Integrated Y pile structure of greenhouse

By using a Y-shaped pile body, a cross-shaped constriction, and a spiral plate structure, the problem of complex and time-consuming installation of greenhouse piles has been solved, achieving rapid construction and long-term stability, and meeting the timeliness requirements of seasonal planting.

CN224031658UActive Publication Date: 2026-03-24YUNNAN CONSTR & INSTALLATION JOINT STOCK
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-14
Publication Date
2026-03-24

AI Technical Summary

Technical Problem

The existing greenhouse pile system is complex to install, time-consuming, has poor stability, is prone to tilting and displacement, and has high repair costs, making it difficult to meet the timeliness requirements of seasonal planting.

Method used

The structure employs a Y-shaped pile body, a cross-shaped constriction, and a spiral blade structure. The spiral blade is used to spin-press the pile into the soil, while the cross-shaped constriction cuts through the soil, thereby improving the pile's ability to spin-press into the soil and its stability.

Benefits of technology

The installation process has been simplified, construction difficulty and cost have been reduced, the stability and rapid construction capability of the greenhouse have been improved, and the long-term stability of the greenhouse has been ensured.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an integrated Y-shaped pile structure of a greenhouse, and belongs to the technical field of agricultural greenhouse construction. The structure comprises a Y-shaped pile main body, a cross-shaped necking and a spiral sheet. The Y-shaped pile body is composed of a straight rod, a V-shaped support and a V-shaped rod, the V-shaped support is fixed to the top of the straight rod, the two ends of the V-shaped rod are connected with the V-shaped support at the top of the straight rod, and a cross rod support is arranged below the middle of the V-shaped rod. The length of the straight rod is 120 mm, and a cross-shaped necking opening with the length of 60 mm is formed in the bottom of the straight rod and used for enhancing the soil cutting effect and friction force. The spiral piece is welded to the periphery of the bottom of the straight rod, the radius of the spiral piece is 10 cm, the spinning soil penetrating capacity is improved, and the installation process is simplified. Through the design of the cross-shaped necking and the spiral pieces, the construction difficulty and the time cost are effectively reduced, the stability and the construction efficiency of the pile body are improved, and the greenhouse pile is suitable for rapid construction of greenhouses.
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Description

Technical Field

[0001] This utility model belongs to the field of agricultural greenhouse construction technology, specifically relating to an integrated Y-pile structure for greenhouses that integrates cross-shaped constricted spiral plate installation. Background Technology

[0002] Existing greenhouse pile structures mostly employ a single columnar structure, with installation primarily relying on traditional spiral-drilled concrete foundations. This technology suffers from several significant drawbacks in practical application: it requires multiple complex processes such as drilling and concrete pouring, which are time-consuming and labor-intensive; the long concrete curing period severely slows down greenhouse construction, making it difficult to meet the stringent time requirements of seasonal planting. Traditional piles have limited contact area with the soil, resulting in low friction and making them prone to tilting and displacement in soft soil or inclement weather, threatening the overall stability of the greenhouse; insufficient pile depth leads to weak pull-out resistance, making it difficult to maintain stability over the long term. Damage to the concrete foundation necessitates excavation and re-pouring, which is costly and time-consuming. The long construction period can delay the optimal planting time for crops, leading to direct economic losses. Furthermore, it relies heavily on manpower and material inputs, making it difficult to effectively control overall costs. Utility Model Content

[0003] To address the shortcomings of existing technologies, this utility model provides an integrated Y-pile structure for greenhouses, aiming to improve the ability of the greenhouse piles to be spun into the soil and their stability, thereby enabling the rapid construction and long-term stable operation of the greenhouse.

[0004] The integrated Y-pile structure for greenhouses is characterized by comprising a Y-shaped pile body, a cross-shaped constriction, and a spiral plate. The Y-shaped pile body consists of a straight rod, a V-shaped support, and a V-shaped rod. The V-shaped support is fixed to the top of the straight rod, and the middle of the V-shaped rod faces upward. Both ends are connected to the V-shaped supports at the top of the two straight rods, and the connections are fixed with bolts. A horizontal support is provided below the middle of the V-shaped rod. The spiral plate is welded to the bottom outer periphery of the vertical rod, and the cross-shaped constriction is located at the bottom end of the straight rod.

[0005] Furthermore, the radius of the spiral plate is 10 cm.

[0006] Furthermore, the length of the cross-shaped constriction is 60mm.

[0007] The beneficial effects of this utility model are as follows: the cross-shaped constriction allows the pile to cut the soil more effectively during the rotation and pressing process, while increasing the friction between the soil and the pile; the spiral blade's ability to spin and press into the soil also simplifies the installation process, reduces construction difficulty and time costs, and improves stability. Attached Figure Description

[0008] Figure 1 This is a schematic diagram of an integrated Y-pile structure for a greenhouse.

[0009] Figure 2 This is a schematic diagram showing the connection between the V-shaped support and the straight rod.

[0010] Figure 3 This is a schematic diagram showing the connection between the spiral blade, the cross-shaped constriction, and the straight rod.

[0011] Among them: 1-straight rod, 2-V-shaped support, 3-V-shaped rod, 4-cross rod, 5-spiral blade, 6-cross constriction. Detailed Implementation

[0012] Example 1: An integrated Y-pile structure for a greenhouse includes a Y-shaped pile body, a cross-shaped constriction 6, and a spiral blade 5. The Y-shaped pile body consists of a straight rod 1, a V-shaped support 2, and a V-shaped rod 3. The straight rod 1 is 120mm long, ensuring sufficient contact between its bottom and the soil, increasing the pile's embedment depth. The V-shaped support 2 is fixed to the top of the straight rod 1. The V-shaped rod 3 has its middle section facing upwards, with both ends connected to the V-shaped supports 2 at the top of the two straight rods 1, secured with bolts. A crossbar 4 is installed below the middle of the V-shaped rod 3 for support. The spiral blade 5 is welded to the outer circumference of the bottom of the vertical rod 1, with a radius of 10cm. The spiral blade 5 is used to contact the ground, increasing the pile's stability. The cross-shaped constriction 6 is located at the bottom of the straight rod 1, with a length of 60mm. This cross-shaped constriction 6 helps optimize the soil insertion process, effectively cutting the soil and increasing the friction between the soil and the pile, thereby improving the pile's stability.

Claims

1. An integrated Y-pile structure for greenhouses, characterized by: It includes a Y-shaped pile body, a cross-shaped constriction, and a spiral plate. The Y-shaped pile body consists of a straight rod, a V-shaped support, and a V-shaped rod. The V-shaped support is fixed to the top of the straight rod, the middle of the V-shaped rod faces upward, and both ends are connected to the V-shaped supports at the top of the two straight rods respectively. A horizontal support is set below the middle of the V-shaped rod. The spiral plate is welded to the bottom outer periphery of the vertical rod, and the cross-shaped constriction is set at the bottom end of the straight rod.

2. The integrated Y-pile structure for greenhouses as described in claim 1, characterized in that... The radius of the spiral plate is 10cm.

3. The integrated Y-pile structure for greenhouses as described in claim 1, characterized in that... The length of the cross-shaped constriction is 60mm.