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We would like to introduce a case study of the introduction of the ultra-high temperature vacuum and atmosphere furnace "NEWTONIAN Pascal-40" at the High Brightness Light Source Research Center, a public interest incorporated foundation. The center conducts experiments aimed at clarifying the composition and structure of the Earth's mantle, and it was necessary to procure a high-temperature furnace to stably sinter polycrystalline specimens of candidate materials. After the introduction, it became possible to sinter polycrystalline specimens composed of Mg2SiO4, CaSiO3, and MgO as expected, allowing for the preparation of candidate materials for the mantle. 【Case Overview】 ■ Objective: To stably sinter polycrystalline specimens of candidate materials ■ Achievements - Able to heat samples of 1 cm³ size, cooling to below 100°C in about one hour after heating - Sintering of polycrystalline specimens composed of Mg2SiO4, CaSiO3, and MgO became possible - High reproducibility indicates stable performance of the high-temperature furnace *For more details, please download the PDF or feel free to contact us.
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Free membership registrationOur company is engaged in the research and development of new materials, the manufacturing of lenses and semiconductors, and the development of special heaters used in the fields of nuclear power and aerospace. This time, we would like to introduce case studies of ultra-high temperature vacuum and atmosphere furnaces made for universities and research institutions, as well as custom-made high-temperature sheath heaters! 【Case Overview】 <Shinshu University Faculty of Engineering> ■Product Introduced: Ultra-high Temperature Vacuum and Atmosphere Furnace ■Background: Improvement of crystallinity through heat treatment of carbon nanotubes ■Results: By using a compact device at hand, they were freed from the hassle of document transfer and administrative procedures. <Osaka University Graduate School> ■Product Introduced: High-Temperature Sheath Heater ■Background: A heater was needed for experiments that could heat evenly without unevenness and control temperature precisely. ■Results: The realization of highly unique research that "observes the interface while finely controlling the temperature." *You can quickly check other manufacturing case studies in the PDF materials!
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Free membership registrationWe would like to introduce a case where Shinshu University’s Faculty of Engineering has implemented a "High-Temperature Vacuum and Atmosphere Furnace." We explored a method to enhance the crystallinity of carbon nanotubes by heating them in a vacuum to remove impurities. To carry out this heating process, it was necessary to introduce a new high-temperature furnace. After the introduction, impurities were removed through heat treatment, and we were able to achieve the initial goal of increasing the crystallinity of the carbon nanotubes. 【Case Overview】 ■ Challenges - A high-temperature furnace was needed to produce high-purity carbon nanotubes. - Carbon nanotubes can contain impurities such as metals during the production process. ■ Results - Having the equipment on-site provides the advantage of being freed from the transfer of samples and administrative procedures compared to using facilities at a different location. *For more details, please download the PDF or feel free to contact us.
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Free membership registrationOur company was established as a separate entity from the former Tokyo factory of Nagano Keiki Co., Ltd. on July 1, 1978. In addition to the product range from the former Tokyo factory, we have received the transfer of several types of pressure gauge-related products (such as pressure gauges with contacts, pressure switches, and manometers) from Nagano Keiki Co., Ltd. and Ueda Measuring Instruments Factory to stabilize our production line. Furthermore, we have expanded into the field of thermal measurement and control to stabilize our corporate foundation while enhancing our technical team for both measurement products and thermal equipment products. We aim to leverage our regional characteristics and our small but elite company structure for technological development and quality improvement, with the goal of "providing products that satisfy and earn the trust of our customers." 【Business Objectives】 ■ Manufacturing and sales of measuring instruments, measuring devices, and industrial equipment that apply pressure, temperature, and electricity, as well as machinery and parts that utilize these. ■ Manufacturing and sales of pumps and machinery and parts that utilize them. ■ Manufacturing and sales of measuring instruments that use thermocouples and electric resistance wires. ■ All businesses incidental or related to the above items. *For more details, please refer to the PDF materials or feel free to contact us.
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Free membership registrationThe "VT01-771/772" is a flat thermocouple developed for measuring the surface temperature of the target object. It has a rapid response time of approximately 50 milliseconds when used through insulating paper, and about 2 to 5 milliseconds when the insulating paper is removed. Additionally, our thermocouple sheets have an accuracy equivalent to JIS Class 2, and we offer two types: K type "VT01-771" and T type "VT01-772." 【Features】 ■ Can be attached to the surface regardless of the material of the object being measured ■ Can be fixed using high-temperature adhesives or crimping ■ Accuracy equivalent to JIS Class 2 *For more details, please refer to the PDF document or feel free to contact us.
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Free membership registrationWe would like to introduce a case where the Graduate School of the University of Tokyo, which conducts materials research in the field of nuclear power, has introduced a "high-temperature vacuum and atmosphere furnace." In order to conduct experiments in a new ultra-high-temperature environment, a high-temperature furnace capable of reaching 2,000°C was needed, but there was no equipment within the university that could create such a high-temperature environment. As a result of the introduction, it became possible to conduct experiments in the harsh environment of up to 2,000°C. Additionally, by reducing the waiting time during heating and accelerating the experimental cycle, it ultimately created more flexibility in the schedule. [Case Overview] ■ Challenges and Issues - No equipment available to create a high-temperature environment - A high-temperature furnace capable of reaching 2,000°C was needed ■ Results - Experiments in an environment of up to 2,000°C became possible - More flexibility in the schedule was achieved *For more details, please refer to the PDF document or feel free to contact us.
