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Description: Boron Carbide is a boron-carbon ceramic that is exceedingly hard. Boron Carbide has a high hardness, ranking third only to diamond and Cubic Boron Nitride. Boron Carbide is the third hardest substance known as of 2015, after diamond and Cubic
- Specialty Ceramic Type: Boron Carbide
- Shape / Form: Rod Stock
- Features: Specialty Ceramic
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Supplier: Advanced Abrasives Corp.
Description: Boron Carbide Powder Boron carbide (B4C) with a Mohs hardness of 9.5 is second only to cubic boron nitride (cBN) and so makes an excellent lower cost alternative abrasive to cBN and diamond. Also, boron carbide is excellent for absorbing neutron
- Carbide Type: Boron Carbide
- Features: Carbide Materials, Other
- Shape / Form: Powder / Aggregate (Grain / Grog)
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Description: competitive price. More Materials: Our Advanced Ceramics include: Alumina (Al2O3) Ceramics Zirconia (ZrO2) Ceramics Beryllia (BeO) Ceramics Aluminum Nitride (AlN) Ceramics Silicon Nitride (Si3N4) Ceramics Hot Pressed Boron Nitride (HBN) Ceramics Pyrolytic Boron Nitride (PBN) Ceramics
- Shape / Form: Bar Stock, Rod Stock
- Material Type: Boron Nitride
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Description: Boron Nitride (HBN) Ceramics Pyrolytic Boron Nitride (PBN) Ceramics Silicon Carbide (SiC) Ceramics Boron Carbide (B4C) Ceramics Titanium Diboride (TiB2) Ceramics Cerium Hexaboride (CeB6) Ceramics Lanthanum Hexaboride (LaB6) Ceramics Macor Machinable Glass Ceramics
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Description: Boron Nitride (HBN) Ceramics Pyrolytic Boron Nitride (PBN) Ceramics Silicon Carbide (SiC) Ceramics Boron Carbide (B4C) Ceramics Titanium Diboride (TiB2) Ceramics Cerium Hexaboride (CeB6) Ceramics Lanthanum Hexaboride (LaB6) Ceramics Macor Machinable Glass Ceramics
- Density: 2.499998422182354 g/cc
- Shape / Form: Block
- Specialty Ceramic Type: Boron Carbide
- Features: Specialty Ceramic
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Supplier: ASTM International
Description: This specification applies to composite pellets composed of mixtures of nuclear-grade aluminum oxide and boron carbide that may be ultimately used in a reactor core, for example, in neutron absorber rods. Specimens shall be sampled and tested as appropriate, and shall adhere
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Supplier: ASTM International
Description: 1.1 This specification applies to pellets composed of mixtures of aluminum oxide and boron carbide that may be ultimately used in a reactor core, for example, in neutron absorber rods. 1.2 The values stated in SI units are to be regarded as the standard. The values given in
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Supplier: 3X Ceramic Parts Company Limited
Description: Silicon carbide carrier disk, silicon carbide etching disk, ICP etching disk Silicon carbide tray for LED etching (SiC tray) φ 600mm is a special accessory for deep silicon etching (ICP etching machine) Wafer carrier, also known as wafer carrier and silicon wafer carrier, is
- Density: 3.119998030883578 g/cc
- MOR / Flexural Strength: 56,564.36734930683 psi
- Compressive / Crushing Strength: 261,066.3108429546 psi
- Features: Carbide Materials
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Supplier: 3X Ceramic Parts Company Limited
Description: Silicon Carbide SSiC Pump Shaft SSiC Pump Shaft is produced using very fine SiC powder containing sintering additives. It is processed using forming methods typical for other ceramics and sintered at 2,000 to 2,200° C in an inert gas atmosphere. As well as fine-grained versions, with grain
- Density: 3.0999980435061194 to 3.149998011949766 g/cc
- Thermal Conductivity: 125.52471714534 W/m-K
- Compressive / Crushing Strength: 319,081.0465858334 psi
- Features: Carbide Materials
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Supplier: 3X Ceramic Parts Company Limited
Description: composites. Pressureless silicon carbide firing rod SiC ceramic round rod silicon carbide shaft rod customized by the manufacturer. Silicon Carbide was originally produced by a high temperature electro-chemical reaction of sand and carbon. Silicon
- Density: 3.149998011949766 g/cc
- Compressive / Crushing Strength: 319,081.0465858334 psi
- Features: Carbide Materials
- Shape / Form: Rod Stock
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Supplier: General Carbide Corporation
Description: Cobalt. Nickel. Tantalum. We offer them all. In fact, we produce more than 50 carbide grades in a wide range of binder concentrations and particle sizes. We also lead the industry with the tightest overall material specifications. Our tungsten carbide grades use cobalt binders ranging
- MOR / Flexural Strength: 500,000 psi
- Density: 14.440000000000001 to 14.56 g/cc
- Applications: Abrasive / Erosive Wear Protection, Ceramics / Glass Manufacturing, Chemical / Materials Processing, Corrosion Protection, Wear Parts / Tooling
