CN214546109U - Gardens anti-riot sun-shading device that shines - Google Patents

Gardens anti-riot sun-shading device that shines Download PDF

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Publication number
CN214546109U
CN214546109U CN202120364356.9U CN202120364356U CN214546109U CN 214546109 U CN214546109 U CN 214546109U CN 202120364356 U CN202120364356 U CN 202120364356U CN 214546109 U CN214546109 U CN 214546109U
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China
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bevel gear
supporting
sun
ground
connecting rod
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CN202120364356.9U
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苏菲
赵玉琪
于来男
张文丽
李翔翔
李�瑞
杨秀川
叶振良
梁玉彤
张瑜
王统
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Shandong Gangji Jinghua Municipal Garden Co ltd
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Shandong Gangji Jinghua Municipal Garden Co ltd
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Abstract

The utility model relates to a technical field of gardens protection discloses a gardens sun protection solar protection device, and it includes sunshading board and two sets of supporting mechanism, the sunshading board rotates to be connected between two sets of supporting mechanism, and is two sets of the one end that supporting mechanism is close to ground all is connected with ground. This application has the effect that improves the convenience that solar protection devices used.

Description

Gardens anti-riot sun-shading device that shines
Technical Field
The application relates to the field of gardens protection, especially relate to a gardens sun-shading device that prevents insolate.
Background
With the development of economic society and the demand of people for high-quality life, a garden green belt is often arranged in the middle of a road in a city, the green belt not only has the function of beautifying the city, but also can eliminate the visual fatigue of a driver, and the space scale of the road can be changed by planting a tree green belt, so that the road space has good aspect ratio. In addition, the dust-absorbing agent has the functions of purifying the environment, retaining dust, weakening noise, absorbing harmful gases and releasing oxygen.
In hot summer, in greening maintenance, in order to protect vegetation from damage caused by direct strong sunlight, a sun-screening net is often adopted to shade the vegetation.
The existing sun-shading device mostly comprises a sun-shading net arranged above a green belt, wherein a supporting rod is fixedly connected to one side, close to the ground, of the sun-shading net, and one end, far away from the sun-shading net, of the supporting rod is connected with the ground in an inserted mode.
To the correlation technique among the above-mentioned, the inventor thinks sunshade net and bracing piece fixed connection, the scope that sunshade net sheltered from can not convenient adjust according to irradiant intensity and irradiant angle, has the inconvenient defect of solar protection devices.
SUMMERY OF THE UTILITY MODEL
In order to alleviate solar protection devices awkward problem, this application provides a gardens sun-proof solar protection devices.
The application provides a pair of gardens sun protection solar protection devices, adopt following technical scheme:
the utility model provides a gardens anti-riot sun-shading device, includes sunshading board and two sets of supporting mechanism, the sunshading board rotates to be connected between two sets of supporting mechanism, and is two sets of the one end that supporting mechanism is close to ground all is connected with ground.
Through adopting above-mentioned technical scheme, rotate the sunshading board and connect between two sets of supporting mechanism, solar protection devices's the scope of sheltering from can adjust through rotating the sunshading board, improves the convenience that solar protection devices used.
Optionally, an adjusting mechanism for limiting the rotation of the sun visor is arranged on one group of the supporting mechanisms.
Through adopting above-mentioned technical scheme, set up adjustment mechanism on one of them group of supporting mechanism, utilize adjustment mechanism to restrict the rotation of sunshading board, stability when improving solar protection devices and using.
Optionally, the adjusting mechanism includes a sector worm wheel and a worm, the sector worm wheel is connected with the sun visor, the rotation axis of the sector worm wheel is collinear with the rotation axis of the sun visor, the worm is rotationally connected with the supporting mechanism, and the worm is meshed with the sector worm wheel.
