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Heating device Product List and Ranking from 142 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Oct 15, 2025~Nov 11, 2025
This ranking is based on the number of page views on our site.

Heating device Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Oct 15, 2025~Nov 11, 2025
This ranking is based on the number of page views on our site.

  1. TAMAGAWA ENGINEERING CO., LTD. Fukushima//Industrial Machinery
  2. 中部電力ミライズ /開発一体型ソリューション Aichi//Energy
  3. 山本ビニター Osaka//Industrial Machinery
  4. 4 トクデン Kyoto//Industrial Electrical Equipment
  5. 5 富士電子工業 Osaka//Industrial Machinery

Heating device Product ranking

Last Updated: Aggregation Period:Oct 15, 2025~Nov 11, 2025
This ranking is based on the number of page views on our site.

  1. Tabletop high-frequency induction heating device "HEATCUBE" *Consultation for melting tests available TAMAGAWA ENGINEERING CO., LTD.
  2. Conversion from gas heating is also possible! High-efficiency, high-output electric infrared heating device. 中部電力ミライズ /開発一体型ソリューション
  3. Small high-frequency induction heating device 450kHz/900kHz/1.8MHz エス・エー・ジャパン
  4. 4 Martensite and residual austenite 富士電子工業
  5. 4 Induction Heating Jacket Roll トクデン

Heating device Product List

241~255 item / All 425 items

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[Induction Heating Application Cases by Industry] Bolt (Screw) Manufacturing

Introducing examples of high-frequency induction heating applications in screw manufacturing for efficient and precise necessary heating.

Here are some examples of the application of induction heating in the manufacturing of fasteners (bolts, screws, rivets, etc.). In the production of industrial fasteners, processes such as heading and threading often utilize heated forming. Traditionally, heating was done using gas furnaces or flames, which were inefficient in terms of time and energy, and there was variability in precision due to the skill level of the operators. By using induction heating equipment, the necessary heating can be provided efficiently, accurately, and with maximum reproducibility. *For more details, please download the PDF or feel free to contact us.*

  • application_industry_fastener_2.jpg
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Induction Heating Application Cases by Industry: Aluminum Processing

High reproducibility! Introducing examples of high-frequency induction heating applied to aluminum brazing.

We will introduce examples of the application of induction heating in aluminum brazing. Aluminum is a lightweight and strong material, used in various parts such as piping components and automotive parts. However, due to its high thermal conductivity and low melting point, it has been said that thermal processing is difficult. ■ High thermal conductivity The thermal conductivity is about three times that of iron. When heating only the desired area, heat can also transfer to other areas, causing distortion. ■ Low melting point The melting point of aluminum is 660°C. In brazing, the melting points of commonly used silver brazing and copper brazing are close to this, requiring advanced skills from experienced workers for aluminum brazing. By using induction heating, which excels in temperature control, and brazing materials specifically designed for aluminum brazing, efficient aluminum brazing becomes possible. *For more details, please download the PDF or feel free to contact us.*

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【Induction Heating Application Cases by Industry】Nanotechnology

IH in the world of nanotechnology

Induction heating is also utilized for thermal treatment that raises and manages the temperature of nanoparticle solutions in vivo and in vitro. High-frequency induction heating devices that use induction heating power supplies offer adjustable output levels from 1kW to 10kW and configurable frequencies from 150kHz to 400kHz, according to the power and frequency needs required for research. The core magnetic field strength can reach up to 125kA/m. 【Nanotechnology Kit】 The induction heating nanotechnology kit includes the following: ■ Induction heating power supply EASYHEAT: 1kW–10kW, frequency 150kHz–400kHz ■ Three coils designed for thermal therapy: inner diameters: 1", 2.5", 4" ■ Optical fiber temperature sensor (with optional controller) ■ Serial data link cable for PC connection ■ Starter kit: plastic and glass vials, insulating paper *For more details, please download the PDF or feel free to contact us.

  • application_industry_nanotechnology_2.jpg
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【Induction Heating Application Cases by Industry】Science and Research

Supporting research with high reproducibility and contributing to the fields of science and research through innovative methods.

