CN217827397U - Flower stand for landscaping engineering - Google Patents

Flower stand for landscaping engineering Download PDF

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Publication number
CN217827397U
CN217827397U CN202221292705.1U CN202221292705U CN217827397U CN 217827397 U CN217827397 U CN 217827397U CN 202221292705 U CN202221292705 U CN 202221292705U CN 217827397 U CN217827397 U CN 217827397U
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wall
bracket
main part
pergola
rack
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黄涛
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Chengdu Zhongchuan Yaxin Landscaping Engineering Co ltd
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Chengdu Zhongchuan Yaxin Landscaping Engineering Co ltd
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Abstract

The utility model discloses a pergola for afforestation engineering, including the pergola main part, the inside of pergola main part is installed a plurality of groups pot and is planted the bracket through track and slip table, and the length that the bracket was planted to a plurality of groups pot scales up along the vertical line top-down of pergola main part in proper order, is provided with the rack that is used for transferring bracket cultivated in a pot on the inner wall of pergola main part one side and transfers the structure, installs the protecting crust on the outer wall of pergola main part one side, and the inside of protecting crust is provided with and is used for driving the worm wheel synchronous drive structure that the multiunit rack transferred structure work. The utility model discloses job stabilization can not influence illumination each other cultivated in a pot, and the staff of being convenient for carries out unified control to position cultivated in a pot, uses the convenience better.

Description

一种园林绿化工程用花架A flower stand for landscaping engineering

技术领域technical field

本实用新型涉及花架技术领域,具体为一种园林绿化工程用花架。The utility model relates to the technical field of flower stands, in particular to a flower stand for landscaping engineering.

背景技术Background technique

园林工程是一定的工程技术和艺术创造的结合,具体的可理解为是地形地物、石木花草、建筑小品、道路铺装等造园要素在特定地域内的艺术体现。从广义上讲,它是综合的景观建设工程,是自项目起始至设计、施工及后期养护的全过程;从狭义上理解,园林工程是指以工程手段和艺术方法,通过对园林各个设计要素的现场施工而使目标园地成为特定优美景观区域的过程,也就是在特定范围内,通过人工手段将园林的多个设计要素进行工程处理,以使园地达到一定的审美要求和艺术氛围,在园林绿化工程建设的项目中,常常会使用到花架,通过花架对不同的植物花草进行摆放。Landscape engineering is a combination of certain engineering technology and artistic creation. Specifically, it can be understood as the artistic expression of landscape elements, stones, trees, flowers and plants, architectural sketches, road paving and other gardening elements in a specific area. In a broad sense, it is a comprehensive landscape construction project, which is the whole process from the beginning of the project to design, construction and post-maintenance; The process of making the target garden into a specific beautiful landscape area through the on-site construction of elements, that is, within a specific range, the multiple design elements of the garden are processed by artificial means to make the garden meet certain aesthetic requirements and artistic atmosphere. In the construction of landscaping projects, flower stands are often used to arrange different plants and flowers.

现今市场上的此类花架种类繁多,基本可以满足人们的使用需求,但是依然存在一定的不足之处,现有的此类花架结构简单,在使用过程中,盆栽多是位于架体内部,摆放后其相对位置便确定,这就导致上下层叠的架层相互之间影响了太阳的光照,不利用盆栽植物光照。There are many kinds of such flower stands on the market today, which can basically meet people's needs for use, but there are still some shortcomings. The existing flower stands of this type are simple in structure. During use, potted plants are mostly located inside the frame body. After placing, their relative positions are determined, which causes the upper and lower stacked shelves to affect each other's sunlight, and does not use potted plants to illuminate.

实用新型内容Utility model content

本实用新型的目的在于提供一种园林绿化工程用花架,以解决上述背景技术中提出花架结构简单,上下层叠的架层影响了植物光照的问题。The purpose of this utility model is to provide a flower stand for landscaping engineering, so as to solve the problem that the structure of the flower stand is simple in the above background technology, and the upper and lower layers of the shelf affect the lighting of the plants.

