Academic literature on the topic 'Multiwave compressor'

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Journal articles on the topic "Multiwave compressor"

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Zhang, Ping, Shou-Gou Yan, Yu-Xiang Dai, et al. "Multiwave Total Focusing Method for Full-Matrix Imaging Using Ultrasonic Phased Array." Materials Evaluation 79, no. 12 (2021): 1179–88. http://dx.doi.org/10.32548/2021.me-04222.

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The imaging range of the traditional total focusing method (TFM) is usually limited by the directivity of excitation of a single wave pattern. In this paper, a multiwave TFM technique is proposed, which uses both compression and shear vertical (SV) waves for detection and imaging simultaneously. Based on this technique, a special ultrasonic transducer for multiwave detection is designed that can balance the excitation amplitude of compression and SV waves. Multiwave TFM uses the compression and SV wave fields generated by the same excitation, and the signals reflected by the two sound fields p
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Hartanto, Daniel, and A. Seputra Sudianto. "Applying Multiwall Carbon Nanotube for Increasing Soil Bearing Capacity." Modern Environmental Science and Engineering 8, no. 5 (2022): 263–66. http://dx.doi.org/10.15341/mese(2333-2581)/05.08.2022/002.

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Nanotechnology is an alternative in soil improvement methods. The size of the nanoparticles is very small, ranging from 1 to 100 nm. Multiwall Nanotube is one of the nano materials in increasing the bearing capacity of the soil. According to Arabania et al. (2012), the strength of clayey sand increased by 120% by adding 3% Multiwall Carbon Nanotube. Meanwhile, according to Taha (2012), the recommended addition of Multiwall Nanotube Carbon is 0.1-0.5%. This research uses Unconfined Compression Test to determine the unconfined compressive strength (qu) and undrained shear strength (cu) of the la
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Akita, Seiji, Mitsumasa Nishio, and Yoshikazu Nakayama. "Buckling of Multiwall Carbon Nanotubes under Axial Compression." Japanese Journal of Applied Physics 45, no. 6B (2006): 5586–89. http://dx.doi.org/10.1143/jjap.45.5586.

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Wang, C. Y., C. Q. Ru, and A. Mioduchowski. "Axially compressed buckling of pressured multiwall carbon nanotubes." International Journal of Solids and Structures 40, no. 15 (2003): 3893–911. http://dx.doi.org/10.1016/s0020-7683(03)00213-0.

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Nishio, Mitsumasa, Seiji Akita, and Yoshikazu Nakayama. "Buckling Test under Axial Compression for Multiwall Carbon Nanotubes." Japanese Journal of Applied Physics 44, No. 34 (2005): L1097—L1099. http://dx.doi.org/10.1143/jjap.44.l1097.

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Shivamurthy, B., Krishna Murthy, and S. Anandhan. "Tribology and Mechanical Properties of Carbon Fabric/MWCNT/Epoxy Composites." Advances in Tribology 2018 (July 5, 2018): 1–10. http://dx.doi.org/10.1155/2018/1508145.

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Cryogenic treated multilayered carbon fabric/oxidized multiwall carbon nanotube/epoxy (CCF/O-MWCNT/E) composite and untreated carbon fabric/epoxy (CF/E) composite were prepared by hot compression molding technique. The density and mechanical properties such as tensile properties, flexural properties, interlaminar shear strength, and microhardness of the composites were investigated as per ASTM standards. The wear and coefficient of friction behavior were investigated using computer interfaced pin-on-disc test rig at room temperature for varied load and sliding speed. The morphology of worn sur
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Helseth, L. E. "Electrical impedance spectroscopy of multiwall carbon nanotube–PDMS composites under compression." Materials Research Express 5, no. 10 (2018): 105002. http://dx.doi.org/10.1088/2053-1591/aada3c.

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Kolmogorova, V. V., G. I. Parygin, A. Yu Osipova, and V. Yu Osipov. "Elastic properties and latitudinal zoning of the lithosphere of the Middle Ural region with increased seismicity according to multiwave deep seismic sounding data." LITHOSPHERE (Russia) 25, no. 1 (2025): 24–43. https://doi.org/10.24930/2500-302x-2025-25-1-24-43.

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Research subject. Lithosphere of the Middle Urals region with increased seismicity.Aim. Study of the elastic properties and latitudinal zoning of the earth’s crust and upper mantle in the region based on multiwave deep seismic sounding data and the comparison of the identified features of the deep structure with the location of tectonic earthquakes.Materials and Methods. The gradient velocity sections of the earth’s crust and upper mantle were constructed along the Vizhay– Nizhnyaya Tura–Orsk meridional profile and the fragments of two geotraverses: Kostomuksha–Nizhniy Tagil–Semipalatinsk (Rub
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Kilmer, Misha E., Lior Horesh, Haim Avron, and Elizabeth Newman. "Tensor-tensor algebra for optimal representation and compression of multiway data." Proceedings of the National Academy of Sciences 118, no. 28 (2021): e2015851118. http://dx.doi.org/10.1073/pnas.2015851118.

