A Strategy for Nonmigrating Highly Plasticized PVC
- Classification:Chemical Auxiliary Agent
- CAS No.:117-84-0
- Other Names:DOP/Dioctyl Phthalate
- MF:C24H38O4
- EINECS No.:201-557-4
- Purity:99.9%
- Type:pvc additive
- Usage:Leather Auxiliary Agents, Plastic Auxiliary Agents, Plasticizer
- MOQ:200kgs
- Package:200kgs/battle
- Item:T/T,L/C
DOP-O-CP52 has almost the same plasticizing efficiency as DOP within the ratio range (from 0 to 0.3) of plasticizer to PVC, which indicated the novel DOP-like plasticizer could have the same
high heat conditions and are less likely to volatilize out of the compound than are monomeric plasticizers. Polymeric plasticizers are resistant to extraction by solvents, oils and fluids, and
Di-Octyl Phthalate (DOP) Oan Industries
- 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:non-toxic calcium zinc stabilizer
- Usage:Plastic Auxiliary Agents
- MOQ:200kgs
- Package:200kgs/battle
- Item:T/T,L/C
Di-Octyl Phthalate (DOP) is a versatile plasticizer widely used in numerous industries for enhancing the flexibility and durability of PVC products. Its primary function is to improve the
DOP is characterized by its high compatibility with PVC, low volatility, and excellent electrical insulation properties, making it suitable for a wide range of applications. Applications of DOP
Dop Plasticizer Yuanlong
- Classification:Chemical Auxiliary Agent
- CAS No.:117-84-0
- Other Names:DOP, Dioctyl phthalate
- MF:C24H38O4, C24H38O4
- EINECS No.:201-557-4
- Purity:99.6%, 99.6%
- Type:Plasticizer Colorless Oily Liquid DOP for pvc and rubber
- Usage:Chemical Auxiliary Agent, Leather Auxiliary Agents
- MOQ:200kgs
- Package:200kgs/battle
- Application:PVC Plasticizer
- Item:T/T,L/C
DOP is favored for its high plasticizing efficiency, low volatility, and good resistance to water and weathering. It also provides good electrical insulation properties and maintains flexibility at low
It is the most widely used all-purpose plasticizer offered by Eastmanâ„¢ for use with polyvinyl chloride (PVC) resins. It is insoluble in water and has a viscosity of 56 cP at 25°C.
Recent Attempts in the Design of Efficient PVC Plasticizers
- Classification:Chemical Auxiliary Agent, Chemical Auxiliary Agent
- cas no 117-84-0
- Other Names:DiOctyle Phthalate DOP
- MF:C6H4(COOC8H17)2
- EINECS No.:201-557-4
- Purity:99.5%, 99.9%min.
- Type:Plasticizer
- Usage:Coating Auxiliary Agents
- MOQ::10 Tons
- Package:25kg/drum
- Application:PVC Plasticizer
DSC studies showed that a blend of PVC with furan dicarboxylates reacted with 1-butanol exhibited similar T g values as PVC/DOP, especially when the plasticizer content was
One of the main raw materials of the DOP plasticizer is acetic acid, and the acetic anhydride esterification reaction is the primary step in the production of DOP. In this step,
The role of DOP Plasticizer in PVC wire and cable insulation
- Classification:Chemical Auxiliary Agent, Chemical Auxiliary Agent
- cas no 117-84-0
- Other Names:DOP
- MF:C6H4(COOC8H17)2
- EINECS No.:201-557-4
- Purity:99.5%
- Type:Plastic Auxiliary Agents
- Usage:Plastic Auxiliary Agents
- MOQ:200kgs
- Package:200kgs/battle
- Shape:Powder
- Place of Origin::China
- Item:T/T,L/C
Electrical Insulation: PVC with DOP plasticizer has excellent electrical insulation properties, making it suitable for use in electrical and communication cables. The plasticized PVC
Eastman 168â„¢ non-phthalate plasticizer has a long history of safe use in PVC applications. It has consistently served as an alternative to common phthalates like DINP and DIDP. That makes
- Which plasticizer is better DOP or PVC?
- The studies showed that only a PVC blend with HEPCL 8 performed better than DOP in terms of mechanical properties, and at the same time exhibited the highest migration resistance. 2.1.3. Other Branched and Hyperbranched Plasticizers
- Which plasticizer has a low plasticizing efficiency?
- Polymeric plasticizer generally has low plasticizing efficiency. Navarro et al. 35 replaced the chlorine on the PVC backbone via nucleophilic substitution of thiol groups attached to the benzene ring of di (2-ethylhexyl)phthalate (also known as dioctyl phthalate, DOP, the most common plasticizer), to give totally nonleachable PVC.
- Do polymeric plasticizers have a low plasticizing efficiency?
- Unfortunately, they did not try them to PVC. In general, their large molecule size hinders diffusion in PVC to suppress migration. However, the rate of diffusion of the plasticizer is one of the most important factors determining plasticizer efficiency 33, 34. Polymeric plasticizer generally has low plasticizing efficiency.
- Can Plasticizers improve the mechanical properties of poly (vinyl chloride)?
- Multiple requests from the same IP address are counted as one view. This paper reviews the current trends in replacing commonly used plasticizers in poly (vinyl chloride), PVC, formulations by new compounds with reduced migration, leading to the enhancement in mechanical properties and better plasticizing efficiency.
- Can a low molecular weight plasticizer be used as a secondary plasticizer?
- Noteworthy research focused on the introduction of a low molecular weight plasticizer as a secondary plasticizer and was carried out by Matos et al. DEHT was partially (5, 10, 15, 20 phr) replaced by di (ethylhexyl)-2,5-furandicarboxylate (DEHF) in PVC plastics (with whole plasticizer content of 55 phr).
- Do plasticizers migrate from PVC to distilled water?
- Nevertheless, plasticizer migration from PVC blends with only one plasticizer, including extraction in distilled water, exudation and volatility, was investigated, showing the highest volatility of PVC/CA (about three times higher than for PVC/DOTP) and comparable extraction in distilled water.