Six-way connecting component

By designing six-way connecting components, a common connection between the horizontal bars, columns and arch rods of multiple planting greenhouses is achieved, which solves the construction complexity and material waste problems caused by traditional connecting components and improves the stability and construction efficiency of the connected planting greenhouses.

CN223411192UActive Publication Date: 2025-10-03QINGYUAN PUHE NEW MATERIAL TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422420606.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-08
Publication Date
2025-10-03
Estimated Expiration
2034-10-08

AI Technical Summary

Technical Problem

Traditional connecting components are unable to simultaneously connect the horizontal bars, longitudinal pull rods, columns and arch rods in two greenhouses, resulting in increased construction complexity, waste of materials and costs, and reduced stability and construction efficiency of the connected greenhouses.

Method used

A six-way connecting component is designed, including a first connecting pipe, a second connecting pipe, a third connecting pipe, a fourth oblique connecting pipe and a fifth oblique connecting pipe. Multiple sockets and limit parts are provided to realize the common connection of the cross bars, columns and arc-top arch bars of multiple planting greenhouses. Glass fiber reinforced plastic is used to improve stability and reduce weight.

Benefits of technology

It effectively solves the shortcomings of traditional connecting components, simplifies the construction process, saves materials, improves the stability and construction efficiency of the connected planting shed, and reduces maintenance costs.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223411192U_ABST
    Figure CN223411192U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of connecting pieces, in particular to a six-way connecting component which is provided with a first left side inserting opening and a first right side inserting opening, the first left side inserting opening can be connected with a greenhouse head cross rod of a planting greenhouse, and the first right side inserting opening can be connected with a greenhouse head cross rod of another planting greenhouse. The fourth inclined inserting opening can be connected with an arc top arch rod of one planting greenhouse, and the fifth inclined inserting opening can be connected with an arc top arch rod of another planting greenhouse, a second transverse inserting opening in the second connecting pipe and a third longitudinal inserting opening in the third connecting pipe, so that the two planting greenhouses can share the stand columns and the longitudinal pull rods. The problems that according to an existing connecting component, shed head transverse rods, longitudinal pull rods, stand columns and arc top arch rods in two planting greenhouses cannot be connected at the same time, joint cooperation of multiple connecting components is needed, the construction complexity is increased, materials and cost are wasted, and the stability and building efficiency of the connected planting greenhouse are reduced are effectively solved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the technical field of connectors, in particular to a six-way connecting component. Background Art

[0002] Agricultural greenhouses are enclosed or semi-enclosed greenhouse facilities designed to provide a controlled growing environment for crops, thereby improving production efficiency and yield. Greenhouses effectively utilize natural light while shielding against external climate influences. They are typically equipped with ventilation systems, irrigation systems, and temperature control equipment to precisely regulate environmental conditions such as temperature, humidity, and light, ensuring optimal crop growth. Agricultural greenhouses not only extend the growing season but also significantly increase yield per unit area, playing a crucial role in enhancing the stability and economic benefits of agricultural production.

[0003] With the rapid development of modern agriculture and the growing demand for diversified, high-quality agricultural products, the production capacity and efficiency of a single greenhouse are no longer sufficient to meet the needs of large-scale, high-efficiency cultivation. Therefore, driven by technological innovation, the agricultural sector has begun exploring the expansion of existing greenhouses. By connecting multiple greenhouses to form conjoined greenhouses, the goal is to expand the planting area, improve production efficiency, and further meet the market's strong demand for agricultural products.

[0004] In the process of building a connected planting shed, it is often necessary to use connecting components to connect multiple planting sheds. Traditional connecting components cannot connect the horizontal bars, longitudinal pull rods, columns and arc-top arch bars in two planting sheds at the same time, and multiple connecting components are required to cooperate with each other, which not only increases the complexity of construction, but also leads to waste of materials and costs, and reduces the stability and construction efficiency of the connected planting shed.

