Consider the loaded shaft illustrated in Figure Q4 (i). The shaft is simply supported at A and D. The shoulder fillet radius is 0.3 cm at B and C. If the shaft is subjected to a force of F=800 N,...


Consider the loaded shaft illustrated in Figure Q4 (i). The<br>shaft is simply supported at A and D. The shoulder fillet<br>radius is 0.3 cm at B and C.<br>If the shaft is subjected to a force of F=800 N, determine the<br>following:<br>

Extracted text: Consider the loaded shaft illustrated in Figure Q4 (i). The shaft is simply supported at A and D. The shoulder fillet radius is 0.3 cm at B and C. If the shaft is subjected to a force of F=800 N, determine the following:
(d)<br>The stress concentration factor at shoulder fillet B.<br>(e)<br>The maximum stress in the shaft taking into account stress<br>concentrations.<br>800 N<br>r = 0,3 cm<br>A d, = 3 cm<br>d2 = 5 cm<br>d, 3 3 ст<br>B<br>C<br>5 ст<br>8 cm<br>8 ст<br>12 cm<br>Figure Q4 (i)<br>The reference parameters are shown in Figure Q4 (ii) in the<br>page that follows. For 0.002 srld < 0.3 and 1.01 s Dlds 6.0,<br>the stress concentration factor for bar bending is given as:<br>kn<br>-4.4<br>= 0.632 + 0.377<br>2<br>4<br>|-0.14 – 0.363(P/a)+ 0.503(P/a)<br>+ 3.368(P/a)<br>2<br>4<br>1– 2.39(D/a)<br>The nominal stress is:<br>32M<br>nd³<br>

Extracted text: (d) The stress concentration factor at shoulder fillet B. (e) The maximum stress in the shaft taking into account stress concentrations. 800 N r = 0,3 cm A d, = 3 cm d2 = 5 cm d, 3 3 ст B C 5 ст 8 cm 8 ст 12 cm Figure Q4 (i) The reference parameters are shown in Figure Q4 (ii) in the page that follows. For 0.002 srld < 0.3="" and="" 1.01="" s="" dlds="" 6.0,="" the="" stress="" concentration="" factor="" for="" bar="" bending="" is="" given="" as:="" kn="" -4.4="0.632" +="" 0.377="" 2="" 4="" |-0.14="" –="" 0.363(p/a)+="" 0.503(p/a)="" +="" 3.368(p/a)="" 2="" 4="" 1–="" 2.39(d/a)="" the="" nominal="" stress="" is:="" 32m="">

Jun 11, 2022
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