Shape Memory and Superelasticity
短名 | Shap. Mem. Superelasticity |
Journal Impact | 2.66 |
国际分区 | MATERIALS SCIENCE, MULTIDISCIPLINARY(Q3) |
ISSN | 2199-384X, 2199-3858 |
h-index | 31 |
形状记忆和超弹性期刊邀请原创同行评审论文,重点关注形状记忆材料研究,贡献来自材料科学、材料工程、实验和理论力学、数学和物理学。特别感兴趣的是了解这些材料对外部刺激(如力、位移、温度、磁场、辐射、腐蚀介质等)的响应,以寻求发现如下新现象、新材料和新应用:(I)期刊论文将利用连续介质力学原理、微力学原理、基于微观结构的本构建模、原子模型、微观结构数学和其他方法来研究这些材料。 (II) 开发和使用先进的实验技术来揭示和了解形状记忆响应,包括热和机械循环、磁场和其他外部场的应用,(III) 探索和进一步了解由于疲劳、断裂引起的形状记忆材料和环境因素具有重要意义,(IV) 将在所有领域探索材料的新应用,包括生物医学设备、致动器、薄膜、机器人、机械和航空航天工程部件、土木工程结构和微机电系统(微机电系统)。具体而言,该期刊将包括以下主题:(1)所有类别的形状记忆材料的行为,包括金属、非金属(如形状记忆陶瓷、形状记忆聚合物)和形状记忆复合材料,(2)应力-应变响应热机械载荷(实验观察和建模),(3)寿命预测方法(不同的方法,包括断裂力学,晶界的作用,滑移和孪晶对形状记忆行为的作用,裂纹成核建模),(4)热力学(5) 工业中形状记忆问题的解决方案(包括生物医学、电子、MEMS、微型设备和微型致动器应用以及航空、民用- 、机械、电气和其他工程学科),(6)揭示形状记忆行为的关键实验,包括数字图像校正高度、衍射方法(包括使用高能量源的方法)、原位显微镜、红外成像技术以及常规和纳米机械测试方法,(7)形状记忆响应的新实验技术(范围从微米尺寸的样品、电线, 实验室样品, 环, 弯曲梁, 复杂形状的组件, 和复杂的加载条件), (8) 形状记忆金属的单晶和多晶突出了纹理和取向效应对超弹性和可恢复应变水平的作用, 以及SMA 响应的不同处理方法,(9) 耦合机械磁场下的形状记忆响应、辐射效应、磁形状记忆和热热效应、高温应用,(10) 合金设计(了解化学成分基础相和晶体学)来定制特性以实现形状记忆材料,并在应用程序中改进功能(11) 表面工程、腐蚀和 SMA 与流体的相互作用、形状记忆薄膜的行为和纳米尺度的形状记忆,(12) 应用原子方法(密度泛函理论和分子动力学)深入了解(13) 形状记忆合金的生产和加工,包括形状记忆金属、形状记忆聚合物、形状记忆陶瓷、薄膜、纳米尺寸的物体和样品以及混合物。利基- 形状记忆和超弹性杂志为读者提供专注于形状记忆材料的知识,并突出可能影响工程、科学和医学其他学科领域的贡献。该杂志汇集了这个不断扩大的领域的最新创新。该杂志为不同学科的研究人员、科学家和工程师提供了一个获取有关形状记忆材料信息的论坛。该杂志旨在披露该领域最相关的需求,并提供一种系统的方法来通过实验、理论和模拟来满足这些需求。文章旨在描述原始研究的结果,并提供子学科读者可以欣赏的技术信息,同时提供可能促进应用和相关领域研究的重要结果。因此,所提供的信息可用于许多不同的学科,包括医疗设备设计、能量收集、结构阻尼等。
期刊主页投稿网址涉及主题 | 材料科学复合材料冶金计算机科学化学物理人工智能形状记忆合金结晶学微观结构有机化学量子力学工程类马氏体热力学合金钛镍合金奥氏体地理假弹性气象学生物数学 |
出版信息 | 出版商: Springer US,出版周期: 4 issues per year,期刊类型: journal |
基本数据 | 创刊年份: 2015,原创研究文献占比: 91.18%,自引率:11.50%, Gold OA占比: 21.49% |
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