[0005] The present invention is proposed in view of the deficiencies in the prior art. Utility Model Content

[0006] In view of the problem that the existing connecting components mentioned above cannot simultaneously connect the horizontal bars, longitudinal pull rods, columns and arch rods of the two planting greenhouses, and multiple connecting components are required to cooperate with each other, which not only increases the complexity of construction, but also leads to waste of materials and costs, and reduces the stability and construction efficiency of the connected planting greenhouses, the technical solution adopted by the utility model to solve the technical problem is:

[0007] A six-way connecting component includes a connecting member body, wherein the connecting member body includes a first connecting tube arranged in a horizontal direction, a second connecting tube arranged in a horizontal direction and vertically connected to the first connecting tube, a third connecting tube arranged in a vertical direction and vertically connected to the first connecting tube and the second connecting tube respectively, a fourth oblique connecting tube obliquely connected to the first connecting tube, and a fifth oblique connecting tube obliquely connected to the first connecting tube, the first connecting tube is provided with a first left socket and a first right socket, the second connecting tube is provided with a second horizontal socket, the third connecting tube is provided with a third longitudinal socket, the fourth oblique connecting tube is provided with a fourth oblique socket, and the fifth oblique connecting tube is provided with a fifth oblique socket.

[0008] Furthermore, the first connecting tube, the second connecting tube, the third connecting tube, the fourth oblique connecting tube and the fifth oblique connecting tube are integrally formed.

[0009] Furthermore, the first connecting pipe includes a first left transverse connecting pipe and a first right transverse connecting pipe connected to the first left transverse connecting pipe, the first left socket is located in the first left transverse connecting pipe, and the first right socket is located in the first right transverse connecting pipe.

[0010] Furthermore, the first left transverse connecting tube is provided with a first limiting portion near one end of the first right transverse connecting tube to prevent the tube from extending toward the second connecting tube, the first right transverse connecting tube is provided with a second limiting portion near one end of the first left transverse connecting tube to prevent the tube from extending toward the second connecting tube, and the third connecting tube is provided with a third limiting portion at one end away from the third longitudinal socket to prevent the tube from extending toward the second connecting tube.

[0011] Furthermore, the fourth oblique connecting pipe is obliquely connected to the first left transverse connecting pipe, and an axis of the fourth oblique connecting pipe forms an angle α with an axis of the first left transverse connecting pipe, wherein 15°≤angle α≤75°;

[0012] The fifth oblique connecting pipe is obliquely connected to the first right transverse connecting pipe, and the axis of the fifth oblique connecting pipe forms an angle β with the axis of the first right transverse connecting pipe, where 15°≤angle β≤75°.

[0013] Furthermore, the fourth oblique connecting pipe is provided with a fourth limiting portion at one end away from the fourth oblique socket to prevent the pipe from extending toward the second connecting pipe, and the fifth oblique connecting pipe is provided with a fifth limiting portion at one end away from the fifth oblique socket to prevent the pipe from extending toward the second connecting pipe.

[0014] Furthermore, the first connecting pipe and / or the second connecting pipe and / or the third connecting pipe and / or the fourth oblique connecting pipe and / or the fifth oblique connecting pipe are provided with fixing holes for installing fastening pipes.

[0015] Furthermore, a first reinforcing rib is provided between the first connecting tube and the second connecting tube, a second reinforcing rib is provided between the first connecting tube and the third connecting tube, and a third reinforcing rib is provided between the fourth oblique connecting tube, the fifth oblique connecting tube and the second connecting tube.

[0016] Furthermore, the cross-sections of the first connecting tube and the second connecting tube are rectangular, and the cross-sections of the third connecting tube, the fourth oblique connecting tube, and the fifth oblique connecting tube are circular.

[0017] Furthermore, the connector body is made of fiberglass reinforced plastic.

