Strain Solitons in Solids and How to Construct Them
暫譯: 固體中的應變孤子及其構建方法

Samsonov, Alexander M.

  • 出版商: CRC
  • 出版日期: 2020-12-18
  • 售價: $3,060
  • 貴賓價: 9.5$2,907
  • 語言: 英文
  • 頁數: 248
  • 裝訂: Quality Paper - also called trade paper
  • ISBN: 0367455404
  • ISBN-13: 9780367455408
  • 海外代購書籍(需單獨結帳)

商品描述

Although the theory behind solitary waves of strain shows that they hold significant promise in nondestructive testing and a variety of other applications, an enigma has long persisted-the absence of observable elastic solitary waves in practice. Inspired by this apparent contradiction, Strain Solitons in Solids and How to Construct Them refines the existing theory, explores how to construct a powerful deformation pulse in a waveguide without plastic flow or fracture, and proposes a direct method of strain soliton generation, detection, and observation.

The author focuses on the theory, simulation, generation, and propagation of strain solitary waves in a nonlinearly elastic, straight cylindrical rod under finite deformations. He introduces the general theory of wave propagation in nonlinearly elastic solids and shows, from first principles, how its main ideas can lead to successful experiments. In doing so, he develops a new approach to solving the corresponding doubly dispersive equation (DDE) with dissipative terms, leading to new explicit and exact solutions. He also shows that the method is applicable to a variety of nonlinear problems.

First discovered in virtual reality, nonlinear waves and solitons in solids are finally moving into the genuine reality of physics, mechanics, and engineering. Strain Solitons in Solids and How to Construct Them shows how to balance the mathematics of the problem with the application of the results to experiments and ultimately to generating and observing solitons in solids.

商品描述(中文翻譯)

雖然應變孤立波的理論顯示它們在無損檢測及其他多種應用中具有重要潛力,但長期以來一直存在一個謎團——在實踐中缺乏可觀察的彈性孤立波。受到這一明顯矛盾的啟發,《固體中的應變孤立子及其構建方法》精煉了現有理論,探討如何在波導中構建一個強大的變形脈衝,而不產生塑性流動或斷裂,並提出了一種直接的應變孤立子生成、檢測和觀察的方法。

作者專注於在有限變形下,非線性彈性直圓柱棒中應變孤立波的理論、模擬、生成和傳播。他介紹了非線性彈性固體中波傳播的一般理論,並從基本原理出發,展示其主要思想如何導致成功的實驗。在此過程中,他開發了一種新的方法來解決相應的雙重色散方程(DDE),並引入耗散項,從而導致新的顯式和精確解。他還展示了該方法適用於各種非線性問題。

非線性波和固體中的孤立子最早在虛擬現實中被發現,現在終於進入物理學、力學和工程的真實世界。《固體中的應變孤立子及其構建方法》展示了如何平衡問題的數學與結果在實驗中的應用,最終實現固體中孤立子的生成和觀察。

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