Recent Attempts in the Design of Efficient PVC
- Classification:Chemical Auxiliary Agent, Chemical Auxiliary Agent
- Other Names:Plasticizer
- Purity:99.9%
- Type:Plastic Auxiliary Agents
- Usage:Leather Auxiliary Agents, Plastic Auxiliary Agents, Rubber Auxiliary Agents
- MOQ:200kgs
- Package:200kgs/battle
- Payment:T/T
- Certificate::COA
The new compounds were characterized with a good thermal stability and improved plasticizer migration resistance. Authors attributed the observed improvement in thermal stability to the presence of dipole–dipol interactions
Besides, considering the plasticization efficiency and storage stability for chitosan films, GLY and PEG showed to be more suitable than EG and PG. Furthermore, a plasticizer
Thermomechanical Properties of Nontoxic
- Classification:Chemical Auxiliary Agent, Chemical Auxiliary Agent
- Other Names:Plasticizer
- Purity:99.5% min.
- Type:Adsorbent
- Usage:Plastic Auxiliary Agents, Plasticizer
- MOQ:1000KG
- Package:25kg/drum
- Place of Origin:Henan, China
Environmental and toxicity concerns dictate replacement of di(2-ethylhexyl) phthalate (DEHP) plasticizer used to impart flexibility and thermal stability to polyvinyl chloride (PVC). Potential alternatives to DEHP in PVC
Thermodynamic stability means the absence of plasticizer exudation at temperature changes, mechanical stresses, and pressure. The higher the compatibility is, the
Chitosan-based films with alternative eco-friendly plasticizers
- Classification:Chemical Auxiliary Agent, Chemical Auxiliary Agent
- Other Names:Plasticizer
- Purity:99.5% min.
- Type:Liquid, plasticizer
- Usage:Coating Auxiliary Agents, Electronics Chemicals, Leather Auxiliary Agents, Paper Chemicals, Plastic Auxiliary Agents
- MOQ:25kg/bag
- Package:200kg/drum
- Payment:T/T
- Application:PVC Plasticizer
In addition, chitosan films containing 20 wt% glycerol or polyethylene glycol showed good stability for 5 months. Meanwhile, Caicedo et al. This effect, in turn, can be
The plasticizers used in this study were synthesized from renewable raw materials using succinic acid, oleic acid, and propylene glycol. Four environmentally friendly plasticizer samples were obtained; their
Plasticizers SpringerLink
- Classification:Chemical Auxiliary Agent
- Other Names:Plasticizer
- Purity:99.5
- Type:Liquid, plasticizer
- Usage:Leather Auxiliary Agents, Paper Chemicals, Plastic Auxiliary Agents, Rubber Auxiliary Agents, Textile Auxiliary Agents
- MOQ:1000KG
- Package:25kg/drum
- Sample:Availabe
- Application:Plasticizer
- Quality control:COA ,SDS,TDS
- Delivery:Within 7-15 Days
These esters have good plasticizer efficiency (substitution factor less than 0.95) and increase the thermal stability of the final products. They are marketed as partly biobased
Because the commonly used phthalate plasticizers have adverse effects on the environment and health, there is a need to develop plasticizers with renewable material
Synthesis and properties of a bio-based PVC
- Classification:Chemical Auxiliary Agent
- Other Names:Plasticizer
- Purity:≥99.5%
- Type:Chemical additives, Chemical plasticizer 928%
- Usage:Coating Auxiliary Agents, Leather Auxiliary Agents, Petroleum Additives, Plastic Auxiliary Agents, Rubber Auxiliary Agents, Surfactants, Textile Auxiliary Agents
- MOQ:1000KG
- Package:25kg/drum
- Color:colorless
Thermal stability of the plasticizers and PVC specimens was researched using TGA and the obtained data are shown in Fig. 9 and Table 3. and the C O frequency of ALHD shifted from 1745.6 cm −1 to 1739.1 cm −1,
A good miscibility was found in the case of isosorbide esters with different alkyl chain length derived from glucose . These plasticizers led to improved tensile properties, Shore A hardness and T g. The authors attribute these improved properties to the dipole–dipole interactions between C =O and H–C–Cl bonds.