为实现上述目的,本实用新型提供如下技术方案:一种园林绿化工程用花架,包括花架主体,所述花架主体的内部通过轨道以及滑台安装有若干组盆栽托架,若干组盆栽托架的长度沿着花架主体的竖直线自上而下依次递增,所述花架主体一侧的内壁上设置有用于移送盆栽托架的齿条移送结构,所述花架主体一侧的外壁上安装有防护壳,防护壳的内部设置有用于带动多组齿条移送结构工作的蜗轮同步驱动结构。In order to achieve the above purpose, the utility model provides the following technical solutions: a flower stand for landscaping engineering, including a flower stand main body, several groups of potted plant brackets are installed inside the flower stand main body through rails and sliding tables, and several groups of potted plant brackets The length increases sequentially from top to bottom along the vertical line of the main body of the flower stand. The inner wall of the main body of the flower stand is provided with a rack transfer structure for transferring potted brackets, and the outer wall of the main body of the flower stand is equipped with a protective The protective shell is provided with a worm gear synchronous drive structure for driving multiple groups of racks to work.

优选的,所述盆栽托架采用不锈钢材质制得,所述盆栽托架的底部设置有用于排水的通孔。Preferably, the potting bracket is made of stainless steel, and the bottom of the potting bracket is provided with through holes for drainage.

优选的,所述蜗轮同步驱动结构包括安装在防护壳内壁上的若干组滚珠轴承座,所述滚珠轴承座的内部转动安装有立轴,立轴由若干段蜗杆组成,所述防护壳顶端的一侧安装有电机,所述花架主体一侧的外壁上安装有控制面板,控制面板内部单片机的输出端与电机的输入端电性连接。Preferably, the synchronous driving structure of the worm gear includes several groups of ball bearing housings installed on the inner wall of the protective shell, and the inner rotation of the ball bearing housings is equipped with a vertical shaft, which is composed of several sections of worms, and one side of the top of the protective housing A motor is installed, and a control panel is installed on the outer wall of one side of the main body of the flower stand, and the output end of the single-chip microcomputer inside the control panel is electrically connected with the input end of the motor.

优选的,所述蜗杆一侧的防护壳内壁上转动安装有副轴,所述副轴的一端固定有蜗轮主体,蜗轮主体与蜗杆相互啮合,所述副轴的另一端与齿条移送结构相互连接。Preferably, a secondary shaft is rotatably installed on the inner wall of the protective shell on one side of the worm, a worm gear body is fixed at one end of the secondary shaft, and the worm gear body and the worm mesh with each other, and the other end of the secondary shaft interacts with the rack transfer structure. connect.

优选的,所述齿条移送结构包括转动安装在盆栽托架内壁上的主轴,所述主轴的一端固定有齿盘,主轴的另一端与副轴固定连接,所述齿盘下方的盆栽托架内壁上滑动安装有直线齿条,直线齿条与齿盘相互啮合,所述直线齿条的外壁与盆栽托架的外壁固定连接。Preferably, the rack transfer structure includes a main shaft rotatably mounted on the inner wall of the potting bracket, one end of the main shaft is fixed with a gear plate, the other end of the main shaft is fixedly connected with the auxiliary shaft, and the potting bracket below the gear plate A linear rack is slidably installed on the inner wall, and the linear rack and the toothed disc mesh with each other, and the outer wall of the linear rack is fixedly connected with the outer wall of the potting bracket.

优选的,所述直线齿条的背面固定有滑套,所述滑套通过直线导轨与盆栽托架的内壁滑动连接。Preferably, a sliding sleeve is fixed on the back of the linear rack, and the sliding sleeve is slidably connected to the inner wall of the potting bracket through a linear guide rail.

