Contact analysis for solids based on linearly conforming radial point interpolation method

From MaRDI portal
Publication:1015572

DOI10.1007/s00466-006-0057-6zbMath1178.74182OpenAlexW2170474025MaRDI QIDQ1015572

X. Han, M. T. Luan, K. Y. Dai, Guangyao Li, Gui-Rong Liu, Yong Li, Zhihua Zhong

Publication date: 8 May 2009

Published in: Computational Mechanics (Search for Journal in Brave)

Full work available at URL: https://doi.org/10.1007/s00466-006-0057-6



Lua error in Module:PublicationMSCList at line 37: attempt to index local 'msc_result' (a nil value).


Related Items (33)

A GENERALIZED GRADIENT SMOOTHING TECHNIQUE AND THE SMOOTHED BILINEAR FORM FOR GALERKIN FORMULATION OF A WIDE CLASS OF COMPUTATIONAL METHODSContact Analysis Within the Bi-Potential Framework Using Cell-Based Smoothed Finite Element MethodContact Analysis Based on a Linear Strain Node-Based Smoothed Finite Element Method with Linear Complementarity FormulationsA hybrid `FE-meshless' Quad4 with continuous nodal stress using radial-polynomial basis functionsA partition-of-unity based `FE-meshfree' triangular element with radial-polynomial basis functions for static and free vibration analysisApplication of the `FE-meshfree' Quad4 with continuous nodal stress using radial-polynomial basis functions for vibration and geometric nonlinear analysesA linear complementarity formulation of meshfree method for elastoplastic analysis of gradient-dependent plasticityContinuous-discontinuous hybrid boundary node method for frictional contact problemsA stable node-based smoothed finite element method for metal forming analysisContact Analysis of Functionally Graded Materials Using Smoothed Finite Element MethodsSimulation of two-dimensional unilateral contact using a coupled FE/EFG methodA three-dimensional adaptive analysis using the meshfree node-based smoothed point interpolation method (NS-PIM)On Partitions of Unity Property of Nodal Shape Functions: Rigid-Body-Movement Reproduction and Mass ConservationLocal RBF-based differential quadrature collocation method for the boundary layer problemsA least-square radial point collocation method for adaptive analysis in linear elasticityA variational statement of quasistatic ``rigid-deformable contact problems at large strain involving generalized forces and frictionA point interpolation method with least square strain field (PIM-LSS) for solution bounds and ultra-accurate solutions using triangular meshMixed finite element method for static and dynamic contact problems with friction and initial gapsA contact analysis approach based on linear complementarity formulation using smoothed finite element methodsA sub-domain RPIM with condensation of degree of freedomA diagonal offset algorithm for the polynomial point interpolation methodA gap element for treating non-matching discrete interfacesEDGE-BASED SMOOTHED POINT INTERPOLATION METHODSON THE CONVERGENCE OF THE KRIGING-BASED FINITE ELEMENT METHODSmoothed particle hydrodynamics (SPH): an overview and recent developmentsAn efficient adaptive analysis procedure for node-based smoothed point interpolation method (NS-PIM)A superconvergent point interpolation method (SC-PIM) with piecewise linear strain field using triangular meshOn the essence and the evaluation of the shape functions for the smoothed finite element method (SFEM)α-Finite Element Method for Frictionless and Frictional Contact Including Large DeformationDevelopment of SFEM-Pre: A Novel Preprocessor for Model Creation for the Smoothed Finite Element MethodAPPLICATION OF POINT INTERPOLATION METHOD IN JOINTED ROCK MASSCertified solutions for hydraulic structures using the node-based smoothed point interpolation method (NS-PIM)Stable node-based smoothed finite element method for 3D contact problems


Uses Software


Cites Work


This page was built for publication: Contact analysis for solids based on linearly conforming radial point interpolation method