Through adopting above-mentioned technical scheme, the worm restricts the rotation of sunshading board with the cooperation of fan-shaped worm wheel. The worm gear is driven to rotate through rotation of the worm, so that the sun shield is rotated, and the garden worker is easy and convenient to operate when rotating the sun shield.
Optionally, one end of the supporting mechanism, which is close to the ground, is provided with an installation mechanism for connecting with the ground, a square hole is formed in the ground, and the installation mechanism is inserted into the square hole.
By adopting the technical scheme, the supporting mechanism is connected with the ground through the mounting mechanism, the mounting mechanism is inserted in the square hole, the tightness of the connection between the supporting mechanism and the ground is improved, and the working stability of the sun shading device is improved.
Optionally, installation mechanism includes sleeve, coupling assembling and drive assembly, drive assembly includes dwang and a plurality of first bevel gear, and is a plurality of the equal coaxial fixed connection of first bevel gear is on the dwang, the cover sleeve is established in a plurality of first bevel gear outsides and sleeve and dwang rotation are connected, the dwang is connected with supporting mechanism, coupling assembling sets up on the sleeve, first bevel gear is connected with the coupling assembling meshing.
Through adopting above-mentioned technical scheme, when utilizing installation mechanism to be connected with ground, stretch into the square hole with the sleeve, rotate through the dwang and drive a plurality of first bevel gears and rotate, first bevel gear drive coupling assembling is connected with ground, and easy operation is convenient.
Optionally, coupling assembling includes second bevel gear, stay tube and connecting rod, the connecting rod is worn to establish in the stay tube and connecting rod and stay tube threaded connection, stay tube fixed connection just stay tube and the outside intercommunication of sleeve on telescopic lateral wall, second bevel gear rotates with the stay tube to be connected, second bevel gear and connecting rod sliding connection and second bevel gear rotate with the connecting rod is synchronous, second bevel gear is connected with first bevel gear meshing.
Through adopting above-mentioned technical scheme, second bevel gear rotates under first bevel gear's drive, and second bevel gear rotates with the connecting rod synchronous, connecting rod and bracing piece threaded connection, and the connecting rod rotates the in-process and removes to the direction of keeping away from second bevel gear, and the connecting rod removes the in-process and creeps into to ground to be connected with ground.
Optionally, one end of the connecting rod, which is far away from the second bevel gear, is tapered, and one end of the connecting rod, which is far away from the second bevel gear, is provided with a thread.
Through adopting above-mentioned technical scheme, the one end of keeping away from second bevel gear with the connecting rod sets up to the toper and sets up the screw thread in the one end that the connecting rod kept away from second bevel gear, and the pressure that the ground received when the increase connecting rod crept into to ground reduces the degree of difficulty that the connecting rod crept into to ground, improves the work efficiency of staff when fixed guardrail.
Optionally, the supporting mechanism includes slide bar and bracing piece, the slide bar cover is established in the dwang outside and slide bar and dwang sliding connection, be provided with on the slide bar and be used for restricting the gliding self-locking bolt of slide bar, self-locking bolt and dwang butt, bracing piece one end is connected with the slide bar, the sunshading board rotates with the bracing piece to be connected, the screw rod rotates with the bracing piece to be connected.
Through adopting above-mentioned technical scheme, with slide rod and dwang sliding connection, the distance between sunshading board and the ground is adjustable, improves solar protection devices's suitability.
Optionally, one end of the support rod is hinged to the sliding rod, the support rod is fixedly connected with a spring close to the sliding rod, and one end, far away from the support rod, of the spring is fixedly connected with the sliding rod.
Through adopting above-mentioned technical scheme, be connected the bracing piece with the rotation of slide bar, utilize the spring to restrict the bracing piece and the relative rotation of slide bar to make the bracing piece can slide the bar rotation relatively under the exogenic action, improve the ability that supporting mechanism bore external force, reduce the possibility that supporting mechanism damaged under the exogenic action.
