Zobrazeno 1 - 10
of 30
pro vyhledávání: '"Duvalois, W."'
Publikováno v:
Journal of Microscopy. Dec2013, Vol. 252 Issue 3, p263-274. 12p.
Autor:
Ramshorst, M.C.J. van, Benedetto, G.L. di, Duvalois, W., Hooijmeijer, P.A., Heijden, A.E.D.M. van der
Publikováno v:
Propellants, Explosives, Pyrotechnics, August, 4, 41, 2632-2642
The failure mechanism of a propellant consisting of hydroxyl terminated poly-butadiene filled with ammonium perchlorate and aluminum (HTPB/AP/Al) was determined by performing in-situ uniaxial tensile tests in a scanning electron microscope (SEM). The
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Autor:
Elshout, J.J.M.H. van den, Duvalois, W., Benedetto, G.L. Di, Bouma, R.H.B., Heijden, A.E.D.M. van der
Publikováno v:
Proceedings of the 19th Seminar on New Trends in Research of Energetic Materials (NTREM), Pardubice, Czech Republic, 20-22 April 2016, 483-490
A key-technique for the research of energetic materials is scanning electron microscopy. In this paper several examples are given of characterization studies on energetic materials, including a solid composite propellant formulation. Results of the c
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Publikováno v:
Offshore, 11, 76, 1
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Autor:
Benedetto, G.L. di, Ramshorst, M.C.J. van, Duvalois, W., Hooijmeijer, P.A., Heijden, A.E.D.M. van der, Klerk, W.P.C. de
Publikováno v:
Energetic Materials: Performance, Safety and System Applications. 46th International Annual Conference of the Fraunhofer ICT, Karlsruhe, Germany, 23-26 June 2015
PARARI 2015, Sydney, Australia, 9-12 November 2015, Session 9B
PARARI 2015, Sydney, Australia, 9-12 November 2015, Session 9B
A tensile module system placed within a FEI NovaNanoSEM 650 Scanning Electron Microscope (SEM) was utilized in this work to conduct in-situ tensile testing of propellant material samples. This tensile module system allows for real-time in-situ SEM an
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Autor:
Roelands, C.P.M., Cuypers, R., Kruit, K.D., Oversloot, H.P., Jong, A.J. de, Duvalois, W., Vliet, L. van, Hoegaerts, C.L.G.
Publikováno v:
3rd International Conference on Solar Heating and Cooling for Buildings and Industry, SHC 2014, Beijing, China, 13-15 October 2014, 70, 257-266
Bottlenecks for realizing a commercial system for thermochemical heat storage (TCS) with hygroscopic salts are the chemical, physical and mechanical stability of the salt under operation conditions. Hence, improved knowledge of thermochemical materia
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Autor:
Huhn, A.K., Spiegel, W. von, Maagt, P. de, Duvalois. W., Jagt, O.C. van der, Roskos, H.G., Haring Bolivar, P.
Publikováno v:
1st EU Conference on the Detection of Explosives (EUCDE), Avignon, France, 14-16 March 2011
The terahertz (THz) frequency range is located between microwave and infrared radiation in the electroma¬gnetic spectrum. It spans from 300 GHz up to 10 THz. The transparency of different materials (e.g. cotton, paper, plastics, etc.) especially at
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Chemical analysis is one of the most important parts within an energetic material lifecycle. It starts with the qualification and quantification of the raw materials and/or the intermediate materials used for the manufacturing of the final product. W
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Publikováno v:
36th International Pyrotechnics Seminar, Rotterdam, Netherlands, 23-28 August 2009, 31-40
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Autor:
Heijden, A.E.D.M. van der, Creyghton, Y.L.M., Marino, E., Bouma, R.H.B., Scholtes, G.J.H.G., Duvalois, W., Roelands, C.P.M.
Publikováno v:
Propellants, Explosives, Pyrotechnics, 1, 33, 25-32
The product quality of energetic materials is predominantly determined by the crystallization process applied to produce these materials. It has been demonstrated in the past that the higher the product quality of the solid energetic ingredients, the
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