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

2023年11月4日星期六

Brazing Carbide To Steel With Induction

Brazing Carbide To Steel With Induction  Objective: Braze carbide rotary file assemblies with uniform concentricity in an aerospace application Material : • Carbide blank • High speed steel shank • Temperature indicating paint • Braze shim and black flux Temperature 1400°F (760°C) Frequency 252 kHz Equipment DW-UHF-10kw induction heating system, equipped with a remote heat station containing two 0.33 μF capacitors (total 0.66 μF) An induction heating coil designed and developed specifically for this application. Process A multi-turn helical coil is used. The part is heated to determine the time required to reach the desired temperature and required heat pattern. It takes approximately 30 - 45 seconds to reach 1400°F (760°C) depending on the various part sizes. Flux is applied to the entire part. A braze shim is sandwiched between the steel shank and carbide. Induction heating power is applied until the braze flows. With proper fixturing, concentricity of the part can be achieved. Results/Benefits • Repeatable, consistent precise heat. https://dw-inductionheater.com/brazing-carbide-to-steel-with-induction.html?feed_id=230166&_unique_id=65465eee1c0f6

2023年10月28日星期六

Brazing Carbide To Steel Shank

Brazing Carbide To Steel Shank with Induction Objective :Brazing carbide teeth to a steel jaw in less than 5 minutes Material: Steel pipe jaw, 0.5” (12.7mm) dia, 1.25” (31.75mm) long, 0.25”(6.35mm) thick carbide teeth, black flux and silver copper braze shims Temperature: 1292ºF (700ºC) Frequency: 300kHz Equipment • DW-UHF-10kW induction heating system, equipped with a remote workhead containing one 0.66μF capacitor • An induction heating coil designed and developed specifically for this application. Process: A two turn rectangular helical coil is used to heat the carbide and steel to 1292ºF (700ºC) for 4 to 5 minutes. Three braze shims control the amount of braze and the even heat allows for a good flow of braze creating an aesthetically pleasing bond. Results/Benefits Induction heating provides: • Hands-free heating that involves no operator skill for manufacturing • Consistent, repeatable aesthetically pleasing brazes • Even distribution of heating https://dw-inductionheater.com/brazing-carbide-to-steel-shank.html?feed_id=229806&_unique_id=653dcd6ce2c3a

2023年9月17日星期日

Brazing Carbide To Steel Shank

Brazing Carbide To Steel Shank with Induction Objective :Brazing carbide teeth to a steel jaw in less than 5 minutes Material: Steel pipe jaw, 0.5” (12.7mm) dia, 1.25” (31.75mm) long, 0.25”(6.35mm) thick carbide teeth, black flux and silver copper braze shims Temperature: 1292ºF (700ºC) Frequency: 300kHz Equipment • DW-UHF-10kW induction heating system, equipped with a remote workhead containing one 0.66μF capacitor • An induction heating coil designed and developed specifically for this application. Process: A two turn rectangular helical coil is used to heat the carbide and steel to 1292ºF (700ºC) for 4 to 5 minutes. Three braze shims control the amount of braze and the even heat allows for a good flow of braze creating an aesthetically pleasing bond. Results/Benefits Induction heating provides: • Hands-free heating that involves no operator skill for manufacturing • Consistent, repeatable aesthetically pleasing brazes • Even distribution of heating

2023年9月14日星期四

Brazing Carbide To Steel With Induction

Brazing Carbide To Steel With Induction  Objective: Braze carbide rotary file assemblies with uniform concentricity in an aerospace application Material : • Carbide blank • High speed steel shank • Temperature indicating paint • Braze shim and black flux Temperature 1400°F (760°C) Frequency 252 kHz Equipment DW-UHF-10kw induction heating system, equipped with a remote heat station containing two 0.33 μF capacitors (total 0.66 μF) An induction heating coil designed and developed specifically for this application. Process A multi-turn helical coil is used. The part is heated to determine the time required to reach the desired temperature and required heat pattern. It takes approximately 30 - 45 seconds to reach 1400°F (760°C) depending on the various part sizes. Flux is applied to the entire part. A braze shim is sandwiched between the steel shank and carbide. Induction heating power is applied until the braze flows. With proper fixturing, concentricity of the part can be achieved. Results/Benefits • Repeatable, consistent precise heat.