In summary, the present application includes at least one of the following beneficial technical effects:
1. the sun shading plate is rotatably connected between the two supporting mechanisms, the two supporting mechanisms are both connected with the ground, the shading range of the sun shading device can be adjusted by rotating the sun shading plate, and the use convenience of the sun shading device is improved;
2. the adjusting mechanisms are arranged on one group of supporting mechanisms, so that the rotation of the sun shield is limited by the adjusting mechanisms, and the stability of the sun shield device in use is improved;
3. the supporting mechanism is connected with the mounting mechanism which is used for being connected with the ground at one end, close to the ground, of the supporting mechanism, the square hole is formed in the ground, the mounting mechanism is inserted into the square hole, the tightness of the supporting mechanism connected with the ground is improved, and therefore the working stability of the sun shading device is improved.
Drawings
FIG. 1 is a schematic diagram of the overall structure of an embodiment of the present application;
FIG. 2 is a schematic structural view of a portion of a mounting mechanism according to an embodiment of the present application;
fig. 3 is a schematic structural diagram of an adjusting mechanism portion according to an embodiment of the present application.
Description of reference numerals: 100. a sun visor; 200. a support mechanism; 210. a slide bar; 211. a self-locking bolt; 220. a support bar; 300. an adjustment mechanism; 310. a sector worm gear; 320. a worm; 400. an installation mechanism; 410. a sleeve; 420. a connecting assembly; 421. a second bevel gear; 422. supporting a tube; 423. a connecting rod; 430. a drive assembly; 431. rotating the rod; 432. a first bevel gear.
Detailed Description
The present application is described in further detail below with reference to figures 1-3.
The embodiment of the application discloses sunshade device is prevented insolateing in gardens. Referring to fig. 1, a sun-shading device for preventing garden from being exposed to the sun comprises two sets of supporting mechanisms 200, wherein the two sets of supporting mechanisms 200 are located on the same side of a green belt. The sun visor 100 is rotatably connected between the two sets of support mechanisms 200, and the sun visor 100 blocks sunlight emitted to the green belt. One set of the supporting mechanisms 200 is rotatably connected with an adjusting mechanism 300, the adjusting mechanism 300 is fixedly connected with the sun visor 100, and the rotation of the sun visor 100 is limited by the adjusting mechanism 300. The two sets of supporting mechanisms 200 are both fixedly connected with an installation mechanism 400, and the supporting mechanisms 200 are connected with the ground through the installation mechanism 400.
Referring to fig. 1 and 2, the mounting mechanism 400 includes a driving assembly 430 slidably coupled to the support mechanism 200, and the driving assembly 430 includes a rotating rod 431, and the rotating rod 431 is slidably coupled to the support mechanism 200. The rotating rod 431 is coaxially and fixedly connected with three first bevel gears 432, and the three first bevel gears 432 are arranged at equal intervals. The sleeve 410 is sleeved outside the three first bevel gears 432, the sleeve 410 is rotatably connected with the rotating rod 431, the sleeve 410 is of a hollow cuboid structure, and the length direction of the sleeve 410 is parallel to the length direction of the rotating rod 431.
A coupling assembly 420 for ground connection is fixedly attached to the sleeve 410, the coupling assembly 420 including six second bevel gears 421. Each first bevel gear 432 is connected with two second bevel gears 421 in a meshing manner, the two second bevel gears 421 are positioned at two sides of the first bevel gear 432, the rotating axes of the two second bevel gears 421 connected to the same first bevel gear 432 in a meshing manner are collinear, and the rotating axis of the first bevel gear 432 is perpendicular to the rotating axis of the second bevel gear 421.
