Determine the stresses induced at point A and B. Also estimate the principal stresses induced in the shaft O 25 mm B T= 80 Nm F = 25 kN
Q: Determine: a) State of stress at point A on the upper surface of the shaft b) The maximum normal…
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Q: Calculate the normal stresses (in Pa) at point A of the bracket caused by the 11633 N force. - 540…
A: P= 11633 N Width of the cross section, b= 60 mm Height of the cross section, h= 180 mm
Q: A solid 22 mm diameter shaft is used to transmit 128 Nm torques applied to gears. Determine the…
A: Given Data : Torque transmitted (T)=128 n-m R=0.011 Diameter of shaft(d)=22 mm=0.022 m
Q: A shaft required to transmit 50kW of power will be running at 100rev/min. The maximum twist in 3m…
A: Given Power, P = 50 kW Speed, N = 100 rpm Angle = 1.5 degree Find Diameter, d Shear…
Q: Calculate the maximum shear stresses from the torsional moment it the shaft between the points B and…
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Q: The pipe shown in Fig a has an inner radius of 40 mm and an outer radius of 50 mm. If its end is…
A: Given Inner radius of pipe = 40 mm Outer radius of pipe = 50 mm To find The shear stress inner and…
Q: A propeller shaft is required to transmit 45 kW power at 500 rpm. It is a hollow shaft having inside…
A: Given data Power transmitted = 45 kW Speed (N) = 500 rpm Inside dia (d) = 0.6*outside dia(D)…
Q: A tubular steel shaft transmits a power of P = 450 hp at a speed of 3000 rpm. Determine the maximum…
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Q: A shaft composed of segments AC, CD, and DB is fastened to rigid supports and loaded as shown below.…
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Q: Two loads P act as shown, one parallel to (x0) and another parallel to z0; each load P equals 1850…
A: GIVEN :- b1=85mmb2=130mmb3=60mmd=28mmP=1850N
Q: A solid shaft is required to transmit 90 kW of power at 200 rpm. Determine the shaft diameter by the…
A: The power P can be given by - P=90×1000=2πNT6090×1000= 2π×200×T60T=4297.18 NmThe shear stress can be…
Q: Q.1: Calculate the maximum shear stress developed in each segment when the torque T = 100 N.m. is…
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Q: The stainless-steel shaft shown below is solid with a diameter of 120 mm. The shaft is fixed at A…
A: Given:DIameter, d=120 mmTB=500 N.mTC=800 N.mG=75 GPa
Q: H.W.8: Calculate the stresses, if the strains displayed on the lement have been applied. Use all…
A: To obtain the required stresses, we must first determine the principal strains in the element using…
Q: F SIMPLE STRESSES 2. Based on Problem No. 1, determine the shear stress in the grain of the timber…
A: As per honor code and answering guidelines I can answer 1st question at a time.If you want other…
Q: The solid shaft is loaded (two point loads) and supported (fixed at left end) as shown. For the xyz…
A: AS this Question as multiparts solving first part or you can mention the part Given data -: 1. dia…
Q: The drive shaft AB of an automobile is to be designed as a thin- walled tube The engine delivers 150…
A: The power delivers by engine, P = 150 hp The speed of the shaft, N = 1500 rpm The outer diameter of…
Q: Problem No. 3. The compound shaft has the following properties: G in both Segment 1 Segment 1 pipe…
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Q: If o = 50 ksi, Oy = 10 ksi, and Txy = 30 ksi, what is the absolute maximum shear stress for the…
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Q: A shaft is made of an aluminum alloy having allowable shear stress of tallow = 100 MPa. If the…
A: Given Allowable shear stress = 100 MPa Diameter of shaft = 100 mm To find Maximum torque at 75 mm
Q: Determine the limiting peripheral velocity of a steel ring if the allowable stress is 20 ksi the…
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Q: A steel shaft is subjected to the torques shown. The shaft is solid with a diameter of 1 in and G =…
A: Givend=1 inG=12,000 ksiTorque acting at D, TD=110 lb.fTorque acting at C, TC=-215 lb.ftTorque acting…
Q: (a) the maximum principal stresses on the surface of the shaft at points A and B, (b) the maximum…
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Q: A central horizontal section of a hook is a symmetrical trapezium of inner width =67.5mm and of…
A: Given:Inner width,bi=67.5 mmOuter width,bo=22.5 mmP=37.5 KNInner radius,Ri=52.5 mmh=90 mmOuter…
Q: The drive shaft AB of an automobile is to be designed as a thin-walled tube. The engine delivers 150…
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Q: A hollow shaft for a rotary compressor is to be designed to transmit a maximum torque of 4750 N-m.…
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Q: Calculate: (a) the maximum torque that can be applied to the shaft. (b) the minimum diameter of the…
A: Given Dataσy=450MPaE=205GPaτy=σy2=225MPar=45mm
Q: Opposing axial torques are applied at the ends of a straight bar ABCD. Each of the parts AB, BC and…
A: Given: Straight bar ABCD, Length of Parts AB, BC, CD = 500 mm
Q: 04 It is required to find the dimensions of thick cylinder which has internal diameter of (150+SN)…
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Q: 2. A shaft 30 mm diameter is transmitting power at a maximum shear stress of 80 MPa. If a pulley is…
A: Given data:
Q: In the following structure if the temperature increases by 20 °C, determine the normal stress in…
A: Given Data The increased temperature is: T=20°C The distance BD is: BD=400 mm The distance BF is:…
Q: A shaft transmits 20 kW power and rotates at 500 rpm. The material of the shaft is 50C4 (ơvp = 460…
A: Given, Power transmitted = P = 20 kW = 20,000 W Shaft RPM = N = 500 rpm Yield strength of shaft =…
Q: the cross-stctions e-e and f-f, respectively, when a torque T = 800 Nm is applied at point B. Take…
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Q: The inner and outer diameters of the pipe is 50 mm and 75 mm, respectively and it is made of cast…
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Q: A thick cylinder of 150 mm outside radius and 100 mm inside radius is subjected to an external…
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Q: 1. A shaft 80 mm diameter transmits power at maximum shear stress of 63 MPa. Find the length of a 20…
A: Given data diameter of shaft (d) = 80 mm maximum shear stress in shaft (τmax) = 63 MPa width of…
Q: (a) The reaction forces at the two ends of the shaft A and D. (b) The bending moments at shoulder…
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Q: Determine the principal stresses in the cantilevered beam at points A and B.
