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Materials Properties

 

MATERIAL Thermal Conductivity (W/m°C) Thermal Dissipation (cm2/s) Yield Strength (Mpa) Specific Density (g/cm3) Elasticity (104Kg/cm) Tension Strength (Mpa) Elongation(%) Minimal Part Thickness (mm) Melting Temperature (°C) Strength/Weight Ratio Weight Ratio (%)
PC/ABS 0.91     1.14 2.4. 104/25 3/40 1.6 160/90 102/41 100
PC/GF (CF15%) +/- 0.2mm     1.34 4.9 60   1.26     93
CFRTP (CF13%)       1.32 7.1     1.11     81
CFRP (CF30%)       1.5 14.0     0.89     73
MG 79 0.38 160 1.8 47.0 280 8 0.59 470-596 187 59
AL 100 0.36 160 2.7 67.0 315 3 0.53 555-615 106 78
Steel 42   400 7.86   517 22   1250 80  
Zinc 113     6.6         377-432    
Iron       7.1              
Brass       8.5              
MATERIAL Tension Strength (kg/mm2) 0.2% Compre-ssive Strength (kg/mm2) Elonga-tion (%) Hard-ness (Brinell, HB) Shear Strength (kg/mm2) Shear Strength (ksi) Heat Expan-sion Compre-ssive Strength (kgf/mm2) Fatigue Strength*, 5000kgf/mm2 Elastic Strength (ksi) Compre-ssive Strenght (ksi) Conduct-ivity (% Copper) Impact (kgf-m/cm2)
ABS 9.8   60                    
ABS (CF30%) 12   2.7                    
AZ91D 23.9 15.3 3 75 14.1   27.4            
AM60B   17 6.5 62               14  
ADC12 33.5 0.36 2.5 80 20 29 21   14.1 74 24   0.83
ADC12 (T6)       75                  
ADC1 29.5   3.5   17.5     13.4 13.4       0.57
ADC10 33.0   3.5   19.0     15.2 14.1       0.87
ADC3 32.5   3.5   18.0     17.0 12.7       1.47
ADC5 31.5   5.0   20.0     19.5 14.1        
ADC14 33.6   < 1         26.3          
343     6             35 20    
360     4 85   28       44 25    
380                       23  
6061 (T6)     17 30   28       45 40    
7075 23.0 10.5 17 60 15.5                
7075 (T6) 58.5 51.5 11 150 34.0       16.0        
ZDC2 29   10   2.2   27            
#3 Zinc     10 82   31       41   27  
ZA12     6 105   43       58 46    
AZ91D     3 63   20       33 23 11  
Steel 517   22                    

*Fatigue strength measured using R.R. Moore tests.