A support pipe 422 is coaxially and rotatably connected to one side of the second bevel gear 421 away from the first bevel gear 432, one end of the support pipe 422 away from the second bevel gear 421 penetrates through the sleeve 410 to be communicated with the outside of the sleeve 410, and the support pipe 422 is fixedly connected with the sleeve 410. One end of the support tube 422, which is far away from the second bevel gear 421, is connected with a connecting rod 423 through a screw thread, and one end of the connecting rod 423, which is far away from the second bevel gear 421, is tapered and threaded. The coaxial fixedly connected with square pole in one side that first bevel gear 432 was kept away from to second bevel gear 421, square pole keep away from the one end of second bevel gear 421 and wear to establish in connecting rod 423 and square pole and connecting rod 423 sliding connection, second bevel gear 421 drives connecting rod 423 synchronous rotation through square pole. Rotate through dwang 431 and drive a plurality of first bevel gears 432 and rotate, second bevel gear 421 rotates under first bevel gear 432's drive, and second bevel gear 421 rotates with connecting rod 423 synchronous, connecting rod 423 and supporting tube 422 threaded connection, and connecting rod 423 rotates the in-process and moves to the direction of keeping away from second bevel gear 421, and connecting rod 423 moves the in-process and creeps into to ground to be connected with ground.
Referring to fig. 1 and 2, the supporting mechanism 200 includes a sliding rod 210, the sliding rod 210 is sleeved on the rotating rod 431, the sliding rod 210 is slidably connected with the rotating rod 431, a self-locking bolt 211 is threadedly connected to the sliding rod 210, a rotation axis of the self-locking bolt 211 is perpendicular to a rotation axis of the rotating rod 431, and the self-locking bolt 211 passes through the sliding rod 210 and abuts against the rotating rod 431.
The position that the slide bar 210 is close to the upper end articulates there is the bracing piece 220, and the one end fixedly connected with spring 230 that the bracing piece 220 is close to the slide bar 210, and the one end and the slide bar 210 fixed connection of bracing piece 220 are kept away from to spring 230. The sun visor 100 is rotatably connected between the two support rods 220 through a rotating shaft fixed on the sun visor 100, the sun visor 100 is in a rectangular parallelepiped structure, the length direction of the sun visor 100 is perpendicular to the length direction of the support rods 220, and the rotating axis of the sun visor 100 is perpendicular to the length direction of the support rods 220.
When the installation mechanism 400 is connected with the ground, the self-locking bolt 211 is rotated to be separated from the rotating rod 431, after the installation mechanism 400 is connected with the ground, the position of the sliding rod 210 is adjusted according to the height of the green belt, so that the distance between the sun visor 100 and the ground is changed, and after the adjustment is finished, the self-locking bolt 211 is rotated to be abutted against the rotating rod 431, so that the sliding rod 210 and the rotating rod 431 are relatively fixed. Through being connected the bracing piece 220 with the rotation of slide bar 210, utilize the spring to restrict the relative rotation of bracing piece 220 with slide bar 210 to make bracing piece 220 can rotate relative slide bar 210 under the exogenic action, improve the ability that supporting mechanism 200 bore external force, reduce the possibility that supporting mechanism 200 damaged under the exogenic action.
Referring to fig. 1 and 3, the adjusting mechanism 300 includes a worm gear 310, and the worm gear 310 is coaxially and fixedly connected to the rotating shaft of the sun visor 100. The sector worm wheel 310 is engaged with a worm 320, and the worm 320 is rotatably connected with the support rod 220. According to the illumination condition, the worker rotates the worm 320, and the worm 320 rotates to drive the fan-shaped worm wheel 310 to rotate, so that the sun visor 100 is rotated, and the effect of adjusting the shielding range of the sun visor 100 is achieved. The rotation of the sun visor 100 is limited by the cooperation of the worm gear 310 and the worm 320, and the stability of the sun visor device is improved.
The implementation principle of the garden sun-shading device is as follows: the sun visor 100 is rotatably connected between the two support mechanisms 200, the support mechanisms 200 are connected with the ground through the mounting mechanism 400, the support mechanisms 200 are rotatably connected with the adjusting mechanism 300 used for limiting the rotation of the sun visor 100, and the adjusting mechanism 300 is fixedly connected with the sun visor 100. After the installation mechanism 400 is connected with the ground, the worker can rotate the sunshade 100 according to the illumination condition, so that the shielding range of the sunshade device is adjusted, and the convenience of the sunshade device is improved.
The above embodiments are preferred embodiments of the present application, and the protection scope of the present application is not limited by the above embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.