与现有技术相比,本实用新型的有益效果是:该一种园林绿化工程用花架工作稳定,不会影响相互盆栽之间的光照,且便于工作人员对盆栽位置进行统一控制,使用便捷性较好;Compared with the prior art, the beneficial effect of the utility model is that the flower stand for landscaping engineering works stably, does not affect the light between the potted plants, and is convenient for the staff to uniformly control the potted plant positions, and is convenient to use. better;

(1)通过设置有齿条移送结构和蜗轮同步驱动结构等相互配合的结构,将盆栽统一放置于盆栽托架上,随后工作人员通过电机以及蜗轮同步驱动结构带动多组齿条移送结构工作,即主轴带动齿盘转动,使得齿盘带动直线齿条、滑套水平移动,即多组盆栽托架从花架主体中水平移出,由于多组盆栽托架的长度自上而下依次增长,则多组盆栽托架移送出后,不会影响相互盆栽之间的光照;(1) The potted plants are uniformly placed on the potting bracket by setting up a structure that cooperates with each other such as a rack transfer structure and a worm gear synchronous drive structure, and then the staff drives multiple groups of rack transfer structures to work through the motor and worm gear synchronous drive structure. That is, the main shaft drives the toothed plate to rotate, so that the toothed plate drives the linear rack and the sliding sleeve to move horizontally, that is, multiple sets of potted brackets are horizontally moved out from the main body of the flower stand. Since the length of multiple sets of potted brackets increases from top to bottom, then more After the group of potted plants is moved out, it will not affect the light between the potted plants;

(2)通过设置有蜗杆和蜗轮主体等相互配合的结构,工作人员可通过电机反向驱动立轴、蜗杆转动,使得蜗杆驱动蜗轮主体、副轴以及主轴转动,即齿盘反向转动,使得直线齿条带动盆栽托架移入花架主体中,从而便于工作人员对盆栽位置进行统一控制,增强该花架的使用便捷性;(2) By providing a structure that cooperates with the worm and the main body of the worm gear, the staff can reversely drive the vertical shaft and the worm to rotate through the motor, so that the worm drives the main body of the worm gear, the auxiliary shaft and the main shaft to rotate, that is, the gear plate rotates in the opposite direction, making the straight line The rack drives the potted plant bracket to move into the main body of the flower stand, so that the staff can uniformly control the position of the potted plants and enhance the convenience of use of the flower stand;

(3)多组滚珠轴承座对立轴的转动进行支撑,并通过轨道以及滑台提高盆栽托架的运动稳定性,降低盆栽托架、盆栽在移动时的晃动,进而增强花架的使用稳定性以及可靠性。(3) Multiple sets of ball bearing seats support the rotation of the vertical shaft, and improve the movement stability of the potted plant bracket through the track and slide table, reduce the shaking of the potted plant bracket and potted plants when moving, and thus enhance the use stability of the flower stand and reliability.

附图说明Description of drawings

图1为本实用新型的主视结构示意图;Fig. 1 is the main view structure schematic diagram of the utility model;

图2为本实用新型的防护壳侧视剖面结构示意图;Fig. 2 is a side view sectional structure schematic diagram of a protective shell of the present invention;

图3为本实用新型的侧视剖面结构示意图;Fig. 3 is a side view sectional structure schematic diagram of the utility model;

图4为本实用新型的齿条移送结构放大结构示意图;Fig. 4 is the schematic diagram of the enlarged structure of the rack transfer structure of the present invention;

图中:1、花架主体;101、控制面板;2、盆栽托架;201、轨道;3、防护壳;301、副轴;302、蜗轮主体;303、滚珠轴承座;304、立轴;305、蜗杆;4、电机;5、齿条移送结构;501、主轴;502、齿盘;503、直线导轨;504、滑套;505、直线齿条。Among the figure: 1, the main body of the flower stand; 101, the control panel; 2, the potted plant bracket; 201, the track; 3, the protective shell; 301, the auxiliary shaft; 302, the main body of the worm wheel; 303, the ball bearing seat; 304, the vertical shaft; 305, Worm screw; 4, motor; 5, rack transfer structure; 501, main shaft; 502, gear plate; 503, linear guide rail; 504, sliding sleeve; 505, linear rack.

