Booth number:W1-011 Floor map KAWATEX CO.,LTD.

Exhibition category

main category 1 Space
sub category 1 Space related Material/Parts
main category 2 Space
sub category 2 Space equipment
main category 3 Space
sub category 3 Manufacturing and Processing machines (Space)

Contact address

Address 4F No.3 Maida Building, 8-12 Hiroshiba, Suita, Osaka
Telephone 07048126110
URL https://kawatex.co.jp/
Email koho@kawatex.co.jp

Main exhibits 1

Cones / Combustion Chamber Liners and Jackets / Nozzle Liners and Jackets

One-piece combustion chamber liners and jackets with no welds require fewer post processes, which equates to lower cost, and higher efficiency. One-piece nozzle liners and nozzle components – metal spun for optimized grain structure.

Main exhibits 2

Pressure Vessel Components

Custom seamless one-piece pressure vessels/liners in aluminum, titanium, Inconel®, stainless steel or Haynes.

Specifications we can accommodate include:

Inner Diameter: Up to 23 inches (584.2 mm) for closed vessels
Vessel Size: vessel halves in various diameters from 8 inches (203.2 mm) to 50 inches (1270 mm)
Length: Up to 10 feet (3048 mm)
Neck Size: From 1.5 inches (38.1 mm) to 5.5 inches (139.7 mm)
Wall Thickness: From 0.03 inches (0.76 mm) to 1 inch (25.4 mm)

We also support the following specifications:

Flow-Formed Tubes: Lengths up to 180 inches (4572 mm), diameters up to 24 inches (609.6 mm)
COPV Liners: Domes from 8 inches (203.2 mm) to 60 inches (1524 mm) in diameter, lengths up to 100 inches (2540 mm), wall thickness from 0.050 inches (1.27 mm) to over 2 inches (50.8 mm), available in hemispherical, geometric, and toroidal shapes

Main exhibits 3

Rocket Motor Cases

Typically made from aluminum, steel, and nickel-based alloys, both solid rocket and hybrid solid motor cases are rotary forged and flow formed for optimal structural support to ensure maximum strength and performance. The combination of these capabilities results in enhanced mechanical properties, reduced need for welding, and a uniform material thickness, which decreases the amount of subsequent machining operations required.


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