显示标签为“InductionHeatingMagneticIron”的博文。显示所有博文
显示标签为“InductionHeatingMagneticIron”的博文。显示所有博文

2024年5月30日星期四

Induction Heating Magnetic Iron Oxide

Induction Heating Magnetic Iron Oxide in water for hyperthermia application Objective Heating magnetic iron oxide (Fe2O3) in water for hyperthermia application to determine the curve of temperature vs. time during induction heating Material Magnetic iron oxide in water (magnetic field is 50-200kHz, 30kA/m), glass vial Temperature Varies Frequency 344 kHz Equipment • DW-UHF-4.5kW induction heating system, equipped with a remote workhead containing two 0.33μF capacitors for a total of 0.66 μF • An induction heating coil designed and developed specifically for this application. Process A two turn helical coil is used to heat the glass vial. The temperature vs. time results are: • 66º - 107 ºF (19º - 42 ºC) in 10 seconds • 66º - 145 ºF (19º - 63 ºC) in 20 seconds • 66º - 170 ºF (19º - 77 ºC) in 30 seconds Results/Benefits Induction heating provides: • Rapid & localized heating • Uniform controllable heat • Small bench top footprint • Even distribution of heating induction heating magnetic iron oxide https://dw-inductionheater.com/induction-heating-magnetic-iron-oxide.html?feed_id=247950&_unique_id=66594e01914f2

2023年10月14日星期六

Induction Heating Magnetic Iron Oxide

Induction Heating Magnetic Iron Oxide in water for hyperthermia application Objective Heating magnetic iron oxide (Fe2O3) in water for hyperthermia application to determine the curve of temperature vs. time during induction heating Material Magnetic iron oxide in water (magnetic field is 50-200kHz, 30kA/m), glass vial Temperature Varies Frequency 344 kHz Equipment • DW-UHF-4.5kW induction heating system, equipped with a remote workhead containing two 0.33μF capacitors for a total of 0.66 μF • An induction heating coil designed and developed specifically for this application. Process A two turn helical coil is used to heat the glass vial. The temperature vs. time results are: • 66º - 107 ºF (19º - 42 ºC) in 10 seconds • 66º - 145 ºF (19º - 63 ºC) in 20 seconds • 66º - 170 ºF (19º - 77 ºC) in 30 seconds Results/Benefits Induction heating provides: • Rapid & localized heating • Uniform controllable heat • Small bench top footprint • Even distribution of heating induction heating magnetic iron oxide

2023年10月8日星期日

Induction Heating Magnetic Iron Oxide

Induction Heating Magnetic Iron Oxide in water for hyperthermia application Objective Heating magnetic iron oxide (Fe2O3) in water for hyperthermia application to determine the curve of temperature vs. time during induction heating Material Magnetic iron oxide in water (magnetic field is 50-200kHz, 30kA/m), glass vial Temperature Varies Frequency 344 kHz Equipment • DW-UHF-4.5kW induction heating system, equipped with a remote workhead containing two 0.33μF capacitors for a total of 0.66 μF • An induction heating coil designed and developed specifically for this application. Process A two turn helical coil is used to heat the glass vial. The temperature vs. time results are: • 66º - 107 ºF (19º - 42 ºC) in 10 seconds • 66º - 145 ºF (19º - 63 ºC) in 20 seconds • 66º - 170 ºF (19º - 77 ºC) in 30 seconds Results/Benefits Induction heating provides: • Rapid & localized heating • Uniform controllable heat • Small bench top footprint • Even distribution of heating induction heating magnetic iron oxide https://dw-inductionheater.com/induction-heating-magnetic-iron-oxide.html?feed_id=228638&_unique_id=6522aa603945d

