Landscaping seedling anti-toppling supporting frame
By designing an anti-tilt support frame for garden seedlings and using a rotating connection and synchronous control mechanism, the inconvenience in operation and seedling tilting problems caused by the fixed size of existing seedling support frames are solved, and rapid installation and stable support for seedlings of different sizes are achieved.
Patent Information
- Application Number
- CN202422952973.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-02
- Publication Date
- 2025-10-21
- Estimated Expiration
- 2034-12-02
AI Technical Summary
The existing seedling support frame has a fixed support size and cannot adapt to seedlings of different diameters, which makes operation inconvenient and easily causes the seedlings to tilt and deform, and the adjustment process is cumbersome.
A landscaping seedling anti-tilt support frame is designed, which adopts a first connecting ring and a second connecting ring to form an enclosure structure. Combined with the rotation connection, enclosure locking and synchronous control mechanism, it can quickly fix and adapt to seedlings of different sizes through the synchronous movement of the clamping block and the rotation of the locking rod.
It realizes the rapid installation and disassembly of seedlings, improves the convenience of operation, adapts to the use of seedlings of different sizes, and ensures the stability and vertical growth of seedlings.
Smart Images

Figure CN223452549U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of seedling maintenance, in particular to a garden greening seedling anti-inclination supporting frame. BACKGROUND
[0002] When the garden seedlings are transplanted or planted and maintained, support can be provided to improve their survival rate and wind resistance. A support system is formed on the outside of the seedlings by the supporting frame to avoid damage caused by tilting. The common supporting frames are metal and wood.
[0003] Prior art (Chinese patent with publication number CN219248735U, published on June 27, 2023) is a seedling planting supporting frame, which relates to the technical field of forest planting equipment. It includes two left-right symmetrical half-circle ring frames. One end of one of the half-circle ring frames is fixed with a level gauge on the upper surface. The two half-circle ring frames are fixed at both ends by bolts. The outer sides of the half-circle ring frames are provided with two symmetrical rotating seats. The rotating seats are connected with support legs through rotating shafts. The inner sides of the half-circle ring frames are connected with arc-shaped clamping frames through a spring compression rod in the middle and two telescopic guide rods on both sides. The arc-shaped clamping frames are clamped around the seedlings. The supporting frame can be disassembled and reused after the seedlings grow completely, saving material resources. At the same time, it can ensure the uniformity of the supporting frame layout, significantly improve the supporting quality of the supporting frame, and ensure the vertical growth of the seedlings.
[0004] The supporting size of the current supporting frame is generally fixed and cannot be adapted to the use of seedlings of different diameters. When the supporting size is adjusted by using a spring, the subsequent seedlings may still be squeezed by the spring, causing tilting and deformation. When using an adjustable supporting frame, multiple clamping parts need to be adjusted one by one, which is inconvenient to operate. In addition, the installation and disassembly of the subsequent supporting frame are also relatively complicated. UTILITY MODEL CONTENTS
[0005] The utility model aims to provide a garden greening seedling anti-inclination supporting frame to solve the problem of tilting and deformation of the subsequent seedlings caused by the spring when adjusting the supporting size.
[0006] In order to achieve the above object, the utility model provides the following technical scheme: a kind of garden afforestation nursery stock prevents inclining support frame, including support leg and upper support mechanism, the upper support mechanism includes first connecting ring and second connecting ring, the first connecting ring and second connecting ring are circular arc structure design, and the enclosure structure is formed at the outside of nursery stock, the support leg is evenly distributed below first connecting ring and second connecting ring, the front side of first connecting ring is fixed with first connecting block, the front side of second connecting ring is fixed with second connecting block, and the outside of second connecting block is provided with rotary connecting mechanism, and first connecting block is connected with second connecting block by rotary connecting mechanism, the rear side of first connecting ring and second connecting ring is provided with enclosure locking mechanism, and the enclosure state of first connecting ring and second connecting ring is fixed, the inside of first connecting ring and second connecting ring is evenly distributed with clamping block, and the outside of clamping block is provided with synchronous control mechanism, and the synchronous movement of clamping block is controlled by synchronous control mechanism, and nursery stock is clamped.
[0007] Further optimize the technical scheme, the rotary connecting mechanism includes connecting frame and connecting shaft;
[0008] connecting frame, fixed in the front side of second connecting block;
[0009] connecting shaft, fixed in the front side of first connecting block, and connecting shaft and connecting frame form rotary connection between.
[0010] Further optimize the technical scheme, the end of connecting shaft is provided with torsion spring, provides rotary reset force for connecting shaft, drives first connecting ring to the enclosure of second connecting ring.