[0018] The beneficial effects of the utility model are as follows:

[0019] The utility model provides a first left socket and a first right socket on the first connecting tube, the first left socket can be connected to the roof cross bar of one planting greenhouse, the first right socket can be connected to the roof cross bar of another planting greenhouse, the fourth oblique socket on the fourth oblique connecting tube can be connected to the arc top arch rod of one planting greenhouse, the fifth oblique socket on the fifth oblique connecting tube can be connected to the arc top arch rod of another planting greenhouse, the second horizontal socket on the second connecting tube and the third longitudinal socket on the third connecting tube enable the two planting greenhouses to share columns and longitudinal pull rods, effectively solving the problem that the existing connecting components cannot connect the roof cross bars, longitudinal pull rods, columns and arc top arch rods in two planting greenhouses at the same time, and multiple connecting components are required to cooperate with each other, which not only increases the complexity of construction, but also leads to waste of materials and costs, and reduces the stability and construction efficiency of the connected planting greenhouses.

[0020] The present invention will be further described below with reference to the accompanying drawings and specific implementation methods. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 This is one of the structural diagrams of the connector body of the present invention;

[0022] Figure 2 This is the second structural diagram of the connector body of the present invention;

[0023] Figure 3 This is the third structural diagram of the connector body of the present invention;

[0024] Figure 4 This is the fourth structural diagram of the connector body of the present invention;

[0025] Figure 5 for Figure 4 Schematic cross-sectional view along line AA;

[0026] Figure 6 This is the fifth structural diagram of the connector body of the present invention;

[0027] Figure 7 This is the sixth structural diagram of the connector body of the present invention;

[0028] Figure 8 This is a structural diagram of the connected planting shed of the present utility model;

[0029] Figure 9 for Figure 8 Schematic enlargement of the labeled section B. DETAILED DESCRIPTION

[0030] The following describes the embodiments of the present invention in detail with reference to the accompanying drawings.

[0031] like Figures 1 to 9 A six-way connecting member shown in FIG. 1 includes a connecting member body 1 , the connecting member body 1 including a first connecting pipe 2 arranged in the horizontal direction, a second connecting pipe 3 arranged in the horizontal direction and perpendicularly connected to the first connecting pipe 2, a third connecting pipe 4 arranged in the vertical direction and perpendicularly connected to the first connecting pipe 2 and the second connecting pipe 3 respectively, a fourth oblique connecting pipe 5 obliquely connected to the first connecting pipe 2, and a fifth oblique connecting pipe 6 obliquely connected to the first connecting pipe 2, the first connecting pipe 2 being provided with a first left socket 211 and a first right socket 212, the second connecting pipe 3 being provided with a second transverse socket 31, the third connecting pipe 4 being provided with a third longitudinal socket 41, the fourth oblique connecting pipe 5 being provided with a fourth oblique socket 51, and the fifth oblique connecting pipe 6 being provided with a fifth oblique socket 61;

[0032] The utility model provides a first left socket and a first right socket on the first connecting tube, the first left socket can be connected to the roof cross bar of one planting greenhouse, the first right socket can be connected to the roof cross bar of another planting greenhouse, the fourth oblique socket on the fourth oblique connecting tube can be connected to the arc top arch rod of one planting greenhouse, the fifth oblique socket on the fifth oblique connecting tube can be connected to the arc top arch rod of another planting greenhouse, the second horizontal socket on the second connecting tube and the third longitudinal socket on the third connecting tube enable the two planting greenhouses to share columns and longitudinal pull rods, effectively solving the problem that the existing connecting components cannot connect the roof cross bars, longitudinal pull rods, columns and arc top arch rods in two planting greenhouses at the same time, and multiple connecting components are required to cooperate with each other, which not only increases the complexity of construction, but also leads to waste of materials and costs, and reduces the stability and construction efficiency of the connected planting greenhouses.

[0033] Specifically, the connector body 1 is used to connect two planting greenhouses and is located at the head or tail of the two planting greenhouses. By setting the first left socket 211 and the first right socket 212, the head cross bar of one planting greenhouse can be connected to the first left socket 211, and the head cross bar of the other planting greenhouse can be connected to the first right socket 212; by setting the second horizontal socket 31, the longitudinal pull rod between the two planting greenhouses can be connected to the second connecting pipe 3, so that the two planting greenhouses share a longitudinal pull rod, which is beneficial to energy conservation. Save resources; by setting the third longitudinal socket 41, the columns between the two planting greenhouses can be connected to the third longitudinal socket 41, so that the two planting greenhouses share one column, which is conducive to saving resources; by setting the fourth oblique socket 51 and the fifth oblique socket 61, the arc top arch rod of one planting greenhouse can be connected to the fourth oblique socket 51, and the arc top arch rod of the other planting greenhouse can be connected to the fifth oblique socket 61; by using the connector body 1, the user can connect the head or tail positions of two adjacent planting greenhouses.

