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Supplier: Terra Universal, Inc.
Description: 28"-diameter x 48"-long (711 mm x 1219 mm) chamber provides ample processing space for degassing large assemblies 0.375" (10 mm)-thick powder-coated steel chamber with 1" (25 mm)-thick aluminum door supports vacuum to 29.9" Hg 1" (25 mm)-thick polycarbonate viewing window
- Height / Length: 48 inch
- Flange / Fitting Types: ANSI ASA, Conflat®, Elastomeric (O-ring / Gasket), ISO-BF (Bolted), ISO-CF (Metal Seal), ISO-KF / ISO-NW (Small Clamped, <2"), ISO-MF (Multi-fastener / Universal), Threaded / NPT, Weld / Braze Stub
- Chamber Material: Aluminum, Stainless Steel, Steel
- Chamber / Component Type: Base / Service Well, Baseplate, Box / Degassing Chamber, Custom / Specialty Chamber, Feedthrough Collar, Glovebox / Weld Chamber, Load Lock Chamber, Surface Analysis / Universal
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Description: The SAC-12 is a standard platform vacuum chamber designed for surface science studies. The geometric design offers maximum flexibility for various experiments and includes 17 different ports for feedthroughs, viewports, manipulators, gauges, etc.
- Height / Length: 15.5 inch
- Flange / Fitting Types: Conflat®
- Features: Other
- Chamber Material: Stainless Steel
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Supplier: Materion Corporation
Description: aluminum, titanium or stainless steel can be epoxy-bonded, welded or brazed to the beryllium pipe.
- Nominal Size: 12 inch, 14 inch, 18 inch, 24 inch
- Flange / Fitting Types: ANSI ASA, Bolted, Conflat®, Elastomeric (O-ring / Gasket), ISO-BF (Bolted), ISO-CF (Metal Seal), ISO-KF / ISO-NW (Small Clamped, <2"), ISO-MF (Multi-fastener / Universal), Metal Seal (Wire / Copper Gasket), Threaded / NPT, Weld / Braze Stub
- Chamber Material: Aluminum, Stainless Steel
- Features: Other
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Description: Baseplates are available in a variety of sizes and can be used in combination with our Bell Jars and Feedthrough Collars. The baseplates are supplied with a smooth faced ASA flange which can bolt directly to the vacuum pump. Standard material construction is 304 SS with a glass bead finish.
- Height / Length: 4 inch
- Nominal Size: 12 inch, 18 inch, 24 inch
- Chamber / Component Type: Baseplate
- Vacuum / Pressure Range: High Vacuum (< 10-3, >10-8 torr), Ultra-high Vacuum (< 10-8 torr)
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Description: fired 316L stainless steel, electropolishing and metal seals are recommended for ultra-high vacuum surface science chambers that operate at pressures in the 1x10-11 Torr range. Nor-Cal can fabricate vacuum chambers in a wide range of shapes and sizes with
- Vacuum / Pressure Range: High Vacuum (< 10-3, >10-8 torr)
- Chamber / Component Type: Load Lock Chamber
- Chamber Material: Stainless Steel
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Supplier: Kernco, Inc.
Description: Kernco's thermal vacuum chambers produce ultra-clean, high- vacuum, temperature controlled environments for testing aerospace and military equipment. An oil-free vacuum is achieved with a turbo molecular pumping system. The TVC is ideal for vacuum experimentation
- Height / Length: 48 inch
- Features / Options: Cooling
- Chamber / Component Type: Custom / Specialty Chamber
- Flange / Fitting Types: Elastomeric (O-ring / Gasket)
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Supplier: Russells Technical Products
Description: altitude/temperature/humidity chambers offer performance flexibility and reliablility for today's mixed-environment testing requirement. Control the temperature environment for testing your product while simulating various altitude environments from site level to 100,000 feet. The same
- Chamber / Component Type: Box / Degassing Chamber
- Features / Options: Cooling
- Chamber Material: Stainless Steel
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Description: Baseplates are available in a variety of sizes and can be used in combination with our Bell Jars and Feedthrough Collars. The baseplates are supplied with a smooth faced ASA flange which can bolt directly to the vacuum pump. Standard material construction is 304 SS with a glass bead finish.
- Height / Length: 6 inch
- Nominal Size: 12 inch, 18 inch, 24 inch
- Chamber / Component Type: Feedthrough Collar
- Vacuum / Pressure Range: High Vacuum (< 10-3, >10-8 torr), Ultra-high Vacuum (< 10-8 torr)
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Experimental characterization of railgun-driven supersonic plasma jets
motivated by high energy density physics applications
Experiments on PLX are conducted in a 9 ft. (2.74 m) diameter stainless steel spherical vacuum chamber , as depicted in Fig. 1(a), situated in a 3000 ft.2 (279 m2 ) high-bay space with a ten-ton overhead crane.
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Magnetron Discharge Characteristics for Improvement of an Inertial Electrostatic Confinement Neutron/Proton Source
The IECF device of this study consists of a stainless steel spherical vacuum chamber of 340 mm inner diameter (I.D.) with a 3 mm thickness, and a hollow cathode made of Ta sheet of 50 mm I.D. and 60 mm …
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1- And 2-D Numerical Simulations Of Spherical Pinches
The E C device consists of a spherical stainless steel vacuum chamber (-30 cm in diameter)with a concentrichighly transparent spherical conducting grid suspended inside.
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Overview Of Iec Neutron Source Studies
The E C device consists of a spherical stainless steel vacuum chamber (-30 cm in diameter)with a concentrichighly transparent spherical conducting grid suspended inside.
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Interpretations Of Instabilities Observed In Electromagnetically Imploded Solid Liners.
The E C device consists of a spherical stainless steel vacuum chamber (-30 cm in diameter)with a concentrichighly transparent spherical conducting grid suspended inside.
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Plasma Formation Experiments Relevant To Magnetized Target Fusion
The E C device consists of a spherical stainless steel vacuum chamber (-30 cm in diameter)with a concentrichighly transparent spherical conducting grid suspended inside.
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Spontaneous formation of nonspherical water ice grains in a plasma environment
The main chamber is a 15.24 cm spherical square stainless steel vacuum chamber .
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Experimental study of potential structure in a spherical IEC fusion device
The SIEC essentially consists of a spherical , stainless steel vacuum chamber with a concentric spherical cathode grid suspended inside.
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Retention and Surface Pore Formation in Helium Implanted Tungsten as a Fusion First Wall Material
The spherical stainless - steel main vacuum chamber has a 61 cm inner diameter and a sealed water jacket around the main vessel.
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Ion‐Conducting Probes for Low Temperature Plasmas
The experiments were conducted in a spherical vacuum chamber made of stainless steel (Figs. 3a and b) of approx. 35 cm in diameter with six attached flanges.
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