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Full-Text Articles in Engineering

Note: Miniature 120-Kv Autonomous Generator Based On Transverse Shock-Wave Depolarization Of Pb(Zr0.52ti0.48)O₃ Ferroelectrics, S. I. Shkuratov, Jason Baird, E. F. Talantsev Aug 2011

Note: Miniature 120-Kv Autonomous Generator Based On Transverse Shock-Wave Depolarization Of Pb(Zr0.52ti0.48)O₃ Ferroelectrics, S. I. Shkuratov, Jason Baird, E. F. Talantsev

Mining Engineering Faculty Research & Creative Works

The design of autonomous ultrahigh-voltage generators with no moving metallic parts based on transverse explosive shock wave depolarization of Pb(Zr0.52Ti0.48)O3 (PZT 5248) poled ferroelectrics was explored and studied. It follows from experimental results that the output voltage produced by the shock-wave ferroelectric generators (FEGs) is directly proportional to the number of PZT 5248 elements connected in series. It was demonstrated that miniature FEGs (volume less than 180 cm3) were capable of reliably producing output voltage pulses with amplitudes exceeding 120 kV which is the record reported in open literature.


Electric Breakdown Of Longitudinally Shocked Pb(Zr₀.₅₂Ti₀.₄₈)O₃ Ceramics, S. I. Shkuratov, E. F. Talantsev, Jason Baird Jul 2011

Electric Breakdown Of Longitudinally Shocked Pb(Zr₀.₅₂Ti₀.₄₈)O₃ Ceramics, S. I. Shkuratov, E. F. Talantsev, Jason Baird

Mining Engineering Faculty Research & Creative Works

Electric breakdown of longitudinally-shock-compressed Pb(Zr₀.₅₂Ti₀.₄₈)O₃ (PZT 52/48) ferroelectric ceramics was experimentally investigated. It was found that a dependence of breakdown field strength, Eg, of shocked ferroelectrics on the thickness of the element, d, ranging from 0.65 to 6.5 mm is described by the Eg (d) = γ  · d-w law that describes the breakdown of dielectrics at ambient conditions. It follows from the experimental results that the tunnel effect is a dominant mechanism of injection of prime electrons in the shocked ferroelectric elements. It was demonstrated that electric breakdown causes significant energy losses in miniature autonomous …


The Depolarization Of Pb(Zr0.52ti0.48)O₃ Ferroelectrics By Cylindrical Radially Expanding Shock Waves And Its Utilization For Miniature Pulsed Power, S. I. Shkuratov, Jason Baird, E. F. Talantsev May 2011

The Depolarization Of Pb(Zr0.52ti0.48)O₃ Ferroelectrics By Cylindrical Radially Expanding Shock Waves And Its Utilization For Miniature Pulsed Power, S. I. Shkuratov, Jason Baird, E. F. Talantsev

Mining Engineering Faculty Research & Creative Works

The effects of depolarization of Pb(Zr0.52Ti0.48)O3 (PZT 52/48) poled ferroelectrics by cylindrical radially expanding shock waves propagated along and across the polarization vector P0 were experimentally detected. Miniature (total volume 100 cm3) autonomous generators based on these effects were capable of producing output voltage pulses with amplitudes up to 25 kV and output energies exceeding 1 J.


Development Of A Waterjet System For Direct Delivery Of Granular Iron And Activated Carbon To Remediate Contaminated Aqueous Sediments, Gavin H.R. Risley, Andrew Curtis Elmore, Joel Gerard Burken, Grzegorz (Greg) Galecki Jan 2011

Development Of A Waterjet System For Direct Delivery Of Granular Iron And Activated Carbon To Remediate Contaminated Aqueous Sediments, Gavin H.R. Risley, Andrew Curtis Elmore, Joel Gerard Burken, Grzegorz (Greg) Galecki

Civil, Architectural and Environmental Engineering Faculty Research & Creative Works

While the Techniques and Technologies Associated with Contaminated Sediment Remediation Are Relatively Mature, There Are Several Issues Associated with These Practices that Make Them Unattractive. the Inability of Currently Used Mechanical Mixing Implements to Place Amendments in Aqueous Environments and their Intrusive Behavior toward Benthic Communities Are Just Two Examples of a Necessity for an Improved Delivery Method. Waterjets May Be a Viable Option for Placement of Particulate Remediation Amendments, Such as Activated Carbon and Granular Iron, at Depth. a Custom Waterjet Nozzle and Injection System Has Been Fabricated by the Authors to Examine This Delivery Concept. the Developed Injection …


Command And Control For Boring System, W. A. Berger, J. A. Carter, Marian Mazurkiewicz, R. M. Pell, R. A. Spalletta Jan 2011

Command And Control For Boring System, W. A. Berger, J. A. Carter, Marian Mazurkiewicz, R. M. Pell, R. A. Spalletta

Mining Engineering Faculty Research & Creative Works

A system having a number of land units [100, 4000, 5000] is disclosed which operates to efficiently find and create boreholes [5] to one or more underground targets [1]. Each of the land units [100, 4000, 5000] may be remotely controlled from a central command unit [6000]. The land unit also may be self-controlled, or partially controlled by the central command unit [6000]. The system [10] is reconfigurable to reallocate tasks to functional land units [100, 4000, 5000] which were originally allocated to land units which have been destroyed and are now non-functional.


Virtual Prototype Modeling And Simulation Of Pipe Wagon Articulating System, Y. Li, Samuel Frimpong, W. Y. Liu Jan 2011

Virtual Prototype Modeling And Simulation Of Pipe Wagon Articulating System, Y. Li, Samuel Frimpong, W. Y. Liu

Mining Engineering Faculty Research & Creative Works

Virtual prototype of pipe wagon articulating (PWA) system has been developed and simulated based on the kinematics and dynamics of machinery and Automatic Dynamic Analysis of Mechanical Systems (ADAMS) software. It has been integrated with real-time three dimensional (3-D) system simulations for detailed and responsive interaction with dynamic virtual environments. By using this virtual model, the conceptual design examination and performance analysis of the PWA system have been realized dynamically in virtual laboratory. System dynamic force, displacement and tension of pipe have been measured through verifying this 3- D virtual prototype. By comparing the static tension and dynamic tension of …


Addressing The Dual Challenges Of Meeting Demand For Minerals And Sustainable Development, R. Larry Grayson Jan 2011

Addressing The Dual Challenges Of Meeting Demand For Minerals And Sustainable Development, R. Larry Grayson

Mining Engineering Faculty Research & Creative Works

In recent decades, excellent progress has been made globally in finding mineral resources, extracting them efficiently and effectively, dramatically reducing environmental degradation, and preventing adverse health and safety impacts on workers and stakeholders. The industry has realized tremendous advances in technology and applied science; has met changing and more stringent environmental performance criteria; has made remarkable reductions in fatality, illness, and lost-time accident rates; and has connected better than ever before with the communities in which mining, milling, and smelting are housed. A new era focused on continuous improvement in tackling key sustainable development parameters has come and is intensifying …