Failure Mode Effect and Criticality Analysis of Stub axle subassembly 1. Introduction: FMECA is a methodology to identify and analyse predicted failure modes of various parts within the assembly or system. It is a technique to resolve potential problems in a system before they occur. It is most widely used reliability analysis technique performed between the conceptual and initial stage of the detailed design phase of the system in order to assure that all the potential failures have
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the coupling at the white bushing and pull on the line while pushing the tool toward the white bushing. * 7 Remove the shift boot retainer screws with the transmission in neutral and lift the boot up the shift lever. * 8 Mark the driveshaft and rear axle companion flange on the differential using the chalk‚ then disconnect the driveshaft from the flange by removing the bolts with a metric socket wrench. * 9 Pull the driveshaft toward the rear of the vehicle and disconnect it from the transmission output
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above) segment. Ashok Leyland Ennore plant is the first Ashok Leyland plant and is also the mother plant accounting to almost 40% of the total production of AL. This plant manufactures vehicles and important aggregates like engines‚ gearboxes and axles. Employing over 5000 people this plant is huge spread over 135 Acers. We have been given the privilege to undergo in plant training at this facility for duration of a week from 4th of June 2013. This training is important for us as we get to learn
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We used metal rods with rubber wheels attached for the axles and wheels. We supported the axles to the frame using "U" nails. Our wheels featured some spinners as well. For the actual body of the car we glued the mouse trap on another piece of wood to lengthen the body. The mouse trap was hot glued on the top with a extended arm for more leverage. One end of a rope was glued on the extended mouse trap arm and the other end to the rear axle. As you wound the back wheels the rope would whined as well
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to the wheels in order to move. An IC engine propels cars‚ buses‚ trucks‚ scooters‚ locomotives‚ ships‚ planes‚ etc. General categories: 1. Load carriers or single unit vehicles: These are commercial four-wheel type – two-axle design. Front axle for steering and rear axle for driving the vehicle. Passenger cars‚ buses‚ trucks and lorries are the examples of this category. 2. Articulated vehicles or double unit vehicles: It contains a powered unit and trailer. Usually the cabin is attached to
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is important because it prevents accidents by making sure that the load is not top heavy or un-even from side to side preventing rollovers on un even ground. The general guidance for the rule is to place your load center and directly over the rear axle on 7-tons. For the L.V.S.R. it should be centered over the width of the truck‚ and then you load from front to back. To prepare a load
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Course (s)B58EC‚ B58ED–Mech. Eng. Sci. 3‚ 4 | Year2 | SubjectDynamics | Semester (s)1 and 2 | Laboratory TitleWheel and Axle Acceleration | Objective: To predict the time taken for a wheel to roll on its axle‚ down a slope using the energy method. Theory: Release Energy Method Ød or radius r After descent m kg I kg.m2 h v m/sec ØD or radius R Figure 1. Energy in a rolling wheel Referring to Figure 1 when the wheel is released from rest and subsequently rolls down
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Stage-Gate Process 1. What is Stage gate Process Stage gate process is a R&D process which is about managing successful development of new product. It covers whole process from discovering idea to launching new product. 2. What is stage? What stages are included in the product development process? The Stages are the process which important action occurs. In each stage‚ the project team that established for launching new product go through key activities to gather information needed
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N EW JCB 3DX MOST FUEL EFFICIENT BACKHOE LOADER ON EARTH STATIC DIMENSIONS PERFORMANCE DIMENSIONS STATIC DIMENSIONS A Overall length B Wheelbase D Minimum ground clearance E Slew ground clearance G Height to top of cab H Overall height J Track width - Rear 5.90 m 2.17 m 0.36 m 0.53 m 2.87 m 3.61 m 1.73 m 1.86 m 2.35 m EXCAVATOR PERFORMANCE A Max. dig depth B Reach-ground level to rear wheel centre C Reach-ground level to slew centre D Reach at full height to slew centre E Side
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INTRODUCTION Ashok Leyland is an Indian automobile manufacturing company based in Chennai‚ India. Founded in 1948‚ it is the 2nd largest commercial vehicle manufacturers in India‚ 4th largest manufacturer of buses in the world and 16th largest manufacturer of trucks globally. Operating six plants‚ Ashok Leyland also makes spare parts and engines for industrial and marine applications. It sells about 60‚000 vehicles and about 7‚000 engines annually. It is the second largest commercial vehicle company
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