2023年4月19日星期三

Induction Heating Magnetic Iron Oxide

Induction Heating Magnetic Iron Oxide in water for hyperthermia application Objective Heating magnetic iron oxide (Fe2O3) in water for hyperthermia application to determine the curve of temperature vs. time during induction heating Material Magnetic iron oxide in water (magnetic field is 50-200kHz, 30kA/m), glass vial Temperature Varies Frequency 344 kHz Equipment • DW-UHF-4.5kW induction heating system, equipped with a remote workhead containing two 0.33μF capacitors for a total of 0.66 μF • An induction heating coil designed and developed specifically for this application. Process A two turn helical coil is used to heat the glass vial. The temperature vs. time results are: • 66º - 107 ºF (19º - 42 ºC) in 10 seconds • 66º - 145 ºF (19º - 63 ºC) in 20 seconds • 66º - 170 ºF (19º - 77 ºC) in 30 seconds Results/Benefits Induction heating provides: • Rapid & localized heating • Uniform controllable heat • Small bench top footprint • Even distribution of heating induction heating magnetic iron oxide

2023年4月4日星期二

Induction Heating Magnetic Iron Oxide

Induction Heating Magnetic Iron Oxide in water for hyperthermia application Objective Heating magnetic iron oxide (Fe2O3) in water for hyperthermia application to determine the curve of temperature vs. time during induction heating Material Magnetic iron oxide in water (magnetic field is 50-200kHz, 30kA/m), glass vial Temperature Varies Frequency 344 kHz Equipment • DW-UHF-4.5kW induction heating system, equipped with a remote workhead containing two 0.33μF capacitors for a total of 0.66 μF • An induction heating coil designed and developed specifically for this application. Process A two turn helical coil is used to heat the glass vial. The temperature vs. time results are: • 66º - 107 ºF (19º - 42 ºC) in 10 seconds • 66º - 145 ºF (19º - 63 ºC) in 20 seconds • 66º - 170 ºF (19º - 77 ºC) in 30 seconds Results/Benefits Induction heating provides: • Rapid & localized heating • Uniform controllable heat • Small bench top footprint • Even distribution of heating induction heating magnetic iron oxide

2023年3月21日星期二

Induction Heating Magnetic Iron Oxide

Induction Heating Magnetic Iron Oxide in water for hyperthermia application Objective Heating magnetic iron oxide (Fe2O3) in water for hyperthermia application to determine the curve of temperature vs. time during induction heating Material Magnetic iron oxide in water (magnetic field is 50-200kHz, 30kA/m), glass vial Temperature Varies Frequency 344 kHz Equipment • DW-UHF-4.5kW induction heating system, equipped with a remote workhead containing two 0.33μF capacitors for a total of 0.66 μF • An induction heating coil designed and developed specifically for this application. Process A two turn helical coil is used to heat the glass vial. The temperature vs. time results are: • 66º - 107 ºF (19º - 42 ºC) in 10 seconds • 66º - 145 ºF (19º - 63 ºC) in 20 seconds • 66º - 170 ºF (19º - 77 ºC) in 30 seconds Results/Benefits Induction heating provides: • Rapid & localized heating • Uniform controllable heat • Small bench top footprint • Even distribution of heating induction heating magnetic iron oxide

2023年3月4日星期六

Induction Heating Magnetic Iron Oxide

Induction Heating Magnetic Iron Oxide in water for hyperthermia application Objective Heating magnetic iron oxide (Fe2O3) in water for hyperthermia application to determine the curve of temperature vs. time during induction heating Material Magnetic iron oxide in water (magnetic field is 50-200kHz, 30kA/m), glass vial Temperature Varies Frequency 344 kHz Equipment • DW-UHF-4.5kW induction heating system, equipped with a remote workhead containing two 0.33μF capacitors for a total of 0.66 μF • An induction heating coil designed and developed specifically for this application. Process A two turn helical coil is used to heat the glass vial. The temperature vs. time results are: • 66º - 107 ºF (19º - 42 ºC) in 10 seconds • 66º - 145 ºF (19º - 63 ºC) in 20 seconds • 66º - 170 ºF (19º - 77 ºC) in 30 seconds Results/Benefits Induction heating provides: • Rapid & localized heating • Uniform controllable heat • Small bench top footprint • Even distribution of heating induction heating magnetic iron oxide

