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Supplier: Carbolite
Description: Maximum operating temperature of 1200°C. Two high power side heating elements provide enhanced heat-up and chamber uniformity. Graded element winding further optimizes chamber uniformity. Dense refractory around chamber entrance resists abrasion and wear. Chamber vent provides
- Configuration: Box
- Atmosphere: Air / Oxidizing, Inert
- Controller Type: Single Set Point, Programmable
- Over-Temperature Protection: Yes
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Supplier: Carbolite
Description: Maximum operating temperature of 1100°C Two high power side heating elements provide enhanced heat-up and chamber uniformity. Graded element winding further optimizes chamber uniformity. Dense refractory around chamber entrance resists abrasion and wear. Chamber vent provides
- Configuration: Box
- Atmosphere: Air / Oxidizing, Inert
- Controller Type: Single Set Point, Programmable
- Over-Temperature Protection: Yes
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Supplier: Carbolite
Description: Maximum operating temperature of 1300°C. Two high power side heating elements provide enhanced heat-up and chamber uniformity. Graded element winding further optimizes chamber uniformity. Dense refractory around chamber entrance resists abrasion and wear. Chamber vent provides
- Configuration: Box
- Atmosphere: Air / Oxidizing, Inert
- Controller Type: Single Set Point, Programmable
- Over-Temperature Protection: Yes
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Supplier: Carbolite
Description: Model 301 PID temperature controller. Ideal for light duty applications requiring good thermal response. Low outer case temperature provided through double shell construction. Dense ceramic hearth provides excellent resistance to wear and spillage. Chamber vent provides for process exhaust
- Configuration: Box
- Atmosphere: Air / Oxidizing, Inert
- Controller Type: Single Set Point, Programmable
- Over-Temperature Protection: Yes
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Supplier: Carbolite
Description: their doors are opened. Double shell construction ensures low outer case temperatures. Carbolite's 1100°C Drop Down Door Box Furnaces Feature: Excellent resistance to wear and spillage thanks to dense ceramic hearths. Long-life heating elements for years of dependable operation. Chamber
- Configuration: Box
- Atmosphere: Air / Oxidizing, Inert
- Controller Type: Single Set Point, Programmable
- Over-Temperature Protection: Yes
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Supplier: CoorsTek
Description: Low-cost Ceramic Planar and Tubular Half Cells CoorsTek recognizes one of the most challenging aspects of commercialization in the Solid Oxide Fuel Cell (SOFC) market is low-cost, high-volume production of coated anode support components. Commercial success will be most economically viable
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Featured Products for Dense Ceramic Laboratory Top
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Carbolite
1100°C Drop Down Door Laboratory Furnaces
break door safety switch isolates power to the heating elements when door is opened. Fast heat-up enhanced by low mass ceramic fiber chamber. Long-life heating elements. Integral Model 301 PID temperature controller. Ideal for light duty applications requiring good thermal response. Low outer case temperature provided through double shell construction. Dense ceramic hearth provides excellent resistance to wear and spillage. Chamber vent provides for process exhaust. Small case size conserves... (read more)
Browse Laboratory Furnaces Datasheets for Carbolite -
Carbolite
Carbolite's 1200°C & 1300°C Heavy Duty Furnaces
and 200 liters with maximum temperatures of 1200°C and 1300°C. Maximum operating temperatures of 1200°C and 1300°C. Two large volume chamber sizes available. Rugged construction for heavy-duty heat treating requirements. High power free radiating side heating elements provide fast heat-up and enhanced chamber uniformity. Vertical lift door design keeps hot door insulation away from operator. Low thermal mass insulation improves energy efficiency and fast heat-up rates. Hard ceramic hearth provides... (read more)
Browse Laboratory Furnaces Datasheets for Carbolite -
H.C. Starck Inc. - Fabricated Products Group
Mo, Nb, Ta, W Recycling Service & Alloy Additives
they are sufficiently small enough to dissolve rapidly and yet dense enough to settle into the molten metal bath. Vacuum melt 99.8 % and air melt 99 % grade pellets are available. We produce alloy additives from molybdenum, tungsten, tantalum and niobium refractory metals which are derived from our production processes. We use high-quality materials with some of the highest purity levels. Superalloy materials obtain many of their high temperature strength and corrosion resistance through... (read more)
Browse Materials Processing Services Datasheets for H.C. Starck Inc. - Fabricated Products Group
Conduct Research Top
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Increased Efficiency of Gas Turbines (.pdf)
Metco had developed a novel ceramic coating for application by atmospheric plasma spraying (APS). An engine test verified performance and economic advantages of the new seal system. The measured improvements in engine performance exceed the expected gains as predicted by model calculations. untitled
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Hot Isostatic Pressing: Today and Tomorrow (.pdf)
, producing fully dense compacts of. their high-speed tool steel. Meanwhile, Kennametal began a testing pro-. gram for elimination of internal pits and flaws in sintered tungsten carbide. preforms, and purchased their first HIP system in 1967.[2] Since then, HIP. has been adopted by many companies
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Explanation of Ultrasonics
explanation available is a point of diminishing returns with regard to ultrasonic power. LOADING: Loading of the part(s) to be cleaned must be considered, with regard to the shape and density. A large dense mass will not allow internal surfaces to be thoroughly cleaned (i.e., metal castings). A rule
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Application of Ultrasonic Cleaning
indicates that tanks over 50 gallons usually require only about 20 watts per gallon. The only explanation available is a point of diminishing returns with regard to ultrasonic power. LOADING: Loading of the part(s) to be cleaned must be considered, with regard to the shape and density. A large dense mass
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Seven major concerns related to successful ultrasonic cleaning
: Loading of the part(s) to be cleaned must be considered, with regard to the shape and density. A large dense mass will not allow internal surfaces to be thoroughly cleaned (i.e., metal castings). A rule of thumb for loading is that the load by weight should be less than the weight of half the water
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Introduction to Ultrasonic Cleaning
. The only explanation available is a point of diminishing returns with regard to ultrasonic power. LOADING: Loading of the part(s) to be cleaned must be considered, with regard to the shape and density. A large dense mass will not allow internal surfaces to be thoroughly cleaned (i.e., metal castings
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