2012314Thermal Technology LLC, based in Santa Rosa, CA, USA, is currently building a 100-ton, 36,000 amp direct current sintering (DCS) system for a US research organisation. The DCS Model 100-36 will be integral to the study of new ultra-high-temperature ceramic composites.
High-entropy ceramics is an emerging class of high-entropy materials with properties superior to conventional ceramics. Recent research has been focused on the development of new high-entropy ceramic compositions. High-entropy oxides, carbides, borides, silicides, and boron carbides had been
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Abstract: This paper reports on a new clad technology that is protective coating cladding. The method is that the Ni60 alloy was prepared on 0.45%C steel and high temperature powder paste brushed on the outside. Then the sample after being dried was heated in the high temperature resistance electric furnace.
Dense ZrW 2 O 8 was prepared by spark plasma sintering (SPS), using amorphous ZrW 2 O 8 nanopowder as a raw material, at 873 K for 10 min. We investigated the effects of SPS conditions, such as sintering temperature, heating rate, and the discharge power that is expressed as the product of pulsed direct current and voltage, on the densification process of ZrW 2 O 8.
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SPARK PLASMA SINTERING. AKSHAY VENUGOPAL S7 A Batch Roll No.: 14. Department of Mechanical Engineering SNM Institute of Management and Technology, Maliankara Ernakulam INTRODUCTION In globalization era, customers are looking for products having 1) high accuracy 2) customized and complex design.
201261SPS' established advantages include low power consumption, elimination of the need for sintering aids, control of the thermal gradient for functional-graded materials (FGMs), selective control of the density in speciﬁed regions of the sample, single-step sintering/bonding, particle surface cleaning, high heating rate, and near-net-shape
Spark Plasma Sintering (SPS) process is a relatively new PM technology used to fabricate metallic parts in shorter time and lower temperature than traditional press-to-sintering technology. In this study, sintering cycles by SPS process were performed in Astaloy CrM steel powder at temperatures between 950 and 1100 °C, with 5 minutes of dwell
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Ultra‐rapid field‐assisted sintering techniques including flash sintering (FS) and flash spark plasma sintering (FSPS) provide energy efficient routes to densify ceramics in a very short time. 1 A typical FS process contains the preheating of dog bone‐shaped specimen in a tube furnace and rapid heating‐up at an onset temperature
Fuji Electronic Industrial Co., Ltd. is the pioneer of SPS technology. Fuji-SPS researches and develops next generation Spark Plasma Sintering (SPS) technology and fabricating systems for leading edge High Energy Density Processing. Fuji-SPS takes pride in manufacturing, marketing, and servicing the finest machines and products internationally.
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