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A Virtual Testing Approach for Honeycomb Sandwich Panel Joints in Aircraft Interior

AUTHOR Seemann, Ralf
PUBLISHER Springer Vieweg (09/19/2020)
PRODUCT TYPE Paperback (Paperback)

Description
Virtual test methods can contribute to reducing the great effort for physical tests in the development of lightweight products. The present work describes an approach for virtual testing of sandwich panel joints based on the Building Block Approach and the Finite Elements Method. Building on a multitude of physical tests on sandwich materials and joints, adequate sub-models are developed, validated and synthesized to top-level models. The developed approach is eventually applied for the development of a novel sandwich panel joint.
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Product Details
ISBN-13: 9783662602782
ISBN-10: 3662602784
Binding: Paperback or Softback (Trade Paperback (Us))
Content Language: English
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Page Count: 201
Carton Quantity: 19
Product Dimensions: 6.69 x 0.46 x 9.61 inches
Weight: 0.79 pound(s)
Feature Codes: Illustrated
Country of Origin: NL
Subject Information
BISAC Categories
Technology & Engineering | Mechanical
Technology & Engineering | Materials Science - General
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jacket back
Virtual test methods can contribute to reducing the great effort for physical tests in the development of lightweight products. The present work describes an approach for virtual testing of sandwich panel joints based on the Building Block Approach and the Finite Elements Method. Building on a multitude of physical tests on sandwich materials and joints, adequate sub-models are developed, validated and synthesized to top-level models. The developed approach is eventually applied for the development of a novel sandwich panel joint.
The AuthorRalf Seemann studied mechanical Engineering at TU Hamburg (TUHH) and at National University of Singapore. From 2011-2016 he worked as research engineer at the Institut of Product Development and Mechanical Engneering Design at TUHH. Since 2017 he works as stress & weight engineer at Diehl Aviation.
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publisher marketing
Virtual test methods can contribute to reducing the great effort for physical tests in the development of lightweight products. The present work describes an approach for virtual testing of sandwich panel joints based on the Building Block Approach and the Finite Elements Method. Building on a multitude of physical tests on sandwich materials and joints, adequate sub-models are developed, validated and synthesized to top-level models. The developed approach is eventually applied for the development of a novel sandwich panel joint.
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Paperback