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         "author": [ 
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         "volume": "1960","number": "1","pages": "130003","abstract": "Current research activities at the Institute for Metal Forming Technology of the University of Stuttgart are focusing on the manufacturing of hybrid components using semi-solid forming strategies. One process investigated is the joining of different materials in the semi-solid state and is so called \u201Cthixojoining\u201D. In this process, metallic inlays are inserted into the semi-solid forming die before the actual forming process and are then joined with a material which was heated up to its semi-solid state. Earlier investigations have shown that using this process a very well-shaped form closure can be produced. Furthermore, it was found that sometimes intermetallic phases are built between the different materials, which decisively influence the part properties of such hybrid components for its future application. Within the framework presented in this paper, inlays made of aluminum, brass and steel were joined with aluminum in the semi-solid state. The aim of the investigations was to create an intermetalli...",
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         "label" : "Molecular Surface Maps",
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         "journal": "IEEE TRANSACTIONS ON VISUALIZATION AND COMPUTER GRAPHICS","publisher":"IEEE COMPUTER SOC","address":"10662 LOS VAQUEROS CIRCLE, PO BOX 3014, LOS ALAMITOS, CA 90720-1314 USA",
         "year": "{2017}", 
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         "author": [ 
            "Michael Krone","Florian Friess","Katrin Scharnowski","Guido Reina","Silvia Fademrecht","Tobias Kulschewski","Juergen Pleiss","Thomas Ertl"
         ],
         "authors": [
         	
            	{"first" : "Michael",	"last" : "Krone"},
            	{"first" : "Florian",	"last" : "Friess"},
            	{"first" : "Katrin",	"last" : "Scharnowski"},
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            	{"first" : "Thomas",	"last" : "Ertl"}
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         "volume": "23","number": "1","pages": "701-710","note": "IEEE VIS Conference, Baltimore, MD, OCT 23-28, 2016","abstract": "We present Molecular Surface Maps, a novel, view-independent, and\r\n   concise representation for molecular surfaces. It transfers the\r\n   well-known world map metaphor to molecular visualization. Our\r\n   application maps the complex molecular surface to a simple 2D\r\n   representation through a spherical intermediate, the Molecular Surface\r\n   Globe. The Molecular Surface Map concisely shows arbitrary attributes of\r\n   the original molecular surface, such as biochemical properties or\r\n   geometrical features. This results in an intuitive overview, which\r\n   allows researchers to assess all molecular surface attributes at a\r\n   glance. Our representation can be used as a visual summarization of a\r\n   molecule's interface with its environment. In particular, Molecular\r\n   Surface Maps simplify the analysis and comparison of different data sets\r\n   or points in time. Furthermore, the map representation can be used in a\r\n   Space-time Cube to analyze time-dependent data from molecular\r\n   simulations without the need for animation. We show the feasibility of\r\n   Molecular Surface Maps for different typical analysis tasks of\r\n   biomolecular data.",
         "language" : "English",
         
         "affiliation" : "Krone, M (Reprint Author), Univ Stuttgart, Visualizat Res Ctr VISUS, Stuttgart, Germany.   Krone, Michael; Friess, Florian; Scharnowski, Katrin; Reina, Guido; Ertl, Thomas, Univ Stuttgart, Visualizat Res Ctr VISUS, Stuttgart, Germany.   Fademrecht, Silvia; Kulschewski, Tobias; Pleiss, Juergen, Univ Stuttgart, Inst Tech Biochem, Stuttgart, Germany.",
         
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         "number-of-cited-references" : "64",
         
         "research-areas" : "Computer Science",
         
         "eissn" : "1941-0506",
         
         "funding-text" : "The authors want to thank M. Sanner for providing his MSMS software and   T. K. Dey and colleagues for providing their ReebHanTun software. This   work was partially funded by Deutsche Forschungsgemeinschaft (DFG) as   part of SFB 716 and SFB-TRR 161.",
         
         "funding-acknowledgement" : "Deutsche Forschungsgemeinschaft (DFG) [SFB 716, SFB-TRR 161]",
         
         "times-cited" : "4",
         
         "issn" : "1077-2626",
         
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         "doc-delivery-number" : "EM8CA",
         
         "da" : "2018-09-19",
         
         "journal-iso" : "IEEE Trans. Vis. Comput. Graph.",
         
         "keywords-plus" : "CANDIDA-ANTARCTICA; DEFORMABLE MODELS; PROTEIN-STRUCTURE; ORGANIC MEDIA;   VISUALIZATION; LIPASE; SHAPE; TRACKING",
         
         "unique-id" : "ISI:000395537600073",
         
         "doi" : "10.1109/TVCG.2016.2598824",
         
         "bibtexKey": "ISI:000395537600073"

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}