[0034] Furthermore, the end of the second connecting tube 3 on the connector body 1 away from the second transverse socket 31 is flush with the side wall of the first connecting tube 2, and there is no protrusion to form a socket for connecting the pipe. The flush setting makes it difficult for the connector body 1 to cut the film or insect-proof net laid on the planting greenhouse when connecting two single planting greenhouses, which is conducive to saving materials.

[0035] like Figures 1 to 9 The first connecting pipe 2, the second connecting pipe 3, the third connecting pipe 4, the fourth oblique connecting pipe 5 and the fifth oblique connecting pipe 6 are integrally formed;

[0036] Optionally, in some embodiments, the first connecting pipe 2 , the second connecting pipe 3 , the third connecting pipe 4 , the fourth oblique connecting pipe 5 and the fifth oblique connecting pipe 6 are threadedly connected.

[0037] Optionally, in some embodiments, the first connecting tube 2 , the second connecting tube 3 , the third connecting tube 4 , the fourth oblique connecting tube 5 and the fifth oblique connecting tube 6 are snap-connected.

[0038] Furthermore, as a preferred embodiment of the present invention but not a limitation thereof, the first connecting pipe 2 , the second connecting pipe 3 , the third connecting pipe 4 , the fourth oblique connecting pipe 5 and the fifth oblique connecting pipe 6 are integrally formed.

[0039] Furthermore, the one-piece molding setting can reduce the looseness or gap between the connecting pipes, which is beneficial to ensuring the overall stability and strength of the connector body 1, effectively improving the overall structural stability of the connected planting shed, and helping to reduce structural problems caused by weaknesses in the connection.

[0040] Furthermore, when subjected to external loads, the one-piece structural setting can more effectively disperse stress, which is conducive to reducing stress concentration and effectively reducing the risk of structural damage.

[0041] like Figures 1 to 9 The first connecting pipe 2 shown includes a first left transverse connecting pipe 21 and a first right transverse connecting pipe 22 connected to the first left transverse connecting pipe 21 . The first left socket 211 is located in the first left transverse connecting pipe 21 , and the first right socket 212 is located in the first right transverse connecting pipe 22 .

[0042] Furthermore, by dividing the first connecting tube 2 into a first left transverse connecting tube 21 and a first right transverse connecting tube 22 connected to the first left transverse connecting tube 21, the first left socket 211 is located in the first left transverse connecting tube 21, and the first right socket 212 is located in the first right transverse connecting tube 22, so that the first connecting tube 2 can simultaneously connect the top cross bars of two different planting greenhouses, which is conducive to enhancing the adaptability and flexibility of the connecting member body 1.

[0043] Furthermore, the first left socket 211 can be connected to the roof cross bar of one planting greenhouse, and the first right socket 212 can be connected to the roof cross bar of another planting greenhouse. When the roof cross bar on one side is damaged and needs to be replaced, only the roof cross bar on one side needs to be replaced, which is conducive to saving materials.

[0044] like Figures 1 to 9 As shown, the first left transverse connecting tube 21 is provided with a first stopper 71 at one end thereof near the first right transverse connecting tube 22 to prevent the tube from extending toward the second connecting tube 3. The first right transverse connecting tube 22 is provided with a second stopper 72 at one end thereof near the first left transverse connecting tube 21 to prevent the tube from extending toward the second connecting tube 3. The third connecting tube 4 is provided with a third stopper 73 at one end thereof away from the third longitudinal insertion opening 41 to prevent the tube from extending toward the second connecting tube 3.

[0045] Optionally, in some embodiments, an end of the second connecting pipe 3 away from the second transverse socket 31 is also provided with a limiting portion to prevent the pipe from over-extension.