A: Draw sketch of beam and divide shear force into horizontal and vertical components.
Q: 2. A shaft (30 mm )diameter is transmitting power at a maximum shear stress of (80 MPa). If a pulley…
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Q: 4. The shaft shown transmits 1 kW of power at 1000 rpm. Determine the maximum stress in the shaft.…
A: ANS: power P= 1kW speed N=1000 rpm Torque T= 60*P/(2*π*N) =60*1/(2*π*1000) T=0.00954 N-m shear…
Q: The solid shaft is fixed to the support at C and subjected to the torsional loadings and axial load…
A: Given:P=20 KNT=10.11 KN.md=75 mmdA=50 mm
Q: The solid shaft of radius c is subjected to a torque T at its ends. Show that the maximum shear…
A: Torsion Equation can be given by TJ=τr=G×θLTJ=G×θLθ=T×LG×J
Q: Two loads P act as shown, one parallel to (x0) and another parallel to z0; each load P equals 1.5…
A: Given: The value of the load is, P=1.5 kN. The diameter of the shaft is, d=22 mm
Q: Solve Prob. using the maximum shear stress theory.
A: In mechanical engineering most of the components are made up of the mild steel. so assume the…
L=125 mm
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- The stresses acting on an element are x= 750 psi, y= 600 psi, and xy = 400 psi. Determine the principal stresses and show them on a sketch of a properly oriented element.A fire extinguisher tank is designed for an internal pressure of 825 psi. The tank has an outer diameter of 4.5 in. and thickness of O.OS in. Calculate the longitudinal stress, the circumferential stress, and the maximum shear stresses (out-of-plane and in-plane) at the outer surface of the tank.-26 A rectangular plate of dimensions 125 mm × 75 mm is subjected to tensile stress sy= 67 kPa and compressive stress a. If it is known that the normal stress along the diagonal t—t is ??t= -6.57 kPa, find stress ??y on element A. a
- The hollow drill pipe for an oil well (sec figure) is 6,2 in. in outer diameter and 0.75 in. in thickness. Just above the bit, the compressive force in the pipe (due to the weight of the pipe) is 62 kips and the torque (due to drilling) is 185 kip-in. Determine the maximum tensile, compressive, and shear stresses in the drill pipe.An element of aluminum is subjected to tri-axial stresses. Calculate the strains in the element in x, y, and z directions lithe stresses axayand az are -2000 psi, 3500 psi, and 2700 psi, respectively. Assume E = 10,000 ksi and v = 0.33. Also, find the unit volume change of the element.At a point on the web of a girder on an overhead bridge crane in a manufacturing facility, the stresses arc known to be x = —4300 psi, a = 1700 psi, and r = 3100 psi (the sign convention for these stresses is shown in Fig, 7-1). A stress clement located at the same point in the structure (but oriented at a counterclockwise angle 0, with respect to the _y axis) is subjected to the stresses shown in the figure {b, r», and 2100 psi). Assuming that the angle 8Xis between zero and 90°, calculate the normal stress trA, the shear stress ta, and the angle Bv
- Repeat the previous problem using ? = 50° and stresses on the rotated element: sy1= 70 MPa, ??y1=-82 MPa, and tx1y1=-35 MPa.‘7.3-11 The stresses on an element are sx= -300 psi and sy= 600 psi. Find the maximum shear stresses on the element and show them on a sketch of a properly oriented clement.A solid shaft of diameter 30 mm is fixed at one end. It is subjected to a tensile force of 10 kN and a torque of 60 Nm. At a point on the surface of the shaft, determine the principle stresses and the maximum shear stress.
- A hollow bronze shaft with anoutside diameter of 80 mm and a wallthickness of 5 mm is subjected to a torqueof T = 620 N·m and an axial load of P =9,500 N, as shown in Figure P15.3/4.(a) Determine the principal stresses andthe maximum shear stress at point Hon the surface of the shaft.(b) Show the stresses of part (a) and theirdirections on an appropriate sketch.Determine: a) State of stress at point A on the upper surface of the shaft b) The maximum normal stresses at point A as we well as its orientation c) Of the 800lb force is going upwards (instead of downwards) explain what will happen to i) normal stress, and ii) shear stress at A (no calculations needed for part c)A shaft composed of three segments and fastened to rigid supports. Determine the maximum shear stress developed in each segment. (Please don't skip any mathematical step and please show all the working)