The non-standard customized Cable Tray specifications are not limited by the general national standard size, and can be flexibly matched with parameters according to various irregular engineering construction conditions, mechanical and electrical design drawings, and on-site measured data, completely breaking the limitations of conventional tray fixed size. It specifically solves the problems of incompatible dimensions, limited wiring layout, and special supporting equipment dimensions in special construction sites, and fully adapts to various personalized and special mechanical and electrical wiring engineering projects.

There is no limit to size specifications, and it supports customization of any parameters. Conventional Standard cable tray sizes are fixed, while non-standard customization allows for full parameter customization of width, height, and wall thickness. Special section cable trays with ultra narrow, ultra wide, ultra low, and ultra high dimensions can be made, while supporting different wall thickness specifications such as thin lightweight and thick heavy-duty. For the demand of ultra long distance wiring, customized extended single section specifications can be used to reduce on-site splicing gaps; For special spaces such as narrow pipe wells, interlayers, and equipment gaps, the aspect ratio can be precisely adjusted to perfectly fit the installation space on site.
Diversified structural specifications, suitable for various irregular layouts. In addition to basic dimensions, various unconventional structural specifications can be customized, including special styles such as unequal cross-section, eccentric structure, raised side edges, widened bottom plate, preset specifications for porous positions, and split combination specifications. Different from conventional unified structures, non-standard structural specifications can accurately match special layout requirements such as layered wiring of strong and weak electricity in engineering, parallel wiring of multiple devices, and pipeline crossing avoidance, making wiring layout more regular and standardized.
Load and anti-corrosion specifications are matched as needed, accurately adapting to working conditions. According to the load-bearing capacity and environmental requirements of the project, non-standard load specifications such as light, medium, heavy, and super heavy are classified, and different load-bearing specifications correspond to specific plate thicknesses and reinforcement structures. At the same time, it can be matched with different anti-corrosion specifications such as hot-dip galvanizing, hot-dip galvanizing, electrostatic spraying, stainless steel, etc., and the size, structure, anti-corrosion, and load-bearing parameters can be combined as needed to form an exclusive non-standard bridge specification scheme, which is suitable for various complex working conditions such as industrial corrosion, coastal salt spray, outdoor exposure, etc., to ensure the compliance and implementation of the project.
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