- Shape / Form: Bar Stock, Block, Fabricated / Custom Shape, Preforms, Rod Stock, Roller / Roll, Tube Stock
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Supplier: CoorsTek
Description: CoorsTek manufactures lightweight, superior ballistic performance ceramic components for armor integration. Each product is made of next-generation materials, shapes, and sizes for use in body, ground vehicle, aircraft, and marine applications to protect the soldiers of today and tomorrow. CoorsTek
- Density: 3.0499980750624722 g/cc
- MOR / Flexural Strength: 65,266.5777107387 psi
- Modulus of Elasticity: 65,266,577.7107387 psi
- Applications: Armor / Ballistic Protection
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Supplier: CoorsTek
Description: Pressureless sintered boron carbide combines high purity and the excellent mechanical properties of boron carbide for use in both ballistic armor and semiconductor manufacturing. Example Applications Ballistic armor components Neutron absorbers
- Thermal Conductivity: 43 to 100 W/m-K
- Coeff. of Thermal Expansion (CTE): 4.5 to 4.9 µm/m-C
- MOR / Flexural Strength: 65,266.5777107387 psi
- Applications: Armor / Ballistic Protection
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Supplier: General Carbide Corporation
Description: Cobalt. Nickel. Tantalum. We offer them all. In fact, we produce more than 50 carbide grades in a wide range of binder concentrations and particle sizes. We also lead the industry with the tightest overall material specifications. Our tungsten carbide grades use cobalt binders ranging
- MOR / Flexural Strength: 535,000 psi
- Density: 13.870000000000001 to 14.01 g/cc
- Applications: Abrasive / Erosive Wear Protection, Ceramics / Glass Manufacturing, Chemical / Materials Processing, Corrosion Protection, Wear Parts / Tooling
- Shape / Form: Bar Stock, Block, Fabricated / Custom Shape, Preforms, Rod Stock, Roller / Roll, Tube Stock
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Supplier: CoorsTek
Description: alumina: increased strength and impact resistance SILICON CARBIDES Silicon carbides offer superior wear at high temperatures, yielding a long life in the most abrasive environments. CoorsTek can manufacture intricate and large shaped designs to meet your specifications. CoorsTek
- Thickness / Wall Thickness: 2 inch
- Length: 9 inch
- Diameter: 4 inch
- Density: 3.1 to 4.01 g/cc
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Supplier: General Carbide Corporation
Description: Cobalt. Nickel. Tantalum. We offer them all. In fact, we produce more than 50 carbide grades in a wide range of binder concentrations and particle sizes. We also lead the industry with the tightest overall material specifications. Our tungsten carbide grades use cobalt binders ranging
- MOR / Flexural Strength: 490,000 psi
- Density: 14.16 to 14.280000000000001 g/cc
- Applications: Abrasive / Erosive Wear Protection, Ceramics / Glass Manufacturing, Chemical / Materials Processing, Corrosion Protection, Wear Parts / Tooling
- Shape / Form: Bar Stock, Block, Fabricated / Custom Shape, Preforms, Rod Stock, Roller / Roll, Tube Stock
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Supplier: CoorsTek
Description: Boron carbide (B4C) is one of the world's hardest manufactured materials. Its strong chemical bonds and hard surface minimize wear in rigorous environments. Boron carbides are often used in ballistic armor, taking advantage of exceptional hardness and low density. The
- Max Use / Curie Temperature: 1,000 C
- Thermal Conductivity: 50 W/m-K
- Coeff. of Thermal Expansion (CTE): 4.5 µm/m-C
- MOR / Flexural Strength: 36,259.2098392992 psi
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Supplier: General Carbide Corporation
Description: Cobalt. Nickel. Tantalum. We offer them all. In fact, we produce more than 50 carbide grades in a wide range of binder concentrations and particle sizes. We also lead the industry with the tightest overall material specifications. Our tungsten carbide grades use cobalt binders ranging
- MOR / Flexural Strength: 515,000 psi
- Density: 14.530000000000001 to 14.65 g/cc
- Applications: Abrasive / Erosive Wear Protection, Ceramics / Glass Manufacturing, Chemical / Materials Processing, Corrosion Protection, Wear Parts / Tooling
- Shape / Form: Bar Stock, Block, Fabricated / Custom Shape, Preforms, Rod Stock, Roller / Roll, Tube Stock
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Supplier: Zhuhai Cersol Technology Co., Ltd.
Description: Molecular formula: B4C Mohs hardness: 9.36 Density: 2.52g/cm ³ Melting point: 2450 °C Appearance: gray black powder. One of the hardest materials. It has become an ideal material for many industries because of its acid-base resistance, high temperature resistance Main uses and recommended particle
- Carbide Type: Boron Carbide
- Features: Carbide Materials
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Supplier: Hyperion Materials & Technologies
Description: Cemented tungsten carbide coolant blank with central hole. Options on carbide grade, rod diameter, coolant hole diameter, length, finish, and chamfer.
