A molding die for ecological grass-planting ditches in garden construction

By using the molding molds for the ecological grass-planting ditch in the garden construction, the problem of poor ditch forming quality was solved by using molding plates and transfer mechanisms, achieving efficient ditch construction, reducing the number of manual repairs, and improving construction efficiency and ditch stability.

CN224281497UActive Publication Date: 2026-05-26SHEN ZHEN SHI JIN ZHONG JI TUAN GU FEN YOU XIAN GONG SI +4
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHEN ZHEN SHI JIN ZHONG JI TUAN GU FEN YOU XIAN GONG SI
Filing Date
2025-04-30
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

In existing technologies, the uneven height of the planting soil layer and the uneven slope on both sides of the ditch result in poor quality of the ecological ditch, requiring workers to make multiple repairs, which wastes labor costs.

Method used

A molding mold for ecological grass-planting ditches in gardens is adopted, including a molding plate and a transfer mechanism. The molding plate is arc-shaped, which can accurately shape the slope and bottom of the ditch. Through the cooperation of the lifting rod and the directional wheel, the planting soil is efficiently compacted and moved to form a regular ditch shape.

Benefits of technology

It improved the quality of the ecological ditch, reduced the number of manual repairs and time, saved labor costs, and improved construction efficiency and ditch stability.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224281497U_ABST
Patent Text Reader

Abstract

This utility model relates to the field of landscape engineering construction, specifically a molding mold for ecological planting ditches in gardens. It involves setting a molding plate and a transfer mechanism, the transfer mechanism including a lifting rod. The molding plate is arc-shaped to match the slope of the ditch, allowing for precise shaping of the ditch's slope and bottom, ensuring a uniform slope. After the backfill soil is placed in the ditch and initially shaped manually, the user can place the molding plate on the soil and step on it to compact the soil. After compaction, the molding plate is lifted by the lifting rod and moved to the next construction area to continue compacting, thus forming a regular ditch shape.
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Description

Technical Field

[0001] This utility model relates to the field of landscape engineering construction, specifically a molding die for constructing ecological grass-planting ditches in gardens. Background Technology

[0002] With the acceleration of urbanization and the increasing emphasis on the ecological environment, landscape engineering is playing an increasingly important role in urban construction. Landscapes are not only places for leisure and recreation, but also essential components of the urban ecosystem. In landscape engineering, the construction of ecological grass-covered ditches is crucial. These ditches not only effectively drain water but also protect slopes and prevent rainwater erosion, while simultaneously enhancing the landscape effect, achieving the dual goals of ecology and aesthetics.

[0003] Currently, when constructing ecological ditches, a combination of manual and mechanical methods is usually used for excavation, followed by workers filling and trimming the ditches. However, due to the inconsistent height of the planting soil layer and the uneven slope on both sides of the ditch, the quality of the ecological ditch is poor, requiring multiple manual trimmings, which seriously wastes labor costs.

[0004] This utility model was proposed in response to the shortcomings of the existing technology. Utility Model Content

[0005] Regarding the aforementioned issue that existing construction methods for ecological ditches typically combine manual labor and machinery for excavation, followed by filling and finishing by workers, the inconsistent planting soil height and uneven slopes on both sides of the ditch result in poor ditch quality, requiring multiple reworks and significant waste of labor costs. The technical solution adopted by this utility model to address this problem is as follows:

[0006] A molding die for constructing ecological grass-planting ditches in gardens includes a molding die body, the molding die body including a molding plate and a transfer mechanism, the transfer mechanism including a lifting rod located on one side of the molding plate, the molding plate being arc-shaped.

[0007] Furthermore, the molding plate includes a molding groove extending away from the lifting rod, and the molding groove is provided with reinforcing ribs.

[0008] Furthermore, the molding plate is provided with a mounting part on the side near the lifting rod, the mounting part extends along the outer edge of the molding plate, and the transfer mechanism includes a plurality of handle rings provided on the mounting part.

