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Homepage>BS EN ISO 1172:2023 Textile-glass-reinforced plastics. Prepregs, moulding compounds and laminates. Determination of the textile-glass and mineral-filler content using calcination methods
sklademVydáno: 2023-09-12
BS EN ISO 1172:2023 Textile-glass-reinforced plastics. Prepregs, moulding compounds and laminates. Determination of the textile-glass and mineral-filler content using calcination methods

BS EN ISO 1172:2023

Textile-glass-reinforced plastics. Prepregs, moulding compounds and laminates. Determination of the textile-glass and mineral-filler content using calcination methods

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Označení normy:BS EN ISO 1172:2023
Počet stran:16
Vydáno:2023-09-12
ISBN:978 0 539 20440 7
Status:Standard
DESCRIPTION

BS EN ISO 1172:2023


This standard BS EN ISO 1172:2023 Textile-glass-reinforced plastics. Prepregs, moulding compounds and laminates. Determination of the textile-glass and mineral-filler content using calcination methods is classified in these ICS categories:
  • 83.120 Reinforced plastics
This document specifies two calcination methods for the determination of the textile glass and mineral filler content of glass-reinforced plastics: —     Method A: for the determination of the textile glass content when no mineral fillers are present. —      Method B: for the determination of the textile-glass and mineral-filler content when both components are present. This document is applicable to the following types of material: —     prepregs made from yarns, rovings, tapes or fabrics; —     SMC, BMC and DMC moulding compounds; —     textile-glass-reinforced thermoplastic moulding materials and granules; —     filled or unfilled textile-glass laminates made with thermosetting or thermoplastic resins. The methods do not apply to the following types of reinforced plastic: —     those containing reinforcements other than textile glass; —     those containing materials which do not completely burn off at the test temperature (for example, those based on silicone resin); —     those containing mineral fillers which degrade at temperatures below the minimum calcination temperature.