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Furnace Product List and Ranking from 407 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Dec 17, 2025~Jan 13, 2026
This ranking is based on the number of page views on our site.

Furnace Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Dec 17, 2025~Jan 13, 2026
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. 正英製作所 本社、東京支店、名古屋営業所、大阪支店、広島支店、九州支店 Nara//Industrial Machinery
  4. 4 フルテック Osaka//Electronic Components and Semiconductors
  5. 5 DOWAサーモテック Aichi//Ferrous/Non-ferrous metals

Furnace Product ranking

Last Updated: Aggregation Period:Dec 17, 2025~Jan 13, 2026
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. Information on Used Incinerators 関口鐵工所 本社
  3. Vacuum Thermal Decomposition Resin Cleaning Furnace 'VACUCLEAN' 双日マシナリー 環境・生活産業システム本部
  4. 4 Electric Muffle Furnace FUL200 Series アドバンテック東洋
  5. 4 Electric Muffle Furnace FUW Series アドバンテック東洋

Furnace Product List

1381~1395 item / All 1474 items

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[Technical Column] Explanation of Types and Components of Heating Furnaces and Heating Methods

We will provide a detailed explanation of the structure, features, and types of heating furnaces, which are important production equipment for realizing heat treatment technology!

The heating furnace is used in various industries and is a device for performing "heat treatment" to bring out the properties of metals such as iron and steel. By applying heat treatment, metals can change their hardness and toughness, allowing them to possess properties suitable for their intended applications. Typical heat treatments include "quenching," "tempering," "annealing," and "normalizing." Not limited to the automotive industry, it has become essential for the development of Japan's core industries, such as the machinery industry, and has supported the quality of Japanese manufacturing. This article will provide a detailed explanation of the structure, characteristics, and types of heating furnaces, which are important production equipment for realizing such heat treatment technology. *For more detailed information, please refer to the related links. Feel free to contact us for further inquiries.

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Batch-type vacuum degreasing furnace

We will manufacture a custom-made furnace with high airtightness according to the specifications.

In batch type, it is possible to quickly cool the processed material during the cooling phase after vacuum heating by introducing atmosphere gas into the furnace and using a heat exchanger. 【Specifications】 ● Temperature: 100–600℃ ● Atmosphere: Vacuum / Nitrogen ● Application: Degreasing ● Processed Material: Iron-based powder molded products ● Processing Capacity: 910Kg/ch ● Electric Power: 195kW 【Examples of Products】 Common products made in a vacuum furnace ■ Steering gears ■ Chain components ■ Bicycle transmission gears ■ Tools ■ Bearings 【Other Main Vacuum Furnaces】 ■ Vacuum bright annealing furnace ■ Vacuum nitriding furnace ■ Vacuum carburizing furnace ■ Vacuum tempering furnace ■ Vacuum brazing furnace If you have any new challenges or inquiries regarding energy conservation, automation, environmental considerations, or safety, please feel free to contact us. *For more details, please refer to the PDF document or feel free to reach out to us.

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Bell-type nitriding furnace

It is possible to switch the atmosphere gas in the furnace depending on the properties of the material and the purpose of heat treatment.

Since the treatment is conducted at a lower temperature compared to conventional quenching, it is less likely to cause distortion in the steel material, allowing for the maintenance of dimensional accuracy. 【Specifications】 ● Temperature: 400–650℃ ● Atmosphere: Nitrogen / Ammonia gas / Nitrogen trifluoride ● Application: Nitriding ● Treated material: Stainless steel ● Treatment capacity: 1000Kg/ch ● Electrical capacity: 140kW 【Product Examples】Common products made in an atmosphere furnace ■ Engine parts ■ Display tube glass ■ Precision tubes for electrical testing equipment ■ Frying pans ■ CPU heat pipes 【Other Implementation Examples】 ■ Want to anneal aluminum without oxidation → 'Roller hearth softening furnace' ■ Want to carburize materials → 'Batch-type atmosphere gas carburizing furnace' If you have any new challenges or inquiries regarding energy conservation, automation, environmental considerations, or safety, please feel free to reach out. *For more details, please refer to the PDF materials or feel free to contact us.

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Pit-type drip infusion carbonization furnace

It is a multipurpose furnace that can be used as a hardening furnace or tempering furnace depending on the application.