[0009] Furthermore, the transfer mechanism includes a directional wheel located on one side of the molding plate and arranged in a horizontal direction, and a connecting mechanism is provided between the directional wheel and the mounting part.

[0010] Furthermore, the connecting mechanism includes a first connecting pipe arranged in a vertical direction and a second connecting pipe arranged in a horizontal direction. One side of the second connecting pipe is connected to the directional wheel, one side of the first connecting pipe is connected to the mounting part, and the other side of the first connecting pipe is connected to the side of the second connecting pipe away from the directional wheel.

[0011] Furthermore, a limiting piece is provided on the side of the first connecting pipe away from the mounting part, which is arranged in a horizontal direction.

[0012] Furthermore, the lifting rod is movably hinged to the molding plate, and the transfer mechanism includes a fixed retaining ring located on the molding plate and snapped together with the lifting rod.

[0013] Furthermore, the molding plate includes a first horizontal plane, a second horizontal plane, and an arc surface located between the first horizontal plane and the second horizontal plane, wherein the arc surface is inclinedly connected to the first horizontal plane and the second horizontal plane to form rounded corners.

[0014] Furthermore, the arc surface includes a first arc surface connected to the first horizontal plane, a second arc surface connected to the second horizontal plane, and a third arc surface located between the first arc surface and the second arc surface, and the reinforcing rib extends from the first arc surface to the second arc surface.

[0015] Furthermore, the molding plate is integrally formed.

[0016] The beneficial effects of this utility model are as follows:

[0017] This invention utilizes a molding plate and a transfer mechanism. The transfer mechanism includes a lifting rod located on one side of the molding plate, which is arc-shaped to match the slope of the ditch. This allows for precise shaping of the ditch's slope and bottom, ensuring a uniform slope. After the backfill soil is placed in the ditch and initially shaped manually, the user can place the molding plate on the soil and step on it to compact the soil. After compaction, the molding plate is lifted by the lifting rod and moved to the next construction area for further compaction, thus forming a regular ditch shape. This reduces the number of manual adjustments and time required, improving construction efficiency. It effectively solves the problem that existing construction methods for ecological ditches typically involve a combination of manual and mechanical excavation followed by filling and shaping by workers. However, inconsistent soil layer heights and uneven slopes on both sides of the ditch result in poor ditch quality, requiring multiple manual adjustments and significant waste of labor costs.

[0018] The present invention will be further described below with reference to the accompanying drawings and specific embodiments. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of the structure of the shaping mold body of this utility model;

[0020] Figure 2 This is a cross-sectional schematic diagram of the body of the shaping mold of this utility model;

[0021] Figure 3 This is a plan view of the body of the shaping mold of this utility model;

[0022] Figure 4 This is a schematic diagram of the connection between the lifting rod and the plastic pressure plate of this utility model. Detailed Implementation

[0023] The embodiments of this utility model will now be described in detail with reference to the accompanying drawings.

[0024] like Figures 1 to 4 The mold shown is a shaping mold for building ecological grass-planting ditches in gardens. It includes a shaping mold body 1. The shaping mold body 1 includes a molding plate 2 and a transfer mechanism 3. The transfer mechanism 3 includes a lifting rod 31 located on one side of the molding plate 2. The molding plate 2 is arc-shaped.

[0025] This invention utilizes a molding plate and a transfer mechanism. The transfer mechanism includes a lifting rod located on one side of the molding plate, which is arc-shaped to match the slope of the ditch. This allows for precise shaping of the ditch's slope and bottom, ensuring a uniform slope. After the backfill soil is placed in the ditch and initially shaped manually, the user can place the molding plate on the soil and step on it to compact the soil. After compaction, the molding plate is lifted by the lifting rod and moved to the next construction area for further compaction, thus forming a regular ditch shape. This reduces the number of manual adjustments and time required, improving construction efficiency. It effectively solves the problem that existing construction methods for ecological ditches typically involve a combination of manual and mechanical excavation followed by filling and shaping by workers. However, inconsistent soil layer heights and uneven slopes on both sides of the ditch result in poor ditch quality, requiring multiple manual adjustments and significant waste of labor costs.

