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2.081J Plates and Shells (MIT) 2.081J Plates and Shells (MIT)
Description
This course explores the following topics: derivation of elastic and plastic stress-strain relations for plate and shell elements; the bending and buckling of rectangular plates; nonlinear geometric effects; post-buckling and ultimate strength of cold formed sections and typical stiffened panels used in naval architecture; the general theory of elastic shells and axisymmetric shells; buckling, crushing and bending strength of cylindrical shells with application to offshore structures; and the application to crashworthiness of vehicles and explosive and impact loading of structures. The class is taught during the first half of term. This course explores the following topics: derivation of elastic and plastic stress-strain relations for plate and shell elements; the bending and buckling of rectangular plates; nonlinear geometric effects; post-buckling and ultimate strength of cold formed sections and typical stiffened panels used in naval architecture; the general theory of elastic shells and axisymmetric shells; buckling, crushing and bending strength of cylindrical shells with application to offshore structures; and the application to crashworthiness of vehicles and explosive and impact loading of structures. The class is taught during the first half of term.Subjects
plates | plates | shells | shells | engineering strain | engineering strain | strain measure | strain measure | bending moment | bending moment | structural plasticity | structural plasticity | membrane energy | membrane energy | green-lagrangian strain | green-lagrangian strain | bending theory of plates | bending theory of plates | buckling theory of plates | buckling theory of plates | raleigh-ritz quotient | raleigh-ritz quotient | local buckling | local buckling | plastic buckling | plastic buckling | cylindrical shells | cylindrical shells | axial load | axial load | lateral pressure | lateral pressure | hydrostatic pressure | hydrostatic pressure | torsion | torsion | bending boundary conditions | bending boundary conditions | strain-displacement | strain-displacement | 2.081 | 2.081 | 16.230 | 16.230License
Content within individual OCW courses is (c) by the individual authors unless otherwise noted. MIT OpenCourseWare materials are licensed by the Massachusetts Institute of Technology under a Creative Commons License (Attribution-NonCommercial-ShareAlike). For further information see http://ocw.mit.edu/terms/index.htmSite sourced from
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See all metadata2.081J Plates and Shells (MIT) 2.081J Plates and Shells (MIT)
Description
This course explores the following topics: derivation of elastic and plastic stress-strain relations for plate and shell elements; the bending and buckling of rectangular plates; nonlinear geometric effects; post-buckling and ultimate strength of cold formed sections and typical stiffened panels used in naval architecture; the general theory of elastic shells and axisymmetric shells; buckling, crushing and bending strength of cylindrical shells with application to offshore structures; and the application to crashworthiness of vehicles and explosive and impact loading of structures. The class is taught during the first half of term. This course explores the following topics: derivation of elastic and plastic stress-strain relations for plate and shell elements; the bending and buckling of rectangular plates; nonlinear geometric effects; post-buckling and ultimate strength of cold formed sections and typical stiffened panels used in naval architecture; the general theory of elastic shells and axisymmetric shells; buckling, crushing and bending strength of cylindrical shells with application to offshore structures; and the application to crashworthiness of vehicles and explosive and impact loading of structures. The class is taught during the first half of term.Subjects
plates | plates | shells | shells | engineering strain | engineering strain | strain measure | strain measure | bending moment | bending moment | structural plasticity | structural plasticity | membrane energy | membrane energy | green-lagrangian strain | green-lagrangian strain | bending theory of plates | bending theory of plates | buckling theory of plates | buckling theory of plates | raleigh-ritz quotient | raleigh-ritz quotient | local buckling | local buckling | plastic buckling | plastic buckling | cylindrical shells | cylindrical shells | axial load | axial load | lateral pressure | lateral pressure | hydrostatic pressure | hydrostatic pressure | torsion | torsion | bending boundary conditions | bending boundary conditions | strain-displacement | strain-displacement | 2.081 | 2.081 | 16.230 | 16.230License
Content within individual OCW courses is (c) by the individual authors unless otherwise noted. MIT OpenCourseWare materials are licensed by the Massachusetts Institute of Technology under a Creative Commons License (Attribution-NonCommercial-ShareAlike). For further information see http://ocw.mit.edu/terms/index.htmSite sourced from
