Significant concerns still exist | Unveiled zinc aluminum magnesium alloy photovoltaic support

28-03-2024

Significant concerns still exist | Unveiled zinc aluminum magnesium alloy photovoltaic support


With the rapid development of the new energy photovoltaic industry, the importance of photovoltaic stent as the "bone" of the entire system is increasingly prominent. Among the many bracket materials, zinc and aluminum -magnesium alloying photovoltaic bracketoccupies a place in the market with its unique performance. This article will explore the advantages and deficiencies of zinc, aluminum -magnesium alloying photovoltaic brackets, and take you more to understand this material.


1. Light quality and high strength, convenient installation


As a light metal alloy material, zinc and aluminum alloy has a lower density and higher strength than traditional steel. This makes the photovoltaic bracket made of it, while maintaining sufficient carrying capacity, greatly reduces its own weight. This advantage not only reduces the cost and time during transportation and installation, but also reduces the requirements for the installation environment, so that the installation can be successfully completed smoothly when the complex terrain or load conditions are limited.


Second, corrosion resistance, long service life


Zinc, aluminum -magnesium alloy has good corrosion resistance, especially in harsh environments such as humidity, salt fog, its corrosion resistance is far better than ordinary steel. This is essential for photovoltaic brackets, because the long -term stability of the bracket directly affects the safety and power generation efficiency of the entire photovoltaic system. The long service life of zinc, aluminum -magnesium alloy stent can effectively reduce the cost and replacement costs caused by the corrosion of the material.


3. Green and environmental protection, sustainable development


In the context of the current global advocating green low -carbon, zinc and aluminum alloy, as a recyclable metal material, fully meet the requirements of environmental protection and sustainable development. Compared with traditional steel materials, the energy consumption of zinc and alloy alloys in the production process is lower, less waste, and it is easy to recycle and reuse, which effectively reduces the burden on the environment.


Fourth, the cost is high, there are challenges in marketing


Although zinc -aluminum -magnesium alloy photovoltaic support has many advantages in performance, its production cost is relatively high, which limits its widespread application in the market to a certain extent. The high cost of material and the relatively difficult processing difficulty, resulting in the price of zinc, aluminum -magnesium alloy stents, is often higher than traditional steel brackets, making some photovoltaic projects that are sensitive to cost.


5. The industry standards are different and the quality is uneven


Since zinc and aluminum -magnesium alloying photovoltaic support is a relatively new product field, the product quality and performance standards on the market have not yet fully unified. This has led to uneven quality of bracket products on the market. Some bad businesses may be charged in the secondary, bringing hidden dangers to the security and stability of the photovoltaic system. Therefore, consumers need to pay special attention to the source and quality certification of the product when selecting zinc and aluminum alloy stents.


6. Continuous technological innovation, in the future, it is expected


Although zinc -aluminum -magnesium alloy photovoltaic support is currently facing the challenges of cost and market standards, with the continuous progress of material science and the increasingly mature production technology, we have reason to believe that these problems will gradually be resolved. In the future, with the continuous prosperity of the new energy photovoltaic industry and the in -depth advancement of technological innovation, zinc, aluminum -magnesium alloy brackets are expected to occupy a more important position in the market with their outstanding performance.


In summary, zinc -aluminum -magnesium alloy photovoltaic brackets show their broad application prospects in the field of new energy photovoltaic in the field of new energy photovoltaic fields. At the same time, we should also see its existence costs and market standardization, which requires joint efforts to solve it in inside and outside the industry. Looking forward to the future, with the dual drive of technology and market, zinc, aluminum -magnesium alloy photovoltaic support will usher in a more bright development prospect.



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