Brazing carbide shaft with induction
Objective: Braze a carbide shaft to a steel tube
Material: Carbide shaft 1/8" to 1" diameter (varying sizes) Steel tube 3/8" to 1 ¼" OD Silver solder braze
Temperature: indicating paint
Temperature: 1400 °F for 60 seconds Frequency300 kHz
Equipment: DW-UHF-6KW-III, 150-400 kHz solid state induction heating system equipped with a remote heat station containing two 0.66 μF capacitors (total 1.32 μF) A multi-turn helical coil
Process: Silver solder is applied to where the carbide shaft and steel tube meet. The clearance between the two parts is approximately .0005". A small piece of solder braze is placed on the part and then the part is heated. It takes about 60 seconds to flow the braze with the best heat migration and solder flow. Even though the part can be heated faster, optimal results are obtained at 60 seconds.
Results/Benefits: Induction heating provides even, precise heat. Precise directed heat is required for the solder braze to flow evenly around the part to assure a good joint.
https://dw-inductionheater.com/brazing-carbide-shaft-with-induction.html?feed_id=230466&_unique_id=654d8320ad50f
2023年11月9日星期四
Brazing carbide shaft with induction
Brazing carbide shaft with induction
Objective: Braze a carbide shaft to a steel tube
Material: Carbide shaft 1/8" to 1" diameter (varying sizes) Steel tube 3/8" to 1 ¼" OD Silver solder braze
Temperature: indicating paint
Temperature: 1400 °F for 60 seconds Frequency300 kHz
Equipment: DW-UHF-6KW-III, 150-400 kHz solid state induction heating system equipped with a remote heat station containing two 0.66 μF capacitors (total 1.32 μF) A multi-turn helical coil
Process: Silver solder is applied to where the carbide shaft and steel tube meet. The clearance between the two parts is approximately .0005". A small piece of solder braze is placed on the part and then the part is heated. It takes about 60 seconds to flow the braze with the best heat migration and solder flow. Even though the part can be heated faster, optimal results are obtained at 60 seconds.
Results/Benefits: Induction heating provides even, precise heat. Precise directed heat is required for the solder braze to flow evenly around the part to assure a good joint.
https://dw-inductionheater.com/brazing-carbide-shaft-with-induction.html?feed_id=230466&_unique_id=654d8320ad50f
2023年8月5日星期六
Brazing carbide shaft with induction
Brazing carbide shaft with induction
Objective: Braze a carbide shaft to a steel tube
Material: Carbide shaft 1/8" to 1" diameter (varying sizes) Steel tube 3/8" to 1 ¼" OD Silver solder braze
Temperature: indicating paint
Temperature: 1400 °F for 60 seconds Frequency300 kHz
Equipment: DW-UHF-6KW-III, 150-400 kHz solid state induction heating system equipped with a remote heat station containing two 0.66 μF capacitors (total 1.32 μF) A multi-turn helical coil
Process: Silver solder is applied to where the carbide shaft and steel tube meet. The clearance between the two parts is approximately .0005". A small piece of solder braze is placed on the part and then the part is heated. It takes about 60 seconds to flow the braze with the best heat migration and solder flow. Even though the part can be heated faster, optimal results are obtained at 60 seconds.
Results/Benefits: Induction heating provides even, precise heat. Precise directed heat is required for the solder braze to flow evenly around the part to assure a good joint.
2023年3月15日星期三
Brazing carbide shaft with induction
Brazing carbide shaft with induction
Objective: Braze a carbide shaft to a steel tube
Material: Carbide shaft 1/8" to 1" diameter (varying sizes) Steel tube 3/8" to 1 ¼" OD Silver solder braze
Temperature: indicating paint
Temperature: 1400 °F for 60 seconds Frequency300 kHz
Equipment: DW-UHF-6KW-III, 150-400 kHz solid state induction heating system equipped with a remote heat station containing two 0.66 μF capacitors (total 1.32 μF) A multi-turn helical coil
Process: Silver solder is applied to where the carbide shaft and steel tube meet. The clearance between the two parts is approximately .0005". A small piece of solder braze is placed on the part and then the part is heated. It takes about 60 seconds to flow the braze with the best heat migration and solder flow. Even though the part can be heated faster, optimal results are obtained at 60 seconds.
Results/Benefits: Induction heating provides even, precise heat. Precise directed heat is required for the solder braze to flow evenly around the part to assure a good joint.
