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Market Outlook Analysis for Zinc-Aluminum-Magnesium Brackets in 2026 Mar 26, 2026

Zinc-aluminum-magnesium (ZAM) mounting systems

With the rapid surge in photovoltaic installations, the mounting bracket market is expanding at an astonishing pace. Zinc-aluminum-magnesium brackets, offering superior cost-effectiveness, are becoming the mainstream choice in the market.

 photovoltaic mounting sector

1. Current Market Scale: Transitioning from “Quantity” to ‘Quality’

According to the latest industry statistics, China's production of zinc-aluminum-magnesium (ZAM) brackets is projected to reach 738,067 tons by 2025. This figure not only demonstrates the material's widespread adoption in the photovoltaic mounting sector but also signifies its evolution from an early “experimental material” to an industry standard.

 

2. Market Penetration: From “Single Points” to “Full-Scene”

Zinc-aluminum-magnesium (ZAM) mounting systems are no longer confined to traditional solar power plants. Their application scenarios are rapidly expanding to rooftops, solar villages, and offshore wind power sectors. Industry reports indicate that by 2025, ZAM mounting systems have achieved over 45% market penetration in China. It is projected that within the next two years, they will penetrate over 50% of solar projects.

 

3. Cost and Value for Money: From “Expensive” to “Cost-Effective”

Although zinc-aluminum-magnesium materials carry slightly higher raw material costs than traditional galvanized steel, their unique “self-healing” properties significantly reduce operational and maintenance expenses. Market data from 2025 indicates that the total cost advantage of zinc-aluminum-magnesium brackets over their entire lifecycle has become apparent. Particularly in highly corrosive environments (such as coastal areas), the savings in maintenance costs are substantial, making their overall value proposition increasingly evident.

 

4. Future Trends: Technological Iteration and Industrial Upgrading

Looking ahead to 2026, the zinc-aluminum-magnesium mounting system market will enter a phase of high-quality development, with key breakthroughs including:

New Material Applications: Higher magnesium content and enhanced corrosion-resistant alloy formulations are expected to emerge.

Cost Control: As the supply chain matures, the elevated costs observed in 2025 will gradually decline, making the technology more accessible for broader project adoption.

Standardization Promotion: With increasing national requirements for the lifespan of photovoltaic projects, zinc-aluminum-magnesium mounting systems will progressively become the standard configuration for high-lifespan solar power plants.

 

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