Exact(2)
Consequently, a joint efficiency of 63% (UTS) was obtained.
Under such conditions, the maximum shear force of 6.9 kN and an average shear strength of 47 MPa were achieved corresponding to a joint efficiency of 83%.
Similar(58)
H1: v > w Car speed is higher than walk speed H2: β > α A unit walk time is less comfortable than a unit drive time H3: The tariff structure allows for initial joint efficiency of all lots H4: β ≥ γ A unit walk time is less useful (more costly) than a unit (early) time at destination H5: Q ≤ ∑ i ∈ I k i Total demand does not exceed total capacity.
The local hybridization with metal within a bolted joint region of composite laminates is proven to be an effective method of increasing the mechanical joint efficiency of highly loaded bolted joints.
This experimental based study on 150 double lap joints specimens investigated the effects of threaded bolt and clamping pressure on the joint strength behaviour, failure mechanisms and joint efficiency of bolted joints in PFRP.
These properties depend crucially on the initial joint efficiency of all options (H3).
H3: The tariff structure allows for initial joint efficiency of all lots.
FSW-TTC joint exhibited tensile strength of 267 MPa and joint efficiency of 59%% which is 9%% higher than the FSW-THC joint.
Of the four joints, UWFSW-TTC joint showed higher joint efficiency of 76 % which is 5%% higher than UWFSW-THC joint, 29%% higher than FSW-THC joint and 22%% higher than FSW-TTC joint.
From this investigation, it is found that the joint made by taper threaded pin profiled tool underwater cooling medium exhibited higher tensile properties of 345 MPa and joint efficiency of 76 %.
2) The UWFSW-TTC joint fabricated using taper threaded pin profile with water cooling exhibited tensile strength of 345 MPa and joint efficiency of 76 %, which is 5%% higher than UWFSW-THC joint, 29%% higher than FSW-THC joint and 22%% higher than FSW-TTC joint.
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