2022年12月13日星期二

Induction Heating Magnetic Iron Oxide

Induction Heating Magnetic Iron Oxide in water for hyperthermia application Objective Heating magnetic iron oxide (Fe2O3) in water for hyperthermia application to determine the curve of temperature vs. time during induction heating Material Magnetic iron oxide in water (magnetic field is 50-200kHz, 30kA/m), glass vial Temperature Varies Frequency 344 kHz Equipment • DW-UHF-4.5kW induction heating system, equipped with a remote workhead containing two 0.33μF capacitors for a total of 0.66 μF • An induction heating coil designed and developed specifically for this application. Process A two turn helical coil is used to heat the glass vial. The temperature vs. time results are: • 66º - 107 ºF (19º - 42 ºC) in 10 seconds • 66º - 145 ºF (19º - 63 ºC) in 20 seconds • 66º - 170 ºF (19º - 77 ºC) in 30 seconds Results/Benefits Induction heating provides: • Rapid & localized heating • Uniform controllable heat • Small bench top footprint • Even distribution of heating induction heating magnetic iron oxide

Induction Heating Magnetic Iron Oxide

Induction Heating Magnetic Iron Oxide in water for hyperthermia application Objective Heating magnetic iron oxide (Fe2O3) in water for hyperthermia application to determine the curve of temperature vs. time during induction heating Material Magnetic iron oxide in water (magnetic field is 50-200kHz, 30kA/m), glass vial Temperature Varies Frequency 344 kHz Equipment • DW-UHF-4.5kW induction heating system, equipped with a remote workhead containing two 0.33μF capacitors for a total of 0.66 μF • An induction heating coil designed and developed specifically for this application. Process A two turn helical coil is used to heat the glass vial. The temperature vs. time results are: • 66º - 107 ºF (19º - 42 ºC) in 10 seconds • 66º - 145 ºF (19º - 63 ºC) in 20 seconds • 66º - 170 ºF (19º - 77 ºC) in 30 seconds Results/Benefits Induction heating provides: • Rapid & localized heating • Uniform controllable heat • Small bench top footprint • Even distribution of heating induction heating magnetic iron oxide

2022年10月4日星期二

Induction Heating Magnetic Iron Oxide

Induction Heating Magnetic Iron Oxide in water for hyperthermia application Objective Heating magnetic iron oxide (Fe2O3) in water for hyperthermia application to determine the curve of temperature vs. time during induction heating Material Magnetic iron oxide in water (magnetic field is 50-200kHz, 30kA/m), glass vial Temperature Varies Frequency 344 kHz Equipment • DW-UHF-4.5kW induction heating system, equipped with a remote workhead containing two 0.33μF capacitors for a total of 0.66 μF • An induction heating coil designed and developed specifically for this application. Process A two turn helical coil is used to heat the glass vial. The temperature vs. time results are: • 66º - 107 ºF (19º - 42 ºC) in 10 seconds • 66º - 145 ºF (19º - 63 ºC) in 20 seconds • 66º - 170 ºF (19º - 77 ºC) in 30 seconds Results/Benefits Induction heating provides: • Rapid & localized heating • Uniform controllable heat • Small bench top footprint • Even distribution of heating induction heating magnetic iron oxide

2022年6月11日星期六

Induction Heating Magnetic Iron Oxide

Induction Heating Magnetic Iron Oxide in water for hyperthermia application Objective Heating magnetic iron oxide (Fe2O3) in water for hyperthermia application to determine the curve of temperature vs. time during induction heating Material Magnetic iron oxide in water (magnetic field is 50-200kHz, 30kA/m), glass vial Temperature Varies Frequency 344 kHz Equipment • DW-UHF-4.5kW induction heating system, equipped with a remote workhead containing two 0.33μF capacitors for a total of 0.66 μF • An induction heating coil designed and developed specifically for this application. Process A two turn helical coil is used to heat the glass vial. The temperature vs. time results are: • 66º - 107 ºF (19º - 42 ºC) in 10 seconds • 66º - 145 ºF (19º - 63 ºC) in 20 seconds • 66º - 170 ºF (19º - 77 ºC) in 30 seconds Results/Benefits Induction heating provides: • Rapid & localized heating • Uniform controllable heat • Small bench top footprint • Even distribution of heating induction heating magnetic iron oxide

