structural diagram of the connection of a first connection hole and a second connection hole of an isolation groove in a road with a green isolation belt according to an embodiment of the present invention;
FIG. 6 is a schematic structural diagram of a support member in a road with a green isolation belt according to an embodiment of the invention;
fig. 7 is a schematic top view of a lower plate in a road with a green isolation belt according to an embodiment of the present invention.
Summary of reference numerals: the road body 11, the isolation zone 12, the isolation groove 13, the left side plate 14, the right side plate 15, the front panel 16, the rear panel 17, the bottom plate 18, the vertical plate 19, the first planting area 20, the water permeable hole 21, the partition plate 22, the second planting area 23, the water leakage hole 24, the first connecting hole 25, the second connecting hole 26, the connecting ring 27, the protruding part 28, the planting plate 29, the upper plate body 30, the lower plate body 31, the bolt 32, the planting hole 33, the water passage hole 34, the support piece 35, the fixing piece 36, the support strip 37, the spring 38, the blind hole 39, the sleeve 40 and the convex block 41.
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.
For example, please refer to FIGS. 1-7.
the embodiment provides a road with afforestation median, and the road just can set up afforestation median 12 structure when the construction, and afforestation median 12 is convenient to be under construction, keeps apart effectually, and it is convenient to maintain, can provide good current effect for the road.
As shown in fig. 1, the road with the greening isolation belt comprises a road body 11, an isolation belt 12 is arranged in the middle of the road body 11, and the isolation belt 12 comprises a plurality of isolation grooves 13 which are connected in sequence; each isolation groove 13 comprises a left side plate 14 and a right side plate 15 which are oppositely arranged, a front panel 16 and a rear panel 17 which are oppositely arranged, and a bottom plate 18; the two sides of the left side plate 14 are respectively connected with a front panel 16 and a rear panel 17, the two sides of the right side plate 15 are respectively connected with the front panel 16 and the rear panel 17, and the left side plate 14, the right side plate 15, the front panel 16 and the rear panel 17 are vertically arranged on the bottom plate 18;
The left side plate 14 is higher than the right side plate 15, a vertical plate 19 is vertically arranged on the inner side of the isolation groove 13, the vertical plate 19 is parallel to the left side plate 14 and is equal to the left side plate 14 in height, and two sides of the vertical plate 19 are respectively connected with a front panel 16 and a rear panel 17; the parts of the front panel 16 and the rear panel 17 between the left side plate 14 and the vertical plate 19 are as high as the left side plate 14; the parts of the front panel 16 and the rear panel 17 between the right side plate 15 and the vertical plate 19 are as high as the right side plate 15;
a first planting area 20 is formed between the left side plate 14 and the vertical plate 19, a water permeable area is formed at the bottom of the vertical plate 19, and the water permeable area is provided with a plurality of water permeable holes 21.
The isolation belt 12 is formed by connecting and splicing a plurality of isolation grooves 13 in sequence. One isolation groove 13 has a left side plate 14, a right side plate 15, a front plate 16, a rear plate 17, and a bottom plate 18, and a vertical plate 19 is provided between the left side plate 14 and the right side plate 15.
As shown in fig. 2, such a separation groove 13 has a feature that one end is high and the other part is low. When using, can plant different plants at two parts for median 12 is more stereographic, and is more pleasing to the eye, and simultaneously, the light of the road both sides vehicle of traveling can be sheltered from well to a plurality of high plants that the interval set up, makes road both sides vehicle not influence each other, and more low plant can make the driver observe the road conditions of road opposite side again.
In addition, a water permeable area is arranged on the vertical plate 19 and is provided with water permeable holes 21, when watering is carried out, only the higher part of the isolation groove 13 is watered, water can pass through the water permeable holes 21 and enter the other side of the vertical plate 19, and therefore plants on the other side of the vertical plate 19 can absorb water. The watering vehicle can stop after driving for a certain distance, and then drive to the next position for watering after watering. The watering vehicle does not need to run at a low speed for a long time, the oil consumption of the watering vehicle is reduced, and the pollutant emission is reduced.
As shown in fig. 2 and 3, a partition plate 22 is disposed in the isolation groove 13 near the right side plate 15, the partition plate 22 is parallel to and at the same height as the right side plate 15, a second planting area 23 is formed between the partition plate 22 and the vertical plate 19, a buffer area is formed between the partition plate 22 and the right side plate 15, and a plurality of water leakage holes 24 are disposed on the partition plate 22;
The right side plate 15 is provided with a first connecting hole 25, the left side plate 14 is provided with a second connecting hole 26, the first connecting hole 25 and the second connecting hole 26 have the same height and the same diameter, the left side plate 14 and the right side plate 15 of two adjacent isolation grooves 13 are connected through a connecting ring 27, the connecting ring 27 is of a flexible structure, two ends of the connecting ring 27 form protruding parts 28 protruding outwards, and the connecting ring 27 penetrates through the first connecting hole 25 and the second connecting hole 26, so that the two protruding parts 28 are respectively attached to the inner side of the left side plate 14 and the inner side of the right side plate 15.