Objective: Braze a carbide shaft to a steel tube
Material: Carbide shaft 1/8" to 1" diameter (varying sizes) Steel tube 3/8" to 1 ¼" OD Silver solder braze
Temperature: indicating paint
Temperature: 1400 °F for 60 seconds Frequency300 kHz
Equipment: DW-UHF-6KW-III, 150-400 kHz solid state induction heating system equipped with a remote heat station containing two 0.66 μF capacitors (total 1.32 μF) A multi-turn helical coil
Process: Silver solder is applied to where the carbide shaft and steel tube meet. The clearance between the two parts is approximately .0005". A small piece of solder braze is placed on the part and then the part is heated. It takes about 60 seconds to flow the braze with the best heat migration and solder flow. Even though the part can be heated faster, optimal results are obtained at 60 seconds.
Results/Benefits: Induction heating provides even, precise heat. Precise directed heat is required for the solder braze to flow evenly around the part to assure a good joint.
2023年2月8日星期三
Brazing carbide shaft with induction
Brazing carbide shaft with induction
Objective: Braze a carbide shaft to a steel tube
Material: Carbide shaft 1/8" to 1" diameter (varying sizes) Steel tube 3/8" to 1 ¼" OD Silver solder braze
Temperature: indicating paint
Temperature: 1400 °F for 60 seconds Frequency300 kHz
Equipment: DW-UHF-6KW-III, 150-400 kHz solid state induction heating system equipped with a remote heat station containing two 0.66 μF capacitors (total 1.32 μF) A multi-turn helical coil
Process: Silver solder is applied to where the carbide shaft and steel tube meet. The clearance between the two parts is approximately .0005". A small piece of solder braze is placed on the part and then the part is heated. It takes about 60 seconds to flow the braze with the best heat migration and solder flow. Even though the part can be heated faster, optimal results are obtained at 60 seconds.
Results/Benefits: Induction heating provides even, precise heat. Precise directed heat is required for the solder braze to flow evenly around the part to assure a good joint.
2022年12月28日星期三
Brazing carbide shaft with induction
Brazing carbide shaft with induction
Objective: Braze a carbide shaft to a steel tube
Material: Carbide shaft 1/8" to 1" diameter (varying sizes) Steel tube 3/8" to 1 ¼" OD Silver solder braze
Temperature: indicating paint
Temperature: 1400 °F for 60 seconds Frequency300 kHz
Equipment: DW-UHF-6KW-III, 150-400 kHz solid state induction heating system equipped with a remote heat station containing two 0.66 μF capacitors (total 1.32 μF) A multi-turn helical coil
Process: Silver solder is applied to where the carbide shaft and steel tube meet. The clearance between the two parts is approximately .0005". A small piece of solder braze is placed on the part and then the part is heated. It takes about 60 seconds to flow the braze with the best heat migration and solder flow. Even though the part can be heated faster, optimal results are obtained at 60 seconds.
Results/Benefits: Induction heating provides even, precise heat. Precise directed heat is required for the solder braze to flow evenly around the part to assure a good joint.
2022年9月1日星期四
Brazing carbide shaft with induction
Brazing carbide shaft with induction
Objective: Braze a carbide shaft to a steel tube
Material: Carbide shaft 1/8" to 1" diameter (varying sizes) Steel tube 3/8" to 1 ¼" OD Silver solder braze
Temperature: indicating paint
Temperature: 1400 °F for 60 seconds Frequency300 kHz
Equipment: DW-UHF-6KW-III, 150-400 kHz solid state induction heating system equipped with a remote heat station containing two 0.66 μF capacitors (total 1.32 μF) A multi-turn helical coil
Process: Silver solder is applied to where the carbide shaft and steel tube meet. The clearance between the two parts is approximately .0005". A small piece of solder braze is placed on the part and then the part is heated. It takes about 60 seconds to flow the braze with the best heat migration and solder flow. Even though the part can be heated faster, optimal results are obtained at 60 seconds.
Results/Benefits: Induction heating provides even, precise heat. Precise directed heat is required for the solder braze to flow evenly around the part to assure a good joint.
2022年5月22日星期日
Brazing carbide shaft with induction
Brazing carbide shaft with induction
Objective: Braze a carbide shaft to a steel tube
Material: Carbide shaft 1/8" to 1" diameter (varying sizes) Steel tube 3/8" to 1 ¼" OD Silver solder braze
Temperature: indicating paint
Temperature: 1400 °F for 60 seconds Frequency300 kHz
Equipment: DW-UHF-6KW-III, 150-400 kHz solid state induction heating system equipped with a remote heat station containing two 0.66 μF capacitors (total 1.32 μF) A multi-turn helical coil
Process: Silver solder is applied to where the carbide shaft and steel tube meet. The clearance between the two parts is approximately .0005". A small piece of solder braze is placed on the part and then the part is heated. It takes about 60 seconds to flow the braze with the best heat migration and solder flow. Even though the part can be heated faster, optimal results are obtained at 60 seconds.
