ROGERS AUTOMOTIVE SOLUTIONS: Rogers' PORON® 4790-92 Polyurethane Mitigates Noise and Vibration
●CUSTOMER PROBLEM: An automotive OEM was searching for material to use as a vibration isolation gap filler in the assembly of their electric vehicle u-shaped busbars. The busbars would occasionally come in contact with other components within the battery. As such, a material was needed on the bend radius of the busbar to mitigate noise and vibration, as well as in other areas of the design for insulation, anti-shearing, and buzz, squeak, and rattle abatement. The original foam material specified in the busbar's design had suddenly become difficult to source, so the OEM needed a solution that could be readily implemented without drastic design changes. Rogers’ team was able to quickly address the situation by providing the OEM design team with multiple polyurethane foam options and joining forces with a converter who could readily die cut the material into a variety of different shapes and sizes.
●THE ROGERS SOLUTION: After evaluating these materials against those of the competition, the OEM chose Rogers PORON® 4790-92 polyurethane for the application due to the material's range of densities, varying thicknesses, CFD curves, and compression set resistance. PORON 4790-92 polyurethane is a slow rebound material with a very high mechanical loss factor, making it an excellent choice for any application requiring vibration damping. PORON 4790-92 also has a UL flammability rating designated under 94HBF, which was of particular importance to the OEM as operating conditions could subject the material to temperatures as high as 125 ̊C.
●RESULT: The OEM selected PORON 4790-92 over both the previously used competitor's material as well as those from other material providers. The reputation of PORON material for its consistent performance under compression and the ability to secure the material in a tight time frame made Rogers the obvious choice for this OEM.
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Please see the document for details |
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English Chinese Chinese and English Japanese |
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2022/11/22 |
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17-474 |
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1.1 MB |
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