Laboratory Furnaces

Ensure consistent outcomes with a furnace you can rely on to achieve your daily objectives. Facerom Lab Box Furnaces and Lab Tube Furnaces are available in various configurations to support both routine and specialized tasks, offering temperature capacities up to 1200°C, adaptable temperature control tailored to your application, and heating elements—either embedded or exposed—engineered to protect samples while providing dependable temperature uniformity.

Lab Tube Furnaces

Lab Tube Furnaces

Facerom Furnaces offers an extensive selection of standard tube furnaces designed for laboratory applications. Our tube furnace is constructed from durable, low-maintenance stainless steel. The double-walled design keeps the exterior cool during high-temperature operation, while the internal insulation fibers ensure thermal stability. Facerom’s split tube furnace model is engineered to accommodate mechanical testing equipment and can be custom configured to meet your specific requirements. By maintaining an inventory of standard models for faster delivery, Facerom Furnaces enhances customer satisfaction.

Tube and multi-zone furnaces are standard types of furnaces currently in production.

Please refer to the technical brochures and reach out to us for additional details and any questions you may have.

Lab Muffle Furnaces

Lab Muffle Furnaces

Facerom Lab Muffle Furnaces are engineered for high-temperature laboratory tasks demanding accuracy and durability. They provide consistent heating with minimal temperature variation. Built with high-quality insulation and sturdy steel castings, these units are designed for continuous, long-lasting use. Featuring programmable controls, digital readouts, and intuitive interfaces, these furnaces are well-suited for annealing, ashing, heat treatment, and other applications in both research and industrial laboratories.

Our high-precision lab muffle furnaces feature fiber-insulated chambers, carefully engineered by experienced professionals and constructed from premium materials. Critical elements such as robust metal components and thermal insulation are produced in-house to guarantee exceptional quality. These lab muffle furnaces are fitted with accurate digital controllers and certified heating elements, ensuring superior temperature stability. Featuring ceramic hearth plates, they are well-suited for scientific laboratories, educational settings, medical facilities, and industrial uses. Designed for processes like hardening, annealing, and normalizing, they can attain temperatures of up to 1100°C or 1300°C.

Lab Chamber Furnaces

Lab Chamber Furnaces

Facerom offers a wide selection of laboratory chamber furnaces crafted to precise specifications, guaranteeing both longevity and user satisfaction. Depending on your requirements, you can choose from front, top, or bottom loading options. Facerom will recommend the ideal furnace solution tailored to your application and budget.

For more than a decade, our commitment to quality and dependability has driven company expansion and global acclaim. Numerous organizations continue to operate Facerom chamber furnaces in their labs and production facilities after 20 to 30 years of continuous service.

Facerom's extensive Ashing Furnace lineup delivers ideal conditions for thorough sample combustion. Within this AAF Ashing series, an advanced model, along with one from the general-purpose laboratory chamber furnace range, features built-in balances designed for thermogravimetric analysis (TGA) and loss on ignition (LOI) applications.

Lab Atmosphere Furnaces

Lab Atmosphere Furnaces

In an atmosphere furnace, a slight vacuum (up to 0.1 MPa) is generated using a rotary vane oil-filled vacuum pump, followed by purging with inert gases such as argon or nitrogen. This process surrounds the material, typically metals or ceramics, with argon or nitrogen gas to prevent the formation of oxides. Lab atmosphere-controlled furnaces are ideal for applications involving larger material volumes. Utilizing a range of heating elements suited for various temperatures and atmospheric conditions, these advanced furnaces deliver exceptional performance and ensure maximum customer satisfaction.

As a manufacturer, Facerom provides a broad selection of protective atmosphere furnaces. These furnaces are applicable across various technological fields, especially in the automotive and aerospace industries. The primary purpose of processing components in a protective atmosphere furnace is to enhance their mechanical properties. These furnaces can achieve maximum temperatures up to 1300 °C.

Lab Vacuum Furnaces

Lab Vacuum Furnaces

A lab vacuum furnace consists of a dual-chamber box structure, with the inner chamber serving as the primary heating zone and the outer shell maintaining vacuum conditions. Vacuum is established using a rotary vane vacuum pump supported by components such as a vacuum gauge, vacuum valve, and door seal. This type of furnace is extensively utilized in institutional laboratory research, vacuum annealing and sintering processes, as well as brazing of stainless steel and copper.

