On the Bi-Axial In-Plane Behavior of Laminated Paperboard Components in Construction: A Representative Engineering Model
On the Bi-Axial In-Plane Behavior of Laminated Paperboard Components in Construction: A Representative Engineering Model
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- More about On the Bi-Axial In-Plane Behavior of Laminated Paperboard Components in Construction: A Representative Engineering Model
The book focuses on developing an engineering model for paperboard laminates, examining bi-axial limits, and establishing a simple model for failure estimation during bi-axial loading.
Format: Paperback / softback
Length: 252 pages
Publication date: 31 January 2023
Publisher: Springer Fachmedien Wiesbaden
The present book delves into the comprehensive structural characterization of paperboard materials, with a primary emphasis on the development of an engineering model for paperboard laminates. This model is intended to serve as a valuable tool in design processes. In addition, thorough examinations are conducted to establish connections between the bi-axial limits of paperboard laminates and those of individual paperboard sheets. This linkage enables the estimation of laminate performance based on the properties of the single paperboard sheet. Furthermore, a simplified model for predicting failure during bi-axial loading is established, utilizing straightforward material tests.
The book explores the intricate structural characterization of paperboard materials, with a central focus on the creation of an engineering model for paperboard laminates. This model is designed to be a valuable asset in design processes.
To facilitate this estimation, the book delves into the examination of bi-axial limits, drawing connections between the limits of paperboard laminates and those of individual paperboard sheets. This linkage enables the prediction of laminate performance based on the characteristics of the single paperboard sheet.
Furthermore, the book establishes a simplified model for predicting failure during bi-axial loading, relying on straightforward material tests. This model simplifies the process of assessing the durability and reliability of paperboard laminates in various applications.
Weight: 492g
Dimension: 240 x 168 (mm)
ISBN-13: 9783658403171
Edition number: 1st ed. 2023
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