Virtual and Physical Prototyping
VIRTUAL PHYS PROTOTY
影响因子:8.8
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是否预警:不在预警名单内
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出版国家/地区:United Kingdom
出版社:Taylor and Francis Ltd.
发刊时间:0
发刊频率:
收录数据库:SCIE/Scopus收录
ISSN:1745-2759

中科院2-4区医学SCI协投:

影响因子0-3分,2-4个月确保录用

医学全方向沾边就收,无需大修

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期刊介绍
Virtual and Physical Prototyping is online only. We welcome authors to submit supplementary data sets, colour images, animation and videos to publish with your articles to enhance the content experience of the journal.Virtual and Physical Prototyping provides an international forum for professionals and academics to exchange novel ideas and disseminate knowledge covering the full range of activities related to the multi-disciplinary area of virtual and rapid prototyping.The scope of VPP includes:Design for additive manufacturing: topological optimisation, lightweight, biomimetic design, functionally graded structures, etc.4D printing: smart materials, shape memory polymers/alloys, deployable structures, etc.Multi-material printing: 3D printing of multiple metals, polymers, ceramics, composites, etc.Hybrid manufacturing: combination of additive and subtractive technologiesFunctional 3D printing: functional design, functional prototyping, etc.As well as the following topics:CAD and 3D data acquisition technologiesVirtual environments and virtual realityRapid tooling and rapid manufacturingQuality control and AM standardsConcurrent engineeringBioprinting and biofabricationConcrete printingMiscellaneous: e-manufacturing/Internet of things, legal perspectives, economics, social and environmental implications, case studies, etc.All published research articles in this journal have undergone rigorous peer review, based on initial editor screening and anonymous refereeing by independent expert referees.
虚拟和物理原型制作仅在线提供。我们欢迎作者提交补充数据集、彩色图像、动画和视频,与您的文章一起发表,以增强期刊的内容体验。虚拟和物理原型技术为专业人士和学者提供了一个国际论坛,交流新思想,传播与虚拟和快速原型技术多学科领域相关的全方位知识。VPP的范围包括:增材制造设计:拓扑优化、轻量化、仿生设计、功能梯度结构等。4D打印:智能材料、形状记忆聚合物/合金、可展开结构等。多材料印刷:多种金属、聚合物、陶瓷、复合材料等的3D打印混合制造:加法和减法技术的结合功能性3D打印:功能设计、功能原型等以及以下主题:CAD和三维数据采集技术虚拟环境和虚拟现实快速加工和快速制造质量控制和AM标准并行工程生物打印和生物制造混凝土打印其他:电子制造/物联网、法律的观点、经济学、社会和环境影响、案例研究等。本期刊发表的所有研究文章均经过严格的同行评议,基于最初的编辑筛选和独立专家评审员的匿名评审。
年发文量 242
国人发稿量 58.08
国人发文占比 0.24%
自引率 -
平均录取率-
平均审稿周期 -
版面费 -
偏重研究方向 Engineering-Industrial and Manufacturing Engineering
期刊官网 https://www.tandfonline.com/loi/nvpp20
投稿链接 https://mc.manuscriptcentral.com/nvpp
期刊高被引文献
Time gap effect on bond strength of 3D-printed concrete
来源期刊:Virtual and Physical PrototypingDOI:10.1080/17452759.2018.1500420
Ductility of 3D printed concrete reinforced with short straight steel fibers
来源期刊:Virtual and Physical PrototypingDOI:10.1080/17452759.2018.1548069
来源期刊:DOI:
Smart materials in additive manufacturing: state of the art and trends
来源期刊:Virtual and Physical PrototypingDOI:10.1080/17452759.2018.1518016
3D food printing: a categorised review of inks and their development
来源期刊:Virtual and Physical PrototypingDOI:10.1080/17452759.2019.1603508
Printability and fire performance of a developed 3D printable fibre reinforced cementitious composites under elevated temperatures
来源期刊:Virtual and Physical PrototypingDOI:10.1080/17452759.2018.1555046
Optimisation of multi-part production in additive manufacturing for reducing support waste
来源期刊:Virtual and Physical PrototypingDOI:10.1080/17452759.2019.1585555
In situ alloying of elemental Al-Cu12 feedstock using selective laser melting
来源期刊:Virtual and Physical PrototypingDOI:10.1080/17452759.2019.1584402
A comprehensive study on variability of relative density in selective laser melting of Ti-6Al-4V
来源期刊:Virtual and Physical PrototypingDOI:10.1080/17452759.2019.1614198
Analysis and prediction of printable bridge length in fused deposition modelling based on back propagation neural network
来源期刊:Virtual and Physical PrototypingDOI:10.1080/17452759.2019.1576010
Research progress of ceramic matrix composite parts based on additive manufacturing technology
来源期刊:Virtual and Physical PrototypingDOI:10.1080/17452759.2019.1607759
Influence of infill properties on flexural rigidity of 3D-printed structural members
来源期刊:Virtual and Physical PrototypingDOI:10.1080/17452759.2018.1537064
Design and experimental validation of self-supporting topologies for additive manufacturing
来源期刊:Virtual and Physical PrototypingDOI:10.1080/17452759.2019.1637023
Numerical and experimental assessment of the mechanical properties of 3D printed 18-Ni300 steel trabecular structures produced by Selective Laser Melting – a lean design approach
来源期刊:Virtual and Physical PrototypingDOI:10.1080/17452759.2019.1565596