In addition to generating carburizing gas from methanol in the furnace for heat treatment, it can also be used as a quenching furnace and tempering furnace by changing the atmosphere gas. 【Specifications】 ● Temperature: 450–950℃ ● Atmosphere: Nitrogen / Methanol decomposition gas ● Application: Carburizing ● Processed material: Iron ● Processing capacity: 3000 Kg/ch ● Electrical capacity: 240 kW 【Examples of Products】 Common products made in an atmosphere furnace ■ Engine parts ■ Drivetrain parts ■ Brake parts ■ Magnetic materials ■ Precision tubes for electrical inspection equipment ■ CPU heat pipes 【Other Installation Examples】 ■ Want to nitrify powder → 'Retort rotary nitriding furnace' ■ Want to anneal aluminum without oxidation → 'Roller hearth softening furnace' If you have any new challenges or inquiries regarding energy conservation, automation, environmental considerations, or safety, please feel free to contact us. *For more details, please refer to the PDF materials or feel free to reach out to us.

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[Research Material] Global Market for Dehumidifiers

World Market for Dehumidifiers: Household Dehumidifiers, Industrial Dehumidifiers, Residential, Commercial, Others

This research report (Global Dehumidifiers Market) investigates and analyzes the current state and outlook for the global dehumidifier market over the next five years. It includes information on the overview of the global dehumidifier market, trends of major companies (sales, selling prices, market share), market size by segment, market size by major regions, and distribution channel analysis. The market segments by type include residential dehumidifiers and industrial dehumidifiers, while the segments by application focus on residential, commercial, and others. The regional segments calculate the market size of dehumidifiers by dividing it into North America, the United States, Europe, Asia-Pacific, Japan, China, India, South Korea, Southeast Asia, South America, the Middle East, and Africa. It also includes the market share of major companies in the dehumidifier sector, product and business overviews, and sales performance.

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[Research Material] Global Market for Rapid High-Temperature Heat Treatment Furnaces

World Market for Rapid High-Temperature Treatment Furnaces: Lamp Type, Laser Type, Industrial Production, Research and Development

This research report (Global Rapid Thermal Processing Furnace Market) investigates and analyzes the current status and outlook for the global market of rapid thermal processing furnaces over the next five years. It includes information on the overview of the global rapid thermal processing furnace market, trends of major companies (sales, selling prices, market share), market size by segment, market size by major regions, and distribution channel analysis. The segments by type in the rapid thermal processing furnace market focus on lamp-type and laser-type, while the segments by application target industrial production and research and development. The regional segments are categorized into North America, the United States, Europe, Asia-Pacific, Japan, China, India, South Korea, Southeast Asia, South America, the Middle East, and Africa, to calculate the market size of rapid thermal processing furnaces. It also includes the market share of major companies in the rapid thermal processing furnace market, product and business overviews, and sales performance.

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Compact chlorine furnace <Removal of metal impurities from ceramics powder by dry chlorination>

Selectively volatilize Fe/Ni/Cr mixed in ceramic powder through chloride volatilization!

The "compact chlorine furnace" is a product that maintains phase and particle size through negative pressure operation and oxygen partial pressure control, while minimizing waste liquid without the need for cleaning. By using Cl2/HCl for selective chlorination, it removes metal impurities that were mixed in during the production of ceramic powders (SiO2/Al2O3/Si3N4) in a dry manner. Additionally, it reduces impurities in a short time while maintaining the composition, crystal phase, and particle size distribution of the mother phase through chlorine volatilization. This allows for the elimination of the washing process, thereby reducing re-drying and waste liquid treatment costs. 【Features】 ■ Selective chlorination × temperature staging: Prioritizes the volatilization of metal chlorides while maintaining the base material phase. ■ Dry process: Minimizes the burden of waste liquid and re-drying without the need for washing. ■ Physical property retention design: Maintains crystal phase, particle size, and specific surface area through control of oxygen partial pressure and residence time. *For more details, please download the PDF or feel free to contact us.

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Compact Chlorine Furnace "Series Part 3": The Concept of "Safety" in Chlorine Furnaces

The essence of "managing risks" lies in design philosophy and operational design! Incorporating a sense of security into operations through design.

