MatWeb - Material Property Data Advertise with MatWeb!     Register Now
Data sheets for over 180,000 metals, plastics, ceramics, and composites.
MatWeb - Material Property Data HOME  •   SEARCH  •   TOOLS  •   SUPPLIERS  •   FOLDERS  •   ABOUT US  •   FAQ  •   LOG IN    
Recently Viewed Materials (most recent at top)  

Login to see your most recently viewed materials here.

Or if you don't have an account with us yet, then click here to register.

  Searches:   Advanced  | Category  | Property  | Metals  | Trade Name  | Manufacturer  | Recently Viewed Materials
  

Master Bond adhesives

(Viewing data as-entered. Click here to return)
Morgan Advanced Ceramics Kao-Tuff® Monolithics Tuff G Thermal Ceramic
Categories: Ceramic; Oxide

Material Notes: Gun/ram installation. Kao-Tuff G is an abrasion resistant monolithics installed by using standard gunning techniques. This high strength material consistently produces abrasion losses within the range of 7 - 15 cc’s.

Applications:

  • FCCU linings
  • Molten aluminum contact (Kao-Tuff FS)
  • Kiln car

Information provided by Morgan Advanced Materials

Key Words: Thermal Ceramics
Vendors: No vendors are listed for this material. Please click here if you are a supplier and would like information on how to add your listing to this material.
 
Physical PropertiesOriginal ValueComments
Density 2.114 - 2.275 g/cc
@Temperature 816 °C
fired; ASTM C134
 2.211 - 2.387 g/cc
@Temperature 104 °C
dried 24 hours; ASTM C134
 
Mechanical PropertiesOriginal ValueComments
Modulus of Rupture 0.00660 - 0.0103 GPa
@Temperature 816 °C,
Time 18000 sec
fired; ASTM C133
 0.00758 - 0.0138 GPa
@Temperature 104 °C,
Time 86400 sec
dried; ASTM C133
 0.00830 - 0.0138 GPa
@Temperature 1538 °C,
Time 18000 sec
fired; ASTM C133
Compressive Strength 48.3 - 75.5 MPa
@Temperature 104 °C,
Time 86400 sec
dried, Cold Crushing Strength; ASTM C133
 44.8 - 82.7 MPa
@Temperature 816 °C,
Time 18000 sec
fired, Cold Crushing Strength; ASTM C133
 48.3 - 82.7 MPa
@Temperature 1538 °C,
Time 18000 sec
fired, Cold Crushing Strength; ASTM C133
Abrasion 8.0 - 15
@Temperature 816 °C
cm3 loss, fired; ASTM C704
 
Thermal PropertiesOriginal ValueComments
Thermal Conductivity 1.05 W/m-K
@Temperature 260 °C
ASTM C201
 1.07 W/m-K
@Temperature 538 °C
ASTM C201
 1.08 W/m-K
@Temperature 815 °C
ASTM C201
 1.11 W/m-K
@Temperature 1093 °C
ASTM C201
Maximum Service Temperature, Air <= 1538 °C
Shrinkage 0.00 - 0.20 %
@Treatment Temp. 104 °C,
Time 86400 sec
dried; ASTM C113
 0.10 - 0.30 %
@Treatment Temp. 816 °C,
Time 18000 sec
fired; ASTM C113
 1.0 - 1.8 %
@Treatment Temp. 1538 °C,
Time 18000 sec
fired; ASTM C113
 
Processing PropertiesOriginal ValueComments
Shelf Life 12.0 Month
 
Component Elements PropertiesOriginal ValueComments
Al2O3 57 %
CaO 6.5 %
Fe2O3 0.60 %
MgO 0.20 %
Na2O 1.2 %
SiO2 34 %
TiO2 1.4 %
 
Descriptive Properties
Placement, average (kg)61to place 1m3
Water Addition9-10% casting by vibrating, testing purpose

Some of the values displayed above may have been converted from their original units and/or rounded in order to display the information in a consistent format. Users requiring more precise data for scientific or engineering calculations can click on the property value to see the original value as well as raw conversions to equivalent units. We advise that you only use the original value or one of its raw conversions in your calculations to minimize rounding error. We also ask that you refer to MatWeb's terms of use regarding this information. Click here to go back to viewing the property data in MatWeb's normal format.

CMORF6408 / 203192

Rulon Bearings

Please read our License Agreement regarding materials data and our Privacy Policy. Questions or comments about MatWeb? Please contact us at webmaster@matweb.com. We appreciate your input.

The contents of this web site, the MatWeb logo, and "MatWeb" are Copyright 1996-2024 by MatWeb, LLC. MatWeb is intended for personal, non-commercial use. The contents, results, and technical data from this site may not be reproduced either electronically, photographically or substantively without permission from MatWeb, LLC.