具体实施方式Detailed ways

下面将结合本实用新型实施例中的附图,对本实用新型实施例中的技术方案进行清楚、完整地描述。基于本实用新型中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本实用新型保护的范围。The following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the drawings in the embodiments of the present invention. Based on the embodiments of the present utility model, all other embodiments obtained by persons of ordinary skill in the art without making creative efforts belong to the scope of protection of the present utility model.

请参阅图1-4,本实用新型提供的一种实施例:一种园林绿化工程用花架,包括花架主体1,花架主体1的内部通过轨道201以及滑台安装有若干组盆栽托架2,若干组盆栽托架2的长度沿着花架主体1的竖直线自上而下依次递增,盆栽托架2采用不锈钢材质制得,盆栽托架2的底部设置有用于排水的通孔,工作人员将盆栽统一放置于盆栽托架2上,通孔的设置,便于工作人员进行浇水作业;Please refer to Figs. 1-4, an embodiment provided by the utility model: a flower stand for landscaping engineering, including a flower stand main body 1, and several sets of potted plant brackets 2 are installed inside the flower stand main body 1 through rails 201 and a slide table, The lengths of several groups of potting brackets 2 increase sequentially from top to bottom along the vertical line of the flower stand main body 1. The potting brackets 2 are made of stainless steel, and the bottom of the potting brackets 2 is provided with through holes for drainage. The potted plants are uniformly placed on the potted plant bracket 2, and the setting of the through holes is convenient for the staff to perform watering operations;

由于多组盆栽托架2的长度自上而下依次增长,则多组盆栽托架2移送出后,不会影响相互盆栽之间的光照;Since the length of the multiple sets of potting brackets 2 increases sequentially from top to bottom, after the multiple sets of potting brackets 2 are moved out, the illumination between the mutual potted plants will not be affected;

花架主体1一侧的内壁上设置有用于移送盆栽托架2的齿条移送结构5,花架主体1一侧的外壁上安装有防护壳3,防护壳3的内部设置有用于带动多组齿条移送结构5工作的蜗轮同步驱动结构;The inner wall on one side of the main body of the flower stand 1 is provided with a rack transfer structure 5 for transferring the potted plant bracket 2, and the outer wall on one side of the main body of the flower stand 1 is provided with a protective shell 3, and the inside of the protective shell 3 is provided with racks for driving multiple groups of racks. The worm gear synchronous driving structure of the work of the transfer structure 5;

蜗轮同步驱动结构包括安装在防护壳3内壁上的若干组滚珠轴承座303,滚珠轴承座303的内部转动安装有立轴304,多组滚珠轴承座303对立轴304的转动进行支撑;The worm gear synchronous drive structure includes several groups of ball bearing housings 303 installed on the inner wall of the protective shell 3, and the inner rotation of the ball bearing housings 303 is equipped with a vertical shaft 304, and multiple groups of ball bearing housings 303 support the rotation of the vertical shaft 304;

立轴304由若干段蜗杆305组成,防护壳3顶端的一侧安装有电机4,花架主体1一侧的外壁上安装有控制面板101,控制面板101内部单片机的输出端与电机4的输入端电性连接,蜗杆305一侧的防护壳3内壁上转动安装有副轴301,副轴301的一端固定有蜗轮主体302,蜗轮主体302与蜗杆305相互啮合,副轴301的另一端与齿条移送结构5相互连接;The vertical shaft 304 is composed of several sections of worms 305. A motor 4 is installed on one side of the top of the protective shell 3. A control panel 101 is installed on the outer wall of the flower stand main body 1. The output end of the single-chip microcomputer inside the control panel 101 is connected to the input end of the motor 4. A secondary shaft 301 is installed on the inner wall of the protective case 3 on one side of the worm 305. One end of the secondary shaft 301 is fixed with a worm gear main body 302. The worm gear main body 302 meshes with the worm 305, and the other end of the secondary shaft 301 is transferred to the rack. Structure 5 is connected to each other;