[0026] Furthermore, when using the plastic pressure plate 2, construction workers can efficiently compact the planting soil in the ditch. Compared with traditional methods for treating the planting soil in the arc-shaped ditch, which often face the problem of uneven soil compaction, the arc-shaped plastic pressure plate 2 can conform to the shape of the arc-shaped ditch and apply pressure evenly to the planting soil in various parts, so that the soil compaction degree is consistent. This not only effectively solves the problem of uneven soil compaction in the arc-shaped ditch, but also prevents irregular settlement in the later stage from the root, ensuring the stability of the ditch structure and providing a good foundation for planting.

[0027] Optionally, in some embodiments, the molding plate 2 and the lifting rod 31 can be connected by means of threaded connection, snap-fit ​​connection, slot connection, etc.

[0028] Optionally, in some embodiments, the lifting rod 31 is welded to the surface of the molding plate 2.

[0029] Furthermore, as a preferred embodiment of this utility model and not a limitation thereof, the lifting rod 31 and the molding pressure plate 2 are movably hinged.

[0030] Furthermore, the connection between the lifting rod 31 and the molded pressure plate 2 is located on the side of the molded pressure plate 2 away from the road surface. When the connection is located on the side away from the road surface, the construction personnel will not be restricted by the road boundary when operating the lifting rod 31. In complex construction environments such as gardens, there may be obstacles such as green plants and landscape features around the road. If the connection is close to the road surface, these obstacles will hinder the operation of the lifting rod 31, making it difficult for the construction personnel to operate. By setting the connection on the side away from the road surface, the construction personnel can control the lifting rod 31 more freely, improving the flexibility and convenience of operation. Secondly, the posture of the construction personnel when operating the lifting rod 31 will be more natural and comfortable. The design of the lifting rod 31 allows the construction personnel to move the molded pressure plate 2 without bending over, which helps to reduce the frequency of bending over and reduces labor intensity.

[0031] Optionally, the lifting rod 31 is a circular steel tube.

[0032] like Figures 1 to 4 The molding plate 2 shown includes a molding groove 21 extending away from the lifting rod 31, and the molding groove 21 is provided with reinforcing ribs 22;

[0033] Furthermore, the shaping groove 21 extends away from the lifting rod 31. During construction, the shaping groove 21 can better fit the shape of the ditch. When the backfilled planting soil is trimmed, the shaping groove 21 can accurately define the outline of the ditch, so that the shape of the ditch is more regular and smooth.

[0034] Furthermore, the reinforcing ribs 22 are set on the molding groove 21, which can effectively disperse the pressure borne by the molding plate 2 during the working process. When the construction workers step on the molding plate 2 to compact and trim the planting soil, the reinforcing ribs 22 can evenly transmit the pressure to various parts of the molding groove 21, avoid local stress concentration, reduce the risk of deformation or damage to the molding plate 2 due to uneven force, and extend the service life of the molding plate 2.

[0035] Optionally, the thickness of the reinforcing rib 22 is 8 mm. The thickness of 8 mm ensures that the reinforcing rib 22 has sufficient strength and rigidity to effectively resist the enormous pressure exerted on the molding plate 2 during compaction and trimming of the planting soil, thus preventing deformation or damage.

[0036] like Figures 1 to 4 The plastic pressure plate 2 shown is provided with a mounting part 4 on the side near the lifting rod 31. The mounting part 4 extends along the outer edge of the plastic pressure plate 2. The transfer mechanism 3 includes a plurality of handle rings 32 provided on the mounting part 4.

[0037] Furthermore, the handle ring 32 provides a convenient point of leverage for construction personnel. When moving the plastic pressure plate 2 to the construction position or when its position needs to be adjusted during construction, the construction personnel can directly grasp the handle ring 32 and easily move the plastic pressure plate 2.