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See all metadataTALAT Lecture 2301: Design of Members
Description
This lecture gives background to calculation methods for aluminium members in order to understand the specific behavior of statically loaded aluminium alloy structures. Basic structural mechanic, design philosophy and structural aluminium alloys and product forms is assumed.Subjects
aluminium | aluminum | european aluminium association | EAA | Training in Aluminium Application Technologies | training | metallurgy | technology | lecture | design | product | member | joint | static | safety | serviceability | geometrical imperfections | extruded profiles | welded profiles | residual stresses | mechanical properties | Bauschinger effect | heat affected zones | stress-strain relationship | strength | reduced strength | partial coefficients | resistance factors | gross section | net section | local buckling | cross section classes | slender plates | effective cross section | class 4 cross sections | deflections of beams | breathing | bending moment | yielding | slenderness parameter | element classification | effective thickness | welded section | section with holes | lateral torsional buckling | axial force | tensile force | compressive force | Euler load | squash load | flexural buckling | reduction factor | buckling length | splices | end connections | welded columns | columns with bolt holes | cut-outs | longitudinal welds | transverse welds | columns with unfilled bolt-holes | built-up members | intermediate stiffeners | edge stiffeners | single-sided rib | multi-stiffened plates | orthotropic plates | shear force | plate girder webs | shear buckling | shear resistance | webs with stiffeners | plate girders with intermediate stiffeners | corrugated webs | closely stiffened webs | concentrated loads | beam webs without stiffeners | beam webs with stiffeners | shear centre | closed sections | open sections | torsion without warping | torsion with warpin | bending and axial tension | bending and axial compression | strength of beam-column segments | rectangular section | strain hardening | plastic theory | I-section | H-section | thin walled cross sections | T-section | biaxial bending | linear stress distribution | shear lag | flange curling | lateral deflection | non-symmetrical flanges | corematerials | ukoerLicense
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See all metadataTALAT Lecture 2301: Design of Members
Description
This lecture gives background to calculation methods for aluminium members in order to understand the specific behavior of statically loaded aluminium alloy structures. Basic structural mechanic, design philosophy and structural aluminium alloys and product forms is assumed.Subjects
aluminium | aluminum | european aluminium association | eaa | talat | training in aluminium application technologies | training | metallurgy | technology | lecture | design | product | member | joint | static | safety | serviceability | geometrical imperfections | extruded profiles | welded profiles | residual stresses | mechanical properties | bauschinger effect | heat affected zones | stress-strain relationship | strength | reduced strength | partial coefficients | resistance factors | gross section | net section | local buckling | cross section classes | slender plates | effective cross section | class 4 cross sections | deflections of beams | breathing | bending moment | yielding | slenderness parameter | element classification | effective thickness | welded section | section with holes | lateral torsional buckling | axial force | tensile force | compressive force | euler load | squash load | flexural buckling | reduction factor | buckling length | splices | end connections | welded columns | columns with bolt holes | cut-outs | longitudinal welds | transverse welds | columns with unfilled bolt-holes | built-up members | intermediate stiffeners | edge stiffeners | single-sided rib | multi-stiffened plates | orthotropic plates | shear force | plate girder webs | shear buckling | shear resistance | webs with stiffeners | plate girders with intermediate stiffeners | corrugated webs | closely stiffened webs | concentrated loads | beam webs without stiffeners | beam webs with stiffeners | shear centre | closed sections | open sections | torsion without warping | torsion with warpin | bending and axial tension | bending and axial compression | strength of beam-column segments | rectangular section | strain hardening | plastic theory | i-section | h-section | thin walled cross sections | t-section | biaxial bending | linear stress distribution | shear lag | flange curling | lateral deflection | non-symmetrical flanges | corematerials | ukoer | Engineering | H000License
Attribution-Noncommercial-Share Alike 2.0 UK: England & Wales Attribution-Noncommercial-Share Alike 2.0 UK: England & Wales http://creativecommons.org/licenses/by-nc-sa/2.0/uk/ http://creativecommons.org/licenses/by-nc-sa/2.0/uk/Site sourced from
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See all metadataCommemorative plates Sunderland Museum & Winter Gardens
Description
Subjects
