Instead of off-the-shelf solutions, RTP Company routinely develops specialty compounds with a precise combination of properties such as conductivity, flame retardance, structural reinforcement, color, and wear resistance to meet your exact application requirements.
ESD 800
versus 1018 C Steel
|
|
|
PV
|
Load
|
Speed
|
Wear Factor X 10E-8
|
µ dynamic
|
| 70 |
1.80 |
0.25 |
87 |
0.60 |
| 175 |
2.25 |
0.50 |
39 |
0.57 |
| 350 |
2.25 |
1.00 |
6 |
0.44 |
RTP 800
versus 1018 C Steel
|
|
|
PV
|
Load
|
Speed
|
Wear Factor X 10E-8
|
µ dynamic
|
| 70 |
1.80 |
0.25 |
187 |
0.40 |
| 175 |
2.25 |
0.50 |
206 |
0.42 |
| 350 |
2.25 |
1.00 |
302 |
0.44 |
RTP 800 SI 2
versus 1018 C Steel
|
|
|
PV
|
Load
|
Speed
|
Wear Factor X 10E-8
|
µ dynamic
|
| 70 |
1.80 |
0.25 |
85 |
0.43 |
| 70 |
0.45 |
1.00 |
313 |
0.39 |
| 175 |
2.25 |
0.50 |
92 |
0.41 |
| 350 |
8.99 |
0.25 |
121 |
0.51 |
| 350 |
2.25 |
1.00 |
151 |
0.51 |
RTP 800 TFE 5
versus 1018 C Steel
|
|
|
PV
|
Load
|
Speed
|
Wear Factor X 10E-8
|
µ dynamic
|
| 70 |
1.80 |
0.25 |
36 |
0.37 |
| 175 |
2.25 |
0.50 |
85 |
0.35 |
| 350 |
2.25 |
1.00 |
32 |
0.30 |
RTP 800 TFE 10
versus 1018 C Steel
|
|
|
PV
|
Load
|
Speed
|
Wear Factor X 10E-8
|
µ dynamic
|
| 70 |
1.80 |
0.25 |
170 |
0.68 |
| 70 |
0.45 |
1.00 |
380 |
0.92 |
| 175 |
2.25 |
0.50 |
26 |
0.29 |
| 350 |
8.99 |
0.25 |
14 |
0.18 |
| 350 |
2.25 |
1.00 |
1245 |
0.10 |
RTP 800 TFE 10 SI 2
versus 1018 C Steel
|
|
|
PV
|
Load
|
Speed
|
Wear Factor X 10E-8
|
µ dynamic
|
| 70 |
1.80 |
0.25 |
19 |
0.29 |
| 70 |
0.45 |
1.00 |
114 |
0.63 |
| 175 |
2.25 |
0.50 |
12 |
0.24 |
| 350 |
8.99 |
0.25 |
18 |
0.14 |
| 350 |
2.25 |
1.00 |
219 |
0.27 |
versus RTP 300 TFE 10 SI 2
|
| 70 |
1.80 |
0.25 |
8 |
0.19 |
versus RTP 302 TFE 15
|
| 70 |
1.80 |
0.25 |
21 |
0.31 |
versus RTP 382 TFE 15
|
| 70 |
1.80 |
0.25 |
287 |
0.33 |
versus RTP 200 TFE 15
|
| 70 |
1.80 |
0.25 |
4 |
0.21 |
versus RTP 202 TFE 13 SI 2
|
| 70 |
1.80 |
0.25 |
6 |
0.21 |
versus RTP 282 TFE 13 SI 2
|
| 70 |
1.80 |
0.25 |
64 |
0.27 |
RTP 800 TFE 15
versus 1018 C Steel
|
|
|
PV
|
Load
|
Speed
|
Wear Factor X 10E-8
|
µ dynamic
|
| 70 |
1.80 |
0.25 |
134 |
0.26 |
| 175 |
2.25 |
0.50 |
44 |
0.34 |
| 350 |
2.25 |
0.50 |
185 |
0.39 |
RTP 800 TFE 20
versus 1018 C Steel
|
|
|
PV
|
Load
|
Speed
|
Wear Factor X 10E-8
|
µ dynamic
|
| 70 |
1.80 |
0.25 |
164 |
0.25 |
| 175 |
2.25 |
0.50 |
28 |
0.34 |
| 350 |
2.25 |
1.00 |
81 |
0.39 |
RTP 800 TFE 20 DEL
versus 1018 C Steel
|
|
|
PV
|
Load
|
Speed
|
Wear Factor X 10E-8
|
µ dynamic
|
| 70 |
9.00 |
0.05 |
231 |
0.17 |
| 70 |
1.80 |
0.25 |
166 |
0.22 |
| 175 |
2.25 |
0.50 |
115 |
0.27 |
| 350 |
2.25 |
1.00 |
233 |
0.28 |
RTP 882 TFE 10
versus 1018 C Steel
|
|
|
PV
|
Load
|
Speed
|
Wear Factor X 10E-8
|
µ dynamic
|
| 70 |
1.80 |
0.25 |
321 |
0.30 |
| 175 |
2.25 |
0.50 |
440 |
0.40 |
| 350 |
2.25 |
1.00 |
609 |
0.57 |
RTP 800 AR 10 TFE 15
versus 1018 C Steel
|
|
|
PV
|
Load
|
Speed
|
Wear Factor X 10E-8
|
µ dynamic
|
| 70 |
1.80 |
0.25 |
78 |
0.18 |
| 70 |
1.80 |
0.25 |
27 |
0.18 |
| 70 |
0.45 |
1.00 |
33 |
|
| 175 |
2.25 |
0.50 |
16 |
0.25 |
| 350 |
9.00 |
0.25 |
6 |
0.19 |
| 350 |
2.25 |
1.00 |
26 |
0.26 |
versus RTP 300 TFE 10 SI 2
|
| 70 |
1.80 |
0.25 |
8 |
0.24 |
versus RTP 302 TFE 15
|
| 70 |
1.80 |
0.25 |
37 |
0.22 |
versus RTP 382 TFE 15
|
| 70 |
1.80 |
0.25 |
51 |
0.22 |
versus RTP 200 TFE 15
|
| 70 |
1.80 |
0.25 |
12 |
0.23 |
versus RTP 202 TFE 13 SI 2
|
| 70 |
1.80 |
0.25 |
14 |
0.15 |
versus RTP 282 TFE 13 SI 2
|
| 70 |
1.80 |
0.25 |
51 |
0.30 |
RTP 899 X 82676 F
versus 1018 C Steel
|
|
|
PV
|
Load
|
Speed
|
Wear Factor X 10E-8
|
µ dynamic
|
| 70 |
1.80 |
0.25 |
60 |
0.30 |
RTP 899 X 85698 A
versus 1018 C Steel
|
|
|
PV
|
Load
|
Speed
|
Wear Factor X 10E-8
|
µ dynamic
|
| 70 |
1.80 |
0.25 |
22 |
0.36 |
RTP 899 X 88188
versus 1018 C Steel
|
|
|
PV
|
Load
|
Speed
|
Wear Factor X 10E-8
|
µ dynamic
|
| 70 |
1.80 |
0.25 |
27 |
0.34 |
RTP 899 X 90822
versus 1018 C Steel
|
|
|
PV
|
Load
|
Speed
|
Wear Factor X 10E-8
|
µ dynamic
|
| 70 |
1.80 |
0.25 |
46 |
0.31 |