2023年8月13日星期日

Brazing Carbide To Steel With Induction

Brazing Carbide To Steel With Induction  Objective: Braze carbide rotary file assemblies with uniform concentricity in an aerospace application Material : • Carbide blank • High speed steel shank • Temperature indicating paint • Braze shim and black flux Temperature 1400°F (760°C) Frequency 252 kHz Equipment DW-UHF-10kw induction heating system, equipped with a remote heat station containing two 0.33 μF capacitors (total 0.66 μF) An induction heating coil designed and developed specifically for this application. Process A multi-turn helical coil is used. The part is heated to determine the time required to reach the desired temperature and required heat pattern. It takes approximately 30 - 45 seconds to reach 1400°F (760°C) depending on the various part sizes. Flux is applied to the entire part. A braze shim is sandwiched between the steel shank and carbide. Induction heating power is applied until the braze flows. With proper fixturing, concentricity of the part can be achieved. Results/Benefits • Repeatable, consistent precise heat.

2023年4月6日星期四

Brazing Carbide To Steel With Induction

Brazing Carbide To Steel With Induction  Objective: Braze carbide rotary file assemblies with uniform concentricity in an aerospace application Material : • Carbide blank • High speed steel shank • Temperature indicating paint • Braze shim and black flux Temperature 1400°F (760°C) Frequency 252 kHz Equipment DW-UHF-10kw induction heating system, equipped with a remote heat station containing two 0.33 μF capacitors (total 0.66 μF) An induction heating coil designed and developed specifically for this application. Process A multi-turn helical coil is used. The part is heated to determine the time required to reach the desired temperature and required heat pattern. It takes approximately 30 - 45 seconds to reach 1400°F (760°C) depending on the various part sizes. Flux is applied to the entire part. A braze shim is sandwiched between the steel shank and carbide. Induction heating power is applied until the braze flows. With proper fixturing, concentricity of the part can be achieved. Results/Benefits • Repeatable, consistent precise heat.

2023年1月23日星期一

Brazing Carbide To Steel Shank

Brazing Carbide To Steel Shank with Induction Objective :Brazing carbide teeth to a steel jaw in less than 5 minutes Material: Steel pipe jaw, 0.5” (12.7mm) dia, 1.25” (31.75mm) long, 0.25”(6.35mm) thick carbide teeth, black flux and silver copper braze shims Temperature: 1292ºF (700ºC) Frequency: 300kHz Equipment • DW-UHF-10kW induction heating system, equipped with a remote workhead containing one 0.66μF capacitor • An induction heating coil designed and developed specifically for this application. Process: A two turn rectangular helical coil is used to heat the carbide and steel to 1292ºF (700ºC) for 4 to 5 minutes. Three braze shims control the amount of braze and the even heat allows for a good flow of braze creating an aesthetically pleasing bond. Results/Benefits Induction heating provides: • Hands-free heating that involves no operator skill for manufacturing • Consistent, repeatable aesthetically pleasing brazes • Even distribution of heating

2023年1月21日星期六

Brazing Carbide To Steel With Induction

Brazing Carbide To Steel With Induction  Objective: Braze carbide rotary file assemblies with uniform concentricity in an aerospace application Material : • Carbide blank • High speed steel shank • Temperature indicating paint • Braze shim and black flux Temperature 1400°F (760°C) Frequency 252 kHz Equipment DW-UHF-10kw induction heating system, equipped with a remote heat station containing two 0.33 μF capacitors (total 0.66 μF) An induction heating coil designed and developed specifically for this application. Process A multi-turn helical coil is used. The part is heated to determine the time required to reach the desired temperature and required heat pattern. It takes approximately 30 - 45 seconds to reach 1400°F (760°C) depending on the various part sizes. Flux is applied to the entire part. A braze shim is sandwiched between the steel shank and carbide. Induction heating power is applied until the braze flows. With proper fixturing, concentricity of the part can be achieved. Results/Benefits • Repeatable, consistent precise heat.