[0011] Further optimize the technical scheme, the enclosure locking mechanism includes third connecting block, fourth connecting block and locking rod;
[0012] third connecting block, fixed in the rear side of first connecting ring;
[0013] fourth connecting block, fixed in the rear side of second connecting ring;
[0014] locking rod, passes through fourth connecting block, and the left end of locking rod and third connecting block form screw connection between, and the right end of locking rod is expanded and is structure design.
[0015] Further optimize the technical scheme, the synchronous control mechanism includes screw rod, meshing gear, guide rod, transmission mechanism and drive mechanism;
[0016] screw rod, fixed in the outside of clamping block, and screw rod passes through first connecting ring and second connecting ring;
[0017] meshing gear, is rotatably installed in the inside of first connecting ring and second connecting ring, and screw rod passes through meshing gear and meshing gear and forms screw connection between.
[0018] A guide rod is fixed outside the clamping block, and the guide rod penetrates the first connecting ring and the second connecting ring and forms a sliding connection therebetween;
[0019] A transmission mechanism is arranged outside the meshing gear to synchronously drive the meshing gear to rotate;
[0020] A driving mechanism is arranged outside the meshing gear to control the rotation of the meshing gear.
[0021] Further optimization of the technical solution, the transmission mechanism is composed of a transmission rack, the transmission rack is provided with two groups, and the two groups of transmission racks are mutually enclosed to form a gear ring, and the transmission rack and the first connecting ring and the second connecting ring form a sliding connection therebetween, and the transmission rack and the meshing gear form a meshing connection therebetween.
[0022] Further optimization of the technical solution, the driving mechanism includes a driving gear and an operating rod;
[0023] The driving gear is arranged above the transmission rack and forms a meshing connection therebetween;
[0024] The operating rod is fixed outside the driving gear to control the rotation of the driving gear, and the operating rod and the first connecting ring and the second connecting ring form a rotating connection therebetween.
[0025] Compared with the prior art, the beneficial effects of the present application are:
[0026] (1) The first connecting ring and the second connecting ring are arranged to form an upper supporting mechanism, a rotating connection mechanism is arranged between the first connecting ring and the second connecting ring, the first connecting ring can be rotated to be opened, which facilitates the installation of the first connecting ring to the outside of the seedling to form an enclosed structure, and the subsequent disassembly is also more convenient;
[0027] (2) The first connecting ring and the second connecting ring are fixed by the threaded connection of the locking rod and the third connecting block, so that they remain stable outside the seedling, and the use convenience is improved by directly rotating the locking rod;
[0028] (3) The clamping block provides clamping support for the seedling, and the position of the clamping block can be adjusted to adapt to the use of seedlings of different sizes;
[0029] (4) The clamping block is moved by the threaded connection between the rotation of the meshing gear and the threaded rod, the movement of the clamping block is controlled, and the meshing gear can be synchronously driven by the transmission rack, so that the clamping block is synchronously controlled to move;
[0030] (5) the engagement between the driving gear and the transmission rack is driven by the rotation of the operating rod, and only the rotation of the operating rod needs to be controlled when the clamping block is operated, so that the clamping efficiency is improved. BRIEF DESCRIPTION OF DRAWINGS
[0031] Figure 1 It is a three-dimensional structure schematic diagram of the utility model;
[0032] Figure 2 It is a three-dimensional structure schematic diagram of the utility model;
[0033] Figure 3 It is a three-dimensional structure schematic diagram of the utility model;
[0034] Figure 4 It is a three-dimensional structure schematic diagram of the utility model;
[0035] Figure 5 It is a three-dimensional structure schematic diagram of the utility model;
[0036] Figure 6 It is a three-dimensional structure schematic diagram of the utility model;
[0037] Figure 7 It is a three-dimensional structure schematic diagram of the utility model;
[0038] In the drawing: 1, support leg; 2, first connecting ring; 3, second connecting ring; 4, first connecting block; 5, second connecting block; 6, connecting frame; 7, connecting shaft; 8, torsion spring; 9, third connecting block; 10, fourth connecting block; 11, locking rod; 12, clamping block; 13, threaded rod; 14, meshing gear; 15, transmission rack; 16, guide rod; 17, driving gear; 18, operating rod. DETAILED DESCRIPTION
[0039] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.
[0040] Please refer to Figures 1-7 The utility model provides the following technical scheme: a garden greening nursery stock anti-inclination supporting frame, including support leg 1 and upper supporting mechanism; Embodiment one:
[0041] The embodiment provides the following technical scheme, and discloses an upper supporting mechanism which comprises a first connecting ring 2 and a second connecting ring 3. The first connecting ring 2 and the second connecting ring 3 are designed in a circular arc structure, and form an enclosed structure outside seedlings. Support legs 1 are uniformly distributed below the first connecting ring 2 and the second connecting ring 3. A first connecting block 4 is fixed to the front side of the first connecting ring 2, and a second connecting block 5 is fixed to the front side of the second connecting ring 3. A rotating connecting mechanism is arranged on the outer side of the second connecting block 5. The first connecting block 4 is connected to the second connecting block 5 through the rotating connecting mechanism. An enclosing locking mechanism is arranged on the rear side of the first connecting ring 2 and the second connecting ring 3, and is used for fixing the enclosing state of the first connecting ring 2 and the second connecting ring 3. Clamping blocks 12 are uniformly distributed on the inner side of the first connecting ring 2 and the second connecting ring 3. A synchronous control mechanism is arranged on the outer side of the clamping blocks 12, and is used for controlling the synchronous movement of the clamping blocks 12, so that the seedlings are clamped.