In the previous session, we introduced the principle of removing metal impurities by converting them into chlorides using a chlorine furnace (chloride volatilization). Today, we will address a common concern: "Isn't it dangerous to flow corrosive and toxic gases like Cl2 and HCl at high temperatures?" Tubular furnaces are readily available and versatile, making them suitable for the new synthesis of small sample sizes. However, there are undeniable "common issues" such as "a small effective heating area, which tends to limit scalability" and "the risk of small cracks in the tubes due to long-term use or thermal shock, increasing the risk of leakage during positive pressure operation." The equation "high temperature × corrosive gas = danger" is intuitively correct. That is why the essence lies in "managing danger" through design philosophy and operational design. The compact chlorine furnace from Thermonik ENG is built with this concept in mind. Design philosophy for safety: 1) Based on negative pressure (reduced pressure) operation, the furnace is equipped with a vacuum system that maintains the internal pressure consistently lower than atmospheric pressure. This suppresses any potential blowout in the event of seal degradation, thereby reducing the risk of Cl2/HCl leakage. *For more details, please download the PDF or feel free to contact us.

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Why low oxygen and ultra-high temperature can be achieved.

Suppressing micro leaks through years of seal design, processing precision, and assembly procedures! Maintaining low O2 even during long operation!

We will introduce why our small carbon furnace can achieve low oxygen and ultra-high temperatures. The carbon furnace material reacts with residual oxygen, featuring a design and manufacturing know-how that ensures it does not "leak." It removes air from inside the powder using a vacuum pump and replacement method. With a high emissivity graphite heater, a uniform heating hot zone, and high insulation, it efficiently heats while avoiding local overheating, making it possible to stably reach temperatures up to 3000°C. **Features of the Small Carbon Furnace** - Capable of heating up to 3000°C: Achieves ultra-high temperatures in a short time with the radiant heat of the graphite heater. - Easy to sinter in low oxygen: The carbon inside the furnace reacts with residual O2. - Air inside the powder is also replaced: Reduces O2 between particles through repeated cycles of vacuum and inert gas. - Suppresses temperature variations: Reduces differences in the center, edges, and thickness direction with a "uniform heating zone" that warms evenly. *For more details, please download the PDF or feel free to contact us.*

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Metal furnace <Thoroughly eliminate oxygen, carbon, and moisture>

Towards true high-purity oxide and nitride materials. Free control from vacuum to reducing atmosphere, achieving degassing, decarbonization, and high-purification processes all in one machine.

The "metal furnace" we handle achieves stable reproduction of degassing behavior through high-precision temperature control (up to 1800°C) and automatic exhaust control. It addresses challenges such as the inability to efficiently remove adsorbed water, CO2, and residual organic substances generated from within the sample during high-temperature processing, as well as the lack of lab-scale equipment that can reliably implement high-purity processes. Despite its compact size, it features a structure that allows for scaling up to larger furnaces. 【Features】 - Eliminates contamination from carbon sources due to its metal heater and metal chamber structure. - Supports high vacuum operation (10^-3 to 10^-5 Pa) and switching to a reducing atmosphere (H₂/Ar/N₂). - Achieves stable reproduction of degassing behavior through high-precision temperature control (up to 1800°C) and automatic exhaust control. - Optimized heat profile for high purification of oxides and nitrides, and reduction of residual C and O. - Compact yet designed for scalability to larger furnaces (manufactured by Thermonik ENG). *For more details, please feel free to contact us.

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Metal furnace <Ceramics-metal airtight bonding in a "high purity atmosphere">

Strongly sealing in a clean atmosphere while controlling the thermal expansion difference between ceramics and metals.

Our company handles the "Metal Furnace" for all-metal hot zones. In joining (sealing, brazing, diffusion bonding), trace amounts of O2/H2O/hydrocarbons are directly related to wettability, interfacial reactions, and airtightness. The metal furnace operates in a vacuum of 10^-5 Pa level with (Mo/W) hot zones, eliminating sources of contamination from carbon and organic materials. It can be applied to high-purity annealing/sealing of thin films, electrodes, and optical components. 【Features】 ■ Compatible with high vacuum (10^-5 Pa level) to reducing atmosphere operation ■ Maintains a clean atmosphere with a metal furnace structure (Mo/W) ■ Temperature uniformity within ±1°C and long-term stable control ■ Easy combination with metal jigs and load pressurization mechanisms ■ Supports miniaturization of samples and localized heating tests *For more details, please feel free to contact us.

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Metal furnace <Carbon-free "metal atmosphere">

Observe the original reactions of the materials as they are! In a chamber that does not use any graphite components, suppressing side reactions and contamination from carbon sources.