Induction heating, which provides precise and reproducible heat to very small areas, helps researchers advance their studies, from cancer research to material testing for improving manufacturing methods. *For more details, please download the PDF or feel free to contact us.*

  • application_industry_science_2.jpg
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【Induction Heating Application Cases by Industry】Fiber Optics

Introduction of examples of high-frequency induction heating applications in the optical fiber cable manufacturing process.

We would like to introduce examples of the application of induction heating in the manufacturing of optical fiber cables. Fast heating times and temperatures below 260°C (500°F) are desired for soldering heat-sensitive optical fibers. However, it is difficult to achieve this with commonly used heating methods such as resistance heating and hot air, making automation for high-speed production not easy. *For more details, please download the PDF or feel free to contact us.*

  • application_industry_fiberoptic_2.jpg
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Applications of Induction Heating: Brazing

Ideal for various applications in the manufacturing industry.

Brazing (also known as brazing) is a heating process that connects two metals of the same or different types using a separate low-melting-point alloy. The brazed parts are extremely strong and can be more durable than the two connected metals. Additionally, they provide high airtightness against liquids and gases and can withstand shocks and vibrations. **Advantages of Induction Heating (IH) Utilization** - **Conventional Brazing Process: Torch** Torch brazing requires skilled operators. - **Conventional Brazing Process: Furnace** It consumes energy and space for preheating, necessitating alternative methods. ➡ Brazing with IH eliminates the need for skilled operators, reduces energy costs, and allows for a lean production process for higher quality parts while minimizing equipment footprint. - **Throughput:** IH generates heat only in the necessary parts of the workpiece. - **Reproducibility:** Once the coil and heating process are determined, accurate reproducibility can be expected. - **Easy Integration:** Integration into the production process. - **Safety:** No need for open flames or high-temperature furnaces. *For more details, please download the PDF or feel free to contact us.*

  • application_use_brazing_2.jpg
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Examples of applications for induction heating: Brazing in an inert gas.

The cleaning process is unnecessary.

Brazing in a controlled vacuum or inert gas significantly improves quality and eliminates the need for costly cleaning processes. Heating with a flame in normal atmospheric air containing oxygen can cause oxidation, scaling, and carbon buildup on the workpiece. To clean these, it is necessary to use flux or expensive acid cleaning baths. Brazing in inert gas is utilized for materials such as nickel, titanium, superalloys, stainless steel, and refractory materials. *For more details, please download the PDF or feel free to contact us.*

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Applications of Induction Heating: Annealing

Precise and easy control

Annealing is a heat treatment process that involves heating a material to a high temperature for an extended period and then gradually cooling it. The ultimate goal of this process is to soften the metal and improve its ductility. Annealing is particularly used as a process to achieve the softness of materials. Annealing for process and stress relief is used to negate the effects of cooling. In other words, the aim is to soften the metal and increase the ductility of work-hardened materials. Internal stresses are caused by plastic deformation processes, such as uneven cooling during machining, cutting, welding, or casting, or by phase transformations. Warping and distortion occur when internal stresses are not relieved. Annealing removes these stresses when the affected areas are heated to the recommended temperature and held for a sufficient amount of time, followed by slow cooling to room temperature. 【Common Issues】 During heating and cooling, there exists a temperature gradient between the outer and inner parts of the metal. If the temperature change is too great, this temperature gradient can cause internal warping or, in the worst case, cracking. *For more details, please download the PDF or feel free to contact us.*

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Induction heating application examples by use: Adhesion

Non-contact and precise temperature control.

The bonding here is a process of joining metals or metal-containing materials to plastics, rubber, or thermoplastic resins without the use of adhesives. Precise thermal control is required until the temperature at which the bond is formed (generally between 150°C and 220°C) is reached. Induction heating bonding is used in various industries. ■ Aerospace Bonding of carbon fiber/composite materials ■ Automotive Bonding of body parts such as electric motor magnets, fenders, rearview mirrors, and various joints ■ Medical Joining of metal and plastic in dental tools ■ Optical Bonding of glass and metal *For more details, please download the PDF or feel free to contact us.