2022年6月1日星期三

Induction Heating Magnetic Iron Oxide

Induction Heating Magnetic Iron Oxide in water for hyperthermia application Objective Heating magnetic iron oxide (Fe2O3) in water for hyperthermia application to determine the curve of temperature vs. time during induction heating Material Magnetic iron oxide in water (magnetic field is 50-200kHz, 30kA/m), glass vial Temperature Varies Frequency 344 kHz Equipment • DW-UHF-4.5kW induction heating system, equipped with a remote workhead containing two 0.33μF capacitors for a total of 0.66 μF • An induction heating coil designed and developed specifically for this application. Process A two turn helical coil is used to heat the glass vial. The temperature vs. time results are: • 66º - 107 ºF (19º - 42 ºC) in 10 seconds • 66º - 145 ºF (19º - 63 ºC) in 20 seconds • 66º - 170 ºF (19º - 77 ºC) in 30 seconds Results/Benefits Induction heating provides: • Rapid & localized heating • Uniform controllable heat • Small bench top footprint • Even distribution of heating induction heating magnetic iron oxide

2022年3月1日星期二

Induction Heating Magnetic Iron Oxide

Induction Heating Magnetic Iron Oxide in water for hyperthermia application Objective Heating magnetic iron oxide (Fe2O3) in water for hyperthermia application to determine the curve of temperature vs. time during induction heating Material Magnetic iron oxide in water (magnetic field is 50-200kHz, 30kA/m), glass vial Temperature Varies Frequency 344 kHz Equipment • DW-UHF-4.5kW induction heating system, equipped with a remote workhead containing two 0.33μF capacitors for a total of 0.66 μF • An induction heating coil designed and developed specifically for this application. Process A two turn helical coil is used to heat the glass vial. The temperature vs. time results are: • 66º - 107 ºF (19º - 42 ºC) in 10 seconds • 66º - 145 ºF (19º - 63 ºC) in 20 seconds • 66º - 170 ºF (19º - 77 ºC) in 30 seconds Results/Benefits Induction heating provides: • Rapid & localized heating • Uniform controllable heat • Small bench top footprint • Even distribution of heating induction heating magnetic iron oxide

2022年1月29日星期六

Induction Heating Magnetic Iron Oxide

Induction Heating Magnetic Iron Oxide in water for hyperthermia application Objective Heating magnetic iron oxide (Fe2O3) in water for hyperthermia application to determine the curve of temperature vs. time during induction heating Material Magnetic iron oxide in water (magnetic field is 50-200kHz, 30kA/m), glass vial Temperature Varies Frequency 344 kHz Equipment • DW-UHF-4.5kW induction heating system, equipped with a remote workhead containing two 0.33μF capacitors for a total of 0.66 μF • An induction heating coil designed and developed specifically for this application. Process A two turn helical coil is used to heat the glass vial. The temperature vs. time results are: • 66º - 107 ºF (19º - 42 ºC) in 10 seconds • 66º - 145 ºF (19º - 63 ºC) in 20 seconds • 66º - 170 ºF (19º - 77 ºC) in 30 seconds Results/Benefits Induction heating provides: • Rapid & localized heating • Uniform controllable heat • Small bench top footprint • Even distribution of heating induction heating magnetic iron oxide