ceramic | plates | commemorative | sunderland | pottery | history | sunderlandmuseumwintergardens | potterycollection | commemorativeplates | plate | anniversary | celebration | occasion | momentous | coronation | may121937 | kinggeorgevi | royalty | monarch | crown | cross | symbolic | sunderlandpotterycommemorativeplates | shine | branch | leaves | godsavetheking | england | english | socialheritage | industry | abstract | unusual | intriguing | platecollection | neutralbackground | pattern | outline | border | dot | letter | word | numberLicense
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See all metadataCommemorative plates Sunderland Museum & Winter Gardens
Description
Subjects
ceramic | plates | commemorative | sunderland | pottery | history | sunderlandmuseumwintergardens | potterycollection | commemorativeplates | colourphotograph | digitalimage | industry | social | abstract | interesting | unusual | fascinating | northeastofengland | unitedkingdom | sunderlandpotterycommemorativeplates | georgeedmanbraveg | december30th1861 | born | birth | occasion | event | anniversary | illustration | letters | decoration | neutralbackground | shadow | artificiallight | display | detail | circular | curve | ceramicplatescollection | ceramicplatecollection | shapes | number | smallcaseletters | largecaseletters | leaves | branches | marks | grain | artanddesign | archivesLicense
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This course begins with the foundations of 3D elasticity, fluid and elastic wave equations, elastic and plastic waves in rods and beams, waves in plates, and dynamics and acoustics of cylindrical shells. The course considers acoustic fluids effects such as radiation and scattering by submerged plates and shells, and interaction between structural elements. Finally, it covers the response of plates and shells to high-intensity loads, dynamic plasticity and fracture, and structural damage caused by implosive and impact loads.Technical RequirementsMATLAB® software is required to run the .m files found on this course site. File decompression software, such as Winzip® or StuffIt®, is required to open the .zip files found on this course site. This course begins with the foundations of 3D elasticity, fluid and elastic wave equations, elastic and plastic waves in rods and beams, waves in plates, and dynamics and acoustics of cylindrical shells. The course considers acoustic fluids effects such as radiation and scattering by submerged plates and shells, and interaction between structural elements. Finally, it covers the response of plates and shells to high-intensity loads, dynamic plasticity and fracture, and structural damage caused by implosive and impact loads.Technical RequirementsMATLAB® software is required to run the .m files found on this course site. File decompression software, such as Winzip® or StuffIt®, is required to open the .zip files found on this course site.Subjects
3D elasticity | 3D elasticity | wave equations | wave equations | elastic wave | elastic wave | plastic wave | plastic wave | plates | plates | shells | shells | cylindrical shells | cylindrical shells | submerged plates and shells | submerged plates and shells | high-intensity load | high-intensity load | dynamic plasticity | dynamic plasticity | fracture | fracture | implosive load | implosive load | impact load | impact load | radiation | radiation | harmonics | harmonics | scattering | scattering | spheres | spheres | waves | waves | cylinders | cylinders | 2.067 | 2.067License
Content within individual OCW courses is (c) by the individual authors unless otherwise noted. MIT OpenCourseWare materials are licensed by the Massachusetts Institute of Technology under a Creative Commons License (Attribution-NonCommercial-ShareAlike). For further information see http://ocw.mit.edu/terms/index.htmSite sourced from
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See all metadataDescription
This course begins with the foundations of 3D elasticity, fluid and elastic wave equations, elastic and plastic waves in rods and beams, waves in plates, and dynamics and acoustics of cylindrical shells. The course considers acoustic fluids effects such as radiation and scattering by submerged plates and shells, and interaction between structural elements. Finally, it covers the response of plates and shells to high-intensity loads, dynamic plasticity and fracture, and structural damage caused by implosive and impact loads. This course was originally offered in Course 13 (Department of Ocean Engineering) as 13.811. In 2005, ocean engineering subjects became part of Course 2 (Department of Mechanical Engineering), and this course was renumbered 2.067. This course begins with the foundations of 3D elasticity, fluid and elastic wave equations, elastic and plastic waves in rods and beams, waves in plates, and dynamics and acoustics of cylindrical shells. The course considers acoustic fluids effects such as radiation and scattering by submerged plates and shells, and interaction between structural elements. Finally, it covers the response of plates and shells to high-intensity loads, dynamic plasticity and fracture, and structural damage caused by implosive and impact loads. This course was originally offered in Course 13 (Department of Ocean Engineering) as 13.811. In 2005, ocean engineering subjects became part of Course 2 (Department of Mechanical Engineering), and this course was renumbered 2.067.Subjects
