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Furnace Product List and Ranking from 406 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Nov 05, 2025~Dec 02, 2025
This ranking is based on the number of page views on our site.

Furnace Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Nov 05, 2025~Dec 02, 2025
This ranking is based on the number of page views on our site.

  1. 関口鐵工所 本社 Nagano//Industrial Machinery
  2. アドバンテック東洋 Tokyo//Testing, Analysis and Measurement
  3. 日精 本社 Tokyo//Machine elements and parts
  4. 4 広築 サーマルGr Tokyo//Industrial Machinery
  5. 5 オガワ精機 Tokyo//Trading company/Wholesale

Furnace Product ranking

Last Updated: Aggregation Period:Nov 05, 2025~Dec 02, 2025
This ranking is based on the number of page views on our site.

  1. Small incinerator "Toku B type" *Contributes to reducing waste disposal costs! Complies with structural standards! 関口鐵工所 本社
  2. Stack-type heating furnace, curing furnace, drying furnace, inline heating furnace. 日精 本社
  3. Electric Muffle Furnace FUW Series アドバンテック東洋
  4. 4 Compatible with aluminum heat exchangers for air conditioners! Large batch aluminum brazing furnace. 進和 ジョイテックセンター
  5. 5 Electric Muffle Furnace FUL200 Series アドバンテック東洋

Furnace Product List

1561~1566 item / All 1566 items

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Seeking partners to assist with equipment sales.

The target is technical trading companies and equipment trading companies! We handle various electric furnaces from small to pilot scale.

We are seeking sales partners in response to the expanding demand for equipment in the advanced materials field (semiconductors, batteries, powder metallurgy, university research). Examples of equipment we handle include various electric furnaces ranging from small to pilot scale, as well as small chlorine furnaces (compatible with Cl2/HCl) for selective chlorination and high-purity process development. Interested companies are requested to provide their "company name/contact person/expertise/major transaction areas/location." 【Target】 ■ Technical trading companies ■ Equipment trading companies (those with networks in research institutions and material manufacturers) *For more details, please download the PDF or feel free to contact us.

  • Industrial Furnace

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Carbon furnace <suitable for basic reaction tests of carbonization>

SiC/TiC/ZrC at high temperatures and extremely low oxygen 'quickly and reproducibly.' Optimization of solid-phase carbides, composite carbides (with B4C), and carbon supply conditions in a short cycle.

We handle a compact "carbon furnace" that can be gradually replaced from vacuum to inert gas. It can be used for experiments and processes related to solid-phase carbonization (powder mixing method, coating method, carburizing) and composite carbonization (such as using B4C) for increasing hardness and optimizing carbon supply conditions (types, ratios, and contact states of carbon materials). Please feel free to contact us if you have any inquiries. 【Reasons to Choose Our Carbon Furnace (Partial)】 ■ Rapidly reaches high temperatures - Stable attainment and maintenance of 1600-2800°C** - Temperature guidelines effective for carbonization: SiC 1600–2000°C, TiC 1500–2100°C, ZrC 1800–2300°C ■ Suppresses side reactions at extremely low oxygen partial pressure - Vacuum → Replacement with Ar/N2 - Reduces residual oxygen through getter action of furnace carbon, suppressing CO generation *For more details, please feel free to contact us.

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Carbon furnace <suitable for basic reaction tests of nitriding>

Reproduced well with 'extremely low oxygen × high temperature × vacuum replacement.' Short cycle tests for N2-based solid-phase nitriding, surface nitriding, and layer growth.

