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Static bending
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Part 1 of ebook "Structural analysis (Fifth edition)" provides readers with contents including: introduction to structural analysis and loads; loads on structures; analysis of statically determinate structures; equilibrium and support reactions; plane and space trusses; beams and frames shear and bending moment; deflections of trusses, beams, and frames; application of influence lines; analysis of symmetric structures;...
456p
mothoiphong
28-06-2024
1
1
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Part 1 of ebook "Structural and stress analysis" provides readers with contents including: Chapter 1 - Introduction; Chapter 2 - Principles of statics; Chapter 3 - Normal force, shear force, bending moment and torsion; Chapter 4 - Analysis of pin-jointed trusses; Chapter 5 - Cables; Chapter 6 - Arches; Chapter 7 - Stress and strain; Chapter 8 Properties of engineering materials; Chapter 9 - Bending of beams;...
316p
mothoiphong
28-06-2024
1
1
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In this work, a shear locking treatment for thin First-order shear deformation theory (FSDT) plates based on the n-node discrete shear gap is introduced to analyze the static behavior of the bending plate. The FSDT is a simple formulation suitable for relatively thick plates, and therefore, when thin plates are considered, the well-known shear locking issue may occur and cause errors in the numerical result.
10p
dathienlang1012
03-05-2024
0
0
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The paper "Static bending analysis of FGM stiffened plate resting on discontinuous elastic foundation" uses the finite element method to study the static bending response of stiffened FGM plates resting on a discontinuous elastic foundation. The structure is computed using the first-order shear deformation theory coupled with the four-node and two-node quadrilateral elements.
7p
dathienlang1012
03-05-2024
1
0
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The article "Static behavior of FGP half-annular nanoplates resting on elastic foundation using nonlocal elasticity theory" presents an algorithm finite element for static bending analysis of the functionally graded porous (FGP) half-annular nanoplate resting on the elastic foundation (EF) using nonlocal elasticity theory. The FGP materials with two-parameter are the volume fraction index (k) and the porosity volume fraction (5) in two cases of even and uneven porosity. The EF includes Winkler-stiffness (k₁) and Pasternak- stiffness (k₂).
9p
dathienlang1012
03-05-2024
4
0
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The paper "The behavior analysis of bolted end-plate connections under static load by using finite element method" investigates the mechanical behavior of bolted end-plate beam-to- column connections with changes of thin of end-plate and size of bolts under bending moment. The finite element models are generated in ANSYS software, in specially all of meshes are hexahedral meshes as well as be continuous at welding. The results obtained from this study are validated based on three factors: loading capacity, moment resistance and joint rotation.
9p
dathienlang1012
03-05-2024
2
0
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In this paper, the static and dynamic behaviour of sandwich beams with porous core are numerically analyzed and validated by experimental tests. The beam consists of a thick porous core with a uniform porosity distribution over its domain and two outer face layers.
16p
viohoyo
25-04-2024
3
2
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This article presents a finite element method for static bending analysis of the functionally graded porous (FGP) L-shape nanoplate resting on the elastic foundation (EF) using the nonlocal elasticity theory.
9p
vimarillynhewson
02-01-2024
12
2
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Part 1 of ebook "Mechanical engineering principles" provides readers with contents including: revision of mathematics; revisionary mathematics; statics and strength of materials; the effects of forces on materials; tensile testing; forces acting at a point; simply supported beams; forces in structures; bending moment and shear force diagrams; first and second moments of areas; bending of beams; twisting of shafts;...
153p
hanlinhchi
29-08-2023
3
1
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This article presents an application of finite element algorithm for static bending analysis of the functionally graded porous (FGP) annular nanoplate resting on the elastic foundation (EF) using nonlocal elasticity theory.
10p
viengels
25-08-2023
4
3
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This paper presents the nonlinear static bending analysis of variable thickness microplates by using the finite element method and modified couple stress. The present theory and mathematical model are confirmed by comparing the numerical data with those of open literatures.
14p
viengels
25-08-2023
7
4
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In this study, rectangular plates subjected to static loads and supported on a discontinuous two-parameter elastic foundation are analyzed. The formulae for the computations are developed from improved shear deformation theory, where the displacement w is divided into bending and shear strain components.
11p
viengels
25-08-2023
9
4
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Shape and vibration controls of smart structures in structural applications have gained much attraction due to their ability of actuation and sensing. The response of structure to bending, vibration, and buckling can be controlled by the use of this ability of a piezoelectric material. In the present work, the static and dynamic control of smart piezolaminated beams is presented.
8p
viberbers
09-08-2023
6
3
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Based on fundamental equations of the elasticity theory, a unified higher-order shear deformation theory is developed for bending and free vibration analysis of functionally graded (FG) microplates with porosities. The modified strain gradient theory is employed to capture the size effects.
24p
viwolverine
11-07-2023
3
2
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In this work, geometrically nonlinear static bending analysis of sandwich beams with a porous core and two skins made of functionally graded materials using a mesh-free method is presented. The material types of the core and face sheets of the beam are chosen so that the material continuity between the layers is guaranteed.
6p
viwarmachine
01-07-2023
2
2
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This paper documents the methodology that was used to develop static p-y curves from experimental measurement results for onshore long flexible drilled shaft, not for the case of cyclic loading or for short rigid pile or for offshore conditions.
7p
vifalcon
16-05-2023
3
3
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This study investigates the static bending and free vibration behaviour of Multi-directional Functionally Graded plates having a variable thickness. With this regard, the third-order shear deformation plate theory is used to describe the kinematic relation. Material properties of MFGM are assumed to be graded in spatial direction within the plate’s volume and the effective material properties are calculated based on the power-law approach.
20p
vimclaren
12-10-2022
4
3
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This study investigates the bending behaviour and free vibration response of a rectangular sandwich plate with auxetic honeycomb core and functionally graded material face sheets. Governing equations are established from Hamilton’s principle in the framework of the first-order deformation theory.
11p
vimclaren
12-10-2022
4
2
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This paper presents a numerical approach for static bending and free vibration analysis of the functionally graded porous plates (FGPP) resting on the elastic foundation using the refined quasi-3D sinusoidal shear deformation theory (RQSSDT) combined with the Moving Kriging–interpolation meshfree method.
19p
chauchaungayxua12
09-07-2021
12
2
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In this paper, the mechanical behavior of symmetric FGM sandwich beams where each component layer is made from different funtionally graded materials and conected to one another by shear connectors is carried out. The finite element formulations are constructed based on the first-order shear deformation theory (FSDT) of Timoshenko for beam and finite element method. The calculation program is coded in the MATLAB environment and compared the results with particular cases.
11p
cothumenhmong11
05-05-2021
17
1
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