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工程技術(shù)
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THEOR APPL FRACT MEC
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123
NETHERLANDS
http://www.journals.elsevier.com/theoretical-and-applied-fracture-mechanics/
>12周,或約稿審稿時間
容易平均錄用比例
2.848影響因子
工程:機械小學(xué)科
月期刊平臺服務(wù)過的文章錄用時間為1-3個月,依據(jù)20年經(jīng)驗,經(jīng)月期刊專家預(yù)審?fù)ㄟ^后的文章,投稿通過率100%以上!
理論和應(yīng)用斷裂力學(xué)的目標(biāo)和范圍已重新設(shè)計,以涵蓋與任何類型的材料/組件/結(jié)構(gòu)在微觀、中微觀和宏觀層面上發(fā)生的開裂相關(guān)現(xiàn)象相關(guān)的理論、應(yīng)用和數(shù)值方面。該期刊旨在涵蓋材料/部件/結(jié)構(gòu)在涉及獨立于時間和隨時間變化的外力/力矩系統(tǒng)(例如,準(zhǔn)靜態(tài)、脈沖、沖擊、爆破、蠕變、接觸和疲勞荷載)的情況下的開裂/機械行為。由于在上述情況下,開裂材料/部件/結(jié)構(gòu)的機械性能也會受到環(huán)境條件的影響,因此該期刊還將考慮那些研究外部變量影響的理論/實驗研究工作,例如腐蝕環(huán)境的影響。從高溫/低溫開始。該期刊還將考慮評估現(xiàn)代和替代應(yīng)用中使用的新材料開裂性能的技術(shù)文章,即,不僅與工程嚴(yán)格相關(guān)。此外,表面工程領(lǐng)域最先進的技術(shù)發(fā)現(xiàn)被視為對材料的開裂/機械性能有很大影響。因此,從理論和實驗角度研究上述方面與材料開裂行為之間的現(xiàn)有相互作用的技術(shù)文章將被考慮出版。對軸頸感興趣現(xiàn)象的建??梢曰趥鹘y(tǒng)的線性彈性/彈塑性斷裂力學(xué)概念以及新穎(或新興)理論。該雜志熱衷于發(fā)表新的/替代的建模/設(shè)計方法,前提是這些創(chuàng)新理論是基于最先進的知識,并且在可能的情況下,通過適當(dāng)?shù)膶嶒灲Y(jié)果進行驗證。更一般地說,裂紋起著應(yīng)力/應(yīng)變集中器的作用。因此,期刊非常熱衷于研究不同應(yīng)力/應(yīng)變集中體(如缺陷、均質(zhì)體中的微觀結(jié)構(gòu)以及最重要的任何缺口)對材料/部件/結(jié)構(gòu)的力學(xué)性能的影響,以供出版。更詳細(xì)地說,理論和應(yīng)用斷裂力學(xué)的一個新特點是定期發(fā)布問題,系統(tǒng)地解決缺口力學(xué)問題。在這種情況下,對于那些涉及裂紋的研究,這些特殊問題將不僅考慮傳統(tǒng)的問題,而且還將考慮受時間獨立和時間相關(guān)荷載的創(chuàng)新材料。現(xiàn)代計算機日益增強的計算能力強烈地鼓勵科學(xué)界開發(fā)新的方法,適用于模擬含有任何應(yīng)力/應(yīng)變集中體(即不僅裂紋和缺口,還包括缺陷和微觀結(jié)構(gòu))的材料/部件/結(jié)構(gòu)的力學(xué)行為。遺傳學(xué))。因此,理論斷裂力學(xué)和應(yīng)用斷裂力學(xué)的目標(biāo)是通過完全集中于計算力學(xué)的常規(guī)問題,發(fā)表那些涉及理論/計算方面的技術(shù)文章,從而在微觀、中微觀和宏觀層面上對材料和結(jié)構(gòu)的行為進行有效和準(zhǔn)確的建模。包含任何類型的應(yīng)力/應(yīng)變增加器的URE。根據(jù)描述理論和應(yīng)用斷裂力學(xué)的新目標(biāo)和范圍,期刊將根據(jù)以下主題進行組織:完全符合期刊宗旨和范圍的技術(shù)文章的雜文;研究缺口力學(xué)領(lǐng)域的技術(shù)文章;專門研究計算力學(xué)方面的技術(shù)文章;主題線程,由專家編輯的來賓,其中感興趣的主題不一定在單個問題中解決:這將創(chuàng)建一系列問題,顯示多年來在斷裂/缺口/計算力學(xué)學(xué)科的特定領(lǐng)域取得的進展。主題將不僅由編輯委員會成員客座編輯,而且如上文所述,由主要專家客座編輯。在這種情況下,編輯委員會有興趣考慮由愿意擔(dān)任客座編輯的主要專家直接提出的可能主題。最后,期刊將考慮出版特別議題,其中包括在重要國際會議上提交的高級別論文的擴展版本。然而,提交實驗性質(zhì)論文的作者應(yīng)在提交的論文中包含原始數(shù)據(jù),以支持所提出的研究結(jié)果。本要求的目的是:(1)防止偽造試驗數(shù)據(jù);(2)減少試驗數(shù)據(jù)的錯誤陳述。
http://help.elsevier.com/app/answers/detail/a_id/89/p/8045/
Theoretical and Applied Fracture Mechanics' aims & scopes have been re-designed to cover both the theoretical, applied, and numerical aspects associated with those cracking related phenomena taking place, at a micro-, meso-, and macroscopic level, in materials/components/structures of any kind.The journal aims to cover the cracking/mechanical behaviour of materials/components/structures in those situations involving both time-independent and time-dependent system of external forces/moments (such as, for instance, quasi-static, impulsive, impact, blasting, creep, contact, and fatigue loading). Since, under the above circumstances, the mechanical behaviour of cracked materials/components/structures is also affected by the environmental conditions, the journal would consider also those theoretical/experimental research works investigating the effect of external variables such as, for instance, the effect of corrosive environments as well as of high/low-temperature. The journal will also consider technical articles assessing the cracking behaviour of new materials used in modern and alternative applications, i.e., not only strictly related to engineering. Further, the most advanced technological findings in the surface engineering field are seen to strongly influence the cracking/mechanical behaviour of materials. Accordingly, technical articles investigating, both from a theoretical and an experimental point of view, the existing interactions between the above aspects and the material cracking behaviour will be considered for publication.The modelling of the phenomena of interest for the Journal can be based on the conventional linear-elastic/elasto-plastic Fracture Mechanics concepts as well as on novel (or emerging) theories. The journal is keen to publish new/alternative modelling/design approaches, provided that such innovative