Calcium Sulfate Raised Floor Production Line
The WETPRESS machine adopt one time feeding forming.The existing anti-static floor has concrete anti-static floor and calcium sulfate anti-static floor. The concrete substrate is reinforced with steel mesh, and the lower mould is supported by steel mesh with adjustable height.The device can place the steel mesh in the best bearing position of the products, so as to maximize the flexural strength of the concrete antistatic floor. The antistatic floor of calcium sulfate substrate is reinforced by wood fiber, and the multi-fiber calcium sulfate slurry with moisture content close to 50% is filtered by the molding machine to make calcium sulfate antistatic slab with moisture content less than 20%.
The finish product is made after high temperature maintenance and subsequent processing.
Product Parameters
Model |
SM-D400T |
Forming Pressure |
400TON |
Power |
16kw |
Output product size |
600*600*30mm |
Machine Weight |
14500kgs |
Dimension |
4400*2500*3200mm |
Detailed Photos
Application
Raised floors, also known as access floors, are commonly used in buildings to create a space beneath the floor for the distribution of air, power, and data. Here's a general outline of the production procedure for raised floors:
Material Selection: Choose materials based on the desired properties of the raised floor. Common materials include steel, aluminum, and various types of composite materials.
Panel Production: Cut the selected materials into panels of the desired size and shape. The size of the panels may vary based on the specifications of the project. Surface Treatment: Apply surface treatments to the panels to enhance durability, aesthetics, and resistance to wear and tear. This may involve coatings or finishes to protect the surface.
Core Material Integration (Calcium Sulfate): If calcium sulfate is chosen as the core material, integrate it into the panels during the manufacturing process. Ensure proper adhesion and bonding between the different layers. Edge Banding:Apply edge banding to the panels. This helps to protect the edges of the panels from damage and enhances the overall appearance of the raised floor. Cutouts and Perforations: Make cutouts or perforations in the panels as needed to accommodate floor boxes, cables, and other infrastructure components.
Quality Control: Implement quality control measures throughout the production process to ensure that each panel meets the required standards for strength, durability, and other specifications.
Packaging and Shipping: Package the finished raised floor panels securely for transportation. Proper packaging helps prevent damage during shipping and handling.
Installation Guidelines: Provide guidelines or documentation for the installation of the raised floor system. This may include instructions on proper support structures, layout, and maintenance. It's important to note that the specific steps and materials involved can vary based on the manufacturer, the type of raised floor system, and the intended application.