Solar Panel Bracket Roll Forming Machine for U Solar Strut Channel

In the wave of global energy transition, photovoltaic power generation has become the core force driving the achievement of the "dual carbon" goal with its advantages of cleanliness and sustainability. In an efficient photovoltaic power station, there is a seemingly low-key but crucial "skeleton" - Solar Panel Bracket Roll Forming Machine. It is not only the foundation for carrying photovoltaic modules, but also a key link in determining power generation efficiency, power station lifespan, and investment return, building a stable and flexible "energy stage" for each photovoltaic panel. ​

Pattern diagram:

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Product Attributes :

1.Formed Material GI Thickness:1.5-3mm
2.Decoiler Hydraulic automatic decoiler Manual decoiler(will give you as free)
3.Main body Roller station 12 rows(As your requirement)
 Diameter of shaft 60mm solid shaft
Material of rollers 45# steel, hard chrome plated on the surface
Machine body frame Metal steel welded
Drive Gearbox transmission
Dimension(L*W*H) customize
Weight About 6.5T
4.Cutter Automatic cr12mov material, no scratches, no deformation
5.Power Motor Power 5.5KW
Hydraulic system power 4.5KW
6.Voltage 380V 50Hz 3Phase As your requirement
7.Control system Electric Box Customized(famous brand)
Language English(Support multiple languages)
PLC Automatic production of the whole machine. Can set batch, length, quantity, etc.
18.Forming Speed 20m/min(customized) Speed is adjustable according to customer's request

Stable and reliable, safeguarding the long-term safety of the power station

Photovoltaic power plants are often built in complex scenarios such as rooftops, wastelands, mountains, and even at sea, facing extreme environmental challenges such as wind, sun, rain, snow, and even typhoons and earthquakes all year round. High quality photovoltaic support equipment, with the core design concept of "firmness", uses high strength aluminum alloy, hot-dip galvanized steel and other corrosion resistant and anti-aging high-quality materials. After precise structural mechanics calculation and rigorous load test, it can easily resist the corrosion of harsh environment for more than 30 years. Whether it is the weight and maintenance load of components that rooftop power stations need to bear, the terrain slope challenges faced by mountainous power stations, or the high salt spray and strong winds and waves that offshore power stations need to deal with, professional photovoltaic support equipment can firmly "lift" photovoltaic modules, ensuring stable operation of the power station throughout its lifecycle and avoiding the risk of power generation interruption caused by bracket deformation and corrosion from the root.


Flexible adaptation, unlocking diverse application scenarios

Different photovoltaic projects have completely different installation requirements: rooftop power stations need to adapt to complex building structures, mountain power stations need to adapt to undulating terrain, agricultural photovoltaic complementary projects need to balance photovoltaic power generation and agricultural planting, while tracking power stations pursue precise alignment with the sun's trajectory. Photovoltaic bracket equipment, with its highly flexible design, has become a versatile expert in adapting to diverse scenarios. For different scenarios, the bracket can provide various solutions such as fixed tilt angle, adjustable tilt angle, flat single axis tracking, dual axis tracking, etc. - the fixed bracket is cost-effective, easy to install, and suitable for large-scale ground power stations with flat terrain; The tracking bracket can track the direction of the sun in real time through an intelligent driving system, ensuring that the photovoltaic modules always maintain the optimal light receiving angle, which can increase power generation by 15% -25% compared to fixed brackets; For special scenarios such as roofs and greenhouses, the bracket can also adopt lightweight and modular design, without the need for large-scale renovation of the foundation, quickly realizing the composite value of "photovoltaic+". ​

Judy Liu
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Judy Liu