齿条移送结构5包括转动安装在盆栽托架2内壁上的主轴501,主轴501的一端固定有齿盘502,主轴501的另一端与副轴301固定连接,齿盘502下方的盆栽托架2内壁上滑动安装有直线齿条505,直线齿条505与齿盘502相互啮合,直线齿条505的外壁与盆栽托架2的外壁固定连接,当阴雨天气时,工作人员可通过电机4反向驱动立轴304、蜗杆305转动,使得蜗杆305驱动蜗轮主体302、副轴301以及主轴501转动,即齿盘502反向转动,使得直线齿条505带动盆栽托架2移入花架主体1中,从而便于工作人员对盆栽进行统一控制,增强该花架的使用便捷性;The rack transfer structure 5 includes a main shaft 501 rotatably installed on the inner wall of the potting bracket 2, one end of the main shaft 501 is fixed with a gear plate 502, the other end of the main shaft 501 is fixedly connected with the auxiliary shaft 301, and the potting bracket 2 below the gear plate 502 A linear rack 505 is slidably installed on the inner wall, and the linear rack 505 meshes with the gear plate 502. The outer wall of the linear rack 505 is fixedly connected with the outer wall of the potting bracket 2. When it is rainy, the staff can use the motor 4 to reverse Drive the vertical shaft 304 and the worm screw 305 to rotate, so that the worm screw 305 drives the worm gear main body 302, the auxiliary shaft 301 and the main shaft 501 to rotate, that is, the gear plate 502 reversely rotates, so that the linear rack 505 drives the potted plant bracket 2 to move into the flower stand main body 1, thereby facilitating The staff can uniformly control the potted plants to enhance the convenience of the flower stand;

通过轨道201以及滑台提高盆栽托架2的运动稳定性,降低盆栽托架2、盆栽在移动时的晃动,进而增强花架的使用稳定性以及可靠性;Improve the motion stability of the potted plant bracket 2 through the track 201 and the slide table, reduce the shaking of the potted plant bracket 2 and the potted plant when moving, and then enhance the stability and reliability of the flower stand;

直线齿条505的背面固定有滑套504,滑套504通过直线导轨503与盆栽托架2的内壁滑动连接;The back side of the linear rack 505 is fixed with a sliding sleeve 504, and the sliding sleeve 504 is slidably connected with the inner wall of the potting bracket 2 by the linear guide rail 503;

工作人员通过电机4以及蜗轮同步驱动结构带动多组齿条移送结构5工作,即主轴501带动齿盘502转动,使得齿盘502带动直线齿条505、滑套504水平移动,即多组盆栽托架2从花架主体1中水平移出。The staff drives the multi-group rack transfer structure 5 to work through the motor 4 and the worm gear synchronous drive structure, that is, the main shaft 501 drives the gear plate 502 to rotate, so that the gear plate 502 drives the linear rack 505 and the sliding sleeve 504 to move horizontally, that is, multiple sets of potted plant supports The frame 2 is horizontally moved out from the flower stand main body 1 .

本申请实施例在使用时,首先工作人员将盆栽统一放置于盆栽托架2上,随后工作人员通过电机4以及蜗轮同步驱动结构带动多组齿条移送结构5工作,即主轴501带动齿盘502转动,使得齿盘502带动直线齿条505、滑套504水平移动,即多组盆栽托架2从花架主体1中水平移出,由于多组盆栽托架2的长度自上而下依次增长,则多组盆栽托架2移送出后,不会影响相互盆栽之间的光照,当阴雨天气时,工作人员可通过电机4反向驱动立轴304、蜗杆305转动,使得蜗杆305驱动蜗轮主体302、副轴301以及主轴501转动,即齿盘502反向转动,使得直线齿条505带动盆栽托架2移入花架主体1中,从而便于工作人员对盆栽进行统一控制,增强该花架的使用便捷性。When the embodiment of the present application is in use, first the staff will uniformly place the potted plants on the potted plant bracket 2, and then the staff drives multiple groups of rack transfer structures 5 to work through the motor 4 and the synchronous drive structure of the worm gear, that is, the main shaft 501 drives the toothed disc 502 Rotate, so that the toothed plate 502 drives the linear rack 505 and the sliding sleeve 504 to move horizontally, that is, the multiple groups of potted brackets 2 are horizontally moved out from the flower stand main body 1, because the lengths of the multiple groups of potted brackets 2 increase sequentially from top to bottom, then After the multiple groups of potted plant brackets 2 are moved out, the illumination between the potted plants will not be affected. When it is rainy, the staff can reversely drive the vertical shaft 304 and the worm screw 305 to rotate through the motor 4, so that the worm screw 305 drives the worm wheel main body 302, the auxiliary The shaft 301 and the main shaft 501 rotate, that is, the gear plate 502 rotates in the opposite direction, so that the linear rack 505 drives the potted plant bracket 2 to move into the main body 1 of the flower stand, so that the staff can uniformly control the potted plants and enhance the convenience of use of the flower stand.

