What are the classification of photovoltaic bracket?

1. Classified by manufacturing materials: There are three main manufacturing materials for photovoltaic brackets: aluminum alloy, hot-dip galvanized and zinc, aluminum, magnesium, etc. Among them, zinc aluminum magnesium has the characteristics of light weight, high strength and good corrosion resistance, and is widely used. 2. According to the installation location classification: photovoltaic bracket can be divided into roof photovoltaic bracket, ground photovoltaic bracket and water photovoltaic bracket according to the installation location. 3. Classification according to system composition: photovoltaic support can also be classified according to the different system composition, such as fixed photovoltaic support, single-axis tracking photovoltaic support, two-axis tracking photovoltaic support, etc. 4. Classification by application scenario: Photovoltaic supports can be classified according to application scenarios, such as power station photovoltaic supports, water photovoltaic supports, industrial photovoltaic supports, etc. There are a variety of methods for the classification of photovoltaic stents, each of which has different characteristics. When choosing a photovoltaic bracket, it is necessary to determine the appropriate type according to its own needs. In the future, with the development of science and technology and the demand of the market, the classification of photovoltaic stents will be more diverse, providing better protection for the development of solar power generation.

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What is the role of the photovoltaic bracket?

1. Support and fix photovoltaic modules: The photovoltaic bracket can carry the weight of the photovoltaic module and fix it in a suitable position by installing it on the ground or roof. In this way, the photovoltaic module can face the sunlight stably and maintain the appropriate angle and direction. 2. Maximize solar radiation absorption: The photovoltaic bracket can adjust the tilt angle and direction of the photovoltaic module according to the sun's trajectory and solar altitude angle to maximize the acceptance of solar radiation. The adjustment of inclination and orientation can make the photovoltaic module make full use of solar energy in different seasons and geographical locations of different longitude and latitude. 3. Ensure the stable operation of the system: The photovoltaic bracket has good structural stability and durability, and can maintain the stability of the photovoltaic module under various weather conditions. Through reliable support and fixation, the photovoltaic bracket can ensure that the photovoltaic module will not be damaged by strong wind, rainstorm, earthquake and other external environment. 4. Facilitate the installation and maintenance of photovoltaic modules: The design of photovoltaic brackets can simplify the installation process of photovoltaic modules and improve installation efficiency. At the same time, the structure of the bracket makes the cleaning and maintenance of the photovoltaic module more convenient.

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What are the matters needing attention in the installation of photovoltaic bracket

PV bracket structure classification: 1. Sloping roof support: parallel to the roof slope. 2. Main product components: guide rail, card and hook. 3. Roof inclination bracket: tilt at a certain angle with the roof. 4. Main product components: guide rail, card, inclination mechanism. Roof ballast support: fixed support by pressure block, usually installed on the flat roof. 6, BIPV: photovoltaic building integrated structure. 7. Ground support: The support is installed on the ground by means of foundation and direct burial. What are the precautions for the installation of 2. photovoltaic brackets 1, according to the design of the model specifications to be installed, all selected parts, accessories meet the torque and design requirements, deviation and other requirements in line with the provisions of the deviation table, of course, can photovoltaic bracket installation need to consider the number, support structure, connection, waiting, etc. 2. When the PV is installed on the roof, please make sure to weld or connect the base embedded parts to the reinforcement of the roof body. If the welding cannot be welded or connected by layout constraints, the adhesion between the base and the roof needs to be increased, and reinforced by wire drawing or bracket extension fixing. After the base is manufactured, it is necessary to damage the roof according to the requirements of the state or touch some requirements of the "Roof Engineering Quality Inspection Code" (GB50207-2002) in order to avoid leakage and leakage.

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