1960-6206
工程技術(shù)
No
INT J MATER FORM
0
65
FRANCE
http://www.springer.com/engineering/production+engineering/journal/12289
>12周,或約稿審稿時間
容易平均錄用比例
1.75影響因子
工程:制造小學(xué)科
《國際材料成形雜志》是歐洲材料成形科學(xué)協(xié)會(ESAFORM)的官方期刊(www.esaform.org)。該雜志出版和傳播材料成型領(lǐng)域的原始研究。該研究應(yīng)在材料成形過程的理解、建?;蚍抡娣矫嫒〉弥卮蟪晒T谶@方面,“成形”意味著材料的故意變形。該雜志建立了一個工程師與科學(xué)家溝通的平臺,涵蓋了所有的成型工藝,包括板材成型、體塊成型、粉末成型、近熔體成型(注塑、觸控成型、吹膜等)、微成型、液壓成型、熱成型、增量成型等。如果工作的重點(diǎn)是塑性變形,其他制造技術(shù),如機(jī)械加工和切削也可以包括在內(nèi)。所有材料(金屬、陶瓷、聚合物、復(fù)合材料、玻璃、木材、纖維增強(qiáng)材料、食品加工材料、生物材料、納米材料、形狀記憶合金等)和方法(微宏建模、熱機(jī)建模);數(shù)值模擬包括新的和先進(jìn)的數(shù)值策略、實(shí)驗(yàn)分析、反分析、模型識別、優(yōu)化、成形工具和機(jī)械的設(shè)計(jì)和控制、磨損和摩擦、材料的力學(xué)性能和成形性等。論文應(yīng)描述與成形有關(guān)的新成形工藝、實(shí)驗(yàn)、模型或建模技術(shù),或工藝條件與產(chǎn)品性能之間的關(guān)系。一般來說,仿真結(jié)果應(yīng)該通過實(shí)驗(yàn)來驗(yàn)證,除非只關(guān)注新的建模技術(shù)。新的模型或建模技術(shù)應(yīng)該在成形模擬中具有廣泛的適用性,不應(yīng)該局限于一個特定的形狀。分析或數(shù)值模型的結(jié)果,如果沒有轉(zhuǎn)換成新的知識或沒有得到實(shí)驗(yàn)驗(yàn)證的支持,將不被接受。同樣,如果提交的論文沒有經(jīng)過徹底的評估和結(jié)論就描述了實(shí)驗(yàn)結(jié)果,因此沒有帶來新的知識,那么這些論文將被拒絕。對成形技術(shù)的相關(guān)性和工作的新穎性應(yīng)在摘要中明確描述。
https://www.editorialmanager.com/ijfo/default.aspx
The International Journal of Material Forming is the official Journal of the European Scientific Association for material FORMing (ESAFORM) (www.esaform.org).The Journal publishes and disseminates original research in the field of material forming. The research should constitute major achievements in the understanding, modeling or simulation of material forming processes. In this respect ‘forming’ implies a deliberate deformation of material.The journal establishes a platform of communication between engineers and scientists, covering all forming processes, including sheet forming, bulk forming, powder forming, forming in near-melt conditions (injection moulding, thixoforming, film blowing etc.), micro-forming, hydro-forming, thermo-forming, incremental forming etc. Other manufacturing technologies like machining and cutting can be included if the focus of the work is on plastic deformations.All materials (metals, ceramics, polymers, composites, glass, wood, fibre reinforced materials, materials in food processing, biomaterials, nano-materials, shape memory alloys etc.) and approaches (micro-macro modelling, thermo-mechanical modelling, numerical simulation including new and advanced numerical strategies, experimental analysis, inverse analysis, model identification, optimization, design and control of forming tools and machines, wear and friction, mechanical behavior and formability of materials etc.) are concerned.Papers should describe new forming processes, experiments, models or modelling techniques, related to forming or the relation between process conditions and product properties. In general, simulation results should be validated by experiments unless the focus is purely on novel modelling techniques. New models or modelling techniques should have a broad applicability in forming simulations and should not be restricted to one particular shape.Results of analytical or numerical models that are not translated into new knowledge or are not supported by experimental validation will not be accepted. Similarly, submissions that describe experimental results without thorough evaluation and conclusion and thus not leading to new knowledge, will be rejected. The relevance for forming technologies and the novelty of the work should be clearly described in the abstract.
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