Journal article Open Access
Ravindra Kannojiya; Akshat Shukla; Mohit Jain; Sarthak Kaintura; Aditya Bachchan
<?xml version='1.0' encoding='UTF-8'?> <record xmlns="http://www.loc.gov/MARC21/slim"> <leader>00000nam##2200000uu#4500</leader> <datafield tag="041" ind1=" " ind2=" "> <subfield code="a">eng</subfield> </datafield> <datafield tag="653" ind1=" " ind2=" "> <subfield code="a">Stress Distribution, Phenomenon, Analysed Interactively, Physical Information.</subfield> </datafield> <controlfield tag="005">20211026134844.0</controlfield> <controlfield tag="001">5595550</controlfield> <datafield tag="700" ind1=" " ind2=" "> <subfield code="u">B.Tech Student, Department of Mechanical Department, Amity University (ASET), Noida, Uttar Pradesh, India.</subfield> <subfield code="a">Akshat Shukla</subfield> </datafield> <datafield tag="700" ind1=" " ind2=" "> <subfield code="u">B.Tech Student, Department of Mechanical Department, Amity University (ASET), Noida, Uttar Pradesh, India.</subfield> <subfield code="a">Mohit Jain</subfield> </datafield> <datafield tag="700" ind1=" " ind2=" "> <subfield code="u">B.Tech Student, Department of Mechanical Department, Amity University (ASET), Noida, Uttar Pradesh, India.</subfield> <subfield code="a">Sarthak Kaintura</subfield> </datafield> <datafield tag="700" ind1=" " ind2=" "> <subfield code="u">B.Tech Student, Department of Mechanical Department, Amity University (ASET), Noida, Uttar Pradesh, India.</subfield> <subfield code="a">Aditya Bachchan</subfield> </datafield> <datafield tag="700" ind1=" " ind2=" "> <subfield code="u">Publisher</subfield> <subfield code="4">spn</subfield> <subfield code="a">Blue Eyes Intelligence Engineering & Sciences Publication (BEIESP)</subfield> </datafield> <datafield tag="856" ind1="4" ind2=" "> <subfield code="s">751001</subfield> <subfield code="z">md5:bef488529151921f9d904e4e70c2e429</subfield> <subfield code="u">https://zenodo.org/record/5595550/files/C5528029320.pdf</subfield> </datafield> <datafield tag="542" ind1=" " ind2=" "> <subfield code="l">open</subfield> </datafield> <datafield tag="260" ind1=" " ind2=" "> <subfield code="c">2020-02-29</subfield> </datafield> <datafield tag="909" ind1="C" ind2="O"> <subfield code="p">openaire</subfield> <subfield code="o">oai:zenodo.org:5595550</subfield> </datafield> <datafield tag="909" ind1="C" ind2="4"> <subfield code="c">4072-4076</subfield> <subfield code="n">3</subfield> <subfield code="p">International Journal of Engineering and Advanced Technology (IJEAT)</subfield> <subfield code="v">9</subfield> </datafield> <datafield tag="100" ind1=" " ind2=" "> <subfield code="u">Assistant Professor, Department of Mechanical Department, Amity University (ASET), Noida, Uttar Pradesh, India</subfield> <subfield code="a">Ravindra Kannojiya</subfield> </datafield> <datafield tag="245" ind1=" " ind2=" "> <subfield code="a">Performance Assessment of Stress Concentration Reduction Methods in Mild Steel Transmission Shaft</subfield> </datafield> <datafield tag="540" ind1=" " ind2=" "> <subfield code="u">https://creativecommons.org/licenses/by/4.0/legalcode</subfield> <subfield code="a">Creative Commons Attribution 4.0 International</subfield> </datafield> <datafield tag="650" ind1="1" ind2="7"> <subfield code="a">cc-by</subfield> <subfield code="2">opendefinition.org</subfield> </datafield> <datafield tag="650" ind1="1" ind2=" "> <subfield code="a">ISSN</subfield> <subfield code="0">(issn)2249-8958</subfield> </datafield> <datafield tag="650" ind1="1" ind2=" "> <subfield code="a">Retrieval Number</subfield> <subfield code="0">(handle)C5528029320/2020©BEIESP</subfield> </datafield> <datafield tag="520" ind1=" " ind2=" "> <subfield code="a"><p>A shaft is subjected to tensile stress, compressive stress, torsional force and bending moment due to reaction on the components. The stress distribution in a shaft can be is similar to the flow of fluid in a channel. So, it is perfectly logical to use the fluid analogy to understand the phenomenon of stress concentration. When the cross section is uniform the flow is uniform whereas if there is a sudden change in the cross section then the velocity increases to keep the flow rate constant .The same phenomenon is observed in the shaft i.e. when the cross section of the shaft is uniform throughout , the stresses are uniform where as if the cross section changes abruptly then the stress lines come closer to each other in order to keep the force same . When there are sharp changes then it results in stress concentration. The effect of stress concentration can be reduced effectively as there are numerous discontinuities which makes it impossible to eradicate it fully .This could be done by numerous some of which are removal of material , providing fillet radius and also by choosing appropriate material for manufacturing . Software like Solid works can be used for the design and analysis of the component. An object drawn with Solid works can be analysed interactively and physical information can be extracted from it.</p></subfield> </datafield> <datafield tag="773" ind1=" " ind2=" "> <subfield code="n">issn</subfield> <subfield code="i">isCitedBy</subfield> <subfield code="a">2249-8958</subfield> </datafield> <datafield tag="024" ind1=" " ind2=" "> <subfield code="a">10.35940/ijeat.C5528.029320</subfield> <subfield code="2">doi</subfield> </datafield> <datafield tag="980" ind1=" " ind2=" "> <subfield code="a">publication</subfield> <subfield code="b">article</subfield> </datafield> </record>
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