[0038] Furthermore, multiple handle rings 32 are distributed on the mounting part 4 extending along the outer edge of the plastic pressure plate 2. Construction personnel can grasp the handle rings 32 from different directions to move the plastic pressure plate 2 according to actual operational needs.

[0039] Furthermore, the hollow structure of the mounting section 4 helps to reduce the overall weight of the molding plate 2, making it easier for construction workers to move and adjust the position of the molding plate 2 during operation. The lighter weight also helps to reduce the physical exertion of construction workers and improve work efficiency.

[0040] Specifically, installation part 4 is a square tube with a thickness of 3 mm.

[0041] Optionally, the mounting part 4 and the molded pressure plate 2 are threaded together.

[0042] Optionally, the mounting part 4 is welded to the surface of the molded pressure plate 2.

[0043] Preferably, a plurality of handle rings 32 are welded to the surface of the mounting part 4.

[0044] like Figures 1 to 4 The transfer mechanism 3 shown includes a directional wheel 33 located on one side of the molding plate 2 and arranged in a horizontal direction, and a connecting mechanism 5 is provided between the directional wheel 33 and the mounting part 4;

[0045] Furthermore, the directional wheels 33 make the plastic molding plate 2 more flexible and convenient during transportation. Construction workers can easily move the plastic molding plate 2 from the storage location to the construction site using the directional wheels 33, without the need for multiple people to carry it or to use additional transportation equipment. This helps to save manpower and time and effectively improves the efficiency of the construction preparation stage.

[0046] Furthermore, after the construction workers have compacted the planting soil, they can lift the plastic compactor plate 2 using the lifting rod 31 and then flip the plastic compactor plate 2 over. At this time, the construction workers can move the plastic compactor plate 2 to the next compaction area using the directional wheel 33, which effectively improves the construction efficiency.

[0047] Furthermore, the directional wheels 33 are provided so that the molding plate 2 can move on flat or slightly uneven terrain, making it convenient for construction workers to transport the molding plate 2 from the storage location to the construction area.

[0048] Furthermore, during transportation, the directional wheels 33 can reduce direct friction between the plastic pressure plate 2 and the ground, avoiding tool damage or deformation caused by dragging.

[0049] Furthermore, during the process of the user compacting the planting soil in the ditch using the plastic pressure plate 2, the directional wheel 33 located on one side of the plastic pressure plate 2 will not come into contact with the park road surface. When the user needs to transport the plastic pressure plate 2 to the construction site, the horizontally set plastic pressure plate 2 is flipped over in the 90-degree direction so that the plastic pressure plate 2 is set in the vertical direction. At this time, the user can move the plastic pressure plate 2 using the directional wheel 33.

[0050] like Figures 1 to 4 The connecting mechanism 5 shown includes a first connecting pipe 51 arranged in a vertical direction and a second connecting pipe 52 arranged in a horizontal direction. One side of the second connecting pipe 52 is connected to the directional wheel 33, one side of the first connecting pipe 51 is connected to the mounting part 4, and the other side of the first connecting pipe 51 is connected to the side of the second connecting pipe 52 away from the directional wheel 33.

[0051] Preferably, the first connecting pipe 51 and the second connecting pipe 52 are vertically connected in an "L" shape.

[0052] Furthermore, when the construction workers lift the plastic pressure plate 2, the force is transmitted to the first connecting pipe 51 through the mounting part 4, and then to the directional wheel 33 through the second connecting pipe 52. Since the first connecting pipe 51 and the second connecting pipe 52 are vertically connected, the vertical layout can effectively disperse the force. When moving the plastic pressure plate 2, the vertical connecting pipe structure can avoid excessive local stress, reduce the risk of damage to the connection parts due to stress concentration, and ensure the stability and reliability of the entire structure.

[0053] Furthermore, the first connecting pipe 51 and the second connecting pipe 52 are connected to form a stable frame structure, which can provide better support and resistance to deformation. When encountering uneven ground or obstacles, the impact force on the directional wheel 33 will be transmitted and dispersed through the second connecting pipe 52 and the first connecting pipe 51, thereby reducing the impact on the mounting part 4 and the plastic pressure plate 2 and enhancing the structural strength of the entire structure.

