

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Objective: To heat steel tubes for an adhesive bonding application for a medical industry part.
Frequency: 230 kHz
Material: A stainless steel tube on a plastic tube
Temperature: 392 °F (200 °C)
Initial tests were conducted to optimize the power delivered to the plastic tube assembly. Temperature indicating paint was then applied to the part, which dissolves when the part reaches the target temperature. It was observed that it took 5.0 seconds to heat the sample to temperature. After the part cooled to room temperature, it was compared to the customer-provided finished assemblies to confirm that the plastic was sufficiently bonded to the inside of the steel tube. Five assemblies were heated and the application was successfully proven out.
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Objective: To heat steel tubes for an adhesive bonding application for a medical industry part.
Frequency: 230 kHz
Material: A stainless steel tube on a plastic tube
Temperature: 392 °F (200 °C)
Initial tests were conducted to optimize the power delivered to the plastic tube assembly. Temperature indicating paint was then applied to the part, which dissolves when the part reaches the target temperature. It was observed that it took 5.0 seconds to heat the sample to temperature. After the part cooled to room temperature, it was compared to the customer-provided finished assemblies to confirm that the plastic was sufficiently bonded to the inside of the steel tube. Five assemblies were heated and the application was successfully proven out.
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