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Torque density

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153:, space is often dictated by the configuration of current components. There may be several types of devices that can perform the function of an existing component that must be replaced. The relative torque densities of the devices may be an important determinant for which design is ultimately selected, although it will often compete with other factors such as cost, ease of maintenance, time to install, operating costs and potential failure modes. 22: 130:
is a measure of the torque-carrying capability of a mechanical component. It is the ratio of torque capability to volume and is expressed in units of torque per volume. Torque density is a system
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design problems. Typically, it will be one of many factors used to assign potential success measures to each concept. For example, in the upgrade of a drive train for a set of rolls in a
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since it depends on the design of each element of the component being examined and their interconnection.
62: 32: 36: 87: 197: 8: 189:, that is usually not used for this purpose). Small amounts can be expressed in newton- 229: 201: 218: 186: 174: 150: 209: 182: 170: 146: 190: 21: 131: 138: 142: 178: 166: 205: 162: 216: 50:. Unsourced material may be challenged and 114:Learn how and when to remove this message 185:(though dimensionally equivalent to the 217: 137:Torque density is useful during the 48:adding citations to reliable sources 15: 13: 14: 241: 200:, torque density is expressed in 165:, torque density is expressed in 208:-pounds force per cubic inch or 20: 141:evaluation stage of mechanical 1: 7: 10: 246: 156: 212:inches per cubic inch. 193:per cubic millimetre. 225:Mechanical engineering 198:U.S. customary units 44:improve this article 204:per cubic foot, or 202:foot-pounds force 124: 123: 116: 98: 237: 173:or equivalently 145:, especially in 119: 112: 108: 105: 99: 97: 63:"Torque density" 56: 24: 16: 245: 244: 240: 239: 238: 236: 235: 234: 215: 214: 159: 126: 120: 109: 103: 100: 57: 55: 41: 25: 12: 11: 5: 243: 233: 232: 227: 158: 155: 128:Torque density 122: 121: 28: 26: 19: 9: 6: 4: 3: 2: 242: 231: 228: 226: 223: 222: 220: 213: 211: 207: 203: 199: 194: 192: 188: 184: 180: 176: 172: 168: 164: 154: 152: 148: 144: 140: 135: 133: 129: 118: 115: 107: 104:December 2009 96: 93: 89: 86: 82: 79: 75: 72: 68: 65: –  64: 60: 59:Find sources: 53: 49: 45: 39: 38: 34: 29:This article 27: 23: 18: 17: 195: 160: 151:rolling mill 136: 127: 125: 110: 101: 91: 84: 77: 70: 58: 42:Please help 30: 210:ounce-force 191:millimetres 183:cubic metre 171:cubic metre 147:power train 219:Categories 74:newspapers 31:does not 163:SI units 132:property 230:Density 143:designs 139:concept 88:scholar 52:removed 37:sources 187:pascal 179:metres 175:newton 167:joules 90:  83:  76:  69:  61:  157:Units 95:JSTOR 81:books 206:inch 181:per 169:per 67:news 35:any 33:cite 196:In 161:In 46:by 221:: 177:- 117:) 111:( 106:) 102:( 92:· 85:· 78:· 71:· 54:. 40:.

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cite
sources
improve this article
adding citations to reliable sources
removed
"Torque density"
news
newspapers
books
scholar
JSTOR
Learn how and when to remove this message
property
concept
designs
power train
rolling mill
SI units
joules
cubic metre
newton
metres
cubic metre
pascal
millimetres
U.S. customary units
foot-pounds force
inch
ounce-force

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