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Technology-Based Sheet Metal Classification and Coding System

References Mitrofanov S. P.: The Scientific Principles of Group Technology. Bratislava : SVTL, 1960. Hermann J.W., Singh G.: Design Similarity Measures for Process Planning and Design Evaluation, Technical Research Reports, T. R. 97 - 74, Institute for System Research, University of Maryland, College Park, Maryland, 1997. Šugar P.: Similarity of objects and processes of machine production, Publish center of Technical University of Zvolen, ISBN 80-228-0904-7, Zvolen

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Strain Optical Analysis of 3D Printing Elements in Different Additive Technologies in Comparison with the Finite Element Method

BIBLIOGRAPHY [1] Kluska E., Gruda P. The accuracy and the printing resolution comparison of different 3D printing technologies . Warsaw: Institute of Aviation, 2017. [2] MESOCOS. DIC Measurements in Engineering Applications. [Online] http://image-correlation.com/assets/files/MESOCOS-DIC.pdf . [3] Chu T.C., Ranson W.F., Sutton M.A, Peters W.H. Application of digital-image-correlation techniques to experimental mechanics. Experimental Mechanics . 1985, 25(3), 232-244. [4] Lutowski Z., Marciniak B., Marciniak T., Bujnowski S. Precision of

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A Concept of Suborbital Scientific Mission and Technology Validation

Abstract

Suborbital platforms are one of alternatives for satellites. They offer cheaper access to space to perform broad range of scientific and technology R&D. One of suborbital platforms are sounding rockets, which are suitable for these applications. A concept of scientific mission utilizing the sounding rocket is presented by author in this paper. The novelty of this mission is the operational responsive launch approach, which presents the example of the mission which responds for payload user needs, not payload contest approach, which is often in scientific community competing for payload space in space agency sounding rocket launch campaigns. The main mission goal is to perform astronomical observation of NEO using IR/VIS telescope. The secondary goal is to qualify the instrument for use on astronomical satellite observatory and raise its technology readiness level from TRL 6 to TRL 8. The expected mission output is to gain scientific data on NEO object and perform new IR/VIS optoelectronic instrument technology validation.

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Use of Modern Technology to Develop Investment Housing Projects in Iraq

Abstract

The problem of housing is one of the most important problems in Iraq, especially with the increase in the rate of population growth which is one of the highest rates in the world and after the great destruction that happened in Iraq because of wars and terrorist acts, and here begins to think about the real solutions of this crisis using modern technology and taking into account the feasibility of using modern construction materials compared to the traditional method of construction.

Investors are seriously considering changing the traditional building style and transition to modern building materials to increase quality, win a time, ease of installation and achieve dimensional consistency with ease of internal and external finishing work. The hot weather in Iraq requires real attention to the issue of thermal insulation of buildings and therefore can use the advantage of modern materials to increase thermal insulation and reduce in the energy consumption. This article sheds light on the investment housing projects in Baghdad city.

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Implementation of Automatic Sample and Composite Element Cutting Technologies

BIBLIOGRAPHY [1] Hashish M., 2013, Trimming of CFRP components , WJTA-IMCA Conference and Expo, September 9-11, 2013, Houston, Texas. [2] Patel R., Bovatsek J., Fujita M., 2017, High-power UV laser has use in CFRP machining,, http://www.industrial-lasers.com/ [3] Ohlsson L., 1995, The theory and practice of abrasive water jet cutting, Doctoral thesis 1995:161D, Lulea University of Technology. [4] Kimlia advertising materials, www.kimla.pl , 2017. [5] Rimpault X., Chateleain J.-F., Klemberg-Sapieha J.E., Balazinski M., 2016

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The Accuracy and the Printing Resolution Comparison of Different 3D Printing Technologies

BIBLIOGRAPHY [1] Cantrell J. Rohde J., Damiani D. Experimental Characterization of the Mechanical Properties of 3D-Printed ABS and Polycarbonate Parts. United States of America: University of Florida, 2016. [2] Redood B. Schoffer F., Garret B. The 3D printing handbook: Technologies, design and applications; Materials, Part one: 3D printing Technologies, design and application. Amsterdam: 3D HUBS, November 2017. [3] Chee Kai Chua Murukeshan Vadakke Matham, Young-Jin Kim. World Scientific Series in 3D Printing - Vol. 2: Laser in 3D printing and

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Journal for Technology of Plasticity
The Journal of University of Novi Sad
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Journal of Theoretical and Applied Mechanics
The Journal of Institute of Mechanics of Bulgarian Academy of Sciences
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Experimental Tooling for Contact Stress Measurement in Bulk Metal Forming Processes

References Johnson W., Mellor P.B.: Plasticity for Mechanical Engineers, Van Nostrand Reinhold Company, London, 1980. Kolmogotov V. L.: Mechnanics of technology of plasticity (in Russian), UPI, Ekateromburg, 2001. Avitzur B.: Metal forming: Processes and Analysis, McGraw-Hill, New York, 1968. Tomljenov A. D.: Theory of plasticity (in Russian), Masinostroenie, Moskva 1972. Tarnovskij I. Ja: Theory for technology of Plasticity

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