[0046] Furthermore, as a preferred embodiment of the present invention but not a limitation, no limiting portion is provided on the second connecting tube 3 , and the longitudinal pull rod extends through the second transverse socket 31 to the bottom of the fourth oblique connecting tube 5 and the fifth oblique connecting tube 6 , and abuts against the inner wall of the connector body 1 .

[0047] Furthermore, the provision of the first limiting portion 71, the second limiting portion 72 and the third limiting portion 73 is conducive to preventing the pipes from sliding or extending toward the middle of the connector body 1 during use, thereby ensuring the stability of the connector body 1 during use and avoiding structural instability caused by accidental sliding of the pipes.

[0048] Furthermore, excessive extension of the pipe fittings may easily lead to loose connections or damage to other components. The provision of the first limiting portion 71, the second limiting portion 72 and the third limiting portion 73 is conducive to ensuring that each pipe fitting moves within the permitted range while protecting other components from damage.

[0049] Optionally, the first limiting portion 71 , the second limiting portion 72 and the third limiting portion 73 are all limiting protrusions.

[0050] like Figures 1 to 9 The fourth oblique connecting pipe 5 is obliquely connected to the first left transverse connecting pipe 21 , and the axis of the fourth oblique connecting pipe 5 forms an angle α with the axis of the first left transverse connecting pipe 21 , where 15°≤angle α≤75°;

[0051] The fifth oblique connecting pipe 6 is obliquely connected to the first right transverse connecting pipe 22 , and the axis of the fifth oblique connecting pipe 6 forms an angle β with the axis of the first right transverse connecting pipe 22 , where 15°≤angle β≤75°.

[0052] Furthermore, the setting of the angle α is conducive to ensuring that an appropriate distance is maintained between the fourth oblique connecting tube 5 and the first left horizontal connecting tube 21, so that the arc-top arch rod inserted into the fourth oblique socket 51 and the roof cross bar inserted into the first left socket 211 will not collide, providing a suitable angle for the connection of the pipes; similarly, the setting of the angle β is conducive to ensuring that an appropriate distance is maintained between the fifth oblique connecting tube 6 and the first right horizontal connecting tube 22, so that the arc-top arch rod inserted into the fifth oblique socket 61 and the roof cross bar inserted into the first right socket 212 will not collide.

[0053] Furthermore, by setting the fourth oblique connecting tube 5 and the first left transverse connecting tube 21 to form an angle α, and the fifth oblique connecting tube 6 and the first right transverse connecting tube 22 to form an angle β, the connector body 1 can bear loads in different directions, which is beneficial to enhancing the stability of the overall structure.

[0054] Optionally, in some embodiments, the angle α and the angle β are both 30°. The setting of the angle 30° can provide more balanced support, especially when the horizontal load is large, and can effectively share the lateral force.

[0055] Optionally, in some embodiments, the angle α and the angle β are both 45°. The setting of the angle 45° is conducive to providing better mechanical balance, and can evenly share and transfer horizontal and vertical loads, thereby improving the stability of the overall structure.

[0056] Optionally, in some embodiments, the angle α and the angle β are both 60°. The setting of the angle 60° allows a larger angle to be formed between the top arch rod and the roof cross bar, which helps to improve the rigidity and stability of the structure.

[0057] Furthermore, the fourth oblique connecting tube 5 and the first left transverse connecting tube 21 are obliquely connected and form chamfered corners, and the fifth oblique connecting tube 6 and the first right transverse connecting tube 22 are obliquely connected and form chamfered corners. The setting of the chamfered corners can effectively reduce stress concentration at the connection parts. Sharp angles can easily lead to stress concentration, thereby causing material fatigue or cracks. The chamfered corners can make the stress more evenly distributed at the connection, thereby improving the durability of the overall structure.

[0058] like Figures 1 to 9 The fourth oblique connecting pipe 5 is provided with a fourth stopper 74 at one end away from the fourth oblique socket 51 to prevent the pipe from extending toward the second connecting pipe 3. The fifth oblique connecting pipe 6 is provided with a fifth stopper 75 at one end away from the fifth oblique socket 61 to prevent the pipe from extending toward the second connecting pipe 3.