Facerom is a leading manufacturer of laboratory vacuum furnaces in China, specializing in electric vacuum furnaces for research applications. Their models operate within temperature ranges of 1100°C to 1300°C, with options reaching up to 1600°C. Standard inner chamber volumes range from 1 liter to over 27 liters. Each vacuum heat treatment furnace comes equipped with essential accessories including a rotary vane vacuum pump, vacuum gauge, flanges, fittings, and door block. The 30-segment programmable temperature controller allows precise temperature settings with controlled heating and cooling rates up to 15°C per minute. The inner chamber is constructed from imported high alumina ceramic fiber, while the exterior housing is fabricated from thick steel sheet coated with

Lab Pit Type Furnaces

Lab Pit Type Furnaces

Thanks to their sturdy construction and air circulation, these pit-type furnaces are well-suited for professional heat treatments requiring precise temperature uniformity. They are capable of performing production processes such as tempering, solution annealing, artificial aging, and soft annealing.

Our pit furnaces are engineered and produced to accommodate workpieces ranging from very small to very large sizes. Available with or without retorts, these furnaces come in customized dimensions and configurations to support the entire heat-treatment process.

Pit furnaces are utilized in diverse applications, including the gas carburizing and nitriding of gears for wind power generation and bearings used in the railway industry.

Industrial Furnaces

Facerom provides a selection of industrial furnaces tailored for batch processing. Designed for durability, safety, and ease of maintenance, these furnaces come in multiple sizes—from compact bench-mounted units to large floor-standing models with heating chambers exceeding 3000 liters. They support maximum temperatures up to 1800°C. Our industrial furnaces can be customized with a variety of options to precisely match customer requirements. Available features differ by model and include over-temperature protection, various digital controllers, multi-segment programmers, and data logging capabilities. Select a product from our industrial furnace range below to explore detailed specifications.

Atmosphere Tube Furnaces

Atmosphere Tube Furnaces

The Facerom Controlled Atmosphere Tube Furnace, supplied by Across International, is engineered for precise high-temperature applications across industries including materials science and semiconductor manufacturing. This portable furnace features a top-opening design with spiral wire coils embedded in Mitsubishi (Japan) alumina fiber insulation, offering outstanding thermal stability and efficiency. Suited for both laboratory and industrial use, it is ideal for processes such as ceramic sintering and silicon wafer processing.

The furnace utilizes a microprocessor-based self-tuning PID control system, enabling smooth management of multiple atmosphere processes within a single cycle, such as sintering under rough vacuum or inert gas. Designed for demanding applications, it offers a maximum working temperature of 1200°C and maintains a stable operating temperature of 1100°C. Equipped with standard stainless steel vacuum sealing flanges, the furnace can be customized with options like vacuum configurations and mass flow controllers to meet specialized needs. CE certified, it incorporates safety features including overheat protection and power failure recovery.

Bell Sintering Furnaces

Bell Sintering Furnaces

Bell furnaces are typically employed for intermittent or batch operations. While their primary function is heat treatment, they are also suitable for sintering and low-temperature drying processes. The load or product is heated within a mobile cover or dome that can be removed using a traveling hoist. Alternatively, an automatic lifting mechanism can be designed to meet specific customer requirements.

The Bell Sintering Furnaces not only minimizes the transfer time of workpieces but also enhances overall product performance. It serves as an effective alternative to furnace turning, preventing collisions between workpieces that could result in surface damage or impact craters.

The bell-type furnace uses burning gas primarily for metal casting annealing and stainless steel solid solution treatment, as well as rapid quenching. After lifting the furnace cover, a mobile forklift with a shovel quickly removes the workpiece for immediate quenching in water or oil. This entire process is completed within 50 seconds.

Chain Furnaces

Chain Furnaces

Facerom produces a range of industrial chain furnaces designed to facilitate efficient product transport during heat treatment. Chain-type furnaces encompass various methods of moving castings or forgings through the furnace, with designs tailored to meet specific customer requirements. Facerom pioneered and subsequently promoted the heat treatment of components within a furnace without employing trays or baskets to support castings, forgings, or similar parts.

Both powered and free monorails are suitable for conveying materials and can withstand heat processing temperatures up to 1950 °F, enabling the austenitizing of microalloy parts. Facerom has engineered systems that handle aerospace and automotive castings and forgings for leading manufacturers worldwide.

The chain furnace design enables products to enter the furnace without the need for baskets, racks, or trays, eliminating heat loss associated with heating these carriers. Processed parts can be transferred directly from casting dies or forging presses without requiring cooling. Facerom offers a wide range of chain furnace configurations to help automate foundry or forge operations with cutting-edge heat treatment technology.