theories are soundly based on the state-of-the-art knowledge and, when possible, validated through appropriate experimental results.In more general terms, cracks act as stress/strain concentrators. Accordingly, the Journal is very keen to consider for publication also those studies investigating the effect on the mechanical behaviour of materials/components/structures of different kinds of stress/strain concentrators such as defects, microstructural in-homogeneities, and, above all, notches of any kind. In more detail, one of the new features of Theoretical and Applied Fracture Mechanics is releasing regular issues addressing, in a systematic way, the notch mechanics problem. In this setting, as for those studies involving cracks, such special issues will consider not only conventional, but also innovative materials subjected to both time-independent and time-dependent loading.The increasing computational power of modern computers is strongly encouraging the scientific community to develop novel methodologies suitable for modelling the mechanical behaviour of materials/components/structures containing any kind of stress/strain concentrators (i.e., not only cracks and notches, but also defects and microstructural in-homogeneities). Accordingly, Theoretical and Applied Fracture Mechanics aims to publish, through regular issues fully focussed on computational mechanics, also those technical articles addressing the theoretical/computational aspects leading to an efficient and accurate modelling of the behaviour, at a micro-, meso-, and macroscopic level, of materials and structures containing stress/strain raisers of any kind.In light of the new aims and scopes characterising Theoretical and Applied Fracture Mechanics, the journal will be organised according to the following topical issues:Miscellany of technical articles fully meeting the aims and scopes of the journal;Technical articles investigating the notch mechanics field;Technical articles devoted to the computational mechanics aspects;Themed threads, guest-edited by experts, where the themes of interest could not necessarily be addressed in a single issue: this would create a string of issues showing, over years, the progresses made in a specific area of the Fracture/Notch/Computational Mechanics discipline.The themed threads will be guest-edited not only by the Members of the Editorial Board, but also, as mentioned above, by leading experts. In this setting, the Editorial Boards is interested in considering possible topics directly suggested by leading experts also willing to act as guest-editors. Finally, the Journal will consider the publication of special issues containing the extended version of high-level papers presented at prominent international conferences.However, authors submitting papers of an experimental nature should include raw data with their submissions in order to support the findings being presented. The purpose of this requirement is to (1) Guard against falsifying test data and (2) Mitigate the misrepresentation of test data.
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立即咨詢大類學(xué)科同領(lǐng)域優(yōu)質(zhì)期刊 | 大類學(xué)科 | 小類學(xué)科 | 影響因子 | 分區(qū) | ISSN |
---|---|---|---|---|---|
Advances in Applied Mechanics | 工程技術(shù) | 工程:機械 | 10.667 | 1區(qū) | 0065-2156 |
Chinese Journal of Mechanical Engineering | 工程技術(shù) | 工程:機械 | 1.413 | N/A | 1000-9345 |
Engineering Applications of Computational Fluid Mechanics | 工程技術(shù) | 工程:機械 | 2.163 | N/A | 1994-2060 |
ENGINEERING FAILURE ANALYSIS | 工程技術(shù) | 工程:機械 | 2.203 | 3區(qū) | 1350-6307 |
EXPERIMENTAL HEAT TRANSFER | 工程技術(shù) | 工程:機械 | 2 | 3區(qū) | 0891-6152 |
EXPERIMENTAL TECHNIQUES | 工程技術(shù) | 工程:機械 | 0.779 | N/A | 0732-8818 |
EXPERIMENTAL THERMAL AND FLUID SCIENCE | 工程技術(shù) | 工程:機械 | 3.493 | N/A | 0894-1777 |
EXPERIMENTS IN FLUIDS | 工程技術(shù) | 工程:機械 | 2.443 | N/A | 0723-4864 |
FATIGUE & FRACTURE OF ENGINEERING MATERIALS & STRUCTURES | 工程技術(shù) | 工程:機械 | 2.555 | N/A | 8756-758X |
FLOW MEASUREMENT AND INSTRUMENTATION | 工程技術(shù) | 工程:機械 | 1.977 | N/A | 0955-5986 |
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