Results/Benefits: Induction heating provides even, precise heat. Precise directed heat is required for the solder braze to flow evenly around the part to assure a good joint.
2022年3月23日星期三
Brazing carbide shaft with induction
Brazing carbide shaft with induction
Objective: Braze a carbide shaft to a steel tube
Material: Carbide shaft 1/8" to 1" diameter (varying sizes) Steel tube 3/8" to 1 ¼" OD Silver solder braze
Temperature: indicating paint
Temperature: 1400 °F for 60 seconds Frequency300 kHz
Equipment: DW-UHF-6KW-III, 150-400 kHz solid state induction heating system equipped with a remote heat station containing two 0.66 μF capacitors (total 1.32 μF) A multi-turn helical coil
Process: Silver solder is applied to where the carbide shaft and steel tube meet. The clearance between the two parts is approximately .0005". A small piece of solder braze is placed on the part and then the part is heated. It takes about 60 seconds to flow the braze with the best heat migration and solder flow. Even though the part can be heated faster, optimal results are obtained at 60 seconds.
Results/Benefits: Induction heating provides even, precise heat. Precise directed heat is required for the solder braze to flow evenly around the part to assure a good joint.
Brazing carbide shaft with induction
Brazing carbide shaft with induction
Objective: Braze a carbide shaft to a steel tube
Material: Carbide shaft 1/8" to 1" diameter (varying sizes) Steel tube 3/8" to 1 ¼" OD Silver solder braze
Temperature: indicating paint
Temperature: 1400 °F for 60 seconds Frequency300 kHz
Equipment: DW-UHF-6KW-III, 150-400 kHz solid state induction heating system equipped with a remote heat station containing two 0.66 μF capacitors (total 1.32 μF) A multi-turn helical coil
Process: Silver solder is applied to where the carbide shaft and steel tube meet. The clearance between the two parts is approximately .0005". A small piece of solder braze is placed on the part and then the part is heated. It takes about 60 seconds to flow the braze with the best heat migration and solder flow. Even though the part can be heated faster, optimal results are obtained at 60 seconds.
Results/Benefits: Induction heating provides even, precise heat. Precise directed heat is required for the solder braze to flow evenly around the part to assure a good joint.
2022年2月19日星期六
Brazing carbide shaft with induction
Brazing carbide shaft with induction
Objective: Braze a carbide shaft to a steel tube
Material: Carbide shaft 1/8" to 1" diameter (varying sizes) Steel tube 3/8" to 1 ¼" OD Silver solder braze
Temperature: indicating paint
Temperature: 1400 °F for 60 seconds Frequency300 kHz
Equipment: DW-UHF-6KW-III, 150-400 kHz solid state induction heating system equipped with a remote heat station containing two 0.66 μF capacitors (total 1.32 μF) A multi-turn helical coil
Process: Silver solder is applied to where the carbide shaft and steel tube meet. The clearance between the two parts is approximately .0005". A small piece of solder braze is placed on the part and then the part is heated. It takes about 60 seconds to flow the braze with the best heat migration and solder flow. Even though the part can be heated faster, optimal results are obtained at 60 seconds.
Results/Benefits: Induction heating provides even, precise heat. Precise directed heat is required for the solder braze to flow evenly around the part to assure a good joint.
2022年2月14日星期一
Brazing carbide shaft with induction
Brazing carbide shaft with induction
Objective: Braze a carbide shaft to a steel tube
Material: Carbide shaft 1/8" to 1" diameter (varying sizes) Steel tube 3/8" to 1 ¼" OD Silver solder braze
Temperature: indicating paint
Temperature: 1400 °F for 60 seconds Frequency300 kHz
Equipment: DW-UHF-6KW-III, 150-400 kHz solid state induction heating system equipped with a remote heat station containing two 0.66 μF capacitors (total 1.32 μF) A multi-turn helical coil
Process: Silver solder is applied to where the carbide shaft and steel tube meet. The clearance between the two parts is approximately .0005". A small piece of solder braze is placed on the part and then the part is heated. It takes about 60 seconds to flow the braze with the best heat migration and solder flow. Even though the part can be heated faster, optimal results are obtained at 60 seconds.
Results/Benefits: Induction heating provides even, precise heat. Precise directed heat is required for the solder braze to flow evenly around the part to assure a good joint.
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- HLQ induction heating machine
- HLQ induction heating machine manufacturer provides the service of induction brazing,melting,hot forming,hardening surface,annealing,shrink fitting,PWHT,etc.