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Conformability of Flat Fabric. Fabric Forms Produce Woven and Braided fabrics from the flat tape yarn with different configurations Evaluate processing.

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Presentation on theme: "Conformability of Flat Fabric. Fabric Forms Produce Woven and Braided fabrics from the flat tape yarn with different configurations Evaluate processing."— Presentation transcript:

1 Conformability of Flat Fabric

2 Fabric Forms Produce Woven and Braided fabrics from the flat tape yarn with different configurations Evaluate processing issues Characterize tensile, shear and conformability

3 Woven Fabric Plain Weave Twill Weave (3/1) Satin Weave (8 harness) Texture: –10 epi, 10 ppi (50/50) –10 epi, 5 ppi (67/33) –10 epi 2.5 ppi (80/20)

4 Braided Fabric Two braid types: –Biaxial Braid (64 carriers) –Triaxial Braid (64 carriers + 32 longitudinals) Formed at four different mandrel diameters: 4.1 cm 4.3 cm 6.1 cm 8.9 cm –Made for high coverage, braid angle results from cover factor

5 Woven Fabrics Warp was produced by hand. It was possible to keep the yarns flat if the supply spool was kept horizontal and rotated to prevent twist. Heddles had to be modified (flattened) to allow the yarn to stay flat during weaving. Pick insertion required pull off from the spool to prevent twisting. Some yarns split when they hit another object during weaving - heddle sides, another yarn, lease rods…

6 Plain Weaves Generally weave fine. Tight configuration much easier to produce (10/10) than looser ones

7 Twill Weaves End density was reduced rather than pick density to assist in weave production rates Difficulty maintaining quality fabric with low end count (5/10 and 2.5/10)

8 Satin Weaves End density reduced, not pick Sleazy fabric - difficult to handle, yarns move around

9 Braided Fabrics Bobbins were spooled by hand - supply of yarn was kept horizontal and rotated while winding to prevent twist buildup Composites type carriers were used with large pigtails. Generally braid formed well - at higher braid angles there was some yarn splitting Braids were formed over cylindrical mandrels and then removed

10 Biaxial Braided Fabrics Four different diameter mandrels were used for production When braids were removed from the mandrels, they reoriented to a stable configuration. Generally all the braids deformed to a similar shape

11 Biaxial Braided Fabrics

12 Biaxial Braided Fabrics - Relaxed Braid Angles

13 Triaxial Braided Fabrics The Triaxial braid is a biaxial braid that has longitudinal yarns inserted at each horn gear. 64 biaxial carriers are used plus an additional 32 triaxial (longitudinal) carriers. Braiding went smoothly, similar to biaxial. Fabrics were not removed from the mandrels for measuring braid angles

14 Traixial Braids - As Formed Braid Angles

15 Tensile Testing Ravel strip method for wovens Braid sleeve for braids

16 Tensile Response - Strength

17 Tensile Response - Strain to Failure

18 Tensile Response - Modulus

19 Tensile Response - Poisson’s Ratio

20 Tensile Response - Poisson

21 Conformability Fabrics were pressed against the surface of a sphere and the ratio of contact area to fabric area was determined. Initially a bowling ball was used, but most of the fabrics conformed perfectly. A smaller diameter sphere (bocce ball) was used to get more differentiation.

22 Bowling Ball test

23 Only the Plain Weave had noticeable folds or wrinkles Braided fabrics (small diameter mandrels) were not wide enough to get a full circle contact

24 Bocce Ball Test - Plain Weave

25 Bocce Ball Test - Satin The border of the restraining ring and the folds/wrinkles were marked for measurements later

26 Bocce Ball: Twill

27 Bocce Ball: Braid

28 Bocce Ball: Triaxial

29 Flattened Images: Plain Weave

30 Flattened: Twill

31 Flattened: Satin

32 Flattened: Braid

33 Flattened: Triaxial

34 Comparison of Conformability


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