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035 _a.b12339519
100 0 _aMay Thant Sin
245 1 0 _a5-Axis toolpath optimization for a turgo turbine tunner
260 _aPathumthani:
_bAsian Institute of Technology,
_c2014
300 _e1 online resource
500 _aThe degree of Master of Engineering in Industrial and Manufacturing Engineering, School of Engineering and Technology
520 _aThe Turgo turbine model is developed based on the parametric dimensions from the onedimensional calculation using Solidworks. It is then imported into MasterCam to generate tool path conducting ruled surface milling. After that, it is post-processed in Mathamatica based on Inverse Kinematic. Using the NC file with G-code, the verification is implemented in Vericut. When tool path is optimized, the prototype is produced with Haas 5-Axis machine with flank milling. The e-Design concept is applied during the optimization process. The integrated e-design phase and manufacturing phase is working in parallel. The designed model is revised several time according to the optimization of tool path generation based on the verified results using the virtual 5-Axis machine in Vericut with good surface finish, less manufacturing time, the avoidance of tool break, tool wear, and less scallop. The optimized machining sequence includes roughing of the extra materials first, then finishing the 20 blades using flank milling 10 mm bull-end tool. The total manufacturing time for implementing the optimized too path is 4 hours and 45 minutes. With this tool path, the surface finish, the manufacturing time and the collision avoidance with less tool travel are optimized. Still, there is one scallop in the bottom as the big tool effect. However it is not the critical since it has no affect the flow mechanism and can be developed later.
650 0 _a5-Axis
650 0 _aOptimization
650 0 _aTurbines
700 1 _aBohez, Erik L.J.,
_eChairperson
700 0 _aMongkol Ekpanyapong,
_eExamination Committee
700 1 _aThan, Lin,
_eExamination committee
700 0 _aKetsaya Vacharanukul,
_eExaminor committee
710 2 _aMinistry of Foreign Affairs, Norway,
_eScholarship donor
856 _3Full-Text
_uhttp://203.159.5.9/ait-thesis/detail.php?q=B04685
907 _a.b12339519
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