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Get PriceJun 01 2009 · The experimental program was developed in LNEC facility using the 3D shaking table The design of the structure was a common decision of the specialists involved from the University of Bucharest the Slovak Academy of Sciences and the IRIDEX Construction Group on the basis of an architectural conception typical of the buildings under study as
Jun 01 2009 · The experimental program was developed in LNEC facility using the 3D shaking table The design of the structure was a common decision of the specialists involved from the University of Bucharest the Slovak Academy of Sciences and the IRIDEX Construction Group on the basis of an architectural conception typical of the buildings under study as
Further DetailsBehavior of New Type of SemiRigid Joints under Moment and Tensional Force p1165 Home Applied Mechanics and Materials Applied Mechanics and Materials Vols 226228 Shaking Table Test Study on MidStory Isolation
Further DetailsJun 01 2014 · The aseismic design of concrete faced rockfill dams CFRDs has become vitally important in recent years A series of 1g largescale shaking table model tests were conducted applying similitude laws to evaluate the effectiveness of various aseismic measures
Further DetailsJul 09 2018 · Shaking Table Test of MidRise Concrete Shear Walls with a Single Layer of Web Reinforcement and Inclined Steel Bars Authors first second and last of 4 Jianwei Zhang Wenbin Zheng Hongying Dong Content type Research paper Published 24 September 2018 Pages 1043
Further DetailsIn another test with high grade chromite ore sustainable product qualities were achieved up to a recovery of 9322 in comparison with the 6608 achieved with a conventional shaking table
Further DetailsThe Shake Table II XY consists of two singleaxis Shake Table II units mounted perpendicularly on top of each other Each stage can travel ±76 cm Driven by powerful motors the Shake Table II XY can achieve an acceleration of 25 g when loaded with a 75 kg mass
Further DetailsDan Mircea Ghiocel Civil Engineering Institute of Bucharest Romania Dan Ghiocel Civil Engineering Institute of Bucharest Romania Traian Mauna Research and Design Energy Institute of Bucharest Romania St Louis Missouri 1200 AM 1200 AM 1200 AM Experimental Studies on an Embedded SoilStructure Interaction in a Case of Hard
Further DetailsDesign Method For Shaking Table Test On Isolated Structures Using Friction Pendulum Bearings Chengcheng Hu Ying Zhou Peng Chen Wensheng Lu Xilin Lu New Facilities in Laboratory of CSCEC for Large and Full Scale Structure Test Yungui Li Jianyun Sun Pengfei Shi Wei Li Yongxi Zhao Yuting Li 214 Outrigger Tuned Viscous Mass
Further DetailscdcprojectNCHSDHANESIBData CouncilLabManual 12182012 523 PM LA iii TABLE OF CONTENTS Chapter Page 1 OVERVIEW OF THE NATIONAL HEALTH AND NUTRITION
Further DetailsTae‐Won Park Lan Chung Jinkoo Kim Seismic performance evaluation of tall and nonseismic‐designed wall‐type structures by shaking table tests The Structural Design of Tall and Special Buildings 101002tal558 20 3 314326 2009
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Processing capacity: 45-500t/h
Applied material: river pebbles, rocks (limestone, granite, basalt, diabase, andesite, etc.), ore tailings.
Feeding Granularity: ≤20-≤25mm
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Feeding Granularity: 300-1050mm
Production Capacity: 80-1000TPH
Feeding Granularity:≤25-≤50mm
Production Capacity:0.62-180TPH
Applied Materials:Quartz, iron ore, copper ore, gold ore, glass, construction waste, cement clinker, etc
Packing:Bags
Dimensions:Dia20mm-Dia150mm
Application:Cement,Ball mill,Coal mill, slag mill,Mines,Power plant, etc.
Capacity:150-600TPH
Specification:Φ2.5×40~Φ4.8x68m
Configuration:Lime kiln, coal mill, cooling machine, jaw crusher, vibrating feeder, etc.
Feeding Size:3-400mm
Production Capacity: 50-300TPH
Applied Materials:River gravel, limestone, granite, basalt, andesite, iron ore, quartz, diabase, iron ore, gold ore, copper ore,etc.
Feeding Granularity:0-3mm
Production Capacity:10-280TPH
Applicable Range:it is suitable for the magnetite, pyrrhotite, roasted ore, ilmenite and other materials smaller than 3mm in wet-type magnetic separation process.
Processing Capacity: depending on specific situation
Processed Materials: Copper, zinc, nickel, gold and other nonferrous metals, coarse and fine separation of nonmetals like coal, fluorite and talc.
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Feeding Size:≤25-≤30mm
Discharging Size:0.125- 0.044mm
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Feeding Granularity: 120-1500mm
Production Capacity: 1-2200t/h
Feed Opening:150×250-1600×2100mm
Feeding Size: 65-300mm
Discharging Size: 3-60mm
Production Capacity: 12-1000t/h
Feeding Size:400-1200mm
Production Capacity:45-500TPH
Applied Materials:Limestone, granite, basalt, andesite, iron ore, quartz, diabase, iron ore, gold ore, copper ore,etc.
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