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Keywords: Composite materials
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Journal Articles
Journal:
Engineering Computations
Engineering Computations (2021) 38 (3): 1099–1116.
Published: 06 April 2020
... can be contacted at: witold.ogierman@polsl.pl 26 09 2019 27 02 2020 28 02 2020 © Emerald Publishing Limited 2020 Emerald Publishing Limited Licensed re-use rights only Composite materials Homogenization Equivalent inclusion problem Functionally graded materials...
Journal Articles
Journal:
Engineering Computations
Engineering Computations (2014) 31 (1): 33–47.
Published: 25 February 2014
... to a significant reduction in computational time employed. The panel weight W can be calculated as follows: Equation 1 where ρ is a density of composite material; δ is a thickness of unidirectional ply; L is a panel length; lsk is a panel width...
Journal Articles
Journal:
Engineering Computations
Engineering Computations (2013) 30 (3): 409–447.
Published: 29 March 2013
...Ahmed M. Hussein; Youssef F. Rashed Purpose This paper computationally estimates the constitutive relationships of composite materials reinforced by single walled carbon nanotubes (SWNT). Design/methodology/approach A multiscale analysis is considered. At the nanoscale level, molecular...
Journal Articles
Journal:
Engineering Computations
Engineering Computations (2012) 29 (5): 504–527.
Published: 13 July 2012
.... This joint is important to connect a polymeric composite structure to a metallic structure without using conventional mechanical joints. © Company 2012 Composite materials Joining materials Joining processes Steels Steel fiber Butt joint Overlap joint Virtual crack closure Hybrid...
Journal Articles
Journal:
Engineering Computations
Engineering Computations (2012) 29 (1): 48–64.
Published: 01 January 2012
.... The comparative results obtained using the developed finite element software are given below. Optimum design Composite materials Laminates Variable curvature panel First-ply failure Buckling Finite element method Composite panels of variable curvature composed of straight and curved sections...
Journal Articles
Journal:
Engineering Computations
Engineering Computations (2011) 28 (8): 1079–1097.
Published: 15 November 2011
... of ue on Γe is defined by: Equation 9 where: Equation 10 with: Equation 11 Qinghua Qin can be contacted at: qinghua.qin@anu.edu.au © Emerald Group Publishing Limited 2011 Programming and algorithm theory Thermal properties of materials Composite materials...
Journal Articles
Journal:
Engineering Computations
Engineering Computations (2011) 28 (7): 888–911.
Published: 11 October 2011
... Computational steering Problem solving environment Computing environment Wood‐based composite materials Database management Composite materials Wood CMA=composite material analysis CSE=computational steering environment DBMS=database management system DOT=design optimization tool...
Journal Articles
Journal:
Engineering Computations
Engineering Computations (2011) 28 (1): 30–46.
Published: 04 January 2011
... the length of the cohesive zone to a given mesh size and to select opportunely the parameters of the interface with coarser meshes. With the aim to validate the CZM theory applied to the finite element method as a tool for the analysis of propagation of the delaminations in composite material...
Journal Articles
Journal:
Engineering Computations
Engineering Computations (2009) 26 (4): 400–421.
Published: 29 May 2009
.... The creep parameters M and σ 0 will vary with radial distance due to (i) the radial variation of temperature, T, and (ii) variation of particle content, V(r), with radius in the FGM disc. Creep Modelling Physical properties of materials Composite materials...
Journal Articles
Journal:
Engineering Computations
Engineering Computations (2008) 25 (3): 251–267.
Published: 04 April 2008
... Equation 5 Equation 6 Equation 7 Equation 8 Equation 9 Equation 10 Boundary‐elements methods Composite materials Stress (materials) In recent decades, the use of new materials is increasing in a wide range of engineering field...
Journal Articles
Journal:
Engineering Computations
Engineering Computations (2007) 24 (2): 151–164.
Published: 13 March 2007
... value P = particle r, θ and z = values in radial, tangential and axial directions W = whisker V.K. Gupta can be contacted at: guptavk_70@yahoo.co.in © Emerald Group Publishing Limited 2007 Creep Rotation measurement Composite materials...
Journal Articles
Journal:
Engineering Computations
Engineering Computations (2006) 23 (4): 432–450.
Published: 01 June 2006
...Grant Steven Purpose To describe the mathematics, mechanics and computer code that are involved in deriving the mechanical properties of a 3D composite material with a complicated internal architecture. To inform the reader how an application programming interface (API) can be used...
Journal Articles
Journal:
Engineering Computations
Engineering Computations (1999) 16 (7): 841–851.
Published: 01 November 1999
... with the material orientation angles Θ 1 = 0○, Θ 2 = +45○, Θ 3 = −45○, and Θ 4 = 90○. © MCB UP Limited 1999 Topology Optimization Algorithms Composite materials Structural optimization Finite element method...
Journal Articles
Journal:
Engineering Computations
Engineering Computations (1999) 16 (3): 302–315.
Published: 01 May 1999
... are compared with those obtained by other similar studies and show the effectiveness and accuracy of the proposed approach. In the last decades many efforts of the researchers in the structural mechanics field have been paid to the optimal design of laminated composite structures. Composite materials...
Journal Articles
Journal:
Engineering Computations
Engineering Computations (1998) 15 (2): 260–267.
Published: 01 March 1998
.... It is shown that a general purpose computer algebra system like MATHEMATICA is well suited to solve small boundary value problems such as structural design optimisation involving composite materials. where m, n = 1, 2, …, . The problem involves the objectives of maximising the torsional...
Journal Articles
Journal:
Engineering Computations
Engineering Computations (1995) 12 (6): 571–587.
Published: 01 June 1995
... geometry a Cosserat solid exhibits slower stress decay than a classical solid. © MCB UP Limited 1995 Finite elements Composite materials Saint‐Venant end effects ENGINEERING COMPUTATIONS, VOL. 12, 5 7 1 - 5 8 7 (1995) FINITE ELEMENT ANALYSIS OF SAINT-VENANT END EFFECTS IN MICROPOLAR ELASTIC...
Journal Articles
Journal:
Engineering Computations
Engineering Computations (1995) 12 (6): 555–569.
Published: 01 June 1995
... cases. Then to improve the accuracy of the above process,computations of these two models are compared to the measures of laminated complex beam bending experiments. ENGINEERING COMPUTATIONS, VOL. 12, 555-569 (1995) COMPARISON OF TWO HIGHER ORDER FINITE ELEMENT MODELS FOR COMPOSITE MATERIALS...
Journal Articles
Journal:
Engineering Computations
Engineering Computations (1995) 12 (5): 403–414.
Published: 01 May 1995
... Structural optimization Optimum design Composite materials Laminated plate Stiffness analysis Finite element method ENGINEERING COMPUTATIONS, VOL. 12, 403-414 (1995) CONTRIBUTED Papers ON THE OPTIMIZATION OF COMPOSITE LAMINATED PLATES C. HUANG AND B. KRÖPLIN Institutefor Statics and Dynamics...
Journal Articles
Journal:
Engineering Computations
Engineering Computations (1991) 8 (1): 57–68.
Published: 01 January 1991
...LIEN‐WEN CHEN; DER‐MING KU The Euler beam theory is used to study the dynamic stability of a composite material slider‐crank mechanism with an elastic connecting rod. The Ritz finite element procedure is applied to derive the governing equations of motion of the mechanism. Based on the assumption...
