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High-quality Photovoltaic Bracket Molding Machine: Unlocking the Era of Light Storage, Building the Core Support for Efficient Power Generation
冷間ロール成形機の異なるタイプ。私達は 2006 年以来の機械を形作るロールの設計そして製造で従事している長い歴史の工場です。私達が作り出してもいい機械は下記のものを含んでいます: 機械、機械を作る cz の母屋を作る屋根瓦機械、機械を作る軽い鋼鉄キール、金属浮彫りになる機械、機械を形作るドア システム天井システム高周波管の溶接機、ラインを切り開くこと、長さライン、機械を形作る棚システムを形作る床 Decking 機械、色の石造りのタイルの生産ライン、熱い薄板になるフィルムで形造る機械、等を切ります。
Driven by the global carbon neutrality initiative, the photovoltaic energy sector is experiencing explosive growth. By 2025, the world’s newly installed photovoltaic capacity is projected to surpass 1,000 gigawatts, while the tracking bracket market is entering a new phase with a scale approaching 350 billion yuan. As the’ skeleton ‘and’ cornerstone’ of photovoltaic power stations, the quality of photovoltaic brackets directly determines power generation efficiency, operational costs, and service life. Tracking brackets can enhance power generation efficiency by 15%-40%, with their core performance fundamentally dependent on high-precision, high-stability forming equipment.
From large-scale ground-mounted power stations in desert and Gobi regions to coastal fishery-photovoltaic complementary projects, and further to integrated Building Integrated Photovoltaics (BIPV) applications in urban architecture, photovoltaic mounting systems are rapidly evolving toward intelligent, lightweight, and weather-resistant designs. Traditional forming equipment struggles to process advanced materials like high-strength aluminum alloys and zinc-aluminum-magnesium coatings, and cannot meet the high-precision forming requirements of complex cross-sections in tracking mounts. In this context, our high-quality photovoltaic mounting forming machine has emerged as a technological breakthrough, addressing industry pain points. It provides global photovoltaic enterprises with customized production solutions for full-range mounts—from C-shaped and Z-shaped to multi-character configurations—serving as a core equipment force driving the high-quality development of the photovoltaic industry.

Degree Revolution: Micrometer-level Calibration, Meeting Core Requirements of Intelligent Tracking
[Key Features: AI-Enabled Visual Inspection + Multi-Stage Precision Roll Forming]Photovoltaic tracking mounts demand exceptionally stringent forming accuracy, where even minute dimensional deviations may cause tracking lag and reduced power generation efficiency. Our forming machine integrates an industry-leading AI-powered visual real-time inspection system with 18-22 sets of high-precision SKD11 die steel rolls. Through multi-stage progressive cold bending technology, it achieves end-to-end precision control from raw material to finished product.
The equipment ensures strict dimensional control of bracket cross-sections within ±0.3mm, with hole positioning accuracy ≤±0.2mm and flange verticality error ≤0.2mm/m, fully compliant with global standards including GB/T 3091 and ASTM A792. For critical transmission components of tracking brackets, a servo-motor-driven dynamic calibration system continuously adjusts forming parameters to guarantee dimensional consistency across all products. This establishes a solid foundation for precise tracking operation, ensuring photovoltaic modules maintain optimal light-receiving angles at all times.

Material Adaptation Innovation: Full Material Compatibility, Unlocking Lightweight and Weather-Resistant Upgrades
[Core Highlights: Flexible Forming Technology + Special Steel Compatibility]To meet the growing demand for lightweight and weather-resistant photovoltaic support materials, our equipment transcends traditional forming limitations, enabling full material compatibility. It precisely processes both conventional steels (e.g., Q235, Q355) and advanced materials like high-strength aluminum alloys and zinc-aluminum-magnesium coated corrosion-resistant steel. The system reliably forms materials with thicknesses ranging from 0.8 to 4.0mm, delivering robust support structures for diverse power station environments—from coastal facilities with high salt fog to plateau stations with extreme temperature variations.
For aluminum alloy materials, specialized optimization of forming processes was implemented to prevent material tearing and deformation during processing. For zinc-aluminum-magnesium coated materials, precise control of roll pressure and forming speed effectively protected the coating integrity, enhanced the corrosion resistance of the support structure, ensured a service life exceeding 25 years, and significantly reduced the operational and maintenance costs of the power station.

Efficiency Innovation: Intelligent Integration, Breaking Through the Bottleneck of Mass Production
[Core Highlights: 36m/min High-Speed Forming + Full-Process Automation]The global expansion of photovoltaic power stations has created unprecedented demands for bracket production capacity. Our forming machines have achieved a quantum leap in productivity, with mainstream models reaching speeds of 32-36 meters per minute. A single 8-hour shift can reliably produce over 4,500 linear meters of standard brackets, delivering three times the efficiency of traditional equipment. This capability effortlessly meets the massive supply requirements of gigawatt-scale photovoltaic projects.
The system features an integrated automated process for equipment integration, including feeding, leveling, forming, punching, cutting, and palletizing. Its dual-station feeding mechanism enables rapid material switching, significantly reducing process transition time. Powered by a 25KW high-power variable frequency drive motor with an optimized gearbox design, it ensures smooth operation without vibration or lag, maintaining consistent forming quality. The industrial IoT system provides real-time production data monitoring and intelligent scheduling, enhancing efficiency to help customers shorten delivery cycles and gain a competitive edge in the market.

Customization Innovation: Modular Design for All Scenarios
[Key Features: 30-Minute Quick Mold Replacement + Full-Spectrum Compatibility]With photovoltaic mounting systems serving diverse industrial applications, the demand for standardized models has become increasingly varied. The modular design enables rapid production of C-shaped, Z-shaped, U-shaped, and zigzag-type brackets, supporting flexible customization with heights ranging from 50-300mm and widths from 40-150mm. The mold replacement process takes ≤30 minutes, significantly boosting production efficiency for small-batch, multi-specification orders.
For specialized “PV+” scenarios such as BIPV, agrivoltaics, and fishery-voltaics, we provide customized solutions. Based on the project’s 3D design drawings, we precisely develop molds to enable accurate production of irregular-shaped brackets. Additionally, optional modules like automatic film coating and label printing can be selected to further enhance product value and meet clients’ personalized needs.


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2.技術者の設計: デッサンのプロフィールおよび 3D 機械デッサンを作って下さい
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