[0054] Furthermore, by setting the connecting mechanism 5 in both vertical and horizontal directions, space can be effectively utilized, avoiding structural bulkiness caused by a single-direction setting.

[0055] Furthermore, the first connecting pipe 51 and the second connecting pipe 52 are integrally formed.

[0056] Furthermore, a mounting bearing 521 is provided on the side of the second connecting pipe 52 away from the first connecting pipe 51, and the directional wheel 33 is movably connected to the second connecting pipe 52 through the mounting bearing 521.

[0057] like Figures 1 to 4 The first connecting pipe 51 shown is provided with a limiting piece 6 arranged in the horizontal direction on the side away from the mounting part 4;

[0058] Specifically, the setting of the limiting piece 6 can ensure the range of height difference between the planting soil layer and the road surface, and prevent the user from over-pressing the planting soil.

[0059] Furthermore, during construction, the molding plate 2 will be compacted vertically downwards by the footsteps of construction workers, thus shaping the soil. The limiting plate 6 can precisely limit the vertical displacement range of the molding plate 2. When the molding plate 2 moves downwards to a certain position, the limiting plate 6 will prevent the molding plate 2 from moving further downwards, ensuring that the molding plate 2 always works within the predetermined vertical position range, thereby ensuring the depth of the planting soil layer.

[0060] Alternatively, in some embodiments, the limiting piece 6 is made of a plastic material with high hardness.

[0061] Preferably, the limiting piece 6 is made of stainless steel.

[0062] like Figures 1 to 4 The lifting rod 31 shown is movably hinged to the molding plate 2, and the transfer mechanism 3 includes a fixed retaining ring 34 located on the molding plate 2 and snapped together with the lifting rod 31;

[0063] Furthermore, the lifting rod 31 is movably hinged to the plastic pressure plate 2. Construction personnel can flexibly adjust the angle between the lifting rod 31 and the plastic pressure plate 2 according to their own operating habits and actual construction conditions. For example, when working in a confined space, the lifting rod 31 can be adjusted to a suitable angle to facilitate the user to pull the plastic pressure plate 2 and avoid affecting the operation due to space limitations.

[0064] Furthermore, the retaining ring 34 is snapped together with the lifting rod 31 so that when the device is not in use, the user can snap the lifting rod 31 onto the retaining ring 34. The lifting rod 31 is fixed relative to the molding plate 2, which helps to reduce the space occupied and facilitates the transportation and storage of the molding plate 2.

[0065] Furthermore, during transportation or storage, fixing the lifting rod 31 to the fixing ring 34 can prevent the lifting rod 31 from swinging randomly and colliding with other objects, thereby reducing the risk of damage to the lifting rod 31 and the molding plate 2 and extending the service life of the device.

[0066] Furthermore, the surface of the molding plate 2 is provided with a hinged mounting seat 24. The hinged mounting seat 24 is installed on the surface of the molding plate 2 by means of threaded connection or welding. The hinged mounting seat 24 is provided with bolts 241, and the hinged mounting seat 24 is hinged to the lifting rod 31 by bolts 241.

[0067] like Figures 1 to 4 The plastic molding plate 2 shown includes a first horizontal surface 201, a second horizontal surface 202, and an arc surface 203 located between the first horizontal surface 201 and the second horizontal surface 202. The arc surface 203 is inclinedly connected to the first horizontal surface 201 and the second horizontal surface 202 to form rounded corners.

[0068] Furthermore, during operations such as compacting the planting soil in the irrigation ditch, the molded pressure plate 2 will bear a large pressure. The rounded corners allow the stress to be evenly distributed between the arc surface 203 and the first horizontal surface 201 and the second horizontal surface 202, avoiding stress concentration at sharp corners and helping to reduce damage to the molded pressure plate 2 caused by stress concentration. Secondly, the rounded corner structure increases the connection area and connection strength between the arc surface 203 and the first horizontal surface 201 and the second horizontal surface 202 respectively. Compared with right-angle connections, rounded corners make the force transmission smoother and can better resist the action of external forces.

