1969Advances in chemistry seriesRequires access

Thermoplastic-Thermoset Engineering Materials

G. Baumann

Open publisher page 2 citations

Abstract

This group of engineering plastics shows some of the typical characteristics of both the thermoplastics and the thermosets. At normal use temperatures, they exhibit a cross-linked network structure relating them to the thermosets yet they can be easily processed by standard or slightly modified thermoplastic forming methods. The network structure of the thermoplastic-thermosets differs in its nature from typical thermosets as shown by three examples (1) the ionomers, (2) the styrene-butadiene elastomers, and (3) the polyurethanes. Physical and mechanical properties of the three groups of thermoplastic-thermosets are discussed pointing out their special advantages as compared with competitive materials. Although the thermoplastic-thermosets are slightly more expensive than the largest volume thermoplastics or thermosets on a per pound basis, it is shown that the thermoplastic-thermosets are often favored because of their unique physical properties combined with cost savings in processing.

About this research paper

What this paper is about

This group of engineering plastics shows some of the typical characteristics of both the thermoplastics and the thermosets. At normal use temperatures, they exhibit a cross-linked network structure relating them to the thermosets yet they can be easily processed by standard or slightly modified thermoplastic forming methods. The network structure of the thermoplastic-thermosets differs in its nature from typical thermosets as shown by three examples (1) the ionomers, (2) the styrene-butadiene elastomers, and (3) the polyurethanes. Physical and mechanical properties of the three groups of thermoplastic-thermosets are discussed pointing out their special advantages as compared with competitive materials. Although the thermoplastic-thermosets are slightly more expensive than the largest volume thermoplastics or thermosets on a per pound basis, it is shown that the thermoplastic-thermosets are often favored because of their unique physical properties combined with cost savings in processing.

Why it matters

OpenAlex reports 2 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

This group of engineering plastics shows some of the typical characteristics of both the thermoplastics and the thermosets. At normal use temperatures, they exhibit a cross-linked network structure relating them to the thermosets yet they can be easily processed by standard or slightly modified thermoplastic forming methods. The network structure of the thermoplastic-thermosets differs in its nature from typical thermosets as shown by three examples (1) the ionomers, (2) the styrene-butadiene elastomers, and (3) the polyurethanes. Physical and mechanical properties of the three groups of thermoplastic-thermosets are discussed pointing out their special advantages as compared with competitive materials. Although the thermoplastic-thermosets are slightly more expensive than the largest volume thermoplastics or thermosets on a per pound basis, it is shown that the thermoplastic-thermosets are often favored because of their unique physical properties combined with cost savings in processing.

Key concepts: Thermosetting polymer, Thermoplastic, Materials science, Composite material, Thermoplastic elastomer, Polymer science, Polymer, Copolymer

Related papers

Back to paper searchBrowse research topicsOriginal source
Thermoplastic-Thermoset Engineering Materials — Research Paper | ScholarLens