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Shanghai MK Aluminum Co. , Ltd.

Shanghai MK Aluminum Co., Ltd. Dongtai factory, occupying more than 210 hectares, includes 8 production buildings, 2 office buildings, and 1 apartment building, which is more than 200,000 square meters of building area in total. Since 2006 MK has specialized in aluminium extrusion design and production.

MK aluminum profiles are widely applied in modular assembly products, modular conveyors, machine frames, fences, workstations, linear motion products, stair and platform products, commercial complexes, resort hotels, apartment buildings, villa and office buildings, solar frames, solar racking products across the world. The annual output of aluminum profiles is over 60,000 tons.

We have a professional R&D team with rich technical experience and innovation ability. The company focuses on technological innovation, constantly promotes the development of the field of intelligent equipment, and cooperates with customers to customize solutions that meet their needs.

With quality as the core, we strictly control the product manufacturing process to ensure product quality and reliability. The company's products comply with relevant international and domestic standards and have passed corresponding certifications and testing.

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Ground Solar Racking Products Industry knowledge

The role of ground solar racking products in adapting to different terrain conditions

The role of ground solar racking products in adapting to different terrain conditions is mainly reflected in the following aspects:
Ensure the stability and safety of the racking:Terrain adaptability: The ground solar racking is flexible in design and can adapt to different terrain conditions, including flat plains, undulating mountains, soft rivers and ponds, swamps and other complex terrains. This adaptability ensures that the racking can remain stable in various terrains, thereby ensuring the safe operation of the solar energy system.
Structural strength: For different terrains, the ground solar racking will adopt corresponding reinforcement designs, such as increasing the support points of the racking, using high-strength materials or adopting special fixing methods, etc., to improve the racking's bearing capacity and wind and pressure resistance, and ensure stable operation under severe weather conditions.
Optimize the layout and power generation efficiency of solar panels:Angle adjustment: Ground solar rackings usually have an adjustable angle design, which can be adjusted according to the local solar radiation angle and terrain characteristics, so that the solar panel can receive sunlight at the best angle, thereby improving power generation efficiency.
Layout optimization: In complex terrain, the flexible layout of the ground solar racking can make full use of every inch of land, avoid shadows, and ensure that each solar panel can receive sunlight to the maximum extent.
Reduce installation and maintenance costs:Convenient installation: For different terrains, ground solar rackings provide a variety of installation methods, such as piling and column type, which simplifies the installation process and reduces the difficulty and cost of installation. At the same time, the standardized and modular design makes the installation of the racking faster and more efficient.
Easy to maintain: The design of the ground solar racking takes into account the convenience of maintenance, such as easy disassembly and replacement of parts, convenient cleaning and maintenance, etc. In complex terrain, this design can reduce the difficulty and cost of maintenance and ensure the long-term stable operation of the solar energy system.
Promote the rational use of land resources:Save land resources: The ground solar racking reduces the occupation of ground space by installing solar panels vertically or obliquely, making land resources more reasonably utilized. This design is particularly important in areas with tight land resources.
Achieve agricultural and photovoltaic complementarity: In some areas, ground solar rackings can also be combined with agricultural planting to form an agricultural and photovoltaic complementary system. This system can not only meet the needs of photovoltaic power generation, but also not affect the growth of crops, realizing the dual utilization of land resources.
The role of ground solar racking products in adapting to different terrain conditions is multifaceted, including ensuring the stability and safety of the racking, optimizing the layout of solar panels and power generation efficiency, reducing installation and maintenance costs, and promoting the rational use of land resources. These roles have jointly promoted the widespread application and development of ground solar systems.

Specific maintenance work for ground solar racking products

The specific maintenance of ground solar racking products is essential to ensure the long-term stable operation of the solar system. Here are some key maintenance steps and precautions:
Regular inspection and cleaning:Appearance inspection: Regularly check the appearance of the racking to see if there are any deformation, cracks, looseness or corrosion. These problems may affect the structural strength and stability of the racking and need to be discovered and dealt with in time.
Cleaning work: Regularly clean the dust, dirt, bird droppings and other impurities on the racking and solar panels. These impurities will block the sunlight and reduce the power generation efficiency of the solar panels. When cleaning, you can use a soft brush or mop, clean and mild water for cleaning, and avoid using highly corrosive detergents or sharp tools to avoid scratching the surface.
Fastening and adjustment:Fasteners inspection: Check whether the bolts, nuts and other fasteners on the racking are loose or missing. If loose or missing, tighten or replace them in time to ensure the stability of the racking.
Angle adjustment: According to the changes in seasons and solar radiation angles, adjust the tilt angle of the racking in time so that the solar panels can receive sunlight at the best angle and improve power generation efficiency.
Anti-corrosion and anti-rust:Anti-corrosion treatment: For rackings made of metal materials, especially those that are easily exposed to humid environments, anti-corrosion treatment should be carried out. Anti-corrosion paint or rust inhibitor can be used for coating to extend the service life of the racking.
Rust inspection: Regularly check the rust prevention of the racking, especially the welding parts and cutting edges that are prone to rust. If rust is found, rust removal and rust prevention should be carried out in time.
Foundation and support inspection:Foundation inspection: Check whether the foundation of the racking is stable, whether there is settlement, cracking or loosening. The instability of the foundation will directly affect the stability of the racking and needs to be reinforced or repaired in time.
Support inspection: Check whether the support structure of the racking is intact and whether there is deformation or damage. The integrity of the support structure is crucial to maintaining the stability of the racking.
Records and reports:Maintenance records: Records should be kept after each maintenance, including maintenance time, maintenance content, maintenance personnel and other information. These records help to track the maintenance of the racking and find potential problems in time.
Problem report: Problems found during maintenance should be reported to relevant departments or personnel in a timely manner so that timely measures can be taken to deal with them.
Professional training:To ensure the effectiveness and safety of maintenance work, maintenance personnel should be professionally trained to understand the structure, performance, maintenance methods and safe operating procedures of the racking.
The specific maintenance work of ground solar racking products includes regular inspection and cleaning, tightening and adjustment, anti-corrosion and anti-rust, foundation and support inspection, and record and report. Through these maintenance work, the stability and durability of the racking can be ensured, and the power generation efficiency and operation safety of the solar system can be improved.

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