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Free membership registrationWe would like to introduce a case where Osaka University Graduate School has implemented "high-temperature sheath heaters." In the field of electrochemistry research, a heater that meets the essential conditions due to the nature of the experiments was not available as a standard product, so we introduced our heaters that matched the conditions of price and specifications. As a result of the implementation, our heaters contributed to the uniqueness of the research in studies where heater performance is crucial. [Challenges and Issues] ■ Essential conditions due to the nature of the experiments - Ability to heat evenly without unevenness - Ability to control temperature precisely ■ After inquiring with major vacuum equipment manufacturers for custom production, the result was high prices and cumbersome equipment. *For more details, please refer to the PDF document or feel free to contact us.
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Free membership registrationThe "sheath thermocouple" is a product covered with a protective sheath made of stainless steel or Inconel. Since the space between the thermocouple wire and the sheath is filled with insulation material under high pressure, it can be installed in areas where electrical insulation is required. In addition, we offer a "non-grounded" type that ensures insulation between the sheath and the thermocouple, a "grounded" type where the thermocouple and sheath are welded at the tip for relatively better responsiveness, and an "exposed" type that exposes the temperature measurement contact point from the end of the sheath. 【Features】 ■ Manufactured including the device introduction part ■ Insulation material filled under high pressure between the thermocouple wire and the sheath *For more details, please refer to the PDF document or feel free to contact us.
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Free membership registrationThe "Thermo Couple Sheet" is a sheet-type thermocouple developed for measuring the temperature of surfaces by adhering it to the object being measured. Since the thermocouple is formed on an insulating sheet, it can be attached to any temperature measurement target, and it can be fixed to the surface of the target using high-temperature adhesives or crimping. In addition to the standalone Thermo Couple Sheet, there are also products equipped with insulated thermocouples. If you prefer a product with an insulated thermocouple, please specify the insulation material, wire diameter, and dimensions. 【Features】 ■ Can be used by adhering ■ Quick response time *For more details, please refer to the PDF document or feel free to contact us.
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Free membership registrationThe "Sheath Heater with Cold Ends" is a product among the sheath heaters we handle, featuring non-heating low-temperature lead-out sections (cold ends) at both ends of the heating element. It can achieve temperature increases up to 900°C, similar to regular high-temperature sheath heaters, while both ends remain relatively low in temperature, reducing issues at the terminal connection points where components are connected. Additionally, the lengths of the heating and non-heating sections can be specified as desired. 【Features】 ■ Ends at 50°C or below ■ Can be processed similarly to high-temperature sheath heaters *For more details, please refer to the PDF document or feel free to contact us.
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Free membership registrationThe "high-temperature sheath heater" is a product that has a metal protective sheath covering an electric heating wire. Since the heating wire is insulated by the protective sheath, it can be used as a heat source for various applications. In addition to bending processing, we also directly wrap it around conductive containers and heated objects. Please feel free to consult us regarding shapes, dimensions, etc. 【Features】 ■ Flexible bending processing ■ Direct wrapping around heated objects ■ Terminal processing for specific applications *For more details, please refer to the PDF materials or feel free to contact us.
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Free membership registrationThe "Surface Heating CC Heater" is a thin and compact product that uses C/C composite (carbon-carbon composite) as its heat source. By using C/C composite, it is possible to achieve high temperatures that are difficult to reach with plate heaters using sheath heaters. Additionally, since heating is performed on a susceptor installed above the heater, uniform heating can be achieved, allowing for temperature increases of up to 400°C in the atmosphere and over 1200°C in a vacuum or inert gas environment. 【Features】 ■ Uniform heating with a susceptor ■ Realization of high-temperature heating ■ Advantages of using C/C composite material *For more details, please refer to the PDF document or feel free to contact us.
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Free membership registrationThe "Plate Heater" is a product that embeds a sheath heater made by Thermocoax into a metal heating plate, allowing for heating up to a maximum of 800°C. Since heating occurs on plates made of stainless steel, Inconel, aluminum, etc., it is suitable for applications that require durability, such as applying pressure during heating, compared to heaters using quartz glass or carbon. Additionally, the electrode part that connects the heater wire embedded inside the heating plate to the power supply is available in variations suited to your usage environment, including models with insulated sleeve terminals for use in the atmosphere and CP terminal models for vacuum chambers. 【Features】 ■ Excellent mechanical durability ■ Flexible design compatibility *For more details, please refer to the PDF materials or feel free to contact us.
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Free membership registrationThe "NEWTONIAN Pascal-40" is a high-temperature furnace capable of heating up to 2,000°C in vacuum and gas atmospheres using C/C composite (carbon-carbon composite) heating elements. It allows for rapid heating (from 500°C to 2,000°C in about 1 minute) and rapid cooling (from 2,000°C to 100°C within 60 minutes), enabling firing under challenging conditions and shortening test cycles. 【Features】 - Utilizes robust C/C composite materials for the heating elements, expecting an extended lifespan of the main unit. - The C/C composite material has high X-ray permeability, allowing observation of the melting process of the heated objects via X-ray. - (Optional) Temperature measurement of the heated objects is possible with a radiation thermometer. - Compact design allows for installation in the space of a single office desk. *For more details, please download the PDF or feel free to contact us.
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Free membership registrationThe "HFC-Ox" is a gas separation type surface heating heater that uses C/C composites (carbon-carbon composites) completely covered with quartz glass, capable of heating up to 1,000°C in an oxidizing atmosphere. It is mainly suitable for integration into thin film devices (such as CVD/sputtering) and semiconductor manufacturing equipment (such as substrate heating/flash annealing). 【Features】 ■ Capable of heating up to 1,000°C in air or oxidizing atmosphere ■ Designed with chemically stable quartz glass, making it less susceptible to environmental influences ■ Extremely low contamination generation, allowing for clean operation ■ The C/C composite material used for the heater has a small heat capacity, is resistant to vibration, shock, and thermal shock, and allows for rapid heating and cooling ■ Compact design that does not take up much space *For more details, please download the PDF or feel free to contact us.
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