As the core equipment of the laboratory, the appearance design of the scientific research analysis scanner should take into account the professionalism, functionality and environmental adaptability, not only to meet the technical requirements of high-precision scanning, but also to fit the operating habits of scientific researchers. Reasonable appearance design can improve the efficiency of experiments and ensure the reliability of data, which has become an important aid to scientific research.
The whole equipment adopts the square shape, and the fuselage lines are simple and straight, reflecting the rigor of scientific research equipment. The height of the fuselage is controlled at 60 - 80cm, which is suitable for the operating height of the test bench to avoid the scientific research personnel from bending down. The scanning platform shall be of embedded design, with 1 - 2cm high leak-proof edge at the edge to prevent sample liquid from overflowing and damaging internal components. The table top shall be made of corrosion-resistant tempered glass for easy cleaning and disinfection.
Material selection is suitable for the special environment of the laboratory. We prefer to use 304 stainless steel or magnesium aluminum alloy for the main body of the fuselage. The surface is anodized to form a 5-10μm wear-resistant layer, and the corrosion resistance level reaches IP54 standard. The scanning cavity is made of food grade PP plastic, which is resistant to the corrosion of common experimental reagents such as alcohol and acetone. The contact parts of the fuselage and the table are equipped with non-slip silicone pads, and the friction coefficient is ≥ 0.8 to prevent the displacement of the equipment during operation.
The color scheme is professional and calm. The main color is dark gray and signal white, and the functional partition is outlined with silver metal lines. The fusion of technical functions has a significant impact on appearance. The heat dissipation system adopts the air duct design of "side in and back out". The side heat dissipation holes are arranged in matrix with an aperture of 3mm and a spacing of 5mm, which not only ensures the heat dissipation efficiency but also prevents foreign matters from entering. The infrared sensor window is set on the top of the fuselage, and the appearance is flush with the fuselage to avoid dust accumulation on the convex structure. The LED light source inside the scanning cavity adopts a hidden design, the light is uniformly projected through the light guide plate, and the cavity wall is provided with a diffuse reflection coating to reduce light interference.
On the design trend, intelligent elements are gradually integrated. Modular design has become the mainstream, the core components such as scanning head and stage can be independently disassembled, and the shell reserves a standardized interface to support future function upgrades.
The concept of environmental protection runs through the whole design process. More than 80% of the body material is made of recyclable metal and plastic, and the surface coating is made of lead-free environmental protection coating, which conforms to RoHS standard. The packaging uses honeycomb cardboard and degradable cushioning materials to reduce the use of foam plastics. The energy consumption mark is set at the bottom of the equipment to visually display the power consumption of different working modes, which meets the energy saving requirements of the laboratory.
The appearance design of the round tower in the scientific research analysis scanner takes "professional rigor, safety and reliability, man-machine adaptation" as the core, and creates laboratory equipment with both technical performance and humanistic care through material upgrading, function optimization and detail polishing.
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