The left side plate 14 and the right side plate 15 are provided with connecting holes, the connecting holes are arranged to enable the two isolation grooves 13 to be tightly connected together, water in the first planting area 20 in one isolation groove 13 can also pass through the first connecting hole 25 and the second connecting hole 26 to enter the second planting area 23 of the other isolation groove 13, the second planting area 23 of one isolation groove 13 can receive water from the two first planting areas 20 on two sides, the water can more uniformly flow into the second planting area 23, and plants on all parts of the second planting area 23 can absorb the water.
Near right side board 15 has set up baffle 22, sets up the hole 24 that leaks on the baffle 22, and the hole 24 that leaks helps the flow of water, and the setting up of baffle 22 makes that first connecting hole 25 can be seted up big enough, makes things convenient for the connection of two isolation tanks 13, makes things convenient for the water inflow second planting hole 33 in first planting district 20, and the rethread hole 24 that leaks flows into second planting district 23 from the buffer memory district. Meanwhile, the smaller water leakage holes 24 enable soil and water in the second planting area 23 not to be easily lost. The space is formed in the cache region, tools can be placed, and maintenance of the road and the isolation belt 12 is facilitated. The first and second connection holes 25 and 26 may be set to have a diameter greater than 10cm, and the water leakage hole 24 may be set to have a diameter less than 5 mm.
As shown in fig. 3, a planting plate 29 is horizontally arranged in the first planting area 20, and the planting plate 29 is higher than the water permeable area and higher than the second connecting hole 26. The planting plate 29 is positioned at a higher level so that the planted potted plant can be placed directly in the first planting area 20 or can be filled with soil for planting.
As shown in fig. 4, the planting plate 29 includes an upper plate 30 and a lower plate 31 that are hinged to each other, the upper plate 30 is disposed above the lower plate 31, one side of the upper plate 30 is hinged to the left side plate 14, a through hole is formed in the upper plate 30, a threaded hole coaxial with the through hole is formed in the lower plate 31, and the upper plate 30 and the lower plate 31 are connected by a bolt 32; the upper plate body 30 is provided with planting holes 33, and the lower plate body 31 is provided with water through holes 34; the diameter of the planting hole 33 is larger than 10cm, and the diameter of the limber hole 34 is smaller than 5 mm;
A support member 35 is arranged on the vertical plate 19, and the planting plate 29 is placed on the support member 35; the supporting part 35 comprises fixing parts 36 positioned at two ends, the fixing parts 36 are fixedly connected to the vertical plate 19, and a supporting bar 37 is arranged between the two fixing parts 36; the supporting bar 37 is horizontally arranged, and two ends of the supporting bar 37 are connected with the fixing piece 36 through springs 38; the fixing piece 36 is provided with a blind hole 39 on one side facing the left side plate 14, the end part of the supporting strip 37 is provided with a sleeve 40 perpendicular to the supporting strip, one end of the spring 38 is positioned in the blind hole 39, the other end of the spring 38 is positioned in the sleeve 40, and a part of the sleeve 40 is positioned in the blind hole 39;
two convex blocks 41 are arranged at one side of the lower plate body 31 at intervals, the two convex blocks 41 are respectively arranged right above the two ends of the supporting bar 37, and the side edges of the convex blocks 41 are hinged with the side edges of the upper plate body 30; the edge of the upper plate 30 is located above the side of the fixing piece 36;
After the bolt 32 is separated from the lower plate body 31, the lower plate body 31 is turned downwards under the action of gravity, so that the protrusion 41 of the lower plate body 31 pushes the support bar 37 and compresses the spring 38, the lower plate body 31 and the upper plate body 30 are separated from the support bar 37, the lower plate body 31 and the upper plate body 30 can be turned downwards to a vertical position, and the lower plate body 31 can shield the second connecting hole 26.
above-mentioned mode of setting up for plant and can conveniently place cultivated in a pot on the board 29, and plant the board 29 upset back and can fill out soil and then plant great plant in first planting district 20.
The planting plate 29 is in a higher position when horizontally placed, the distance from the top of the left side plate 14 is smaller, at the moment, a potted plant can be placed on the planting plate 29, and plants in the potted plant can be exposed out of the left side plate 14, so that a good greening effect is achieved; the planting holes 33 with larger diameters are formed in the upper plate body 30, so that the bottom of the potted plant can be placed in the planting holes 33, the side part of the potted plant can be well supported, and the potted plant has good stability; the lower plate body 31 is provided with a water through hole 34, and water can penetrate through the water through hole 34 to enter the lower part of the planting plate 29 and enter the second planting areas 23 on the two sides during watering.
