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Description: Uniform Heat Distribution: Pyroid® Pyrolytic Graphite die-stack units ensure consistent heat distribution across the tool and workpiece, maintaining stability at high temperatures and in vacuum environments. This uniformity minimizes temperature gradients at the tool-workpiece
- Material Type: Graphite
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Description: Pyroid® HT is an ideal solution for any application where excessive heat generation exists, offering an in-plane thermal conductivity of 1500 W/m·K, while weighing 75% less than copper.
- Thermal Conductivity: 1.3 to 444 W/m-K
- Coeff. of Thermal Expansion (CTE): 0.57 to 25 µm/m-C
- Electrical Resistivity: 0.0002 to 0.22 ohm-cm
- MOR / Flexural Strength: 11,947.608885998436 to 49,781.70369166015 psi
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Description: Pyroid® HT is an ideal solution for any application where excessive heat generation exists, offering an in-plane thermal conductivity of 1500 W/m·K, while weighing 75% less than copper.
- Material Type: Graphite
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Supplier: Matexcel
Description: Highly oriented pyrolytic graphite (HOPG) is a kind of "crystalline" graphite with good crystal structure, strong preferred orientation and high degree of graphitization. Because of its good carbon atomic structure, it has been widely used as standard samples and key components
- Material Type: Graphite
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Supplier: Matexcel
Description: Highly oriented pyrolytic graphite (HOPG) is a kind of "crystalline" graphite with good crystal structure, strong preferred orientation and high degree of graphitization. Because of its good carbon atomic structure, it has been widely used as standard samples and key components
- Material Type: Graphite
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Supplier: Matexcel
Description: Highly oriented pyrolytic graphite (HOPG) is a kind of "crystalline" graphite with good crystal structure, strong preferred orientation and high degree of graphitization. Because of its good carbon atomic structure, it has been widely used as standard samples and key components
- Material Type: Graphite
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Supplier: Newark, An Avnet Company
Description: PYROLYTIC GRAPHITE THERMAL INSULATOR PGS; Thermal Conductivity:950W/m.K; Conductive Material:Graphite Sheet; Thickness:70µm; Thermal Impedance:-; Dielectric Strength:-; External Length:180mm; External Width:115mm; Product Range:- RoHS Compliant: Yes
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Supplier: Newark, An Avnet Company
Description: PYROLYTIC GRAPHITE INTERFACE SHEET PGS; Insulator Body Material:Pyrolytic Graphite Sheet; Thermal Conductivity:950W/m.K; Breakdown Voltage Vbr:-; Thickness:0.07mm; Volume Resistivity:-; Thermal Impedance:-; Dielectric Strength:-; RoHS Compliant: Yes
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Supplier: Boyd
Description: are available in two principle formats: exfoliated flake natural graphite and pyrolytic graphite. Exfoliated flake natural graphite is mined as graphite ore, processed and calendared to varying thicknesses with a thermal conductivity performance range of 300 W/mK
- Thickness / Wall Thickness: 0.0006692917 inch
- Thermal Conductivity: 300 to 1,500 W/m-K
- Material Type: Graphite
- Features: Other
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Description: an ideal material to make crucibles for crystal growing. Pyrolytic Boron Nitride Applications:-Crystal growth (VGF, LEC Crucible)-Molecular Beam Epitaxy(MBE) Crucible-MOCVD Heater-PBN Infrared Window-Traveling Wave Tube (TWT) (PBN Support Rod)-PBN Coating Graphite-High temperature,
- Features: Specialty Ceramic
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Supplier: Boyd
Description: flake natural graphite and pyrolytic graphite. Exfoliated flake natural graphite is mined as graphite ore, processed and calendared to varying thicknesses with a thermal conductivity performance range of 300 W/mK to 600 W/mK and a thickness range from 0.04mm to
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Supplier: Boyd
Description: heat spreaders are available in two principle formats: exfoliated flake natural graphite and pyrolytic graphite. Exfoliated flake natural graphite is mined as graphite ore, processed and calendared to varying thicknesses with a thermal conductivity performance
- Features: Other Materials
- Device: Passive Heat Sink
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Supplier: Newark, An Avnet Company