[0059] Furthermore, the provision of the fourth limiting portion 74 and the fifth limiting portion 75 can play a role in positioning and limiting, which is beneficial to ensuring the accurate installation position of the arc top arch rod, effectively avoiding the occurrence of offset or dislocation when the pipes are connected, and is beneficial to maintaining the stability of the arc top arch rod.

[0060] Furthermore, the provision of the fourth limiting portion 74 and the fifth limiting portion 75 is conducive to preventing the arc top arch rod from excessively extending toward the second connecting pipe 3, thereby effectively ensuring that the distance between the various pipe fittings is appropriate.

[0061] Furthermore, the provision of the fourth limiting portion 74 and the fifth limiting portion 75 can effectively limit the movement range and position of the top arch rod, thereby improving the safety and reliability of the connection of the top arch rod and preventing the top arch rod from being misaligned with other pipe fittings.

[0062] Optionally, the fourth limiting portion 74 and the fifth limiting portion 75 are both limiting protrusions.

[0063] like Figures 1 to 9 The first connecting pipe 2 and / or the second connecting pipe 3 and / or the third connecting pipe 4 and / or the fourth oblique connecting pipe 5 and / or the fifth oblique connecting pipe 6 are provided with fixing holes 8 for installing fastening pipes;

[0064] Optionally, in some embodiments, the connector body 1 is snap-connected to each pipe.

[0065] Furthermore, as a preferred embodiment of the present invention but not a limitation thereof, the connector body 1 is threadedly connected to each pipe fitting through the fixing hole 8 .

[0066] Furthermore, by setting the fixing holes 8, it is possible to ensure that the connection between each connecting pipe and the pipe fittings is tight, thereby preventing the connection parts between the connecting pipes and the pipe fittings from loosening or falling off during the construction or use of the connected planting shed; secondly, the setting of the fixing holes 8 makes the connection between the connecting pipes and the pipe fittings standardized and standardized, which is helpful for installation and replacement, and effectively improves the efficiency of the construction and maintenance of the connected planting shed.

[0067] like Figures 1 to 9 As shown, a first reinforcing rib 81 is provided between the first connecting tube 2 and the second connecting tube 3, a second reinforcing rib 82 is provided between the first connecting tube 2 and the third connecting tube 4, and a third reinforcing rib 83 is provided between the fourth oblique connecting tube 5, the fifth oblique connecting tube 6 and the second connecting tube 3;

[0068] Furthermore, the provision of the first reinforcing rib 81 , the second reinforcing rib 82 and the third reinforcing rib 83 can significantly improve the rigidity between the connecting pipes, preventing the connecting pipes from bending or deforming when subjected to force, thereby enhancing the stability and load-bearing capacity of the connector body 1 .

[0069] Furthermore, by providing the first reinforcing rib 81, the second reinforcing rib 82 and the third reinforcing rib 83, the load applied to the structure can be effectively dispersed and transferred, which helps to optimize the mechanical properties, ensure uniform load distribution, and effectively reduce local stress concentration.

[0070] like Figures 1 to 9 The cross-sections of the first connecting pipe 2 and the second connecting pipe 3 are rectangular, and the cross-sections of the third connecting pipe 4, the fourth oblique connecting pipe 5, and the fifth oblique connecting pipe 6 are circular;

[0071] Furthermore, the cross-section of the third connecting tube 4 is circular, so that the common columns of the two single planting sheds adopt circular tubes. When the user installs the common columns, there is no need to consider the orientation of the pipes, which is conducive to improving the installation efficiency; the cross-sections of the fourth oblique connecting tube 5 and the fifth oblique connecting tube 6 are also circular, and the arc top arch rod adopts the setting of circular tubes, which is conducive to the adaptation of the arc top arch rod to other connecting parts on the planting shed, and is conducive to improving the applicability of the arc top arch rod.