[0069] Furthermore, rounded corners allow for a natural and smooth transition in the ecological grassed ditch, avoiding harsh edges and making the ditch more aesthetically pleasing, thus better integrating it with the surrounding garden landscape.

[0070] like Figures 1 to 4The arc surface 203 shown includes a first arc surface 2031 connected to the first horizontal surface 201, a second arc surface 2032 connected to the second horizontal surface 202, and a third arc surface 2033 located between the first arc surface 2031 and the second arc surface 2032. The reinforcing rib 22 extends from the first arc surface 2031 toward the second arc surface 2032.

[0071] Furthermore, the reinforcing rib 22 extends along the arc surface 203, which can effectively disperse and transfer stress, avoid structural weaknesses caused by stress concentration, and significantly improve the overall strength and rigidity of the plastic pressure plate 2, enabling it to withstand greater pressure and shear force during construction.

[0072] Furthermore, the arc surface 203 is designed to make the force transmission more uniform and smooth. From the first arc surface 2031 to the second arc surface 2032, the force can be gradually dispersed through the reinforcing rib 22, reducing the problem of excessive local stress.

[0073] like Figures 1 to 4 The plastic molding plate 2 shown is integrally formed;

[0074] Furthermore, the one-piece molding design makes the molded pressure plate 2 a complete whole, avoiding weak points caused by splicing or connection, which is conducive to significantly improving the overall strength and compressive performance of the structure; secondly, the one-piece molded pressure plate 2 can better resist the pressure and torque generated during construction, reducing the risk of deformation or damage.

[0075] Furthermore, the one-piece molded plastic pressure plate 2 eliminates the need for on-site assembly, reducing preparation time before construction and improving construction efficiency.

[0076] The implementation method of this embodiment is as follows:

[0077] A shaping mold for ecological planting ditches in gardens includes a shaping mold body 1, which includes a molding plate 2 and a transfer mechanism 3. The transfer mechanism 3 includes a lifting rod 31 located on one side of the molding plate 2. The molding plate 2 is arc-shaped so that its shape matches the slope of the ditch, enabling precise shaping of the ditch's slope and bottom to ensure a uniform slope. After the backfill soil is placed in the ditch and initially shaped manually, the user can place the molding plate 2 on the soil and step on it to compact the soil. After the planting soil in the ditch is compacted, the plastic pressing plate 2 is lifted by the lifting rod 31 and moved to the next construction area to continue compacting the soil, thus forming a regular ditch shape. This helps to reduce the number of manual repairs and the time spent, and helps to improve construction efficiency. It effectively solves the problem that when existing construction workers construct ecological ditches, they usually use a combination of manual and mechanical methods to excavate, and then workers fill and repair the ditch. However, due to the inconsistent height of the planting soil layer and the uneven slope on both sides of the ditch, the quality of the ecological ditch is not good, and multiple manual repairs are required, which seriously wastes labor costs.

[0078] The molding plate 2 is provided with an installation part 4 on the side near the lifting rod 31. The installation part 4 extends along the outer edge of the molding plate 2. The transfer mechanism 3 includes several handles 32 on the installation part 4. The handles 32 provide a convenient point of leverage for construction personnel. When the molding plate 2 is moved to the construction position or its position needs to be adjusted during construction, the construction personnel can directly grasp the handles 32 and move the molding plate 2 easily.

[0079] The transfer mechanism 3 includes a directional wheel 33 located on one side of the molding plate 2. A connecting mechanism 5 is provided between the directional wheel 33 and the mounting part 4. The directional wheel 33 is designed to make the molding plate 2 more flexible and convenient during transportation. Construction personnel can easily move the molding plate 2 from the storage location to the construction location using the directional wheel 33 without the need for multiple people to carry it or to use additional transportation equipment. This helps to save manpower and time and effectively improves the efficiency of the construction preparation stage.