Description: GAP FILLER, 2MM SHEET; Insulator Body Material:Pyrolytic Graphite Sheet; Thermal Conductivity:3.2W/m.K; Breakdown Voltage Vbr:-; Thickness:2mm; Volume Resistivity:-; Thermal Impedance:-; Dielectric Strength:7kV/mm; Product Range:- RoHS Compliant: Yes
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Supplier: Newark, An Avnet Company
Description: GAP FILLER, 0.5MM SHEET; Insulator Body Material:Pyrolytic Graphite Sheet; Thermal Conductivity:4W/m.K; Breakdown Voltage Vbr:-; Thickness:0.5mm; Volume Resistivity:-; Thermal Impedance:-; Dielectric Strength:5kV/mm; Product Range:- RoHS Compliant: Yes
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Description: Boron Nitride is a non-toxic thermal and chemical refractory substance with high electrical resistance that is most usually found in the form of colorless crystals or white powder. It is a sophisticated synthetic ceramic material that is also known as "white graphene" or "inorganic graphite"
- Material Type: Boron Nitride
- Shape / Form: Powder / Aggregate (Grain / Grog), Spout / Nozzle (Launder Pouring / Atomization)
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Description: dielectric constant, and enhanced dielectric strength. Because it has a microstructure similar to graphite, boron nitride is often referred to as "white graphite" in its solid form. Unlike graphite, however, boron nitride is an excellent electrical insulator with a greater
- Material Type: Boron Nitride
- Shape / Form: Tube / Sheath - Immersion (Closed End)
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Description: dielectric constant, and enhanced dielectric strength. Because it has a microstructure similar to graphite, boron nitride is often referred to as "white graphite" in its solid form. Unlike graphite, however, boron nitride is an excellent electrical insulator with a greater
- Material Type: Boron Nitride
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Description: Boron Nitride is a high-temperature ceramic that has a structure similar to graphite. Our portfolio of hot-pressed solid materials includes pure Hexagonal Boron Nitride as well as composites suitable for applications requiring excellent thermal properties combined with electrical isolation.
- Material Type: Aluminum Nitride, Boron Nitride
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Supplier: Matexcel
Description: nanotubes or etch holes in highly oriented pyrolytic graphite (HOPG). The advantages of LAO include the ability to pattern surfaces with nanometer resolution and to examine devices during the lithography process, and the ease of fabrication tuning. The most important working principle
- Forms Tested / Certified: Components / Parts, Products, Samples or Materials
- Capabilities: Consulting / Training, Failure Analysis / Troubleshooting, Test Development
- Applications / Industry: Health Care / Medical, Materials
- Features: Specialty / Other
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Featured Products Top
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(MBE) Crucible MOCVD Heater PBN Infrared Window Traveling Wave Tube (TWT) (PBN Support Rod) PBN Coating Graphite High temperature, vacuum equipment insulator Pyrolytic (read more)
Browse Industrial Ceramic Materials Datasheets for Xiamen Innovacera Advanced Materials Co., Ltd. -
electron tubes, ensuring the stable and reliable operation of the tubes. They are synthesized via the CVD process using BCl? and NH? at high temperatures and low pressure. PBN Coatings Coating for Graphite Equipment: PBN is commonly used (read more)
Browse Specialty Ceramics Datasheets for Xiamen Unipretec Ceramic Technology Co., Ltd.
Conduct Research Top
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Pyrolytic Graphite for Ion Implantation
Pyrolytic graphite ion grids offer major benefits for ion implantation applications relative to alternative materials such as molybdenum and other graphite-based infiltrated material.
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Advanced Materials: Using Pyroid Pyrolytic Graphite for Glass Heating Tooling
The article provides shear test data for threaded tapped pyrolytic graphite
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Extremely Pure Pyroid Pyrolytic Graphite for Semiconductor Ion Implantation
Pyrolytic graphite offers the lowest know material erosion rate for use in ion bombardment and plasma applications
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Pyroid Pyrolytic Graphite Stripper Foil for High Energy Applications
An examination was undertaken to compare free standing, Pyroid pyrolytic graphite (PG) stripper foils with alternative arc-evaporated carbon and PCG graphite foils using the services of an ISO Certified Laboratory Test Facility.
