Void of compromise and full of intense performance! Rock West's high modulus tubing utilizes high modulus (55 Msi) fibers with a strength of 640 ksi. This combination yields an astounding product comprised of a multi-directional layup of only high modulus fibers with a higher temperature resin system. Our high modulus tubing lineup is generally designated by using an outer layer of a 3k plain weave fabric.
*This value varies depending on the specific layup orientation, tube diameters and shape. Representing a theoretical modulus assigned to a general composite round tube (not the fiber alone)
Shape | Round |
---|---|
Materials | High Modulus Carbon |
Pattern | 1k Plain Weave |
Color | Black |
Finish | Cello Wrap Gloss |
Inside Diameter | 2.75 |
Outside Diameter | 3.28 |
Wall Thickness | 0.265 |
Length | 70 |
Length (max continuous) | 70.0 |
Linear Density | 1.657 |
Volumetric Density | 0.055 |
Weight | 9.664 |
Primary Fiber | Tenax UTS50 |
Primary Resin / Hardener | Eporite EHM32 |
HTS - Harmonized Tariff Code | 6815.13.0000 |
All laminate properties and mechanical calculations are based on Classical Lamination Theory and should be used as a reference only. Rock West Composites does not guarantee these properties or calculations.
Avg EX Young's Modulus | 2.336E7 |
---|---|
Avg EY Young's Modulus | 7527000.0 |
GXY Shear Modulus | 2498000.0 |
X Tensile Yield Strength | 159900.0 |
X Compressive Yield Strength | 128300.0 |
Y Tensile Yield Strength | 56430.0 |
Y Compressive Yield Strength | 43780.0 |
XY Shear Strength | 19360.0 |
CTEX | 1.63E-07 |
CTEY | 2.73E-06 |
Poisson's Ratio vXY | 0.191 |
Poisson's Ratio vYX | 0.061 |
All laminate properties and mechanical calculations are based on Classical Lamination Theory and should be used as a reference only. Rock West Composites does not guarantee these properties or calculations.
Ply # | Orientation (degrees) | Location |
---|---|---|
1 | 0 | Inside |
2 | 0 | ↓ |
3 | 0 | |
4 | 0 | |
5 | 0 | |
6 | 45 | |
7 | -45 | |
8 | 0 | |
9 | 0 | |
10 | 0 | |
11 | 0 | |
12 | 0 | |
13 | 45 | |
14 | -45 | |
15 | 0 | |
16 | 0 | |
17 | 0 | |
18 | 0 | |
19 | 0 | |
20 | 90 | |
21 | 90 | |
22 | 90 | |
23 | 90 | |
24 | 0 | |
25 | 0 | |
26 | 0 | |
27 | 0 | |
28 | 0 | |
29 | 45 | |
30 | -45 | |
31 | 0 | |
32 | 0 | |
33 | 0 | |
34 | 0 | |
35 | 90 | |
36 | 90 | |
37 | 90 | |
38 | 0 | |
39 | 0 | |
40 | 0 | |
41 | 0 | |
42 | -45 | |
43 | 45 | |
44 | 0 | |
45 | 0 | |
46 | 0 | |
47 | 0 | |
48 | 0 | |
49 | 90 | |
50 | 90 | |
51 | 90 | |
52 | 90 | |
53 | 0 | |
54 | 0 | |
55 | 0 | |
56 | 0 | |
57 | 0 | |
58 | -45 | |
59 | 45 | |
60 | 0 | |
61 | 0 | |
62 | 0 | |
63 | 0 | |
64 | 0 | |
65 | -45 | |
66 | 45 | |
67 | 0 | |
68 | 0 | |
69 | 0 | |
70 | 0 | |
71 | 0 | |
72 | 0/90 | Outside |
We cannot supply theoretical values for this tube at this time. For specification sheets and other data we can supply please review our Technical Spec page.