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Design for verification

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framework has been developed to enable engineers to design and plan the effective dimensional verification of large volume, complex structures in order to reduce failure rates and end-product costs, improve process integrity and efficiency, optimise metrology processes, decrease tooling redundancy
23:) is a set of engineering guidelines to aid designers in ensuring right first time manufacturing and assembly of large-scale components. The guidelines were developed as a tool to inform and direct designers during early stage design phases to trade off estimated measurement uncertainty against 39:
Increased competition in the aerospace market has placed additional demands on aerospace manufacturers to reduce costs, increase product flexibility and improve manufacturing efficiency. There is a knowledge gap within the sphere of digital to physical dimensional verification and on how to
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framework is an engineering principle to be used within low rate and high value and complexity manufacturing industries to aid in achieving high productivity in assembly via the effective dimensional verification of large volume structures, during final assembly. The
65:’ toolbox, the resultant process achieved improved tolerance analysis and synthesis, optimized large volume metrology and assembly processes and more cost-effective tool and jig design. 57:
methods were published in 2016, together with their testing using industrial case studies of representative complexity. The industrial tests published on
111:"Design for Verification The 9th International Conference on Digital Enterprise Technology – Intelligent Manufacturing in the Knowledge Economy Era" 40:
successfully achieve dimensional specifications within real-world assembly factories that are subject to varying environmental conditions.
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and increase product quality and conformance to specification. The theoretical elements of the
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proved that by using the new design for verification methods alongside the traditional ‘
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Francis, Andrew; Maropoulos, Paul; Mullineux, Glen; Keogh, Patrick (2016).
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Francis, Andrew; Maropoulos, Paul; Mullineux, Glen; Keogh, Patrick (2016).
89: 62: 233: 180: 241: 141: 108: 286: 269: 212: 276: 262: 219: 205: 31:, measurability and product requirements. 159: 126: 287: 187:This engineering-related article is a 228: 175: 13: 14: 316: 232: 179: 144:"Design for Verification (DfV)" 135: 102: 1: 95: 34: 248:. You can help Knowledge by 191:. You can help Knowledge by 161:10.1016/j.procir.2016.10.017 128:10.1016/j.procir.2016.10.017 85:Design for manufacturability 7: 68: 10: 321: 227: 174: 17:Design for verification 244:-related article is a 80:Design for inspection 75:Design for assembly 300:Engineering stubs 257: 256: 200: 199: 312: 278: 271: 264: 236: 229: 221: 214: 207: 183: 176: 166: 165: 163: 139: 133: 132: 130: 106: 320: 319: 315: 314: 313: 311: 310: 309: 295:Quality control 285: 284: 283: 282: 226: 225: 172: 170: 169: 140: 136: 107: 103: 98: 71: 37: 12: 11: 5: 318: 308: 307: 302: 297: 281: 280: 273: 266: 258: 255: 254: 237: 224: 223: 216: 209: 201: 198: 197: 184: 168: 167: 134: 100: 99: 97: 94: 93: 92: 87: 82: 77: 70: 67: 36: 33: 9: 6: 4: 3: 2: 317: 306: 303: 301: 298: 296: 293: 292: 290: 279: 274: 272: 267: 265: 260: 259: 253: 251: 247: 243: 238: 235: 231: 230: 222: 217: 215: 210: 208: 203: 202: 196: 194: 190: 185: 182: 178: 177: 173: 162: 157: 153: 149: 148:Procedia CIRP 145: 138: 129: 124: 120: 116: 115:Procedia CIRP 112: 105: 101: 91: 88: 86: 83: 81: 78: 76: 73: 72: 66: 64: 60: 59:ScienceDirect 56: 51: 46: 41: 32: 30: 26: 22: 18: 305:Design stubs 250:expanding it 239: 193:expanding it 186: 171: 151: 147: 137: 118: 114: 104: 90:Design for X 63:design for X 54: 49: 44: 42: 38: 20: 16: 15: 289:Categories 96:References 35:Background 154:: 61–66. 121:: 61–66. 25:tolerance 69:See also 29:assembly 27:, cost, 242:design 240:This 246:stub 189:stub 43:The 156:doi 123:doi 55:DfV 50:DfV 45:DfV 21:DfV 291:: 152:56 150:. 146:. 119:56 117:. 113:. 277:e 270:t 263:v 252:. 220:e 213:t 206:v 195:. 164:. 158:: 131:. 125:: 19:(

Index

tolerance
assembly
ScienceDirect
design for X
Design for assembly
Design for inspection
Design for manufacturability
Design for X
"Design for Verification The 9th International Conference on Digital Enterprise Technology – Intelligent Manufacturing in the Knowledge Economy Era"
doi
10.1016/j.procir.2016.10.017
"Design for Verification (DfV)"
doi
10.1016/j.procir.2016.10.017
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expanding it
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design
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Quality control
Engineering stubs

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