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Minteq Pyroid Pyrolytic Graphite for Semiconductor Ion Implantation
Ion implantation uses two or three closely spaced multiple-aperture electrodes to extract ions from a source and eject them in a collimated beam. The electrodes are called "grids" because they are perforated with a large number of small holes in a regular array.
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PG Glass Article American Glass Review
Pyrolytic Graphite Comes to the Glass Plant
More Information Top
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EFFECTS OF NEUTRON DAMAGE ON THE MECHANICAL PROPERTIES OF PYROLYTIC AND SINGLE-CRYSTAL GRAPHITE. Annual Progress Report, April 1, 1964-June 30, 1965
This report summarizes the progress of an investigation of the effects of neutron damage on the mechanical properties of both graphite single crystals and pyrolytic graphite which has been compression-annealed. jointly supported by the United States Atomic Energy Commission under Contract …
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Carbon at High Temperatures
Graphite (highly ordered and annealing pyrolytic graphite ) HOPG .
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EFFECTS OF NEUTRON DAMAGE ON THE MECHANICAL PROPERTIES OF PYROLYTIC AND SINGLE-CRYSTAL GRAPHITE. Quarterly Progress Report No. 2, July 1-September 30, 1964
This report summarizes the progress of an investigation of the effects of neutron damage on the mechanical properties of both graphite single crystals and pyrolytic graphite which has been compression annealed. jointly supported by the United States Atomic Energy Commission under Contract …
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EFFECTS OF NEUTRON DAMAGE ON THE MECHANICAL PROPERTIES OF PYROLYTIC AND SINGLE CRYSTAL GRAPHITE. Quarterly Progress Report No. 3, October 1, 1964-December 31...
This report summarizes the progress of an investigation of the effects of neutron damage on the mechanical properties of both graphite single crystals and pyrolytic graphite which has been compression annealed.
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EFFECTS OF NEUTRON DAMAGE ON THE MECHANICAL PROPERTIES OF PYROLYTIC AND SINGLE CRYSTAL GRAPHITE. Semiannual Progress Report, January 1-June 30, 1965
This report summarizes the progress of an investigation of neutron damage on the mechanical properties of both graphite single crystals and pyrolytic graphite which has been compression-annealed. jointly supported by the United States Atomic Energy Commission under Contract No. AT-(40 …
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EFFECTS OF NEUTRON DAMAGE ON THE MECHANICAL PROPERTIES OF PYROLYTIC AND SINGLE-CRYSTAL GRAPHITE. Complete Scientific Report, April 1, 1964--June 30, 1967.
This report summarizes the results of an investigation of the effects of neutron damage on the mechanical properties of both graphite single crystals and pyrolytic graphite which has been compression- annealed.
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ARS Journal > Determination of the Shock Pressure Required to Initiate Detonation of an Acceptor in the Shock Sensitivity Test
Aerothermodynamic Behavior of Pyrolytic Graphite During .
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EFFECTS OF NEUTRON DAMAGE ON THE MECHANICAL PROPERTIES OF PYROLYTIC AND SINGLE CRYSTAL GRAPHITE. Semiannual Progress Report, July 1, 1965-December 21, 1965
This report summarizes the progress of an investigation of neutron damage on the mechanical properties of both graphite single crystals and pyrolytic graphite which has been compression-annealed. jointly supported by the United States Atomic Energy Commission under Contract No.
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Studies on zinc nodules electrodeposited from acid electrolytes
Pine glassy carbon, Union Carbide pyrolytic graphite , Gould pyrolytic .
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Applications of advanced materials technologies to vacuum electronic devices
Five major materials-related topics and technologies are covered in this article: diamond electro- magnetic windows and electrode supports; electromagnetically lossy composite ceramics for control of instabilities; methods of cooling metal structures; pyrolytic graphite beam collectors and electron-gun modulation grids; and …
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