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Aluminium tensile test

Tensile moduli were measured from standard dog-bone samples (2.0 mm thickness, 4.7 mm width, and 22.0 mm gauge length) in a Model 1122 Instron. Flexural modulus was determined using a testing apparatus which consists of two aluminium/steel pieces attached to the Instron which is fitted with a tensile load cell. This device effectively performs an inverted three-point bend the two side bars remain stationary above the sample as the central bar below the sample moves upward. Flexural samples measured ca. 52.0 x 1.7 x 13.1 mm and were tested using a 25.4 mm span (distance between the two side bars). Crosshead speed (CHS) for both flexural and tensile testing was 1.0 mm/min. [Pg.84]

The tests were carried out on two series of tensile test pieces from sheets of aluminium, the one 0-5 mm. thick, Type la,... [Pg.29]

Longitudinal and transverse tensile tests are prescribed in the case of aluminium and aluminium alloys of great strength of thickness greater than 1 mm., and involve the determination of Elastic Limit, Tensile Strength, and % Elongation. [Pg.151]

Object. Tensile tests on test pieces of sheet aluminium after thermal treatment. [Pg.158]

Two series of tensile test pieces in sheet aluminium —... [Pg.158]

An aluminium alloy specimen of 3 mm diameter with 50 mm gauge length was tested to destruction in a tensile test. The results are given in Table 10.2. The maximum load applied was 8100N and the final length between the gauge marks was 53.2 mm. [Pg.333]

Dr M F Workel (Corns Research Development Technology, Ijmuiden, The Netherlands) How do the flow curves at p=0 for the C45 and aluminium compare to traditional tensile test results, according to the normal B S standards ... [Pg.869]

The effect of silanes on the bond strength of two epoxide adhesives to glass is shown in Table 13. The test mode was that of Sandwich Butt Tensile in which a glass disc was bonded between two aluminium specimens in the form of a sandwich, and the resulting composite specimen broken on an Instron Universal Test Machine. Clearly in such a composite test specimen, alignment is important and there are many potential sites and modes of failure. [Pg.38]

Table 4 Tensile properties of the aluminium alloys employed in the current research obtained at a constant strain rate of 10 s , at 23°C. (Typical number of test replicates was... Table 4 Tensile properties of the aluminium alloys employed in the current research obtained at a constant strain rate of 10 s , at 23°C. (Typical number of test replicates was...
Object. Tensile and Shock tests on test pieces of aluminium subjected to thermal treatment. [Pg.167]

Table 1. Mechanical properties of selected pressure-infiltrated ceramic particle reinforced aluminium composites Young s modulus (E), yield and ultimate tensile strengths (aQ2, Outs), tensile elongation ( 0, and fracture toughness parameters. Toughness Kic was measured from J-R curves on pure A1 matrix composites and by chevron-notch fracture testing on Al-Cu... Table 1. Mechanical properties of selected pressure-infiltrated ceramic particle reinforced aluminium composites Young s modulus (E), yield and ultimate tensile strengths (aQ2, Outs), tensile elongation ( 0, and fracture toughness parameters. Toughness Kic was measured from J-R curves on pure A1 matrix composites and by chevron-notch fracture testing on Al-Cu...
Before the initial mechanical measurements on NbsSn conductors were made, a series of copper and aluminium dogbone-shape tensile specimens were tested at 300 and 4.2 K. Data were obtained on the Young s modulus, yield strength, tensile strength, elongation, and reduction in area for several samples of each material at each temperature. These results gave a reproducibility of better than 3% for each material and an agreement with published results on similar material to within 5%. [Pg.319]

The parameter characterizes the resistance of a material to fracture in the presence of a sharp crack under severe tensile constraints. To determine the mean and standard deviation of 11 RTC samples, made of aluminium alloy 2024-T4 in the L-T reference directions were tested (Lisiecki Bochenek 2013). [Pg.2357]

Aluminium bicycle frames are being successfully bonded with epoxy adhesives [20, 21] to replace traditional brazing methods. A process developed by the Raleigh Cycle Company and Permabond International utilised a Permabond epoxy adhesive to bond aluminium alloy frame tubes to steel lugs and stays. After heat curing, these frames withstood a minimum 55 MPa tensile strength test. The metal tube usually collapsed before the bond failed. [Pg.105]

Fig. 1.4. Tensile fatigue strength for aluminium alloy strips (100 X 25 X 1-5 mm) preheated and bonded into 12-5 mm overlap test-pieces adhesive cured for 48 h... Fig. 1.4. Tensile fatigue strength for aluminium alloy strips (100 X 25 X 1-5 mm) preheated and bonded into 12-5 mm overlap test-pieces adhesive cured for 48 h...

See other pages where Aluminium tensile test is mentioned: [Pg.80]    [Pg.80]    [Pg.409]    [Pg.318]    [Pg.409]    [Pg.385]    [Pg.86]    [Pg.84]    [Pg.154]    [Pg.415]    [Pg.39]    [Pg.403]    [Pg.162]    [Pg.1314]    [Pg.37]    [Pg.113]    [Pg.317]    [Pg.190]    [Pg.622]    [Pg.131]    [Pg.444]    [Pg.445]    [Pg.265]    [Pg.1347]    [Pg.214]    [Pg.216]    [Pg.281]    [Pg.214]    [Pg.102]   
See also in sourсe #XX -- [ Pg.80 , Pg.126 ]




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