2022年1月17日星期一

Induction Heating Magnetic Iron Oxide

Induction Heating Magnetic Iron Oxide in water for hyperthermia application Objective Heating magnetic iron oxide (Fe2O3) in water for hyperthermia application to determine the curve of temperature vs. time during induction heating Material Magnetic iron oxide in water (magnetic field is 50-200kHz, 30kA/m), glass vial Temperature Varies Frequency 344 kHz Equipment • DW-UHF-4.5kW induction heating system, equipped with a remote workhead containing two 0.33μF capacitors for a total of 0.66 μF • An induction heating coil designed and developed specifically for this application. Process A two turn helical coil is used to heat the glass vial. The temperature vs. time results are: • 66º - 107 ºF (19º - 42 ºC) in 10 seconds • 66º - 145 ºF (19º - 63 ºC) in 20 seconds • 66º - 170 ºF (19º - 77 ºC) in 30 seconds Results/Benefits Induction heating provides: • Rapid & localized heating • Uniform controllable heat • Small bench top footprint • Even distribution of heating induction heating magnetic iron oxide

2022年1月11日星期二

Induction Heating Magnetic Iron Oxide

Induction Heating Magnetic Iron Oxide in water for hyperthermia application Objective Heating magnetic iron oxide (Fe2O3) in water for hyperthermia application to determine the curve of temperature vs. time during induction heating Material Magnetic iron oxide in water (magnetic field is 50-200kHz, 30kA/m), glass vial Temperature Varies Frequency 344 kHz Equipment • DW-UHF-4.5kW induction heating system, equipped with a remote workhead containing two 0.33μF capacitors for a total of 0.66 μF • An induction heating coil designed and developed specifically for this application. Process A two turn helical coil is used to heat the glass vial. The temperature vs. time results are: • 66º - 107 ºF (19º - 42 ºC) in 10 seconds • 66º - 145 ºF (19º - 63 ºC) in 20 seconds • 66º - 170 ºF (19º - 77 ºC) in 30 seconds Results/Benefits Induction heating provides: • Rapid & localized heating • Uniform controllable heat • Small bench top footprint • Even distribution of heating induction heating magnetic iron oxide

2021年11月10日星期三

Induction Heating Magnetic Iron Oxide

Induction Heating Magnetic Iron Oxide in water for hyperthermia application Objective Heating magnetic iron oxide (Fe2O3) in water for hyperthermia application to determine the curve of temperature vs. time during induction heating Material Magnetic iron oxide in water (magnetic field is 50-200kHz, 30kA/m), glass vial Temperature Varies Frequency 344 kHz Equipment • DW-UHF-4.5kW induction heating system, equipped with a remote workhead containing two 0.33μF capacitors for a total of 0.66 μF • An induction heating coil designed and developed specifically for this application. Process A two turn helical coil is used to heat the glass vial. The temperature vs. time results are: • 66º - 107 ºF (19º - 42 ºC) in 10 seconds • 66º - 145 ºF (19º - 63 ºC) in 20 seconds • 66º - 170 ºF (19º - 77 ºC) in 30 seconds Results/Benefits Induction heating provides: • Rapid & localized heating • Uniform controllable heat • Small bench top footprint • Even distribution of heating induction heating magnetic iron oxide

2021年11月9日星期二

Induction Heating Magnetic Iron Oxide

Induction Heating Magnetic Iron Oxide in water for hyperthermia application Objective Heating magnetic iron oxide (Fe2O3) in water for hyperthermia application to determine the curve of temperature vs. time during induction heating Material Magnetic iron oxide in water (magnetic field is 50-200kHz, 30kA/m), glass vial Temperature Varies Frequency 344 kHz Equipment • DW-UHF-4.5kW induction heating system, equipped with a remote workhead containing two 0.33μF capacitors for a total of 0.66 μF • An induction heating coil designed and developed specifically for this application. Process A two turn helical coil is used to heat the glass vial. The temperature vs. time results are: • 66º - 107 ºF (19º - 42 ºC) in 10 seconds • 66º - 145 ºF (19º - 63 ºC) in 20 seconds • 66º - 170 ºF (19º - 77 ºC) in 30 seconds Results/Benefits Induction heating provides: • Rapid & localized heating • Uniform controllable heat • Small bench top footprint • Even distribution of heating induction heating magnetic iron oxide

关注者

我的简介

我的照片
HLQ induction heating machine manufacturer provides the service of induction brazing,melting,hot forming,hardening surface,annealing,shrink fitting,PWHT,etc.