The "carbon furnace" we handle is suitable for basic reaction tests of nitriding. Since the reaction initiation temperature is high with N2 alone, balancing grain growth and coarsening is difficult, and during cooling, surface reoxidation occurs, leading to variations in color, resistance, and hardness. Our product addresses these challenges. Additionally, we have a track record of manufacturing furnaces at mass production scales, not just small units. Please feel free to contact us when you need assistance. 【Reasons Why Our Carbon Furnace is Effective】 ■ Creates an extremely low oxygen partial pressure - Gradually lowers the oxygen potential through vacuum pumping and N2 replacement - The carbon in the furnace material absorbs residual O2, suppressing oxidation side reactions ■ Quickly reaches sufficient high-temperature ranges - Achieves and maintains temperatures from 1400 to 2400°C in a short time ■ Short cycle for condition setting - Allows simultaneous evaluation of multiple samples with tray flexibility/shelf configuration, making it easier to verify the effects of thickness and contact *For more details, please feel free to contact us.

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Compact chlorine Furnace: Unlocking New Possibilities for Urban Mine Recycling through Dry Chlorination

We are theoretically examining a new approach to selectively volatilize and recover specific metals from systems containing multiple metals through precise control of "temperature × pressure × chlorination reaction."

The "chlorine furnace" we handle has a structure that allows for independent control of temperature and chlorine partial pressure under reduced pressure. Urban mines have a complex coexistence of metals such as Au, Cu, Sn, Fe, and Ni. If these can be separated using a dry chlorination volatilization method, it would be possible to implement a new recycling method that efficiently recovers valuable metals while reducing the burden of wastewater treatment. Additionally, due to the characteristics of this device, which allows for precise control of temperature, pressure, and chlorine partial pressure, we believe it could potentially develop into "selective recovery of valuable metals from urban mines" in the future. 【Features】 ■ Volatilization of base metals at low temperatures: Selective volatilization of FeCl3, SnCl4, etc., around 200-300°C ■ Control of noble metal salt generation at medium temperatures: Separation of noble metals using stable regions such as AuCl3 ■ Reaction sequence switching through pressure control: Control of the generation and decomposition equilibrium of chlorides under reduced pressure conditions *For more details, please feel free to contact us.

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Compact chlorine furnace <New experimental platform for high-temperature corrosion evaluation>

Utilizing the high corrosion-resistant structure and precise atmosphere control of small chlorine furnaces, applications for research on corrosion mechanisms of metals, alloys, and ceramics.

Our company offers a "Chlorine Furnace" that can reproduce corrosion behavior in chlorine and hydrogen chloride atmospheres. This experimental furnace can safely replicate high-temperature and corrosive environments. It is theoretically expected to be applied in fundamental research on high-temperature corrosion mechanisms caused by chlorine gas, durability evaluations of chlorine-resistant materials (high alloys, coatings, ceramics), and testing platforms for corrosion prevention coatings. We also have test equipment available. 【Features】 ■ Compatible with corrosive gases such as chlorine and hydrogen chloride ■ Simultaneous control of reduced pressure and temperature ■ High-purity atmosphere due to dry structure ■ Reduced risk of process gas leakage due to constant reduced pressure atmosphere *For more details, please feel free to contact us.

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Multi-atmosphere furnace <Firing with toxic gas generation, safety × reproducibility>

We design the entire process from vacuum replacement to atmosphere control, heating, and exhaust gas detoxification (scrubber/catalytic oxidation/thermal oxidation) in a seamless manner.

We handle "multi-atmosphere furnaces" that address generated gases such as NH3 and CO. Designed for a seamless process from vacuum replacement → atmosphere control → heating → exhaust gas harmlessness (scrubber/catalytic oxidation/thermal oxidation). In addition to small units, we also have a track record of producing furnaces for mass production scales. [Reasons why our carbon furnace is effective for graphitization] ■ Addresses generated gases such as NH3 and CO: Designed with materials, piping temperature control, and instrumentation tailored to gas characteristics. ■ Built-in vacuum system: Allows for vacuum replacement before and after processing → designated gas replacement, reducing the risk of residual gas when the furnace is opened. ■ Rectangular design × stacked shelves: High flexibility in tray design, enabling rapid extraction of optimal conditions for scale-up through parallel DOE of multiple samples under the same conditions. *For more details, please feel free to contact us.

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