[0080] The connecting mechanism 5 includes a first connecting pipe 51 connected to the installation part 4. The first connecting pipe 51 is provided with a limiting plate 6 arranged in the horizontal direction on the side away from the installation part 4. During the construction process, the molding plate 2 will be compacted downward in the vertical direction by the construction personnel, thereby shaping it. The limiting plate 6 can precisely limit the vertical displacement range of the molding plate 2. When the molding plate 2 moves downward to a certain position, the limiting plate 6 will prevent the molding plate 2 from moving further downward, ensuring that the molding plate 2 always works within the predetermined vertical position range, thereby ensuring the depth of the planting soil layer.

[0081] The above examples are merely illustrative of the technical content of this utility model to facilitate reader understanding, but do not imply that the implementation of this utility model is limited to these embodiments. Any technical extensions or re-creations made based on this utility model are protected by this utility model. The scope of protection of this utility model is defined by the claims.

Claims

1. A shaping mold for ecological grass-planting ditches in garden construction, comprising a shaping mold body (1), characterized in that: The mold body (1) includes a molding plate (2) and a transfer mechanism (3). The transfer mechanism (3) includes a lifting rod (31) located on one side of the molding plate (2). The molding plate (2) is arc-shaped.

2. The molding die for an ecological grass-planting ditch in garden construction according to claim 1, characterized in that: The molding plate (2) includes a molding groove (21) extending away from the lifting rod (31), and the molding groove (21) is provided with reinforcing ribs (22).

3. The molding die for an ecological grass-planting ditch in garden construction according to claim 1, characterized in that: The molding plate (2) has an installation part (4) on the side near the lifting rod (31). The installation part (4) extends along the outer edge of the molding plate (2). The transfer mechanism (3) includes a plurality of handle rings (32) provided on the installation part (4).

4. A molding die for an ecological grass-planting ditch in garden construction according to claim 3, characterized in that: The transfer mechanism (3) includes a directional wheel (33) located on one side of the molding plate (2) and arranged in the horizontal direction, and a connecting mechanism (5) is provided between the directional wheel (33) and the mounting part (4).

5. A molding die for ecological planting ditches in gardens according to claim 4, characterized in that: The connecting mechanism (5) includes a first connecting pipe (51) arranged in the vertical direction and a second connecting pipe (52) arranged in the horizontal direction. One side of the second connecting pipe (52) is connected to the directional wheel (33), one side of the first connecting pipe (51) is connected to the mounting part (4), and the other side of the first connecting pipe (51) is connected to the side of the second connecting pipe (52) away from the directional wheel (33).

6. A molding die for an ecological grass-planting ditch in garden construction according to claim 5, characterized in that: The first connecting pipe (51) is provided with a limiting piece (6) arranged in the horizontal direction on the side away from the mounting part (4).

7. A molding die for an ecological grass-planting ditch in garden construction according to claim 1, characterized in that: The lifting rod (31) is movably hinged to the molding plate (2), and the transfer mechanism (3) includes a fixed retaining ring (34) located on the molding plate (2) and snapped to the lifting rod (31).

8. A molding die for an ecological grass-planting ditch in garden construction according to claim 2, characterized in that: The molding plate (2) includes a first horizontal surface (201), a second horizontal surface (202), and an arc surface (203) located between the first horizontal surface (201) and the second horizontal surface (202). The arc surface (203) is inclinedly connected to the first horizontal surface (201) and the second horizontal surface (202) to form rounded corners.

9. A molding die for an ecological grass-planting ditch in garden construction according to claim 8, characterized in that: The arc surface (203) includes a first arc surface (2031) connected to the first horizontal surface (201), a second arc surface (2032) connected to the second horizontal surface (202), and a third arc surface (2033) located between the first arc surface (2031) and the second arc surface (2032). The reinforcing rib (22) extends from the first arc surface (2031) toward the second arc surface (2032).

10. A molding die for an ecological grass-planting ditch in garden construction according to claim 1, characterized in that: The plastic pressure plate (2) is integrally formed.