Explore our premium structural materials, highly reliable solar framing solutions, and portable components designed for extreme environments.
High mechanical performance profiles offering corrosion resistance and optimized structural loading capacities.
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Advanced non-metallic, high-insulation pultruded structural composite frames optimized for harsh climates.
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Premium monocrystalline modules ranging from 440W to 660W with robust anodized borders.
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Compact, durable outdoor energy station featuring high-efficiency panels for rugged deployments.
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Black-framed dual glass modules featuring 16BB architectures for optimized power output.
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Waterproof power banks integrated within hiking systems for reliable outdoor off-grid energy.
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Portable monocrystalline panels stitched onto rugged fabrics for continuous device recharging.
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Large-format mono silicon PV module (144 half-cells) producing up to 590W with extreme mechanical durability.
View DetailsOur core production categories span across clean energy containment and storage integrations.
Lightweight design with transparent back panel for easy installation and reduced Balance of System (BOS) costs.
Utilizing advanced monocrystalline silicon cells, it achieves a high energy conversion efficiency of 24%.
Application modes include grid-connected mode, off-grid mode, and integrated grid-connected/off-grid mode.
Made of high-quality anodized aluminum, it ensures superior weather resistance and a smooth, long-lasting finish.
An in-depth analysis of structural integrity, material selection, mechanical optimization, and the long-term reliability of PV containment frameworks.
As the global energy transition accelerates, the demand for solar mounting systems and structural frames has surged exponentially. The PV frame serves as a critical structural component, providing mechanical stability, electrical insulation, and weather protection to vulnerable solar laminates. Without robust frame architectures, solar modules are highly susceptible to wind deflection, mechanical stress, water intrusion, and micro-cracking.
Industrial-grade aluminum alloys, specifically 6063-T5 and 6005-T6, have served as the foundation of solar framing engineering. T5 tempering delivers a balanced tensile yield strength, whereas T6 tempering provides enhanced hardness, making it ideal for utility-scale PV installations located in high-wind regions. However, with the rapid growth of offshore photovoltaic systems, coastal installations, and high-pollution environments, the demand for non-corrosive, highly insulated pultruded polyurethane composite framing material has surged. Pultruded polyurethane composites provide excellent chemical resistance, higher thermal stability, and eliminate Potential Induced Degradation (PID) due to their inherent electrical insulating properties.
Selecting the appropriate structural framing profile requires evaluating physical parameters, mechanical stress responses, and overall lifespan economics. The following comparison highlights the properties of our primary structural lines:
| Parameters | 6063-T5 Anodized Aluminum | 6005-T6 High-Strength Aluminum | Pultruded Polyurethane Composite |
|---|---|---|---|
| Tensile Strength (MPa) | ≥ 160 | ≥ 260 | ≥ 400 |
| Yield Strength (MPa) | ≥ 110 | ≥ 240 | ≥ 350 |
| Elastic Modulus (GPa) | ~ 69 | ~ 70 | ~ 40 |
| Corrosion Resistance | Excellent (Anodized 15μm) | Superior (Anodized 20μm) | Extreme (Chemical Inertness) |
| Thermal Conductivity | 200 W/(m·K) | 180 W/(m·K) | 0.3 W/(m·K) |
| Electrical Insulation | Requires Grounding | Requires Grounding | Naturally Insulative (No Grounding Required) |
Ensuring quality across international projects requires adherence to strict global certification frameworks. Our manufacturing processes comply with ISO 9001:2015 for quality management, alongside CE and UL 2703 standards for mounting systems.
Anodizing thickness is critical for longevity. We implement anodization layers ranging from 12μm to over 20μm (Class I & Class II), preventing oxidation in marine climates. For polyurethane composites, we focus on fiber density and UV-resistant surface coatings to prevent degradation from ultraviolet radiation during extended solar exposure.
The next decade of PV framing will focus on light weighting, reduction of Balance of System (BOS) installation steps, and lowered carbon footprint. Through smart profile engineering, such as hollow-chamber designs and optimized flange shapes, we help reduce aluminum weight while maintaining mechanical integrity. Additionally, the development of sustainable, recyclable polymers and closed-loop aluminum smelting processes ensures that our frames contribute to reducing the overall carbon footprint of solar installations.
Located in the scenic historical and cultural ancient city of Yangzhou, close to the Beijing-Shanghai Expressway, Runyang Yangtze River Bridge, and Ningqi Railway, the group has a superior geographical location and convenient transportation. The group was established in 2008 and has 14 multi-field companies under its jurisdiction, including Jiangsu Yuxin New Energy Technology Co., Ltd., and has won many titles such as National High-tech Enterprise, Technology-based Enterprise, and Gaoyou City Top 100 Private Enterprises.
Yuxin structural systems support a wide variety of commercial, utility, and municipal deployments.
Large-scale infrastructure projects require localized support to ensure swift delivery and adherence to regional design criteria. We work closely with structural engineering firms worldwide to ensure our profiles align with the wind loads and seismological configurations defined by local regulations, such as ASCE 7 (United States), Eurocode 9 (Europe), and GB 50009 (China).
Beyond material verification, we assist partners with on-site inspection protocols, engineering calculations, and automated assembly solutions. Our custom-designed pre-punched mounting holes and slide-in lock systems help minimize installation times, reducing project labor overheads.
Key information regarding structural profiles, material options, and customization capabilities.
Anodized aluminum profiles (typically 6063-T5 or 6005-T6) with an anodizing thickness of ≥ 15μm are designed to resist structural wear, oxidation, and weathering for over 25 years. This aligns with the operational lifecycle of modern utility-scale solar panels.
Polyurethane composite framing provides excellent electrical insulation, eliminating Potential Induced Degradation (PID). It is chemically inert, making it ideal for high-salinity coastal areas, chemical manufacturing centers, and humid agricultural environments.
Yes, our production lines support custom tooling for mounting configurations, profile heights, and section designs. This flexibility helps streamline mechanical installation and panel integration on site.
Our systems and components carry CE certification, comply with ISO 9001:2015 manufacturing standards, and meet UL and IEC testing protocols for photovoltaic performance and mechanical safety.
Our products undergo thorough testing processes to verify their strength and compliance with international standards.
Jiangsu Yuxin stays aligned with shifting industry trends, sharing updates to support project developers globally.
An analysis of alloy purities, anodizing practices, and structural geometry design.
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Key indicators for evaluating scale, lead times, quality management, and logistics capabilities.
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A review of quality checks, tension tests, salt-fog exposure, and micro-defect detection.
View ArticleThrough close collaboration with industrial developers, Yuxin provides reliable framing and solar materials worldwide.








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Waterproof framing with integrated solar modules designed for off-grid hiking and power bank recharging.
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Robust canvas-backed monocrystalline cells, ideal for emergency mobile phone power banks.
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Precisely machined aluminum alloy profiles designed for high-stress industrial applications.
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Lightweight monocrystalline charging unit, ideal for hiking and emergency use.
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High-capacity solar panels (530W to 550W) with structural frames designed to resist mechanical loading.
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Advanced non-corrosive composite frames, optimized for chemical plants and offshore projects.
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