Tensile example sentences

Related (10): Strength, stress, elongation, modulus, yield, strain, rupture, ductility, deformation, load.

"Tensile" Example Sentences


1. The tensile strength of the metal wire was very high.
2. They tested the tensile strength of the new alloy.
3. The material failed under tensile load.
4. The metal rod fractured due to the tensile stresses.
5. Engineers looked at tensile test results to choose the right material.
6. The tensile test showed that the steel exceeded design specifications.
7. The composite beam had high tensile and compressive strength.
8. She measured the elongation using the tensile testing machine.
9. The tensile testing machine graphically depicted the stress-strain curve.
10. The metal rod had good tensile and fatigue properties.
11. Stress is applied in tension during a tensile test.
12. The cable withstood the necessary tensile force.
13. The cable broke under excessive tensile load.
14. Concrete has low tensile strength but high compressive strength.
15. The tensile forces pulled the beam apart.
16. Reinforcing steel improves the tensile strength of concrete.
17. The tensile test yielded useful data on the material's properties.
18. The cable was under significant tensile strain.
19. The metal hook failed due to high tensile stresses.
20. Elongation was measured during the tensile test.
21. The testing machine applied tensile force until failure.
22. The tensile test specimens were standardized cylinders.
23. They designed the part to withstand the required tensile load.
24. The sheet metal showed little tensile deformation before fracturing.
25. The clamp secured the specimen during the tensile test.
26. Specimens were cut from the plate for tensile testing.
27. The metal showed good elasticity and ductility during tensile testing.
28. The tensile testing revealed the breaking point of the alloy.
29. The threaded rod fractured due to excessive tensile load.
30. Performance under tensile load is an important materials property.
31. Steel has exceptional properties for withstanding tensile stress.
32. The specimen necked down before fracturing in the tensile test.
33. Engineers measured yield strength through the tensile test.
34. They tuned the 3D printer settings to improve tensile strength.
35. Tensile stress is applied along the longitudinal axis.
36. The material exhibited plastic deformation before failure in the tensile test.
37. The bridle undergo tensile load from the horse's pull.
38. The specimen's behavior under tensile load determined its suitability.
39. The graph showed a linear relationship between stress and strain.
40. The tensile force stretched the rubber band to its limit.
41. The material's toughness could also be determined from the tensile test results.
42. Tensile strength refers to the maximum stress that a material can withstand.
43. The tensile failure occurred at the weakest point of the specimen.
44. The specimen is gripped at both ends during the tensile test.
45. The graph plateaued as the material reached its ultimate tensile strength.
46. The material exhibited brittle failure under tensile load.
47. The surgeon used tensile sutures to close the incision.
48. Foam has low elastic modulus but high tensile strength.
49. Fibers improve the tensile properties of ceramic composites.
50. The rubber band lengthened linearly with increasing tensile force.
51. Hardness and tensile strength often go hand in hand.
52. Fracture occurred perpendicular to the tensile load.
53. Ductile materialsneck before tensile failure.
54. The cable withstood the necessary
55. The cable broke under excessive tensile load.
56. The beam's deflection increased as the tensile load increased.
57. Modulus of elasticity was determined from the initial slope of the stress-strain graph.
58. Fiberglass has good tensile properties for its weight.
59. Materials with high surface area to volume ratio typically have lower tensile strength.
60. The data from the tensile test were used to optimize future material designs.

Common Phases


1. Tensile strength
2. Tensile stress
3. Tensile strain
4. Tensile load
5. Tensile test
6. Tensile force
7. Tensile properties
8. Tensile modulus
9. Ultimate tensile strength
10. Yield tensile strength
11. Tensile ductility
12. Tensile toughness

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