2022年12月4日星期日

Brazing Carbide Tips To Steel With Induction

Brazing Carbide Tips To Steel With Induction Heater Objective: Braze a carbide tip to a 4140 steel cutting tool Material: Carbide Isograde C2 & C5 tips, 4140 circular steel cutter, flux and silver braze shim Temperature 1400 ºF (760 ºC) Frequency 250 kHz Equipment • DW-UHF-20 kW induction heating system, equipped with a remote workhead containing two 1.5μF capacitors for a total of 0.75μF • An induction heating coil designed and developed specifically for this application. Process A split helical coil is used to heat the carbide & circular steel cutter evenly for the brazing application. The circular steel cutter is placed in a vise and the carbide and braze shim are placed onto the tooth. The assembly is heated for 5 seconds to braze the carbide to the circular steel cutter. The circular steel cutter is rotated in the vise & each carbide tip is brazed separately without effecting the previous braze. Results/Benefits Induction heating provides: • Rapid, localized heat applied only to tip being brazed, will not effect previous brazes on the assembly • Neat and clean joints • Produces high quality repeatable parts

2022年12月3日星期六

Brazing Carbide Tips To Steel With Induction

Brazing Carbide Tips To Steel With Induction Heater Objective: Braze a carbide tip to a 4140 steel cutting tool Material: Carbide Isograde C2 & C5 tips, 4140 circular steel cutter, flux and silver braze shim Temperature 1400 ºF (760 ºC) Frequency 250 kHz Equipment • DW-UHF-20 kW induction heating system, equipped with a remote workhead containing two 1.5μF capacitors for a total of 0.75μF • An induction heating coil designed and developed specifically for this application. Process A split helical coil is used to heat the carbide & circular steel cutter evenly for the brazing application. The circular steel cutter is placed in a vise and the carbide and braze shim are placed onto the tooth. The assembly is heated for 5 seconds to braze the carbide to the circular steel cutter. The circular steel cutter is rotated in the vise & each carbide tip is brazed separately without effecting the previous braze. Results/Benefits Induction heating provides: • Rapid, localized heat applied only to tip being brazed, will not effect previous brazes on the assembly • Neat and clean joints • Produces high quality repeatable parts

2022年10月28日星期五

Brazing Carbide To Steel With Induction

Brazing Carbide To Steel With Induction  Objective: Braze carbide rotary file assemblies with uniform concentricity in an aerospace application Material : • Carbide blank • High speed steel shank • Temperature indicating paint • Braze shim and black flux Temperature 1400°F (760°C) Frequency 252 kHz Equipment DW-UHF-10kw induction heating system, equipped with a remote heat station containing two 0.33 μF capacitors (total 0.66 μF) An induction heating coil designed and developed specifically for this application. Process A multi-turn helical coil is used. The part is heated to determine the time required to reach the desired temperature and required heat pattern. It takes approximately 30 - 45 seconds to reach 1400°F (760°C) depending on the various part sizes. Flux is applied to the entire part. A braze shim is sandwiched between the steel shank and carbide. Induction heating power is applied until the braze flows. With proper fixturing, concentricity of the part can be achieved. Results/Benefits • Repeatable, consistent precise heat.

2022年9月14日星期三

Brazing Carbide To Steel Shank

Brazing Carbide To Steel Shank with Induction Objective :Brazing carbide teeth to a steel jaw in less than 5 minutes Material: Steel pipe jaw, 0.5” (12.7mm) dia, 1.25” (31.75mm) long, 0.25”(6.35mm) thick carbide teeth, black flux and silver copper braze shims Temperature: 1292ºF (700ºC) Frequency: 300kHz Equipment • DW-UHF-10kW induction heating system, equipped with a remote workhead containing one 0.66μF capacitor • An induction heating coil designed and developed specifically for this application. Process: A two turn rectangular helical coil is used to heat the carbide and steel to 1292ºF (700ºC) for 4 to 5 minutes. Three braze shims control the amount of braze and the even heat allows for a good flow of braze creating an aesthetically pleasing bond. Results/Benefits Induction heating provides: • Hands-free heating that involves no operator skill for manufacturing • Consistent, repeatable aesthetically pleasing brazes • Even distribution of heating