Claims (6)

1. The utility model provides a pergola for afforestation engineering, a serial communication port, including pergola main part (1), a plurality of groups pot bracket (2) are installed through track (201) and slip table to the inside of pergola main part (1), and the length of a plurality of groups pot bracket (2) scales up along the vertical line top-down of pergola main part (1) in proper order, be provided with the rack that is used for transferring bracket (2) cultivated in a pot on the inner wall of pergola main part (1) one side and transfer structure (5), install protecting crust (3) on the outer wall of pergola main part (1) one side, the inside of protecting crust (3) is provided with and is used for driving the worm wheel synchronous drive structure that the multiunit rack transferred structure (5) work.
2. The flower stand for the landscaping project according to claim 1, wherein: the pot culture bracket (2) is made of stainless steel, and a through hole for draining water is formed in the bottom of the pot culture bracket (2).
3. The flower stand for the landscaping project according to claim 1, wherein: worm wheel synchro-driven structure is including installing a plurality of groups ball bearing seat (303) on protecting crust (3) inner wall, the inside of ball bearing seat (303) is rotated and is installed vertical scroll (304), and vertical scroll (304) comprise a plurality of sections worm (305), motor (4) are installed to one side on protecting crust (3) top, install control panel (101) on the outer wall of pergola main part (1) one side, the output of control panel (101) inside singlechip and the input electric connection of motor (4).
4. The flower stand for the landscaping project according to claim 3, wherein: an auxiliary shaft (301) is rotatably mounted on the inner wall of the protective shell (3) on one side of the worm (305), a worm wheel main body (302) is fixed at one end of the auxiliary shaft (301), the worm wheel main body (302) is meshed with the worm (305), and the other end of the auxiliary shaft (301) is connected with the rack transfer structure (5).
5. The flower stand for the landscaping project according to claim 4, wherein: the rack transfer structure (5) comprises a main shaft (501) rotatably installed on the inner wall of a potted plant bracket (2), a fluted disc (502) is fixed at one end of the main shaft (501), the other end of the main shaft (501) is fixedly connected with an auxiliary shaft (301), a linear rack (505) is slidably installed on the inner wall of the potted plant bracket (2) below the fluted disc (502), the linear rack (505) is meshed with the fluted disc (502), and the outer wall of the linear rack (505) is fixedly connected with the outer wall of the potted plant bracket (2).
6. The flower stand for the landscaping project of claim 5, wherein: a sliding sleeve (504) is fixed on the back of the linear rack (505), and the sliding sleeve (504) is connected with the inner wall of the potted plant bracket (2) in a sliding mode through a linear guide rail (503).
CN202221292705.1U 2022-05-27 2022-05-27 Flower stand for landscaping engineering Expired - Fee Related CN217827397U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221292705.1U CN217827397U (en) 2022-05-27 2022-05-27 Flower stand for landscaping engineering

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221292705.1U CN217827397U (en) 2022-05-27 2022-05-27 Flower stand for landscaping engineering

Publications (1)

Publication Number Publication Date
CN217827397U true CN217827397U (en) 2022-11-18

Family

ID=84019548

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221292705.1U Expired - Fee Related CN217827397U (en) 2022-05-27 2022-05-27 Flower stand for landscaping engineering

Country Status (1)

Country Link
CN (1) CN217827397U (en)

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Granted publication date: 20221118