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Applications of Induction Heating: Joining of Metals and Glass

In the formation of airtightness

Joining metal and glass requires heating the metal and melting the glass to form a seal between the two materials. This process is used to create airtight seals in the manufacturing of light bulbs and laser tubes. Due to the differing coefficients of thermal expansion between glass and metal, caution is necessary during cooling and subsequent manufacturing processes. Sometimes, polymer-based adhesives are used to form the seal. *For more details, please download the PDF or feel free to contact us.*

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【Application Examples of Induction Heating】Tip Processing of Catheters / Welding of Injection Needles

Pinpoint accuracy

Induction heating (IH), which heats small areas non-contact and with pinpoint accuracy, is suitable for the precision processing of catheter tips and the welding of injection needles. 【Processing of Catheter Tips】 By forming a rounded tip on the catheter tube, it enables insertion into the human body (minimally invasive surgical treatment) while minimizing tissue damage. The mold for tip processing is made of small stainless steel. By heating the mold, the inserted polyvinyl tube is melted, poured into the mold, and shaped. Precise temperature control is essential to maintain consistent heating and pouring into the mold. An infrared radiation thermometer is used to measure the temperature of the mold, and the signal is fed back to the induction heating power supply to control the heating. 【Welding of SUS Injection Needles to Needle Hubs】 It has been said that heating extremely small objects like injection needles is a weak area for induction heating, but Alonix has overcome this challenge by using a high-frequency amplifier. By applying high frequencies in the MHz range, the injection needle (SUS pipe) is instantaneously heated and welded to the needle hub. *For more details, please download the PDF or feel free to contact us.

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[Information] Unlocking the Potential of New Industries: Microwaves

Reduction of energy costs and improvement of product quality! Information on microwave heating and more.

This document provides an explanation of "microwaves," a type of electromagnetic wave. Considering the environment and achieving significant cost reductions, microwave heating is the industrial standard of the 21st century. We introduce the effects of microwave heating, its applications, basic properties, and the heating mechanisms caused by microwave irradiation. We encourage you to read it. 【Contents (partial)】 ■ What are microwaves ■ Effects of microwave heating ■ Applications of microwave heating ■ Promising fields for microwave heating applications ■ Comparison of electromagnetic waves *For more details, please refer to the PDF document or feel free to contact us.

  • High frequency/microwave parts

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Preheater High-Frequency Induction Heating Device PH100 Model [Proton Corporation]

It is compatible with ultra-fine wires from φ0.25mm (0.05mm²) to φ1.5mm (1.38mm²). It is ideal for preheating ultra-fine wires.

Proton's preheater is a device that performs preheating before the cable extrusion process! 【Features】 - With a pulley outer diameter of φ100mm, we have achieved preheating of φ0.25mm (0.05mm²) by minimizing heat loss with a copper alloy pulley! - It follows the line speed, maintaining a constant preheating temperature. - We also have demo units available, so please feel free to contact us.

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Small High-Frequency Induction Heating Device "MU-α Series"

A compact heating package equipped with high functionality, evolved to the next step.

Next-generation compact heating package equipped with advanced features for further evolution. We propose an efficient heating environment. 【Features】 ○ Compact and lightweight ○ Energy-efficient ○ Expandable ○ Versatile control (output and temperature control, manual and program control) ○ Visibility and operability (large color touch panel adopted) ○ Application examples: alloy production, heat treatment, mold preheating, thermal shock, casting, bonding and joining, thermal cycle testing, etc. ○ Total support for integration into production equipment and interaction with peripheral devices (PLC compatible), vacuum and gas replacement chambers, etc. For more details, please contact us or download the catalog.

  • Heating device

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Challenges and mechanisms of induction heating: Technical staff are currently accepting web consultations and sample verifications.

An experienced technical staff member will assist you! Do you have any requests such as "I would like to discuss heating applications and challenges"?

Our company offers WEB consultations and sample testing regarding the challenges and mechanisms of induction heating, handled by our technical staff. Do you have any requests such as wanting to know about the features and functions of induction heating, discussing heating applications and challenges, or seeking advice on miniaturization and efficiency of equipment? Please feel free to consult us online. Our experienced technical staff will assist you. 【Do you have any of the following requests?】 ■ Want to know about the features and functions of induction heating ■ Want to discuss heating applications and challenges ■ Want to consult about miniaturization and efficiency of equipment ■ Want to try with actual samples *For more details, please refer to the PDF document or feel free to contact us.

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