Claims (9)

1. The utility model provides a gardens anti-riot solar protection devices which characterized in that: the novel sun visor comprises a sun visor (100) and two groups of supporting mechanisms (200), wherein the sun visor (100) is rotatably connected between the two groups of supporting mechanisms (200), and one ends, close to the ground, of the two groups of supporting mechanisms (200) are connected with the ground.
2. The garden sun protection and shading device according to claim 1, characterized in that: one group of the supporting mechanisms (200) is provided with an adjusting mechanism (300) for limiting the rotation of the sun visor (100).
3. The garden sun protection and shading device according to claim 2, characterized in that: the adjusting mechanism (300) comprises a sector worm wheel (310) and a worm (320), the sector worm wheel (310) is connected with the sun visor (100), the rotation axis of the sector worm wheel (310) is collinear with that of the sun visor (100), the worm (320) is rotatably connected with the supporting mechanism (200), and the worm (320) is meshed with the sector worm wheel (310).
4. The sun shade device is prevented insolating in gardens of claim 3, characterized in that: one end, close to the ground, of the supporting mechanism (200) is provided with an installation mechanism (400) used for being connected with the ground, a square hole is formed in the ground, and the installation mechanism (400) is inserted into the square hole.
5. The garden sun protection and shading device according to claim 4, wherein: installation mechanism (400) includes sleeve (410), coupling assembling (420) and drive assembly (430), drive assembly (430) is including dwang (431) and a plurality of first bevel gear (432), and is a plurality of first bevel gear (432) equal coaxial fixed connection is on dwang (431), sleeve (410) cover is established in a plurality of first bevel gear (432) outsides and sleeve (410) and dwang (431) rotation connection, dwang (431) are connected with supporting mechanism (200), coupling assembling (420) set up on sleeve (410), first bevel gear (432) and coupling assembling (420) meshing connection.
6. The garden sun protection and shading device according to claim 5, wherein: the connecting assembly (420) comprises a second bevel gear (421), a supporting tube (422) and a connecting rod (423), the connecting rod (423) is arranged in the supporting tube (422) in a penetrating mode, the connecting rod (423) is in threaded connection with the supporting tube (422), the supporting tube (422) is fixedly connected to the side wall of the sleeve (410), the supporting tube (422) is communicated with the outside of the sleeve (410), the second bevel gear (421) is rotatably connected with the supporting tube (422), the second bevel gear (421) is in sliding connection with the connecting rod (423), the second bevel gear (421) rotates synchronously with the connecting rod (423), and the second bevel gear (421) is meshed with the first bevel gear (432).
7. The garden sun protection and shading device according to claim 6, wherein: one end, away from the second bevel gear (421), of the connecting rod (423) is conical, and one end, away from the second bevel gear (421), of the connecting rod (423) is provided with threads.
8. The sun shade device is used for preventing gardens from being exposed to sunlight according to claim 7, which is characterized in that: supporting mechanism (200) are including slide bar (210) and bracing piece (220), slide bar (210) cover is established in dwang (431) outside and slide bar (210) and dwang (431) sliding connection, be provided with on slide bar (210) and be used for restricting gliding auto-lock bolt (211) of slide bar (210), auto-lock bolt (211) and dwang (431) butt, bracing piece (220) one end is connected with slide bar (210), sunshading board (100) are rotated with bracing piece (220) and are connected, worm (320) are rotated with bracing piece (220) and are connected.
9. The sun shade device is prevented insolating in gardens of claim 8, characterized in that: one end of the supporting rod (220) is hinged to the sliding rod (210), the supporting rod (220) is fixedly connected with a spring (230) close to the sliding rod (210), and one end, far away from the supporting rod (220), of the spring (230) is fixedly connected with the sliding rod (210).
CN202120364356.9U 2021-02-07 2021-02-07 Gardens anti-riot sun-shading device that shines Active CN214546109U (en)

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CN202120364356.9U CN214546109U (en) 2021-02-07 2021-02-07 Gardens anti-riot sun-shading device that shines

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Application Number Priority Date Filing Date Title
CN202120364356.9U CN214546109U (en) 2021-02-07 2021-02-07 Gardens anti-riot sun-shading device that shines

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114135778A (en) * 2021-11-11 2022-03-04 陈晴 Outdoor communication equipment is convenient for take off and overhaul's installing support

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114135778A (en) * 2021-11-11 2022-03-04 陈晴 Outdoor communication equipment is convenient for take off and overhaul's installing support
CN114135778B (en) * 2021-11-11 2024-01-30 宁夏回族自治区通信产业服务有限公司 Installing support that outdoor communication equipment was convenient for take off and overhaul

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