The planting plate 29 can move, so that when the planting plate is turned downwards and is in a vertical position, the first planting area 20 has a larger space, can be filled with more soil, and can plant larger plants.
As shown in fig. 6, the supporting member 35 is used for supporting the planting plate 29, the supporting member 35 is disposed on the vertical plate 19, two fixing members 36 are fixed on the vertical plate 19, and the supporting bar 37 is movably disposed. The planting plate 29 comprises an upper plate body 30 and a lower plate body 31, the upper plate body 30 and the lower plate body 31 are identical in size, the upper plate body 30 is located above the side of the fixing piece 36, and when the planting plate 29 is horizontally placed, the upper plate body 30 and the lower plate body 31 are placed on the supporting strips 37 and are in non-contact relation with the fixing piece 36.
One end of the upper plate body 30 is connected with the left side plate 14, and the other end is supported by a supporting bar 37, so that the upper plate body 30 can be in a horizontal position; the lower plate 31 is connected to the upper plate 30 by bolts 32 so that the lower plate 31 can be also in a horizontal position.
After the bolts 32 are loosened to release the fixed connection between the upper plate 30 and the lower plate 31 (at this time, the upper plate 30 and the lower plate 31 still have a hinged connection), the lower plate 31 is turned downward by gravity, the side edge of the lower plate 31 applies pressure to the end of the support bar 37 toward the fixing member 36, the spring 38 is compressed, the support bar 37 moves toward the fixing member 36, the support bar 37 no longer supports the upper plate 30, the end of the upper plate 30 is also turned downward without the support of the support bar 37, and the upper plate 30 and the lower plate 31 are finally in a vertical state.
a blind hole 39 is formed in the fixing piece 36, a spring 38 is arranged in the blind hole 39, and the supporting bar 37 can move towards the fixing piece 36 after the spring 38 is compressed; the end of the supporting strip 37 is provided with a sleeve 40, the end of the spring 38 is positioned in the sleeve 40, a part of the sleeve 40 is positioned in the blind hole 39, and the supporting strip 37 cannot move downwards due to the supporting effect of the blind hole 39 on the sleeve 40, so that the supporting strip 37 can provide stable supporting effect for the planting plate 29.
One side of the lower plate 31 has two protrusions 41, and the edges of the protrusions 41 are hinged to the edges of the upper plate 30. When the upper plate 30 and the lower plate 31 are in the horizontal position, the two protrusions 41 are placed above the end portions of the supporting bars 37, the supporting bars 37 directly give support to the lower plate 31, and the upper plate 30 is supported by the lower plate 31. When the bolts 32 are loosened, the lower plate 31 is turned downwards, the lugs 41 are inclined, the support bars 37 are pushed from the side, the springs 38 are compressed, and the sleeves 40 enter the blind holes 39, so that the upper plate 30 can be turned downwards.
This arrangement allows the planting plate 29 to be easily adjusted, and when the planting plate 29 is required to be turned to a vertical position, the potted plant on the planting plate 29 is removed, and the planting plate 29 is automatically opened downward after the bolts 32 are loosened.
After the planting plate 29 is opened downward, the lower plate 31 is attached to the left side plate 14, and a part of the water passing holes 34 are attached to the second connecting holes 26. After the first planting area 20 is filled with soil and watered, the diameter of the water through hole 34 is small, so that the soil cannot penetrate through the water through hole 34, and water can penetrate through the water through hole 34, the second connecting hole 26 and enter the first connecting hole 25 on the side.
The widths of the upper plate 30 and the lower plate 31 are the same, and the width of the upper plate 30 is half of the distance between the upper plate 30 and the bottom plate 18, so that the bottom of the lower plate 31 can contact the bottom plate 18 when the upper plate 30 and the lower plate 31 are in the vertical position. This arrangement makes the planting plate 29 stable after being opened downward.
The connection ring 27 is made of rubber and the projection 28 is of a conical configuration. The rubber-made coupling ring 27 makes it possible to easily and stably couple into the first coupling hole 25 and the second coupling hole 26 with good sealing performance. The bulge 28 with the conical structure can form a larger attaching area with the left side plate 14 and the right side plate 15, and has better sealing effect.
and the adjacent two isolation grooves 13 are connected through screws. The two isolation grooves 13 are connected more stably after being connected through the screws.