Failure In metal honeycombs manufactured by selective laser melting of 304\u2005L stainless steel under compression
来源期刊:Virtual and Physical PrototypingDOI:10.1080/17452759.2018.1531336
Minimum length scale constraints in multi-scale topology optimisation for additive manufacturing
来源期刊:Virtual and Physical PrototypingDOI:10.1080/17452759.2019.1584944
Compressive behaviour of Neovius Triply Periodic Minimal Surface cellular structure manufactured by fused deposition modelling
来源期刊:Virtual and Physical PrototypingDOI:10.1080/17452759.2019.1615750
The influence of slicing parameters on the multi-material adhesion mechanisms of FDM printed parts: an exploratory study
来源期刊:Virtual and Physical PrototypingDOI:10.1080/17452759.2019.1607758
Using Big Area Additive Manufacturing to directly manufacture a boat hull mould
来源期刊:Virtual and Physical PrototypingDOI:10.1080/17452759.2018.1532798
Effects of direct metal deposition combined with intermediate and final milling on part distortion
来源期刊:Virtual and Physical PrototypingDOI:10.1080/17452759.2018.1532799
Characterisation of phases and deformation temperature for additively manufactured shape memory polymer components fabricated from rubberised acrylonitrile butadiene styrene
来源期刊:Virtual and Physical PrototypingDOI:10.1080/17452759.2018.1550694
Standardised product development for technology integration of additive manufacturing
来源期刊:Virtual and Physical PrototypingDOI:10.1080/17452759.2018.1532801
A framework for multi-objective optimisation of 3D part-build orientation with a desired angular resolution in additive manufacturing processes
来源期刊:Virtual and Physical PrototypingDOI:10.1080/17452759.2018.1526622
Effects of TiO2 doping on microstructure and properties of directed laser deposition alumina/aluminum titanate composites
来源期刊:Virtual and Physical PrototypingDOI:10.1080/17452759.2019.1622987
Influence of surface pores on selective laser melted parts under lubricated contacts: a case study of a hydraulic spool valve
来源期刊:Virtual and Physical PrototypingDOI:10.1080/17452759.2019.1633930
An efficient scanning algorithm for improving accuracy based on minimising part warping in selected laser sintering process
来源期刊:Virtual and Physical PrototypingDOI:10.1080/17452759.2018.1511738
Evaluating the relationship between deposition and layer quality in large-scale additive manufacturing of concrete
来源期刊:Virtual and Physical PrototypingDOI:10.1080/17452759.2018.1532800
Design for additive manufacturing (DfAM) methodologies: a proposal to foster the design of microwave waveguide components
来源期刊:Virtual and Physical PrototypingDOI:10.1080/17452759.2018.1549901
Fracture toughness of additively manufactured ULTEM 1010
来源期刊:Virtual and Physical PrototypingDOI:10.1080/17452759.2018.1558494
Adopting feature resolution and material distribution constraints into topology optimisation of additive manufacturing components
来源期刊:Virtual and Physical PrototypingDOI:10.1080/17452759.2018.1501275
Development of a 3D scan posture-correction procedure to facilitate the direct-digital splinting approach
来源期刊:Virtual and Physical PrototypingDOI:10.1080/17452759.2018.1500862
Development and characterisation of 3D printing finishing process applying recycled plastic waste
来源期刊:Virtual and Physical PrototypingDOI:10.1080/17452759.2018.1521248
3D printing and virtual surgical planning in a difficult Bonebridge case
来源期刊:Virtual and Physical PrototypingDOI:10.1080/17452759.2018.1513797
Retrofitment of a CNC machine for omni-directional tungsten inert gas cladding
来源期刊:Virtual and Physical PrototypingDOI:10.1080/17452759.2018.1552484
Editorial
来源期刊:Virtual and Physical PrototypingDOI:10.1080/17452759.2019.1639250
质量指标占比
研究类文章占比 OA被引用占比 撤稿占比 出版后修正文章占比
93.62%4.64%--
相关指数
影响因子
影响因子
年发文量
自引率
Cite Score
预警情况 查看说明
时间 预警情况
2023年01月发布的2023版不在预警名单中
2021年12月发布的2021版不在预警名单中
2021年01月发布的2020版不在预警名单中
*来源:中科院《 国际期刊预警名单》
JCR分区 WOS分区等级:Q1区
版本 按学科 分区
WOS期刊SCI分区
WOS期刊SCI分区
WOS期刊SCI分区是指SCI官方(Web of Science)为每个学科内的期刊按照IF数值排 序,将期刊按照四等分的方法划分的Q1-Q4等级,Q1代表质量最高,即常说的1区期刊。
(2024-2025年最新版)
ENGINEERING, MANUFACTURING
Q1
MATERIALS SCIENCE, MULTIDISCIPLINARY
Q1
中科院分区 查看说明
版本 大类学科 小类学科 Top期刊 综述期刊
2023年12月最新升级版
工程技术1区
ENGINEERING, MANUFACTURING
工程:制造
1区
MATERIALS SCIENCE, MULTIDISCIPLINARY
材料科学:综合
2区
2022年12月升级版
工程技术1区
ENGINEERING, MANUFACTURING
工程:制造
2区
MATERIALS SCIENCE, MULTIDISCIPLINARY
材料科学:综合
2区
2021年12月基础版
工程技术2区
ENGINEERING, MANUFACTURING
工程:制造
3区
MATERIALS SCIENCE, MULTIDISCIPLINARY
材料科学:综合
2区
2021年12月升级版
工程技术1区
ENGINEERING, MANUFACTURING
工程:制造
1区
MATERIALS SCIENCE, MULTIDISCIPLINARY
材料科学:综合
2区
2020年12月旧升级版
工程技术1区
ENGINEERING, MANUFACTURING
工程:制造
2区
MATERIALS SCIENCE, MULTIDISCIPLINARY
材料科学:综合
2区