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Hot-dip galvanized 3-hole base

Original price was: ¥1.00.Current price is: ¥0.80.

hot-dip galvanized 3-hole base is made of high-quality carbon structural steel as raw material, treated by hot-dip galvanizing process, the zinc layer is metallurgically combined with the steel matrix, the thickness is not less than 86μm, the corrosion resistance is strong, and the environmental erosion and handling damage are resisted.
It is plate-shaped, with a triangular layout of three holes, the hole diameter is suitable for hot-dip galvanized bolts, and the chamfering of the hole edge reduces stress concentration. As a photovoltaic base, the photovoltaic bracket is fixed by bolts, and the three points are evenly stressed and the wind stability is good; As the base of the C-channel, it can be firmly connected to the C-channel, limiting displacement and transferring loads.
It is suitable for desert, coastal and other environments, and only needs to check the bolt tightening every day, which is easy to maintain and has a long service life.

Hot-dip galvanized 3-hole base

The overall structure design of the hot-dip galvanized 3-hole base takes into account the stress and installation convenience in practical applications.

 

The base is flat in shape, the shape is simple and generous, and the three connecting holes are processed according to the layout of the equilateral triangle or the isosceles triangle, and this layout is calculated by precise mechanics, so that the base can be evenly dispersed when bearing the load, and the base is deformed or damaged due to excessive local stress.

The application of photovoltaic base is manifested in the construction of photovoltaic power station, and the hot-dip galvanized 3-hole base plays an important role as a photovoltaic base. When used to fix the photovoltaic support, the base is connected with the ground or concrete foundation by expansion bolts or anchor bolts, and the three connecting holes correspond to the bottom connection points of the photovoltaic support respectively.

When installing, align the bottom of the PV bracket with the three connecting holes of the base, penetrate the hot-dip galvanized bolts, and tighten the nuts to be able to firmly fix the PV bracket on the base. This three-point fixing method makes the photovoltaic bracket evenly stressed and stable when bearing the weight, wind, rain and snow and other loads of photovoltaic panels.

 

Even in extreme weather such as strong winds, it can effectively resist the impact of external forces, ensure that the photovoltaic bracket does not tilt, shake or collapse, and ensure the safe and stable operation of the photovoltaic system. At the same time, the hot-dip galvanized layer endows the base with anti-corrosion properties, so that it can still maintain a good condition in the outdoor and open-air environment, withstand the test of sun, rain, atmospheric corrosion and so on for a long time, which greatly extends the service life of the photovoltaic base and reduces the maintenance cost of the photovoltaic power station.

C-channel base application advantagesIn C-channel installation applications, the hot-dip galvanized 3-hole base as a C-channel base shows significant advantages. As a commonly used support structure, the C-channel is widely used in many fields, and the base is the key component to ensure its stable installation.

When connecting the hot-dip galvanized 3-hole base to the C-channel, the bottom of the C-channel is tightly fastened to the base with hot-dip galvanized bolts through three connecting holes. The layout of the three connecting holes makes the connection between the C channel and the base more secure, which effectively limits the horizontal and vertical displacement of the C channel. When the C-channel is subjected to an overhead load or a lateral force, the base transmits the force evenly to the foundation and prevents the C-channel from deforming or dislodging.

Suitable for Environment & MaintenanceThe hot-dip galvanized 3-hole base is suitable for a variety of complex environments due to its excellent corrosion resistance. Whether it is in dry desert areas, humid coastal areas, or areas with heavy industrial pollution, it can maintain good working conditions.

In these environments, the zinc layer forms a dense oxide film that further prevents the intrusion of corrosive media and continuously protects the steel matrix of the base. In terms of maintenance, the base requires little to no maintenance. In daily use, you only need to regularly check the bolts at the connection to ensure that they are in good condition. Even if the zinc layer is slightly worn during long-term use, the protective effect of its sacrificial anode still exists, which can delay the corrosion of the steel matrix and ensure the service life of the base.

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