[0072] Furthermore, the cross-section of the first connecting tube 2 and the second connecting tube 3 is rectangular, and the longitudinal pull rod and the roof cross bar are set as square tubes, which is conducive to the adaptation of the longitudinal pull rod and the roof cross bar to other connecting parts on the planting shed, and is conducive to improving the applicability of the longitudinal pull rod and the roof cross bar.

[0073] like Figures 1 to 9 The connector body 1 shown is made of fiberglass;

[0074] Specifically, the connector body 1 is made of fiberglass, which is beneficial to reducing the overall weight of the connected planting shed. The fiberglass material has high strength and rigidity, and is very light compared to traditional metal materials. It can effectively reduce the weight of the structure itself and improve the load capacity and overall stability. The fiberglass material has a smooth surface, is non-conductive, moisture-resistant and corrosion-resistant, and can be used for a long time in harsh working environments without corrosion and damage caused by corrosion, thereby extending the service life of the structure. Compared with metal materials, fiberglass is more durable, does not require frequent maintenance, and has relatively low maintenance costs, effectively reducing maintenance costs.

[0075] The implementation of this embodiment is as follows:

[0076] A six-way connecting component includes a connecting member body 1, the connecting member body 1 includes a first connecting pipe 2 arranged in the horizontal direction, a second connecting pipe 3 arranged in the horizontal direction and vertically connected to the first connecting pipe 2, a third connecting pipe 4 arranged in the vertical direction and vertically connected to the first connecting pipe 2 and the second connecting pipe 3 respectively, a fourth oblique connecting pipe 5 obliquely connected to the first connecting pipe 2, and a fifth oblique connecting pipe 6 obliquely connected to the first connecting pipe 2, the first connecting pipe 2 includes a first left transverse connecting pipe 21, a first right transverse connecting pipe 22 connected to the first left transverse connecting pipe 21, a first left socket 211 is provided on the first left transverse connecting pipe 21, a first right transverse connecting pipe 22 is provided with a first right socket 212, the second connecting pipe 3 is provided with a second transverse socket 31, and the third connecting pipe 4 is provided with a third longitudinal socket 41. The fourth oblique connecting tube 5 is provided with a fourth oblique socket 51, and the fifth oblique connecting tube 6 is provided with a fifth oblique socket 61. The user can use the first left socket 211 to connect the roof cross bar of one planting greenhouse, the first right socket 212 to connect the roof cross bar of another planting greenhouse, the fourth oblique socket 51 to connect the arc top arch rod of one planting greenhouse, and the fifth oblique socket 61 to connect the arc top arch rod of another planting greenhouse. The second horizontal socket 31 and the third longitudinal socket 41 are set so that the two planting greenhouses can share columns and longitudinal pull rods, which effectively solves the problem that the existing connecting components cannot connect the roof cross bars, longitudinal pull rods, columns and arc top arch rods in the two planting greenhouses at the same time, and multiple connecting components are required to cooperate with each other, which not only increases the complexity of construction, but also leads to waste of materials and costs, and reduces the stability and construction efficiency of the connected planting greenhouses. The first left transverse connecting tube 21 is provided with a first limiting portion 71, the first right transverse connecting tube 22 is provided with a second limiting portion 72, and the third connecting tube 4 is provided with a third limiting portion 73, which helps prevent the various pipes from sliding or extending toward the middle of the connector body 1 during use, helps ensure the stability of the connector body 1 during use, and avoids structural instability caused by accidental sliding of the pipes. The fourth oblique connecting tube 5 and the first left transverse connecting tube 21 are connected at an angle and form an angle α, and the fifth oblique connecting tube 6 and the first right transverse connecting tube 22 are connected at an angle and form an angle β. The angles α and β are both set at 30°, which helps provide more balanced support, especially when the horizontal load is large, and can effectively share the force from the side, so that the structure of the connected planting shed is more stable.

[0077] The above examples are merely used to further illustrate the technical content of the present invention for easier understanding by the reader. However, they do not limit the implementation of the present invention to these examples. Any technical extension or reinvention based on the present invention is protected by the present invention. The scope of protection of the present invention shall be determined by the claims.

