Identification of Heat Transfer Coefficients and Simulation of Quenching Distortions on Disk Probe
Hideo Kanamori, Dongying Ju
Abstract
Open-access reader
Hideo Kanamori, Dongying Ju
Abstract
Open-access reader
Oil quenching is an efficient heat treatment cooling method which can obtain a large cooling capacity by utilizing the boiling phenomenon. However, when the vapor film remains, the cooling speed is reduced only in the part, and the uneven cooling can cause heat treatment distortion, which is the biggest problem in the heat treatment process. In this paper, a quenching experiment was conducted by immersing a horizontal stainless steel disk specimen in quenching oil. Thermocouples which just located below the surface accurately measure the cooling curves of the top and bottom surfaces of the specimen.
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Oil quenching is an efficient heat treatment cooling method which can obtain a large cooling capacity by utilizing the boiling phenomenon. However, when the vapor film remains, the cooling speed is reduced only in the part, and the uneven cooling can cause heat treatment distortion, which is the biggest problem in the heat treatment process. In this paper, a quenching experiment was conducted by immersing a horizontal stainless steel disk specimen in quenching oil. Thermocouples which just located below the surface accurately measure the cooling curves of the top and bottom surfaces of the specimen.
Key concepts: Quenching (fluorescence), Thermocouple, Materials science, Cooling curve, Boiling, Leidenfrost effect, Heat transfer, Boiling heat transfer