3D elasticity | 3D elasticity | wave equations | wave equations | elastic wave | elastic wave | plastic wave | plastic wave | plates | plates | shells | shells | cylindrical shells | cylindrical shells | submerged plates and shells | submerged plates and shells | high-intensity load | high-intensity load | dynamic plasticity | dynamic plasticity | fracture | fracture | implosive load | implosive load | impact load | impact load | radiation | radiation | harmonics | harmonics | scattering | scattering | spheres | spheres | waves | waves | cylinders | cylindersLicense
Content within individual OCW courses is (c) by the individual authors unless otherwise noted. MIT OpenCourseWare materials are licensed by the Massachusetts Institute of Technology under a Creative Commons License (Attribution-NonCommercial-ShareAlike). For further information see http://ocw.mit.edu/terms/index.htmSite sourced from
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This course is a series of presentations on an advanced topic in the field of geology by the visiting William Otis Crosby lecturer. The Crosby lectureship is awarded to a distinguished international scientist each year to introduce new scientific perspectives to the MIT community. This year's Crosby lecturer is Prof. Kevin Burke. His lecture is about African history. The basic theme is the distinctiveness of the African continent in both the way that it originated 600 million years ago and in the way that it has developed ever since. This course is a series of presentations on an advanced topic in the field of geology by the visiting William Otis Crosby lecturer. The Crosby lectureship is awarded to a distinguished international scientist each year to introduce new scientific perspectives to the MIT community. This year's Crosby lecturer is Prof. Kevin Burke. His lecture is about African history. The basic theme is the distinctiveness of the African continent in both the way that it originated 600 million years ago and in the way that it has developed ever since.Subjects
African continent | African continent | Panafrican continental collisions | Panafrican continental collisions | Afro-Arabian plate | Afro-Arabian plate | African plate | African plate | Cambro-Ordovician times | Cambro-Ordovician times | geodynamic evolution | geodynamic evolutionLicense
Content within individual OCW courses is (c) by the individual authors unless otherwise noted. MIT OpenCourseWare materials are licensed by the Massachusetts Institute of Technology under a Creative Commons License (Attribution-NonCommercial-ShareAlike). For further information see http://ocw.mit.edu/terms/index.htmSite sourced from
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Blood smear from a cavalier king charles spaniel, note the abnormal platelet morphology.Subjects
canine | dog | caninebloodsmear | bloodsmear | blood | smear | cavalier | king | charles | spaniel | cavalierkingcharlesspaniel | platelet | platelets | plateletmorphology | svmsvet | ckcs | macroplatelet | macrothrombocyteLicense
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Nottingham Vet School | FlickRAttribution
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Blood smear from a cavalier king charles spaniel, note the abnormal platelet morphology. Dohle bodies.Subjects
canine | dog | caninebloodsmear | bloodsmear | blood | smear | cavalier | king | charles | spaniel | cavalierkingcharlesspaniel | platelet | platelets | plateletmorphology | svmsvet | macroplatelet | ckcsLicense
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Blood smear from a cavalier king charles spaniel, note the abnormal platelet morphology.Subjects
canine | dog | caninebloodsmear | bloodsmear | blood | smear | cavalier | king | charles | spaniel | cavalierkingcharlesspaniel | platelet | platelets | plateletmorphology | svmsvet | macrothrombocyte | macroplateletLicense
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Nottingham Vet School | FlickRAttribution
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Blood smear from a cavalier king charles spaniel, note the abnormal platelet morphology.Subjects
canine | dog | caninebloodsmear | bloodsmear | blood | smear | cavalier | king | charles | spaniel | cavalierkingcharlesspaniel | platelet | platelets | plateletmorphology | svmsvet | macroplatelet | ckcs | macrothrombocyteLicense
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Nottingham Vet School | FlickRAttribution
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Blood smear from a cavalier king charles spaniel, note the abnormal platelet morphology.Subjects
canine | dog | caninebloodsmear | bloodsmear | blood | smear | cavalier | king | charles | spaniel | cavalierkingcharlesspaniel | platelet | platelets | plateletmorphology | svmsvet | macroplatelet | ckcs | macrothrombocyteLicense
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Nottingham Vet School | FlickRAttribution