2022年6月27日星期一

Brazing Carbide Tips To Steel With Induction

Brazing Carbide Tips To Steel With Induction Heater Objective: Braze a carbide tip to a 4140 steel cutting tool Material: Carbide Isograde C2 & C5 tips, 4140 circular steel cutter, flux and silver braze shim Temperature 1400 ºF (760 ºC) Frequency 250 kHz Equipment • DW-UHF-20 kW induction heating system, equipped with a remote workhead containing two 1.5μF capacitors for a total of 0.75μF • An induction heating coil designed and developed specifically for this application. Process A split helical coil is used to heat the carbide & circular steel cutter evenly for the brazing application. The circular steel cutter is placed in a vise and the carbide and braze shim are placed onto the tooth. The assembly is heated for 5 seconds to braze the carbide to the circular steel cutter. The circular steel cutter is rotated in the vise & each carbide tip is brazed separately without effecting the previous braze. Results/Benefits Induction heating provides: • Rapid, localized heat applied only to tip being brazed, will not effect previous brazes on the assembly • Neat and clean joints • Produces high quality repeatable parts

2022年5月25日星期三

Brazing Carbide To Steel With Induction

Brazing Carbide To Steel With Induction  Objective: Braze carbide rotary file assemblies with uniform concentricity in an aerospace application Material : • Carbide blank • High speed steel shank • Temperature indicating paint • Braze shim and black flux Temperature 1400°F (760°C) Frequency 252 kHz Equipment DW-UHF-10kw induction heating system, equipped with a remote heat station containing two 0.33 μF capacitors (total 0.66 μF) An induction heating coil designed and developed specifically for this application. Process A multi-turn helical coil is used. The part is heated to determine the time required to reach the desired temperature and required heat pattern. It takes approximately 30 - 45 seconds to reach 1400°F (760°C) depending on the various part sizes. Flux is applied to the entire part. A braze shim is sandwiched between the steel shank and carbide. Induction heating power is applied until the braze flows. With proper fixturing, concentricity of the part can be achieved. Results/Benefits • Repeatable, consistent precise heat.

2022年4月10日星期日

Brazing Carbide Tips To Steel With Induction

Brazing Carbide Tips To Steel With Induction Heater Objective: Braze a carbide tip to a 4140 steel cutting tool Material: Carbide Isograde C2 & C5 tips, 4140 circular steel cutter, flux and silver braze shim Temperature 1400 ºF (760 ºC) Frequency 250 kHz Equipment • DW-UHF-20 kW induction heating system, equipped with a remote workhead containing two 1.5μF capacitors for a total of 0.75μF • An induction heating coil designed and developed specifically for this application. Process A split helical coil is used to heat the carbide & circular steel cutter evenly for the brazing application. The circular steel cutter is placed in a vise and the carbide and braze shim are placed onto the tooth. The assembly is heated for 5 seconds to braze the carbide to the circular steel cutter. The circular steel cutter is rotated in the vise & each carbide tip is brazed separately without effecting the previous braze. Results/Benefits Induction heating provides: • Rapid, localized heat applied only to tip being brazed, will not effect previous brazes on the assembly • Neat and clean joints • Produces high quality repeatable parts

2022年3月16日星期三

Brazing Carbide Tips To Steel With Induction

Brazing Carbide Tips To Steel With Induction Heater Objective: Braze a carbide tip to a 4140 steel cutting tool Material: Carbide Isograde C2 & C5 tips, 4140 circular steel cutter, flux and silver braze shim Temperature 1400 ºF (760 ºC) Frequency 250 kHz Equipment • DW-UHF-20 kW induction heating system, equipped with a remote workhead containing two 1.5μF capacitors for a total of 0.75μF • An induction heating coil designed and developed specifically for this application. Process A split helical coil is used to heat the carbide & circular steel cutter evenly for the brazing application. The circular steel cutter is placed in a vise and the carbide and braze shim are placed onto the tooth. The assembly is heated for 5 seconds to braze the carbide to the circular steel cutter. The circular steel cutter is rotated in the vise & each carbide tip is brazed separately without effecting the previous braze. Results/Benefits Induction heating provides: • Rapid, localized heat applied only to tip being brazed, will not effect previous brazes on the assembly • Neat and clean joints • Produces high quality repeatable parts