The previous description of the disclosed embodiments is provided to enable any person skilled in the art to make or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the generic principles defined herein may be applied to other embodiments without departing from the spirit or scope of the invention. Thus, the present invention is not intended to be limited to the embodiments shown herein but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims (4)

1. A road with a green isolation belt is characterized by comprising a road body, wherein the isolation belt is arranged in the middle of the road body and comprises a plurality of isolation grooves which are sequentially connected; each isolation groove comprises a left side plate, a right side plate, a front panel, a rear panel and a bottom plate, wherein the left side plate and the right side plate are oppositely arranged; the two sides of the left side plate are respectively connected with a front panel and a rear panel, the two sides of the right side plate are respectively connected with a front panel and a rear panel, and the left side plate, the right side plate, the front panel and the rear panel are vertically arranged on the bottom plate;
the left side plate is higher than the right side plate, a vertical plate is vertically arranged on the inner side of the isolation groove, the vertical plate is parallel to the left side plate and is equal to the left side plate in height, and the two sides of the vertical plate are respectively connected with a front panel and a rear panel; the parts of the front panel and the rear panel between the left side plate and the vertical plate are as high as the left side plate; the parts of the front panel and the rear panel between the right side plate and the vertical plate are as high as the right side plate;
a first planting area is formed between the left side plate and the vertical plate, a water permeable area is formed at the bottom of the vertical plate, and a plurality of water permeable holes are formed in the water permeable area;
A partition plate is arranged at a position, close to the right side plate, in the isolation groove, the partition plate is parallel to the right side plate and is arranged at the same height with the right side plate, a second planting area is formed between the partition plate and the vertical plate, a cache area is formed between the partition plate and the right side plate, and a plurality of water leakage holes are formed in the partition plate;
The right side plate is provided with a first connecting hole, the left side plate is provided with a second connecting hole, the first connecting hole and the second connecting hole are equal in height and diameter, the left side plate and the right side plate of two adjacent isolation grooves are connected through a connecting ring, the connecting ring is of a flexible structure, two ends of the connecting ring form protruding parts protruding outwards, and the connecting ring penetrates through the first connecting hole and the second connecting hole to enable the two protruding parts to be attached to the inner side of the left side plate and the inner side of the right side plate respectively;
A planting plate is horizontally arranged in the first planting area, and is higher than the water permeable area and higher than the second connecting hole;
the planting plate comprises an upper plate body and a lower plate body which are hinged with each other, the upper plate body is arranged above the lower plate body, one side of the upper plate body is hinged with the left side plate, a through hole is formed in the upper plate body, a threaded hole coaxial with the through hole is formed in the lower plate body, and the upper plate body and the lower plate body are connected through a bolt; planting holes are formed in the upper plate body, and water through holes are formed in the lower plate body; the diameter of the planting hole is larger than 10cm, and the diameter of the limber hole is smaller than 5 mm;
a support piece is arranged on the vertical plate, and the planting plate is placed on the support piece; the supporting piece comprises fixing pieces positioned at two ends, the fixing pieces are fixedly connected to the vertical plate, and a supporting strip is arranged between the two fixing pieces; the supporting bar is horizontally arranged, and two ends of the supporting bar are connected with the fixing piece through springs; a blind hole is formed in one side, facing the left side plate, of the fixing piece, a sleeve perpendicular to the supporting bar is arranged at the end part of the supporting bar, one end of the spring is located in the blind hole, the other end of the spring is arranged in the sleeve, and a part of the sleeve is arranged in the blind hole;
two convex blocks are arranged on one side of the lower plate body at intervals and are respectively arranged right above the two ends of the supporting bar, and the edges of the side parts of the convex blocks are hinged with the side edges of the upper plate body;
after the bolt breaks away from the lower plate body, the lower plate body overturns downwards under the action of gravity, so that the lug of the lower plate body pushes the support bar and compresses the spring, the lower plate body and the upper plate body are separated from the support bar, the lower plate body and the upper plate body can overturn downwards to a vertical position, and the lower plate body can shield the second connecting hole.
2. the road with the green isolation belt as claimed in claim 1, wherein the upper and lower boards have the same width, and the width of the upper board is half of the distance between the upper board and the bottom board, so that the bottom of the lower board can contact with the bottom board when the upper and lower boards are in the vertical position.
3. A road with green insulation belt as claimed in claim 2, wherein the connection ring is made of rubber, and the protrusion is of a conical structure.
4. a road with green isolation belts as claimed in claim 3, wherein the adjacent isolation grooves are connected by screws.
CN201710955773.9A 2017-10-14 2017-10-14 Road with greenbelt Active CN107558317B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201710955773.9A CN107558317B (en) 2017-10-14 2017-10-14 Road with greenbelt

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Application Number Priority Date Filing Date Title
CN201710955773.9A CN107558317B (en) 2017-10-14 2017-10-14 Road with greenbelt

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CN107558317A CN107558317A (en) 2018-01-09
CN107558317B true CN107558317B (en) 2019-12-06

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