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With the advent of machine learning and its overarching pervasiveness it is imperative to devise ways to represent large datasets efficiently while distilling intrinsic features necessary for subsequent analysis. The primary workhorse used in data dimensionality reduction and feature extraction has been the matrix singular value decomposition (SVD), which presupposes that data have been arranged in matrix format. A primary goal in this study is to show that high-dimensional datasets are more compressible when treated as tensors (i.e., multiway arrays) and compressed via tensor-SVDs under the t
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Barkāne, Anda, Sergejs Gaidukovs, Jānis Kajaks, and Oskars Platnieks. "Dielectric Properties of Ethylene Vinyl Acetate Copolymer Composites Filled with Carbon Nanotubes, Graphene Nanoplatelets and Iron Oxide Nanoparticles." Key Engineering Materials 800 (April 2019): 195–99. http://dx.doi.org/10.4028/www.scientific.net/kem.800.195.

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Ethylene vinyl-acetate copolymer (EVA) composite materials containing multiwall carbon nanotubes (MWCNT), graphene (Gr) and iron (III, IV) oxide (Fe3O4) nanoparticles where processed by melt blending. Film specimens were prepared by using compression moulding method. All nanoparticles content in samples was chosen equal to 20 wt.%. The material dielectric spectroscopy was used in a range of 10-2 Hz to 107 Hz to investigate nanoparticle effect on the dielectric active (ε’) and passive components (ε’’), specific electrical conductivity (σ’) and dielectric loss (tg) for the characterization of th
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Dissertations / Theses on the topic "Multiwave compressor"

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Лісовенко, Д. О. "Дослідження відцентрового компресора азотного контуру установки отримання скрапленого природного газу". Master's thesis, Сумський державний університет, 2020. https://essuir.sumdu.edu.ua/handle/123456789/81701.

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У роботі виконано розрахунок одновального триступеневого двохпоточного відцентрового компресора, тривального двухпоточного відцентрового компресора та виконано порівняльний аналіз компресорів. Виконано розрахунок тривального компресора для альтернативної схеми азотного циклу, яка відрізняється зменшеною кількість компресорів. Також виконано розділ охорони праці, в якому розглянуто небезпечні та шкідливі фактори компресорного виробництва, а саме безпека експлуатації компресорів, герметичність, вибухонебезпечність, пожежонебезпека, вібрація, ураження електричним струмом, безпека при експ
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Conference papers on the topic "Multiwave compressor"

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Du, Bo, Mengfei Zhang, Lefei Zhang, and Xuelong Li. "Hyperspectral biological images compression based on multiway tensor projection." In 2014 IEEE International Conference on Multimedia and Expo (ICME). IEEE, 2014. http://dx.doi.org/10.1109/icme.2014.6890252.

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Fatome, J., S. Pitois, and G. Millot. "160-GHz picosecond pulse train generation through multiwave mixing compression of a dual frequency beat signal." In Nonlinear Guided Waves and Their Applications. OSA, 2002. http://dx.doi.org/10.1364/nlgw.2002.nltuc3.

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Fatome, J., S. Pitois, and Guy Millot. "160-GHz picosecond pulse train generation through multiwave mixing compression of a dual-frequency beat signal." In 25th international Congress on High-Speed photography and Photonics, edited by Claude Cavailler, Graham P. Haddleton, and Manfred Hugenschmidt. SPIE, 2003. http://dx.doi.org/10.1117/12.516813.

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Rizvi, Reza, Sara Makaremi, Steven Botelho, Elaine Biddiss, and Hani Naguib. "Piezoresistance Characterization of Poly(Dimethyl-Siloxane)-Multiwall Carbon Nanotube Composites." In ASME 2010 Conference on Smart Materials, Adaptive Structures and Intelligent Systems. ASMEDC, 2010. http://dx.doi.org/10.1115/smasis2010-3777.

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This study examines the piezoresistive behavior of polymer-conducting filler composites. Piezoresistive composites of Poly(dimethyl-siloxane)-Multiwall Carbon Nanotube (PDMS-MWNT) were prepared using a direct mixing approach. The dispersion and the electrical conductivity of the composites were characterized at various MWNT compositions. The piezoresistive behavior under compression was measured using an Instron Universal Tester/Digital Sourcemeter combination. Negative piezoresistive behavior was observed signifying a reducing mean inter-particulate distance in the composites. Moreover, the s
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