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New Kirchhoff-Love Beam Element for Polymer Mechanics by Ma

New Kirchhoff-Love Beam Element for Polymer Mechanics by Ma

$ 131.55

A New Kirchhoff-Love Beam Element and its Application to Polymer Mechanics by Matthias C. Schulz Estimated delivery 3-12 business days Format Paperback Condition Brand New Description The novel finite...

Description

A New Kirchhoff-Love Beam Element and its Application to Polymer Mechanics by Matthias C. Schulz Estimated delivery 3-12 business days Format Paperback Condition Brand New Description The novel finite element formulations fall into the category of geometrically exact Kirchhoff-Love beams. Furthermore, the numerical efficiency of the new beam formulations is compared to other beam elements that allow for or suppress shear deformation. Publisher Description The novel finite element formulations fall into the category of geometrically exact Kirchhoff-Love beams. A prominent characteristic of this category is that the absence of shear deformation is strongly enforced by removing two degrees of freedom. Further, the corresponding beam theories exhibit not only translational but also rotational degrees of freedom and their configurations thus form a non-additive and non-commutative space. Sophisticated interpolation schemes are required that need to be tested not only for locking, spatial convergence behavior, and energy conservation, but also for observer invariance and path-independence. For the three novel beam element formulations all these properties are analytically and numerically studied and confirmed, if applicable. Two different rotation parameterization strategies are employed based on the well-known geodesic interpolation used in many Simo-Reissner beams and the lesser known split into the so-called \textit{smallest rotation} and a torsional part. Application of the former parameterization results in a mixed finite element formulation intrinsically free of locking phenomena. Additionally, the first geometrically exact Kirchhoff-Love beam element is presented, which strongly enforces inextensibility by removing another degree of freedom. Furthermore, the numerical efficiency of the new beam formulations is compared to other beam elements that allow for or suppress shear deformation. When modeling very slender beams, the new elements offer distinct numerical advantages.Standard molecular dynamics simulations, which are commonly used to study polymers, suffer from a lack of a careful mathematical basis and the use of an expensive explicit time integration scheme. To circumvent these shortcomings and to be able to simulate stretching experiments on relevant time scales, the problem is described by a stochastic partial differential equation, which can be solved using the finite element method with a backward Euler temporal discretization. In detail, the polymer is represented by a Kirchhoff-Love beam with a linear elastic constitutive model. Inertial and electrostatic forces are neglected. It is deformed by a distributed load mimicking collisions with molecules of the surrounding fluid. Naturally, this load heavily fluctuates over time and space and mean values need to be computed in a Monte Carlo manner. To vastly speed up the fitting process to experimental data in a Bayesian framework, a surrogate model based on a Gaussian process is set up, which directly computes the mean values for given material parameters. The uncertainties and correlations of the material parameters are studied and compared to the literature. Author Biography The author was born in Berlin and obtained a master's degree in biotechnology from the Braunschweig Institute of Technology., where the present dissertation was composed during the author's work at the Institute of Solid Mechanics under the direction of Prof. Dr.-Ing. Markus Böl. Details ISBN 3031063422 ISBN-13 9783031063428 Title A New Kirchhoff-Love Beam Element and its Application to Polymer Mechanics Author Matthias C. Schulz Format Paperback Year 2023 Pages 134 Edition 2023rd Publisher Springer International Publishing AG GE_Item_ID:145119294; About Us Grand Eagle Retail is the ideal place for all your shopping needs! With fast shipping, low prices, friendly service and over 1,000,000 in stock items - you're bound to find what you want, at a price you'll love! Shipping & Delivery Times Shipping is FREE to any address in USA. Please view eBay estimated delivery times at the top of the listing. Deliveries are made by either USPS or Courier. We are unable to deliver faster than stated. International deliveries will take 1-6 weeks. NOTE: We are unable to offer combined shipping for multiple items purchased. This is because our items are shipped from different locations. Returns If you wish to return an item, please consult our Returns Policy as below: Please contact Customer Services and request "Return Authorisation" before you send your item back to us. Unauthorised returns will not be accepted. 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Specifics

Author

Matthias C. Schulz

Book Series

Mechanics and Adaptronics Ser.

Book Title

New Kirchhoff-Love Beam Element and Its Application to Polymer Mechanics

Format

Trade Paperback

Genre

Technology & Engineering, Science

ISBN

9783031063428

ISBN-13

9783031063428

Illustrator

Yes

Item Length

9.3 in

Item Weight

8.7 Oz

Item Width

6.1 in

Language

English

Number of Pages

Xxi, 134 Pages

Publication Name

NA

Publication Year

2023

Publisher

Springer International Publishing A&G

Topic

Materials Science / General, Engineering (General), Mechanical, Mechanics / Thermodynamics

Type

NA

gtin13

9783031063428

Reviews

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