Value Added
Additives provide you with important benefits, either for your production processes or for the properties of the product. DOG is currently active in five different fields of business. Find out which application is right for you, or contact us directly, we would be happy to consult you.
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Here is the latest…
In our news section, we continually report on the latest new from DOG and what is important to us and to our customers. Each click is worth it!
SILANES
Deolink Amino TE 45 DL
3-Aminopropyltriethoxy silane on a mineral carrier
- For sulfur-free vulcanization systems
- Predominantly for ACM and AEM compounds with light fillers
- BfR suitable
Deolink Amino TE-100
3-Aminopropyl triethoxy silane
- For sulfur-free crosslinking systems
- Predominantly for ACM and AEM compounds with light fillers
- BfR suitable
Deolink FamaSil FR-VM
Silane blend with a polymeric processing aid
- Synergistic combination of vinyl- and methacrylfunktionalized organosilane for radical vulcanization systems
- Does not form any toxic methoxyethanol during hyrolysis
- Especially for highly loaded, flame retardant applications such as cable compounds
- Combines wetting and coupling of fillers, therefore improves physical properties as well as processing behavior
Deolink Methacryl TM-100
Methacryloxypropyl trimethoxy silane
- Suitable for radical as well as for sulfur crosslinking systems
- BfR suitable
Deolink MX
Thiocarboxy silane on polymer carrier
- Sulfur silane with blocked mercapto group
- May be used across a broad range of mixing temperatures
- Usually more effective than TESPT at lower mixing temperatures
- Lower risk of scorch
- No typical mercaptane odor
Deolink MX-100
Thiocarboxy silane
- Sulfur silane with blocked mercapto group
- May be used across a broad range of mixing temperatures
- Usually more effective than TESPT at lower mixing temperatures
- Lower risk of scorch
- No typical mercaptane odor
Deolink TESPT
Bis [triethoxysilylpropyl] tetrasulfi de on polymer / wax carrier
- Sulfur silane most commonly used
- Improved mechanical properties such as abrasion or compression set
- Optimum silanization at a mixing temperature between 130 –150 °C
Deolink TESPT-100
Bis[triethoxysilylpropyl] tetrasulfide
- Sulfur silane most commonly used
- Improved mechanical properties such as abrasion or compression set
- Optimum silanization at a mixing temperature between 130 – 150 °C
Deolink Vinyl
Tris [2-methoxyethoxy] vinyl silane on polymer / wax carrier
- Traditional vinyl silane for radical crosslinking
Deolink Vinyl TE-100
Triethoxyvinylsilane
- Vinyl silane for radical crosslinking systems
- Does not form any toxic methoxyethanol during hyrolysis
- BfR suitable
Deolink Vinyl-100
Tris[2-methoxyethoxy] vinyl silane
- Traditional vinyl silane for radical crosslinking systems
Deolink VO
Polysiloxane on polymer / wax carrier
- Oligomeric vinyl silane for peroxide vulcanization
- Does not form any toxic methoxyethanol
- Replacement for traditional vinyl silanes
- Low VOC
- BfR suitable
FamaSil DL-VM
Silane blend with a polymeric processing aid on a mineral carrier
- Synergistic combination of vinyl- and methacrylfunctionalized organosilane
- For radical / peroxide crosslinking
- Does not form any toxic methoxyethanol
- Especially for highly loaded, fl ame retardant applications such as cable compounds
- Combines wetting and coupling of fillers, therefore improves physical properties as well as processing behavior
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