Performance evaluation of new plasticizers for stretch
- Classification:Chemical Auxiliary Agent
- Other Names:Plasticizer
- Purity:99.6%
- Type:Plasticizer
- Usage:Petroleum Additives, Plastic Auxiliary Agents, Rubber Auxiliary Agents
- MOQ:200kgs
- Package:200kgs/battle
- Sample:Availabe
- Application:Plasticizer
several plasticizers (from renewable and non-renewable sources) for stretch PVC films intended to be employed as packaging in order to get information for technical speci-fication of these
A good performance of these plasticizers should be attributed to the interactions between plasticizer molecules and PVC chains that link them together. Authors postulated that the
Synthesis and application of natural polymeric plasticizer
- Classification:Chemical Auxiliary Agent, Chemical Auxiliary Agent
- Other Names:Plasticizer
- Purity:99.9%
- Type:Plasticizer
- Usage:Coating Auxiliary Agents, Leather Auxiliary Agents, Petroleum Additives, Plastic Auxiliary Agents, Rubber Auxiliary Agents, Surfactants, Textile Auxiliary Agents
- MOQ:25kg/bag
- Package:200kg/drum
- Sample:Availabe
The use of natural plasticizers, characterized by low toxicity and good compatibility with several plastics, resins, rubbers and elastomers, in substitution to conventional plasticizers has
According to this theory, the free volume of a glassy polymer at T g is 2.5% of the total volume. The WLF equation is one of the most successful theories of free volume. Principally, the free
Recent advancements in bio-based plasticizers for polylactic
- Classification:Chemical Auxiliary Agent, Chemical Auxiliary Agent
- Other Names:Plasticizer
- Purity:99%
- Type:Plasticizer
- Usage:Coating Auxiliary Agents, Leather Auxiliary Agents, Paper Chemicals
- MOQ:1000KG
- Package:25kg/drum
- Shape:Powder
- Payment:T/T
- Certificate::COA
Most plasticizers used in the polymer industry are derived from petrochemical sources, which can pose environmental and health risks due to their chemical composition,
Adding plasticizers can reduce the glass transition temperature of plastics, making hard and rigid plastics soft and flexible. Plasticizers are generally required to be colorless, non-toxic,
Exploring the Potential of Bio-plasticizers: Functions
- Classification:Chemical Auxiliary Agent, Chemical Auxiliary Agent
- Other Names:Plasticizer
- Purity:99
- Type:Adsorbent
- Usage:Coating Auxiliary Agents, Leather Auxiliary Agents, Paper Chemicals, Plastic Auxiliary Agents, Rubber Auxiliary Agents
- MOQ:200kgs
- Package:200kgs/battle
- Shape:Powder
- Place of Origin::China
- Item:T/T,L/C
- Application:Plasticizer
- Quality control:COA ,SDS,TDS
- Delivery:Within 7-15 Days
Plasticizers are core components utilized in plastics processing. They are additives applied to improve and, in some cases, make possible the processing of a polymer. Thus,
This article investigated the properties, preparation, and plasticization performance for PVC articles of this new cyclohexane-1,2-dicarboxylate plasticizer. This plasticizer features
Structure Design, Performance Simulation and Plasticizing
- Classification:Chemical Auxiliary Agent, Chemical Auxiliary Agent
- Other Names:Plasticizer
- Purity:99.5%, 99.5%
- Type:Plastizer
- Usage:Coating Auxiliary Agents, Leather Auxiliary Agents, Paper Chemicals
- MOQ:200kgs
- Package:200kgs/battle
- Shape:Powder
- Application:PVC Plasticizer
Plasticizer is an important assistant in the production process of polyvinyl chloride (PVC), which can effectively improve the plasticity of PVC. However, the durability and
Polyvinyl chloride (PVC) is polymerized from vinyl chloride monomers and is one of the commonly used thermoplastic. Strength and modulus of PVC are the most excellent among all general plastics combining with a series of unique physical and chemical properties such as excellent mechanical properties, good chemical corrosion resistance and good flame
- Which plasticizer has the best plasticizing efficiency?
- It's worth noting that PSCH has the best plasticizing efficiency attributed to the C–Cl bond on the side. According to the similar compatibility principle, except for hydrogen bonding, the existence of C–Cl bond in PSCH increases the compatibility of plasticizer and PVC.
- Are plasticizers environmentally friendly?
- Non-toxic, green plasticizers for use in electrical insulation, food packaging, and medical devices, as well as new plasticizers with superior resistance to oil, extraction, and migration, have been developed and employed continuously. Environmentally friendly plasticizers have attracted wide attention.
- What will China's plasticizer industry look like in the future?
- This will be the major task for Chinese plasticizer and soft PVC industries in the future. Phthalate plasticizers will still be the dominant type and production volume globally in the future, but those of long-chain (C 9 –C 10) alcohol-based esters and non-phthalate plasticizers will increase largely.
- What are plasticizers used for?
- Plasticizers are used mainly in PVC articles. In 2013, the total production volume of PVC articles reached as high as 5.5 million tons including 3 million tons of soft articles, which consumed 1.1 million tons of plasticizers. Plasticizers are necessary additives for synthetic resin processing to improve the processibility.
- Can plasticizer improve the plasticity of polyvinyl chloride (PVC)?
- Plasticizer is an important assistant in the production process of polyvinyl chloride (PVC), which can effectively improve the plasticity of PVC. However, the durability and plasticizing effect of traditional phthalate plasticizers need to be further improved.
- Why are plasticizers important for PVC articles?
- Plasticizers are the most important additive for PVC articles. The total production of plasticizers in China has reached 3 million tons per annum in 2011. Traditional phthalate plasticizers are the major products, ~80% of the overall use. Recently, phthalate plasticizers have been found toxic to infants, fetus, and reproductive systems.
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