| https://www.eptac.com/faqs/ask-helena-leo/ask/copper-elongation-and-tensile-strength-requirements
Copper Elongation and Tensile Strength Requirements - EPTAC - Train. Work Smarter. Succeed Looking for solder training standards, manuals, kits, and more
| https://www.eptac.com/faqs/ask-helena-leo/ask/addressing-circular-mil-area-cma-buildup
. Working through the numbers from Manko’s Book Solders and Soldering, first edition and using the formulas he provided and doing some research on the tensile strength of the wire in your example
ORION Industries | http://orionindustries.com/pdfs/nomex410.pdf
) 41 63 116 175 249 309 397 547 693 696 854 847 ASTM D-646 Density (g/cc) 0.72 0.80 0.87 0.95 0.96 1.00 1.03 1.06 1.13 1.08 1.17 1.10 Tensile strength (N/cm
| https://www.eptac.com/ask/addressing-circular-mil-area-cma-buildup/
. Working through the numbers from Manko’s Book Solders and Soldering, first edition and using the formulas he provided and doing some research on the tensile strength of the wire in your example
ORION Industries | http://orionindustries.com/pdfs/lexan9600.pdf
% 85 MECHANICAL Tensile Strength ASTM D638 psi @ Yield 9,500 Ultimate 9,000 Elongation ASTM D638 % 95 Tensile Modulus ASTM D638 psi 235,000 Flexural Strength ASTM D790 psi 13,500 Flexural Modulus ASTM D790 psi 370,000 Compressive Strength ASTM D695 psi 12,500 Dynatup Impact Strength, 1/2" dia. dart, (gauge dependant)***, @ 73
ORION Industries | http://orionindustries.com/pdfs/lexanfr60.pdf
% 0.28 MECHANICAL Tensile Strength ASTM D882 psi @ Yield 10,000 Ultimate 8,800 Tensile Modulus ASTM D882 psi 320,000 Elongation ASTM D882 % 25
ORION Industries | http://orionindustries.com/pdfs/fr700.pdf
— 1.32 Area Factor Calculation ft2/lb/mil 145.75 m2/lb/mil 13.54 Water Absorption, Equilibrium, 24 Hrs ASTM D570 % 0.28 MECHANICAL Tensile Strength ASTM D882 psi
ORION Industries | http://orionindustries.com/pdfs/PORONURETHANE.pdf
0.6 Tear Strength, pli, min. ASTM D624 Die C 1 3 4 3 5 12 6 10 13 12 17 19 (kN/m) (0.2) (0.5) (0.7) (0.5) (0.9) (2.1) (1.1) (1.8) (2.3) (2.1) (3.0) (3.3) Tensile Elongation
| https://www.eptac.com/wp-content/uploads/2013/06/eptac_06_19_13.pdf