The "metal furnace" we handle aims to evaluate the surface reactions and phase changes of the materials themselves; however, challenges such as outgassing from graphite components and organic materials can disrupt the system. Processes that are sensitive to chemical atmospheres, such as halogen, nitriding, and reduction, have higher reproducibility when carbon-free. Therefore, a metal furnace, where the inner walls, heaters, and fixtures are all made of metal, is effective. We also have test units available. In addition to small-scale machines, we have experience in manufacturing furnaces for mass production scales. 【Features】 ■ Carbon-free - All-metal (Mo/W) hot zone/metal chamber, with no use of graphite or organic materials, suppressing side reactions derived from carbon. ■ Clean atmosphere switching - Smooth transition from vacuum to Ar/N2, with low blanking after replacement. ■ Reproducibility of reactions - Reproducing the same conditions in a small chamber with short cycles. *For more details, please feel free to contact us.

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Carbon furnace <reducing oxygen to the limit, heat treatment at around 3000°C>

Achieving extremely low oxygen partial pressure through getter treatment and vacuum replacement of furnace material carbon, suitable for processing in ultra-high temperature ranges.

The "carbon furnace" we handle solves challenges such as the time-consuming condition setting and the difficulty of reproducing short cycles. By evacuating the air inside the sample in advance, we shorten the replacement time. Additionally, we can arrange square trays in parallel with flexible tray configurations, allowing for the evaluation of thickness variation effects. We also have test machines available. Please feel free to contact us if you need assistance. 【Reasons Why Our Carbon Furnace is Effective (Partially)】 ■ Sintering at Extremely Low Oxygen Partial Pressure - Gradual replacement from vacuum to Ar/N2 - Reduction of residual O2/oxidizing species through the gettering effect of carbon materials ■ Ultra-High Temperature Process - Long-term stable operation at normal use temperatures up to 2800°C, with a maximum of 3000°C - Precise control of grain growth and rearrangement through gradual heating and holding in the 1200-2600°C range *For more details, please feel free to contact us.

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Carbon furnace <Excellent reproduction with ultra-low oxygen × 3000°C class × vacuum replacement>

From preprocessing to final firing in one machine. Suitable for research and small-scale production temperature recipes.

Our "Carbon Furnace" allows for the precise reproduction of high-temperature phase transitions, crystallization, and sintering under conditions of "ultra-low oxygen × 3000℃ class × vacuum replacement." It can be used in processes such as promoting phase transitions and recrystallization, controlling grain growth (phase stabilization at high temperatures), densification sintering of ceramics and difficult-to-sinter materials, and energy control of surfaces and interfaces (surface stabilization under low oxygen conditions). It is suitable for developing temperature recipes from research to small-scale production. 【Reasons Why Our Carbon Furnace is Effective (Partial)】 ■ Creates ultra-low oxygen partial pressure - Vacuum pumping → Ar/N2 replacement (dilute H2 if necessary*) to gradually lower the oxygen potential * H2 is operated within the safety design range of the equipment (e.g., below 4%) - The carbon material in the furnace absorbs residual O2 through getter action, suppressing side reactions. ■ High-temperature stability at 3000℃ - Regular use up to 2800℃ / maximum up to 3000℃, with gradual heating and holding for precise control of phase transitions, crystallization, and sintering. *For more details, please feel free to contact us.

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Compact chlorine furnace <Safe treatment of chlorine and hydrogen chloride>

Achieved safe operation of chlorine and hydrogen chloride, which was difficult with conventional furnaces. Designed for high corrosion resistance to handle corrosive gases, enabling reproducible dry operation.

We handle a "small chlorine furnace" for research and development purposes. This device was developed to address issues such as the "high risk of gas leakage and poor safety" of tubular furnaces, and their unsuitability for sample scale-up and continuous testing. The equipment is a sealed structure furnace that can safely and controllably supply chlorine and hydrogen chloride, allowing for high reproducibility in dry processing using corrosive gases while ensuring sufficient sample amounts. 【Features】 ■ High corrosion-resistant materials: Achieved through Thermonic's unique technology for high corrosion resistance. ■ Easy scrubber connection: Simple connection with liquid absorption and two-stage neutralization towers. ■ Corrosive gas monitoring compatible: Can operate in conjunction with leakage detection sensors. ■ Scale adaptability: Capable of processing samples from several grams to several hundred grams. ■ Always operates under negative pressure: By operating at a pressure lower than atmospheric pressure, the risk of process gas leakage is reduced. *For more details, please feel free to contact us.

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