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Blood smear from a cavalier king charles spaniel, note the abnormal platelet morphology.Subjects
canine | dog | caninebloodsmear | bloodsmear | blood | smear | cavalier | king | charles | spaniel | cavalierkingcharlesspaniel | platelet | platelets | plateletmorphology | svmsvet | macroplatelet | ckcsLicense
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Nottingham Vet School | FlickRAttribution
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Blood smear from a cavalier king charles spaniel, note the abnormal platelet morphology.Subjects
canine | dog | caninebloodsmear | bloodsmear | blood | smear | cavalier | king | charles | spaniel | cavalierkingcharlesspaniel | platelet | platelets | plateletmorphology | svmsvet | macroplateletLicense
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Nottingham Vet School | FlickRAttribution
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Blood smear from a cavalier king charles spaniel, note the abnormal platelet morphology.Subjects
canine | dog | caninebloodsmear | bloodsmear | blood | smear | cavalier | king | charles | spaniel | cavalierkingcharlesspaniel | platelet | platelets | plateletmorphology | svmsvet | macroplateletLicense
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Nottingham Vet School | FlickRAttribution
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Blood smear from a cavalier king charles spaniel, note the abnormal platelet morphology.Subjects
canine | dog | caninebloodsmear | bloodsmear | blood | smear | cavalier | king | charles | spaniel | cavalierkingcharlesspaniel | platelet | platelets | plateletmorphology | svmsvet | ckcs | macrothrombocyte | macroplateletLicense
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Nottingham Vet School | FlickRAttribution
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Blood smear from a cavalier king charles spaniel, note the abnormal platelet morphology.Subjects
canine | dog | caninebloodsmear | bloodsmear | blood | smear | cavalier | king | charles | spaniel | cavalierkingcharlesspaniel | platelet | platelets | plateletmorphology | svmsvet | ckcs | macroplatelet | macrothrombocyteLicense
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Nottingham Vet School | FlickRAttribution
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Blood smear from a cavalier king charles spaniel, note the abnormal platelet morphology. Dohle bodies.Subjects
canine | dog | caninebloodsmear | bloodsmear | blood | smear | cavalier | king | charles | spaniel | cavalierkingcharlesspaniel | platelet | platelets | plateletmorphology | svmsvet | macroplatelet | ckcsLicense
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Nottingham Vet School | FlickRAttribution
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Blood smear from a cavalier king charles spaniel, note the abnormal platelet morphology.Subjects
canine | dog | caninebloodsmear | bloodsmear | blood | smear | cavalier | king | charles | spaniel | cavalierkingcharlesspaniel | platelet | platelets | plateletmorphology | svmsvet | macrothrombocyte | macroplateletLicense
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Nottingham Vet School | FlickRAttribution
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Blood smear from a cavalier king charles spaniel, note the abnormal platelet morphology.Subjects
canine | dog | caninebloodsmear | bloodsmear | blood | smear | cavalier | king | charles | spaniel | cavalierkingcharlesspaniel | platelet | platelets | plateletmorphology | svmsvet | macroplatelet | ckcs | macrothrombocyteLicense
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Nottingham Vet School | FlickRAttribution
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Blood smear from a cavalier king charles spaniel, note the abnormal platelet morphology.Subjects
canine | dog | caninebloodsmear | bloodsmear | blood | smear | cavalier | king | charles | spaniel | cavalierkingcharlesspaniel | platelet | platelets | plateletmorphology | svmsvet | macroplatelet | ckcs | macrothrombocyteLicense
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Nottingham Vet School | FlickRAttribution
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Blood smear from a cavalier king charles spaniel, note the abnormal platelet morphology.Subjects
canine | dog | caninebloodsmear | bloodsmear | blood | smear | cavalier | king | charles | spaniel | cavalierkingcharlesspaniel | platelet | platelets | plateletmorphology | svmsvet | macroplatelet | ckcsLicense
http://creativecommons.org/licenses/by-nc-sa/2.0/Site sourced from
Nottingham Vet School | FlickRAttribution
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Blood smear from a cavalier king charles spaniel, note the abnormal platelet morphology.Subjects
canine | dog | caninebloodsmear | bloodsmear | blood | smear | cavalier | king | charles | spaniel | cavalierkingcharlesspaniel | platelet | platelets | plateletmorphology | svmsvet | macroplateletLicense
http://creativecommons.org/licenses/by-nc-sa/2.0/Site sourced from
Nottingham Vet School | FlickRAttribution
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