## Synopsis Some unsaturated polyester resins were prepared by the eater interchange between pcarbethoxymaleananilic acid and p-carbethoxysuccinanilic acid with saturated and unsaturated &oh. Moreover, copolymers were also synthesized by the polyesteri6cation of the aforementioned acids and maleic
Crosslinking of unsaturated polyester resins by combinations of vinyl esters and methacrylates
β Scribed by Peter E. Froehling
- Publisher
- John Wiley and Sons
- Year
- 1982
- Tongue
- English
- Weight
- 404 KB
- Volume
- 27
- Category
- Article
- ISSN
- 0021-8995
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β¦ Synopsis
Abstract
The replacement of styrene by other crosslinking monomers in unsaturated polyester resins has been investigated because of the possible toxicity of this monomer and the strong smoke evolution of burning polyester materials. A theoretical study has been carried out to provide criteria for the applicability of classes of monomers in polyester curing. From this study it appeared that vinyl esters, vinyl ethers, Nβvinyl lactams, and styrenes are suitable, whereas acrylic and methacrylic esters and allylic or olefinic compounds are not. Combinations of vinyl esters and (meth)acrylic esters of polyols should generate IPNβlike structures. Polyesters cured by this combination of monomers gave materials with increased stiffness and strength relative to those obtained with the separate monomers and on the same level as styreneβcured polyesters.
π SIMILAR VOLUMES
The curing behavior of five unsaturated polyester resins with different molar ratios of styrene to the double bonds in the polyester chain (MR) was investigated. The gel time was measured according to a standard method by the Society of the Plastic Industry (SPI) and by low-resolution pulse nuclear
The microgelation phenomenon during the curing of unsaturated polyester resin was investigated by both static and dynamic light scattering before gelation. The results of static light scattering revealed that the polymer molecular weight increased with degree of curing. The second virial coefficient
## Abstract Unsaturated polyester resin (UP) was prepared from glycolyzed oligomer of poly(ethylene terephthalate) (PET) waste based on diethylene glycol (DEG). New diacrylate and dimethacrylate vinyl ester resins prepared from glycolysis of PET with tetraethylene glycol were blended with UP to stu