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Content available remote Dependence of yarn and fabric strength on the structural parameters
100%
EN
Strength of the fabric is an important property that decides and influences all other performance properties of the fabric. But though we all understand the importance of the strength of the fabric in daily wear, a systematic approach is required to correlate various strength properties with that of the yarn and fabric construction parameters. We are all aware of the effect of the individual factors like twist, count and cover factor on the strength behaviour of the fabric. However it is necessary to study the effect of all these parameters in combination with each other to ultimately influence the strength of the fabric. Such a study is also useful for designing of the fabric, depending upon the end use and the customer requirement as it is gaining importance in the recent fierce competitive scenario. In this study we have evaluated the strength properties of the fabric with respect to tensile, tear and bursting strength and correlated the results with respect to the yarn count, Twist Multiplier and picks per inch of the fabric using regression equations.
PL
W artykule przedstawiono metodykę i wyniki kolejnych badań zasadniczych właściwości szczeliw konstrukcyjnych (powrotu elastycznego, wytrzymałości na rozdarcie oraz mechanicznego obciążenia cyklicznego) oraz wymogi, jakie muszą one spełniać zgodnie z normą PN-EN 15434+A1:2010 – Szkło w budownictwie. Norma wyrobu dla szczeliw konstrukcyjnych i/lub szczeliw odpornych na ultrafiolet (do stosowania w oszkleniach ze szczeliwem konstrukcyjnym i/lub izolacyjnych szybach zespolonych z odsłoniętym uszczelnieniem).
EN
The article presents the methodology and results of subsequent studies the intrinsic properties of structural sealant (elastic recovery, tear strength and mechanical cyclic loading) and the requirements they must meet according to requirements the standard PN-EN 15434+A1:2010 – Glass in building. Product standard for structural and/or ultra-violet resistant sealant (for use with structural sealant glazing and/or insulating glass units with exposed seals).
3
Content available remote Investigation of Circular Woven Composite Preforms for Composite Pipes
80%
EN
The main traditional technique for commercial manufacturing of composite pipes is filament winding in which the winding angle and the discontinuity of the structure (caused by starting and ending points of the winding process) are two important matters of concern. In the present study, circular woven fabric with its orthogonal net-shaped continuous structure was produced from polyester yarns. Fabric was wet with epoxy and hand lay-up was used to manufacture the composite pipes. Composite pipes were subjected to internal hydrostatic pressure and their burst strength was recorded. In addition, tensile strength of flat laminas was assessed in the warp and weft directions. We estimated and analysed the failure strength of composite pipes using Tresca’s failure criterion and Finite Element (FE) modeling. The experimental burst strength was almost 23% more than the FE model and 77% more than the theoretical estimate.
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