When it comes to thermal insulation projects in China, the aluminum products used must meet a set of specific performance standards. These include tensile strength, elongation, impact resistance, bridge time, viscosity, processing time, heat transfer coefficient, elastic modulus, and heat deflection temperature. All of these factors play a critical role in ensuring the long-term effectiveness and durability of the insulation system.

After thoroughly reviewing all technical specifications, the selected materials should be cast according to the general product parameters and then processed in a standard workshop environment that aligns with the specific application design. It is essential to produce sample batches of these aluminum components and conduct comprehensive testing to verify whether they meet the expected performance criteria.

It's important to note that even the best material can underperform if the heat-insulating tank is poorly designed, and conversely, a well-designed system may not function as intended with substandard materials. Therefore, both the design of the heat-breaking tank and the selection of insulation materials must be carefully coordinated and validated to ensure optimal performance.

The final cast aluminum bridge products should possess the following key properties:

(1) The bending resistance must be sufficient to handle the expected load and environmental conditions. (2) The torsional resistance should exceed the external forces caused by frame deflection. (3) Shear resistance needs to be higher than the forces resulting from temperature differences or glass weight. (4) Wind resistance must be capable of withstanding sustained fluctuations due to changes in wind load. (5) The structure should be able to support static loads from the weight of the glass or hardware installed on doors and windows. (6) Proper design is necessary to minimize dry shrinkage and maintain dimensional stability. (7) The product must demonstrate strong deformation and impact resistance to meet the demands of its end-use applications.

By ensuring that each of these properties is met, the final product will not only perform reliably but also contribute to the overall efficiency and longevity of the thermal insulation system.

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