Songhan Plastic Technology Co.,Ltd.
 POLYMER SEARCH

Polymer Property : Molecular Weight = 9.00e+6 g/mol Product List

Physical Properties

Tips: 30 items are displayed at most. For the rest of the results, please contact customer service.
Physical Properties Metric English Comments
Molecular Weight 9.00e+6 g/mol
9.00e+6 g/mol
Murtfeldt Material ”S”® 8000 Polyethylene
Material ”S”® 8000 improves on the already impressive material properties of Original Material ”S”®. The self lubricating character of this material makes it ideally suited for use in sliding..
Molecular Weight 9.00e+6 g/mol
9.00e+6 g/mol
Murtfeldt Original Material ”S”® plus + FP Polyethylene
Original Material ”S”® plus+ FP [FS] is a technical plastic that completely meets the requirements of the food sector for the detectability of plastic foreign bodies in foods. “FP” stands for “..
Molecular Weight 9.00e+6 g/mol
9.00e+6 g/mol
Murtfeldt Original Material ”S”® plus + GB Polyethylene, Glass Bead Filled
The balanced quantity of micro glass beads in Material ”S”® plus+ GB provides the combined benefits of extremely high molecular weight polyethylene and glass. The glass beads that protrude from ..
Molecular Weight 9.00e+6 g/mol
9.00e+6 g/mol
Murtfeldt Original Material ”S”® plus + LF ESD Polyethylene, Low Friction Conductive
This material is electrically conductive and has half the sliding friction coefficient of the Original Material ”S”® enabling voltage to be dissipated at maximum speed with the same maximum frict..
Molecular Weight 9.00e+6 g/mol
9.00e+6 g/mol
Murtfeldt Original Material ”S”® plus + LF Polyethylene, Low Friction
This material has half the sliding friction coefficient of the Original Material ”S”®. This enables an increased machine running speed at the same time as less abrasion and thus a lower maintenan..
Molecular Weight 9.00e+6 g/mol
9.00e+6 g/mol
Murtfeldt Original Material ”S”® plus + TLS Polyethylene
Original Material ”S”® plus+ TLS is designed for high temperature industrial applications for which Original Material ”S”® could previously not be used. The thermal oxidation point has been i..
Copyright © lookpolymers.com All Rights Reserved