Debinding And Sintering Furnaces

Debinding And Sintering Furnaces

Thermal debinding is effectively carried out using an ashing furnace. Both debinding and ashing processes focus on material removal, with debinding specifically involving the elimination of binder within the furnace chamber.

Since the 2010s, Facerom Furnace has produced combined debinding and sintering furnaces, establishing itself as a leader in technology for debinding and sintering a wide range of metals and ceramics.

Facerom provides a range of debinding furnaces designed to meet diverse application requirements. During debinding, the polymer binder undergoes thermal decomposition. Binders are essential for maintaining cohesion among powder particles and preserving the component’s shape. This step typically precedes the sintering of metal or ceramic parts.

Hot Air Circulation Debinding Furnaces

Hot Air Circulation Debinding Furnaces

The debinding furnace is a modern fiber resistance furnace featuring rapid heating and excellent temperature uniformity. It includes an adjustable air intake and exhaust system alongside an exhaust gas purification unit, representing an innovative, energy-efficient, environmentally friendly, and high-performance resistance furnace.

The hot air circulation degreasing furnace operates as a debinding furnace within an air atmosphere. It incorporates an air preheating system that supplies high-temperature fresh air to enhance degreasing effectiveness. Equipped with a spoiler fan, it ensures temperature uniformity across the large furnace chamber, while a high-flow induction fan accelerates flue gas extraction to expedite debinding and prevent contamination of the furnace components.

Facerom Debinding Furnaces are designed for intensive thermal debinding of volatiles like polymers, waxes, and solvents from powder-based green bodies. These furnaces operate in vacuum, air, inert, or reducing atmospheres. Equipped with multi-level setting furniture and an internal convection fan, the production-scale horizontal furnace allows efficient loading for the rapid elimination of large volumes of volatiles. The furniture slides smoothly on runners for quick loading and unloading. All internal components are constructed from heat-resistant stainless steel, and the absence of volatile-absorbing fiber insulation enhances durability and simplifies maintenance.

Pusher Furnaces

Pusher Furnaces

The Continuous Pusher Type Furnace from Facerom is a heat treatment furnace specifically designed for small components used in the automotive and aerospace sectors. Currently installed and operational at the HIGHTEMP Furnace facility in Bangalore, this furnace features a main pusher that moves the basket from the vestibule chamber to the first furnace basket position, with each tray subsequently shifting down one position. It is engineered to improve steel’s ductility and machinability by modifying its microstructure.

Facerom Furnace Company produces industrial pusher furnaces suited for a wide range of applications. These continuous furnaces accommodate processing of both small and large products placed in trays and baskets. The hearth is composed of a series of steel, alloy, or ceramic skid supports. To handle heavy loads, alloy rollers can be integrated into the hearth or trays to minimize the pushing force needed. Furnaces are available in electric, direct-fired, and indirect gas-fired configurations to fulfill specific processing demands.

Pusher furnaces are employed in metallurgy and machine manufacturing to heat metal workpieces for hot pressure forming or heat treatment processes. These furnaces can operate across a broad temperature range from 400°C to 1400°C.

About Us

Founded in 2014, Facerom is based in Hefei, recognized as one of China’s four major scientific and educational hubs. With two processing and manufacturing facilities and a skilled team in design, production, management, and service, the company also maintains multiple distribution partners across China.

Facerom offers over 100 types of standardized advanced electric furnaces along with prompt technical support. We also custom-design and manufacture products based on client specifications while ensuring consistent product quality. Through advanced design, meticulous manufacturing, and comprehensive service, we consistently deliver customer satisfaction.

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Superior Service

Superior Service

Our service tenet is to produce accurate and professional home fingertip oximeter to customers.

Innovative design

Innovative design

We are manily engaged in variours health home medical devices and continue to develop innovative oximeter.

High Quality

High Quality

Experienced quality inspectors will conduct strict inspections on each oximeter and other home devices product.

Delivery time

Delivery time

Customized sample will be delivered in 2-5 days. A team of skilled workers can provide a shorter delivery cycle.

Featured Furnaces

Facerom manufactures high-temperature lab furnaces and industrial furnaces ranging from 1000°C to 3000°C. As a technology leader in tube furnaces and vacuum and specialized atmosphere systems, Facerom applies over a decade of thermal engineering expertise to create innovative solutions trusted by research laboratories, pilot plants, and industrial facilities worldwide. Facerom products are recognized for their exceptional energy efficiency, reliability, and use of premium-quality components.

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