Claims

1. A six-way connecting member, comprising a connecting member body (1), characterized in that: The connector body (1) comprises a first connecting tube (2) arranged in a horizontal direction, a second connecting tube (3) arranged in a horizontal direction and vertically connected to the first connecting tube (2), a third connecting tube (4) arranged in a vertical direction and vertically connected to the first connecting tube (2) and the second connecting tube (3), a fourth oblique connecting tube (5) obliquely connected to the first connecting tube (2), and a fifth oblique connecting tube (6) obliquely connected to the first connecting tube (2), wherein the first connecting tube (2) is provided with a first left socket (211) and a first right socket (212), the second connecting tube (3) is provided with a second transverse socket (31), the third connecting tube (4) is provided with a third longitudinal socket (41), the fourth oblique connecting tube (5) is provided with a fourth oblique socket (51), and the fifth oblique connecting tube (6) is provided with a fifth oblique socket (61).

2. A six-way connecting member according to claim 1, characterized in that: The first connecting tube (2), the second connecting tube (3), the third connecting tube (4), the fourth oblique connecting tube (5) and the fifth oblique connecting tube (6) are integrally formed.

3. The six-way connecting member according to claim 1, characterized in that: The first connecting pipe (2) comprises a first left transverse connecting pipe (21) and a first right transverse connecting pipe (22) connected to the first left transverse connecting pipe (21); the first left socket (211) is located in the first left transverse connecting pipe (21); and the first right socket (212) is located in the first right transverse connecting pipe (22).

4. A six-way connecting member according to claim 3, characterized in that: The first left transverse connecting tube (21) is provided with a first limiting portion (71) at one end close to the first right transverse connecting tube (22) to prevent the pipe from extending toward the second connecting tube (3); the first right transverse connecting tube (22) is provided with a second limiting portion (72) at one end close to the first left transverse connecting tube (21) to prevent the pipe from extending toward the second connecting tube (3); and the third connecting tube (4) is provided with a third limiting portion (73) at one end away from the third longitudinal socket (41) to prevent the pipe from extending toward the second connecting tube (3).

5. The six-way connecting member according to claim 3, characterized in that: The fourth oblique connecting tube (5) is obliquely connected to the first left transverse connecting tube (21), and the axis of the fourth oblique connecting tube (5) forms an angle α with the axis of the first left transverse connecting tube (21), 15°≤angle α≤75°; The fifth oblique connecting pipe (6) is obliquely connected to the first right side transverse connecting pipe (22), and the axis of the fifth oblique connecting pipe (6) forms an angle β with the axis of the first right side transverse connecting pipe (22), and 15°≤angle β≤75°.

6. The six-way connecting member according to claim 1, characterized in that: The fourth oblique connecting pipe (5) is provided with a fourth limiting portion (74) at one end away from the fourth oblique socket (51) to prevent the pipe from extending toward the second connecting pipe (3), and the fifth oblique connecting pipe (6) is provided with a fifth limiting portion (75) at one end away from the fifth oblique socket (61) to prevent the pipe from extending toward the second connecting pipe (3).

7. The six-way connecting member according to claim 1, characterized in that: The first connecting pipe (2) and / or the second connecting pipe (3) and / or the third connecting pipe (4) and / or the fourth oblique connecting pipe (5) and / or the fifth oblique connecting pipe (6) are provided with fixing holes (8) for installing fastening pipe fittings.

8. The six-way connecting member according to claim 1, characterized in that: A first reinforcing rib (81) is provided between the first connecting tube (2) and the second connecting tube (3), a second reinforcing rib (82) is provided between the first connecting tube (2) and the third connecting tube (4), and a third reinforcing rib (83) is provided between the fourth oblique connecting tube (5), the fifth oblique connecting tube (6), and the second connecting tube (3).

9. The six-way connecting member according to claim 1, characterized in that: The cross-sections of the first connecting tube (2) and the second connecting tube (3) are rectangular, and the cross-sections of the third connecting tube (4), the fourth oblique connecting tube (5), and the fifth oblique connecting tube (6) are circular.

10. The six-way connecting member according to claim 1, characterized in that: The connector body (1) is made of glass fiber reinforced plastic.