2022年2月6日星期日

Brazing Carbide To Steel With Induction

Brazing Carbide To Steel With Induction  Objective: Braze carbide rotary file assemblies with uniform concentricity in an aerospace application Material : • Carbide blank • High speed steel shank • Temperature indicating paint • Braze shim and black flux Temperature 1400°F (760°C) Frequency 252 kHz Equipment DW-UHF-10kw induction heating system, equipped with a remote heat station containing two 0.33 μF capacitors (total 0.66 μF) An induction heating coil designed and developed specifically for this application. Process A multi-turn helical coil is used. The part is heated to determine the time required to reach the desired temperature and required heat pattern. It takes approximately 30 - 45 seconds to reach 1400°F (760°C) depending on the various part sizes. Flux is applied to the entire part. A braze shim is sandwiched between the steel shank and carbide. Induction heating power is applied until the braze flows. With proper fixturing, concentricity of the part can be achieved. Results/Benefits • Repeatable, consistent precise heat.

2021年12月30日星期四

Brazing Carbide To Steel With Induction

Brazing Carbide To Steel With Induction  Objective: Braze carbide rotary file assemblies with uniform concentricity in an aerospace application Material : • Carbide blank • High speed steel shank • Temperature indicating paint • Braze shim and black flux Temperature 1400°F (760°C) Frequency 252 kHz Equipment DW-UHF-10kw induction heating system, equipped with a remote heat station containing two 0.33 μF capacitors (total 0.66 μF) An induction heating coil designed and developed specifically for this application. Process A multi-turn helical coil is used. The part is heated to determine the time required to reach the desired temperature and required heat pattern. It takes approximately 30 - 45 seconds to reach 1400°F (760°C) depending on the various part sizes. Flux is applied to the entire part. A braze shim is sandwiched between the steel shank and carbide. Induction heating power is applied until the braze flows. With proper fixturing, concentricity of the part can be achieved. Results/Benefits • Repeatable, consistent precise heat.

2021年12月10日星期五

Brazing Carbide To Steel Shank

Brazing Carbide To Steel Shank with Induction Objective :Brazing carbide teeth to a steel jaw in less than 5 minutes Material: Steel pipe jaw, 0.5” (12.7mm) dia, 1.25” (31.75mm) long, 0.25”(6.35mm) thick carbide teeth, black flux and silver copper braze shims Temperature: 1292ºF (700ºC) Frequency: 300kHz Equipment • DW-UHF-10kW induction heating system, equipped with a remote workhead containing one 0.66μF capacitor • An induction heating coil designed and developed specifically for this application. Process: A two turn rectangular helical coil is used to heat the carbide and steel to 1292ºF (700ºC) for 4 to 5 minutes. Three braze shims control the amount of braze and the even heat allows for a good flow of braze creating an aesthetically pleasing bond. Results/Benefits Induction heating provides: • Hands-free heating that involves no operator skill for manufacturing • Consistent, repeatable aesthetically pleasing brazes • Even distribution of heating

2021年11月6日星期六

Brazing Carbide To Steel With Induction

Brazing Carbide To Steel With Induction  Objective: Braze carbide rotary file assemblies with uniform concentricity in an aerospace application Material : • Carbide blank • High speed steel shank • Temperature indicating paint • Braze shim and black flux Temperature 1400°F (760°C) Frequency 252 kHz Equipment DW-UHF-10kw induction heating system, equipped with a remote heat station containing two 0.33 μF capacitors (total 0.66 μF) An induction heating coil designed and developed specifically for this application. Process A multi-turn helical coil is used. The part is heated to determine the time required to reach the desired temperature and required heat pattern. It takes approximately 30 - 45 seconds to reach 1400°F (760°C) depending on the various part sizes. Flux is applied to the entire part. A braze shim is sandwiched between the steel shank and carbide. Induction heating power is applied until the braze flows. With proper fixturing, concentricity of the part can be achieved. Results/Benefits • Repeatable, consistent precise heat.

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