JOURNAL OF AIRCRAFT Vol. 44‚ No. 3‚ May–June 2007 Corrosion Pillowing in Aircraft Fuselage Lap Joints Nicholas C. Bellinger‚∗ Jerzy P. Komorowski‚† and Ronald W. Gould‡ National Research Council Canada‚ Institute for Aerospace Research‚ Ottawa‚ Ontario K1A 0R6‚ Canada DOI: 10.2514/1.18589 This paper presents the results of studies that have been carried out at the National Research Council Canada on the effect that corrosion pillowing has on the structural integrity of fuselage lap joints. Modeling
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Reaction Types In this lab we were give 9 different elements and had to determine if they were Single Displacement‚ Double Displacement‚ Synthesis‚ Decomposition and Combustion. A.) Aluminum and Copper (II) Chloride‚ my hypothesis is a Single Displacement. B.) Calcium Carbide and Water‚ my hypothesis is a Double Displacement. C.) Zinc and Hydrochloric Acid‚ my hypothesis is a Single Displacement. D.) Alcohol and Oxygen‚ my hypothesis is a Combustion. E.) Lead (II) Nitrate and Potassium Iodide
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Iron‚ which has the chemical symbol Fe‚ is an extremely useful metal and the most common element 0n the planet Earth. Here are some of the more common uses of iron in the world today. Uses of Iron * Iron catalysts are used in the Haber-Bosch Process to produce ammonia and the Fischer-Tropsch Process to convert carbon monoxide to hydrocarbons used for fuels and lubricants. * Iron metal is strong but is also quite cheap. Therefore‚ it is the most common metal in use today. Most automobiles
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The steel industry accounts for 70% of the amount of refractory. The main purpose of the rotary kiln using refractory is for high temperature resistance‚ wear resistance and corrosion resistance‚ thermal equipment‚ steel structure and protect the good condition‚ provide good working conditions‚ there are many available monolithic refractories for cement rotary kiln.The steel industry accounts for 70% of the amount of refractory. The main purpose of the rotary kiln using refractory is for high temperature
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Copper-Iron Stoichiometry Lab Report 10/3/12 Abstract: The lab performed required the use of quantitative and analytical analysis along with limiting reagent analysis. The reaction of Copper (II) Sulfate‚ CuSO4‚ mass of 7.0015g with 2.0095g Fe or iron powder produced a solid precipitate of copper while the solution remained the blue color. Through this the appropriate reaction had to be determined out of the two possibilities. Through the use of a vacuum filtration system the mass of Cu was
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Purpose: This experiment is used to perform a series of synthesis reactions that convert aluminum foil to alum. Alum is used in cooking‚ to treat wastewater‚ and is used in common deodorant. In this lab a series of four reactions will occur to yield alum. Calculations: Aluminum foil: 0.5035 grams Alum & Watch Glass: 21.7691 grams Watch Glass: 15.1560 grams Alum: 6.6131 gram Theoretical Yield of Alum: 2Al(s) + 2KOH(aq) + 4H2SO4 + 22H20 -> 3H2(g) + 2KAl(SO4)2 + 12H2O(s) 0.5035gAl
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Determination of Trace Amount of Copper and Zinc in an Aqueous Solution by Atomic Absorbance Spectroscopy Abstract: The purpose of this experiment is to analyze a sample containing copper and zinc in trace amounts‚ where standard addition method was used and the instrument used is the atomic absorbance spectroscopy. The amount of copper obtained was 0.569 ppm ± 0.015 and for zinc we obtained 0.42 ppm ± 0.0027. Introduction: This method implies the excitation of particles in the solution sample
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1. Plot stress vs. strain of each material tested The three graphs were plotted using data collected during the experiment‚ Figure 1‚ 2 and 3 Figure 1 Figure 2 Figure 3 2. Determine the proportional limit of the test specimen: Proportional limits are approximately as follows- * copper is 8‚888 psi * Aluminum is 6‚666 psi * Polyester is 9‚696 psi 3. Determine the Elastic Modulus of the specimens: * The Modulus of Elasticity for copper specimen is
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Available online at www.sciencedirect.com Available online at www.sciencedirect.com Procedia Engineering 10 (2011) 1232–1237 Procedia Engineering 00 (2011) 000–000 Procedia Engineering www.elsevier.com/locate/procedia ICM11 Statistic characteristics of fatigue properties in magnesium alloy S. Mohda‚c‚ *‚ Y. Otsukab‚ Y. Miyashitab‚ Y. Mutohb a Department of Materials Science‚ Nagaoka University of Technology‚ 1603-1 Kamitomioka‚ Nagaoka 940-2188‚ Japan b Department of System Safety
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Company #1: Neils Bohr Equation: 3Na2CO3 + 2AlPO4 = 2Na3PO4 + Al2(CO3)3 Reaction: Double Displacement Company #2: Hello Equation: C5H12 + 8O2 = 5CO2 + 6H2O Reaction: Combustion Company #1 Neils Bohr 3Na2CO3
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