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13篇 您的检索式:作者名="Degala"
    题名 作者 年代 出处 被引量
1Acousticemission monitoring of CFRP reinforced concrete slabs显示文摘DEGALA S RIZZO P RAMANATHAN K 2009Construction and Building Materials2009,23,5:1
2Acoustic emission monitoring of CFRP reinforced concrete slabs显示文摘Sandeep Degala Piervincenzo Rizzo Karthik Ramanathan Kent A. Harries 2008Construction and Building Materials2008,,5:1
3Sphingosine and sphingosine 1-phosphate stimulate cell proliferation显示文摘 Rafi MA Degala G 1991J Cell Biol1991,,114:1
4Loss of the oncogenicphosphatase PRL-3 promotes a TNF-R1 feedback loop that medi-ates triple-negative breast cancer growth 显示文摘Gari HH DeGala GD Lucia MS 2016Oncogenesis2016,5,8:1
5Calcium signa- ling in response to fluid flow by ehondrocytes in 3D al- ginate culture 显示文摘Degala S Williams R Zipfel W etal 2012Journal of Orthopaedic Research2012,30,5:1
6Phosphatase of regeneratingliver-3 as a convergent therapeutic target for lymph node metastasisin esophageal squamous cell carcinoma 显示文摘Gari HH DeGala GD Ray R 2016Cancer Lett2016,380,2:1
7Timing of aneurysrn surgery in subarachnoid haemorrhage-an observational study in the Netherlands显示文摘Nieuwkamp DJ deGalas K Algra A 2005Acta Neurochir (wien)2005,147,8:1
8Sphingosine phosphate stimulate cell proliferation显示文摘Zhang H Rafi M A Degala G 1991J Cell Biol1991,114,:1
9Molten pool behavior in the tandem submerged arc welding process 显示文摘Cho Dae Won Degala Venkata Kiran Woo Hyun Song 2014Journal of Materials Processing Technology2014,214,11:1
10Calcium signaling in response to fluid flow by chondrocytes in 3D alginate culture显示文摘Degala S Wil iams R Zipfel W 0,,05:1
11Sphingosine and Sphingosine 1-phosphate Stimulate Cell Proliferation显示文摘 Rafi MA Degala G 1991J Cell Biol1991,,114:1
12Sphingosine and Sphingosinel-phosphate stimulate cell proliferation 显示文摘Zhang H Rafi MA Degala G 1991Cell Biol1991,114,2:1
13Non-invasive optical characterization and estimation of Zn porosity in gas tungsten arc welding of Fe–Al joints using CR model and OES measurements显示文摘In this study,we employed a non-invasive approach based on the collisional radiative(CR)model and optical emission spectroscopy(OES)measurements for the characterization of gas tungsten arc welding(GTAW)discharge and quantification of Zn-induced porosity during the GTAW process of Fe–Al joints.The OES measurements were recorded as a function of weld current,welding speed,and input waveform.The OES measurements revealed significant line emissions from Zn-I in 460–640 nm and Ar-I in 680–800 nm wavelength ranges in all experimental settings.The OES coupled CR model approach for Zn-I line emission enabled the simultaneous determination of both essential discharge parameters i.e.electron temperature and electron density.Further,these predictions were used to estimate the Zn-induced porosity using OES-actinometry on Zn-I emission lines using Ar as actinometer gas.The OES-actinometry results were in good agreement with porosity data derived from an independent approach,i.e.x-ray radiography images.The current study shows that OES-based techniques can provide an efficient route for real-time monitoring of weld quality and estimate porosity during the GTAW process of dissimilar metal joints.Sai SRIKAR Tinku KUMAR Degala Venkata KIRAN Reetesh Kumar GANGWAR 2023Plasma Science and Technology2023,25,11:0
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