[0042] In use, the first connecting ring 2 and the second connecting ring 3 can be enclosed outside the seedlings, and then be fixed through the enclosing locking mechanism. The position of the clamping blocks 12 is adjusted to clamp the seedlings. The seedlings are stably supported through the support legs 1. The position of the clamping blocks 12 can be synchronously adjusted and controlled through the synchronous control mechanism. Embodiment two
[0043] On the basis of embodiment one, the rotating connecting mechanism comprises a connecting frame 6 and a connecting shaft 7. The connecting frame 6 is fixed to the front side of the second connecting block 5. The connecting shaft 7 is fixed to the front side of the first connecting block 4, and forms a rotating connection with the connecting frame 6. A torsion spring 8 is installed at the end of the connecting shaft 7, and provides a rotating reset force for the connecting shaft 7, so that the first connecting ring 2 is enclosed to the second connecting ring 3. The enclosing locking mechanism comprises a third connecting block 9, a fourth connecting block 10 and a locking rod 11. The third connecting block 9 is fixed to the rear side of the first connecting ring 2. The fourth connecting block 10 is fixed to the rear side of the second connecting ring 3. The locking rod 11 penetrates through the fourth connecting block 10, and forms a threaded connection between the left end of the locking rod 11 and the third connecting block 9. The right end of the locking rod 11 is designed in an enlarged structure.
[0044] The first connecting ring 2 rotates through the rotating connection of the connecting shaft 7 and the connecting frame 6 on the first connecting block 4, so that the enclosing and opening control is realized. The torsion spring 8 can provide an enclosing reset force for the first connecting ring 2. After the first connecting ring 2 is enclosed, the first connecting ring 2 is connected to the third connecting block 9 through the rotating locking rod 11. Meanwhile, the right end of the rotating locking rod 11 is used for extruding the fourth connecting block 10, so that the enclosing of the first connecting ring 2 and the second connecting ring 3 is fixed. Embodiment three
[0045] On the basis of the first embodiment, the synchronous control mechanism comprises a threaded rod 13, an engaging gear 14, a guide rod 16, a transmission mechanism and a driving mechanism, the threaded rod 13 is fixed on the outer side of the clamping block 12 and penetrates through the first connecting ring 2 and the second connecting ring 3, the engaging gear 14 is rotatably installed inside the first connecting ring 2 and the second connecting ring 3, the threaded rod 13 penetrates through the engaging gear 14 and forms a threaded connection between the engaging gears 14, the guide rod 16 is fixed on the outer side of the clamping block 12 and penetrates through the first connecting ring 2 and the second connecting ring 3 and forms a sliding connection therebetween, the transmission mechanism is arranged on the outer side of the engaging gear 14 to synchronously drive the engaging gear 14 to rotate, the driving mechanism is arranged on the outer side of the engaging gear 14 to control the rotation of the engaging gear 14, the transmission mechanism is composed of two sets of transmission racks 15, the two sets of transmission racks 15 are mutually closed to form a gear ring, the transmission racks 15 form a sliding connection with the first connecting ring 2 and the second connecting ring 3, and the transmission racks 15 form an engaging connection with the engaging gear 14, the driving mechanism comprises a driving gear 17 and an operating rod 18, the driving gear 17 is arranged above the transmission racks 15 and forms an engaging connection between the transmission racks 15, the operating rod 18 is fixed on the outer side of the driving gear 17 to control the rotation of the driving gear 17, and the operating rod 18 forms a rotating connection with the first connecting ring 2 and the second connecting ring 3.
[0046] When the clamping block 12 is controlled to move, the rotating operating rod 18 drives the transmission racks 15 to move through the engaging connection between the driving gear 17 and the transmission racks 15, the transmission racks 15 drive the engaging gear 14 to rotate through the engaging connection between the transmission racks 15 and the engaging gear 14, the engaging gear 14 drives the threaded rod 13 to move through the threaded connection between the engaging gear 14 and the threaded rod 13, and the threaded rod 13 drives the clamping block 12 to move, so that the plurality of clamping blocks 12 can synchronously move, when it is needed to release the closure of the first connecting ring 2 and the second connecting ring 3, the clamping block 12 is moved to the position of the outermost side, the abutting position of the transmission racks 15 is located at the middle part of the first connecting ring 2 and the second connecting ring 3, and then the first connecting ring 2 can be rotated to separate the first connecting ring 2 and the second connecting ring 3.
