Reactive Ester Plasticizer for Elastomers Hallstar Industrial
- Classification:Chemical Auxiliary Agent
- CAS No.:117-84-0
- Other Names:Dioctyl Phthalate
- MF:C24H38O4
- EINECS No.:201-557-4
- Purity:99.5%, 99% min
- Type:non-toxic calcium zinc stabilizer
- Usage:PVC Products, Coating Auxiliary Agents, Leather Auxiliary Agents,
- MOQ:200kgs
- Package:200kgs/battle
- Place of Origin::China
Reactive Ester Plasthall® RP-1020 For an ester to react with a polymer, a double bond must exist so a reaction can take place between the ester and the unsaturated polymer. Figure 1
Ester plasticizers for high-temp AEM elastomers Acrylic elastomers are used in applica-tions requiring continuous service up to 175°C and intermittent exposure to ex-tremely high
Evaluating Plasticizers for Elastomers used in High
- Classification:Chemical Auxiliary Agent, Chemical Auxiliary Agent
- cas no 117-84-0
- Other Names:DOP, diocty phthalate, 1,2-phthalate
- MF:C24H38O4
- EINECS No.:201-557-4
- Purity:99%, 99%
- Type:Plasticizer
- Usage:Plastic Auxiliary Agents
- MOQ:200kgs
- Package:200kgs/battle
- Application:PVC Plasticizer
- Item:T/T,L/C
Plasticizers are commonly used only for their as molded low-temperature contribution. Effective plasticizers for the above-named elastomers should have resistance to volatility and extraction
Ester Plasticizers for Elastomers; Ester Plasticizers for Hydrophilic Print Roll Compounds; butyl ethylene, oxyethyl, and have a variety of cure site monomers. Curing occurs through a reactive halogen, epoxy, or carboxyl that
ESTER PLASTICIZERS FOR ELASTOMERS Hallstar
- Classification:Chemical Auxiliary Agent
- CAS No.:117-84-0
- Other Names:Dioctyl Phthalate DOP
- MF:C6H4(COOC8H17)2
- EINECS No.:201-557-4
- Purity:99 %
- Type:Adsorbent, Carbon Black
- Usage:Coating Auxiliary Agents, Leather Auxiliary Agents, Plastic Auxiliary Agents, Rubber Auxiliary Agents
- MOQ::10 Tons
- Package:25kg/drum
- Payment:T/T
When selecting an ester plasticizer it is important to consider which elastomer is being used, and the properties of that elastomer. Plasticizers and elastomers need to be compatible with each
As Hallstar’s technical paper explains, the basic function of an ester plasticizer is to modify a polymer or resin to enhance its utility. Ester plasticizers make it possible to process
August 22, 2016 15 Technical Evaluating synthetic
- Classification:Chemical Auxiliary Agent
- CAS No.:117-84-0
- Other Names:DOP, diocty phthalate, 1,2-phthalate
- MF:C24H38O4, C24H38O4
- EINECS No.:201-557-4
- Purity:99.5%min, 99.5%min
- Type:Adsorbent
- Usage:Rubber Auxiliary Agents
- MOQ:200kgs
- Package:200kgs/battle
- Volume Resistivity:1064
- Item:T/T,L/C
Selection of ester plasticizer Ester plasticizers find significant use in nitrile, polychloroprene and chlorinat-ed polyethylene elastomers that are used at temperatures of 275 F maximum.
Hallstar Ester Plasticizers for Elastomers November 18, 2016. Hallstar is a market leader in producing specialty plasticizers for elastomers. They strive to stay ahead of market
Reactive ester plasticizer for elastomers ResearchGate
- Classification:Chemical Auxiliary Agent
- CAS No.:117-84-0
- Other Names:DOP, diocty phthalate, 1,2-phthalate
- MF:C6H4(COOC8H17)2
- EINECS No.:201-557-4
- Purity:99 %
- Type:Plasticizer, Dioctyl Phthalate
- Usage:Leather Auxiliary Agents, Plastic Auxiliary Agents, Plasticizer
- MOQ:200kgs
- Package:200kgs/battle
- Advantage:Stable
- Payment:T/T
Nov 1, 2008Traditional elastomer polymers such as NBR, CR, CM and CSM have been used for years as moderate to low performance ester plasticizers. However, longevity requirements
Permanent Plasticizers. Ester plasticizers are traditionally used to provide low temperature and improved processing of elastomers. Hallstar has developed esters that have been designed to
- What is a reactive ester plasticizer for elastomers?
- Reactive Ester Plasticizer for Elastomers Stephen O’Rourke, Technical Director, Industrial Ester plasticizers are traditionally used to provide low temperature and improved processing of elastomers. New esters have been designed recently to improve the permanence of these materials when subjected to high heat and fluid extraction.
- Are plasticizers effective in reducing low-temperature elastomer test values?
- Plasticizers, when added to acrylic elastomer compounds, can reduce the low-temperature test values obtained compared to unplasticized compounds. Of the monomeric plasticizers tested, DB(3E)A and DADEG appear most effective. It should be noted these are the highest molecular weight of the monomeric esters tested.
- Are standard polymeric elastomers suitable for low temperature performance?
- Standard polymeric esters are well known for their permanence in these elastomers, but are insufficient at im-proving low temperature performance. The esters tested in this study are lower molecular weight esters that have high heat resistance, but provide much needed low temperature flexibility, both before and after high heat-aging.
- Why do we use plasticizers for elastomers?
- Plasticizers are commonly used only for their as molded low-temperature contribution. Effective plasticizers for the above-named elastomers should have resistance to volatility and extraction at elevated temperatures. Weight changes and low-temperature flexibility after laboratory aging are indicators of plasticizer permanence.
- Which monomeric plasticizer is most effective?
- Of the monomeric plasticizers tested, DB(3E)A and DADEG appear most effective. It should be noted these are the highest molecular weight of the monomeric esters tested. The low viscosity (and molecular weight) of polymeric A1100 appears to offer low-temperature flexibility and permanence suitable to acrylic elastomers.
- What are external plasticizers?
- External plasticizers are materials that interact physically with the elastomer but are not chemically reacted with the polymer. Solvent and non-solvent are two distinct types of external plasticizers. Common esters and polymeric polyesters are both external and physical plasticizers.