- Shape / Form: Rod Stock
- Carbide Type: Tungsten Carbide (WC)
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Description: corrosion resistance.Norbide® Boron Carbide - one of the hardest materials known - also delivers excellent wear and abrasion resistance for longer service life. Nozzles can be provided as jacketed or non-jacketed.ApplicationsAbrasives for polishing and lappingWear resistant components
- Carbide Type: Boron Carbide, Silicon Carbide
- Features: Carbide Materials
- Shape / Form: Spout / Nozzle (Launder Pouring / Atomization)
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Supplier: 3M Advanced Materials Division
Description: Sandblasting. Abrasive lapping. Machining ultra-hard metals, ceramics and synthetic gemstones. To withstand conditions in these demanding applications, it takes a material with extreme abrasion resistance – like 3M™ Boron Carbide. Sometimes called “black diamond," boron
- Carbide Type: Boron Carbide
- Features: Carbide Materials, Granular Fill / Bed Media, Other
- Shape / Form: Powder / Aggregate (Grain / Grog), Spout / Nozzle (Launder Pouring / Atomization)
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Supplier: San Jose Delta Associates, Inc.
Description: "PAD" (Pressure Assisted Densification) Boron Carbide is characterized by outstanding hardness, low specific gravity, excellent corrosion resistance and a high neutron absorbing cross-section. This material is suitable for light weight armor, nuclear and wear applications.
- Density: 2.4799984348048953 g/cc
- MOR / Flexural Strength: 53,083.4832047341 psi
- Compressive / Crushing Strength: 400,000 psi
- Applications: Abrasive / Erosive Wear Protection, Wear Parts / Tooling
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Supplier: Aremco Products, Inc.
Description: Aremco offers a wide range of high purity metals and ceramics that are applicable to scientists and engineers involved in basic research and applied product development.
- Features: Alumina / Aluminum Oxide, Aluminum Nitride, Aluminum Silicate (Mica, Sillimanite, etc.), Boron Nitride, Carbide Materials, Ceria / Cerium Oxide, Graphite, Hafnia / Hafnium Oxide, Magnesia / Magnesite, Metal Boride (ZrB2, TiB2), Silica / Fused Silica, Silica / Silicate
- Carbide Type: Boron Carbide, Silicon Carbide, Tungsten Carbide (WC)
- Applications: Ceramics / Glass Manufacturing, Chemical / Materials Processing, Corrosion Protection, Electrical / HV Parts, Electronics / RF-Microwave, Foundry / Metal Processing, Wear Parts / Tooling
- Shape / Form: Powder / Aggregate (Grain / Grog)
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The direction in which workers screw and unscrew fasteners has a lot to do with the applications in which they appear. Additionally, many different types of threads exist to optimize different ways to fasten objects.
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Conduct Research Top
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Replacing Metal Components with Hard Materials (PDF)
, boron carbide, silicon nitride, and zirconia, to name just a few.
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Materials and mechanical design analysis of boron carbide reactor safety rods
The boron carbide rod has approximately 60% the stiffness of the cadmium rod.
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Final design review of boron carbide safety rod
The elapsed time between applying the trip signal until the electrical snubbing voltage was applied to the clutch was observed to be 0.01 second longer for the boron carbide rod that, the cadmium rod.
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Criticality safety requirements for transporting EBR-II fuel bottles stored at INTEC
Ifoneleaking bottle is placed in the middle carrier in the cask, k is 0.8499 +/- 0.0017 with a central boron carbide rod in each carrier and 0.8882 +/- 0.0017 with a central steel filler rod in each canier.
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YALINA analytical benchmark analyses using the deterministic ERANOS code system.
XZ and XY Cross-Sectional View of the Boron Carbide Rod , Dimensions in cm ....................9 .
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DESIGN AND ANALYSIS OF SEFOR CORE I.
Neutron Energy 3.5.5 Effect of Boron Carbide Rods on the .
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B sub 4 C solid target boronization of the MST reversed-field pinch
carried by "superthermal" (not "runaway") electrons at the edge of MST appears to enhance the efficient, non-destructive ablation of the boron carbide rod .
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Performance Modeling of Neutron Absorbers
Emphasis is given to modeling the perfor- mance of small boron carbide rods for Fast Test Reactor (FTR) application, but consideration is also given to larger diameter rods for compari- son.
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IDAHO DIVISION SUMMARY REPORT, JULY, AUGUST, SEPTEMBER 1960
…to apply to the rods with the poison follower, then the worth of the heavy tantalum rod would be 160.7 inhours, that of the light tantalum would be 152 inhours, and that of the boron carbide rod would be 281 inhours.
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AN EVALUATION OF ADVANCED CONVERTER REACTORS.
four and/or three clusters of boron carbide rods supported by stainless steel tape.
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Theory, design, and operation of liquid metal fast breeder reactors, including operational health physics
The boron carbide rod is enclosed in a cylindrical can attached to a stellite nozzle and handling head for the drive shaft gripper.
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