[0047] The contents not described in detail in the specification belong to the prior art known by the person skilled in the art.
[0048] Although the utility model has been described in detail with reference to the foregoing embodiments, the person skilled in the art can still modify the technical solutions recorded in the foregoing embodiments or make equivalent replacement to part of the technical features, and any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the utility model shall be included in the protection scope of the utility model.
Claims
1. A garden greening seedling anti-tilting support frame, comprising support legs (1) and an upper support mechanism; characterized in that The upper support mechanism comprises a first connecting ring (2) and a second connecting ring (3), which are designed in a circular arc structure, and form an enclosed structure on the outside of the seedling, the support legs (1) are evenly distributed below the first connecting ring (2) and the second connecting ring (3), the front side of the first connecting ring (2) is fixed with a first connecting block (4), the front side of the second connecting ring (3) is fixed with a second connecting block (5), and the outer side of the second connecting block (5) is provided with a rotary connecting mechanism, the first connecting block (4) is connected with the second connecting block (5) through the rotary connecting mechanism, the rear side of the first connecting ring (2) and the second connecting ring (3) is provided with an enclosing locking mechanism, which fixes the enclosing state of the first connecting ring (2) and the second connecting ring (3), the inner side of the first connecting ring (2) and the second connecting ring (3) is evenly distributed with clamping blocks (12), and the outer side of the clamping blocks (12) is provided with a synchronous control mechanism, which controls the synchronous movement of the clamping blocks (12) to clamp the seedling.
2. The anti-tilting support frame for garden greening seedlings according to claim 1, characterized in that: The rotary connecting mechanism comprises a connecting frame (6) and a connecting shaft (7); The connecting frame (6) is fixed to the front side of the second connecting block (5); The connecting shaft (7) is fixed to the front side of the first connecting block (4), and a rotary connection is formed between the connecting shaft (7) and the connecting frame (6).
3. The anti-tilting support frame for garden greening seedlings according to claim 2, characterized in that: The end of the connecting shaft (7) is provided with a torsion spring (8) to provide a rotary reset force for the connecting shaft (7) to drive the first connecting ring (2) to enclose the second connecting ring (3).
4. The anti-tilting support frame for garden greening seedlings according to claim 1, characterized in that: The enclosing locking mechanism comprises a third connecting block (9), a fourth connecting block (10) and a locking rod (11); The third connecting block (9) is fixed to the rear side of the first connecting ring (2); The fourth connecting block (10) is fixed to the rear side of the second connecting ring (3); The locking rod (11) penetrates the fourth connecting block (10), and a threaded connection is formed between the left end of the locking rod (11) and the third connecting block (9), and the right end of the locking rod (11) is designed in an enlarged structure.
5. The anti-tilt supporting frame for garden greening seedling according to claim 1, characterized in that: The synchronous control mechanism comprises a threaded rod (13), an engagement gear (14), a guide rod (16), a transmission mechanism and a driving mechanism; The threaded rod (13) is fixed to the outer side of the clamping block (12), and the threaded rod (13) penetrates the first connecting ring (2) and the second connecting ring (3); The engagement gear (14) is rotatably installed inside the first connecting ring (2) and the second connecting ring (3), the threaded rod (13) penetrates the engagement gear (14), and a threaded connection is formed between the engagement gear (14); The guide rod (16) is fixed to the outer side of the clamping block (12), and the guide rod (16) penetrates the first connecting ring (2) and the second connecting ring (3) and forms a sliding connection therebetween; The transmission mechanism is arranged on the outer side of the engagement gear (14) to synchronously drive the engagement gear (14) to rotate; The driving mechanism is arranged on the outer side of the engagement gear (14) to control the rotation thereof.
6. The anti-tilt supporting frame for garden greening seedling according to claim 5, characterized in that: The transmission mechanism is composed of transmission racks (15), the transmission racks (15) are provided with two groups, and the two groups of transmission racks (15) are mutually enclosed to form a gear ring, and the transmission racks (15) and the first connecting ring (2) and the second connecting ring (3) are slidably connected, and the transmission racks (15) and the meshing gear (14) are meshingly connected.
7. The anti-tilting support frame for garden greening seedlings according to claim 5 or 6, characterized in that: The driving mechanism comprises a driving gear (17) and an operating rod (18); The driving gear (17) is arranged above the transmission rack (15) and is meshingly connected with the transmission rack (15); The operating rod (18) is fixed outside the driving gear (17) to control the rotation of the driving gear (17), and the operating rod (18) is rotatably connected with the first connecting ring (2) and the second connecting ring (3).
Citation Information
Patent Citations
Nursery stock planting support frame
CN219248735U