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主题 : 东大机械设计考试样卷
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楼主  发表于: 2007-11-14   

东大机械设计考试样卷

(1)     For a tight bolted connection with transverse load, the bolt is carried by     . M'DWu|dIBA  
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A. shear stress             B. tensile stress I(n }<)eF  
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C. shear stress and tensile stress   D. shear stress or tensile stress PyFj@n  
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(2)     For a tight bolted connection with axial tensile load F and preload , the resultant tensile force in the bolt is       . a8zZgIV  
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A.   B.   C.   D. N xFUO0O3  
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(3)     If the performance grade of a bolt is 6.8, then the yield limit stress of the bolt material is       MPa. CU$)QH{  
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A. 600       B. 800       C. 680       D. 480 3fp> 4;ym'  
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(4)     The lubricating method of a journal bearing is dependent on     . r|fO7PD  
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A. average intensity of pressure p   B. circle velocity of journal v   C. pv   D. |` "?  
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(5)     For a hydrodynamic radial journal bearing, the valid method for increasing is to     . C ) ?uE'  
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A. increase relative clearance     B. increase oil supply xA #H0?a]  
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C. decrease     D. replace lubricating oil with lower viscosity CGZ^hoh/  
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(6)     For a hydrodynamic radial journal bearing, the relative clearance is the ratio of     . J(s;$PG  
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A. diametral clearance and journal diameter   B. radial clearance and journal diameter MhxDV d  
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C. minimal clearance and diametral clearance B4Lx{u no  
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D. minimal clearance and journal diameter Hg+ F^2<y  
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(7)     The axial preloading for rolling bearings is for _______. q3S+Y9L  
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A. increasing loading capacity     B. decreasing noise [BDGR B7d"  
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C. improving running precision   D. avoiding shaft displacement RiR:69xwR*  
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(8)     The inner ring and outer ring of the     bearing are separable. X?o( b/F -  
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A. deep-groove ball   B. self-aligning ball   C. tapered roller   D. self-aligning roller =yXs?y"  
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(9)     In an important application, if the reliability of rolling bearings is increased to 95%, then the relation between the dynamic load rating relative to 95% reliability to the basic dynamic load rating C is _______. I1"MPx{  
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A.     B.     C.     D. uncertain $nPAm6mH  
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(10)   For a cylindrical helical compressive spring, the maximal shear stress on spring wire happens at the ______. ^^Jnv{)  
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A. inner side of spring coil   B. outer side of spring coil %2l7Hmp4H  
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C. center of spring wire     D. arbitrary position on spring wire " I+p  
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(11)   For a cylindrical helical compressive spring with working coils being 12, if the number of working coils is decreased by 3, then spring stiffness is _____. ma & To=  
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A. decreased to 3/4 of the original value   B. decreased to 9/16 of the original value o>lms t%<  
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C. not changed         D. increased to 4/3 of the original value NPjv)TN}3  
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(12)   For a static balanced rigid rotor, its mass center is     located at the rotating axis. #D%ygh=  
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A. certainly       B. not always       C. certainly not O8u3y  
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(13)   Shown in the figure is a cylindrical cam with uniform material, accurate manufacture and installation. When it rotates round the axis A-A, the cam is under the state of _________. LM l~yqM  
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A. static imbalance   B. static balance   C. complete imbalance   D. dynamic balance F?4(5 K  
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(14)   The installation of flywheel in machinery is to       . 8<#U9]  
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A. eliminate speed fluctuation     B. realize steady running SW?p?<  
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C. decrease speed fluctuation     D. balance the inertia forces tbDoP Y  
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(15)   In order to decrease the flywheel weight, the flywheel should be installed on the       。 woOy*)@  
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A. equivalent link               B. crankshaft with lower rotating speed 7*H:Ob)9k  
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C. crankshaft with higher rotating speed   D. spindle of machinery wzWbB2Mb5  
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2.     (7 points) In a tight bolted connection with axial tensile load, both the preload and the axial working load are constant. If the metal gasket between the connected components is replaced by a leather one, explain, with force-deformation diagram, the changes of the resultant tensile force in the bolt and residual compressive force on the connected components. OyG"1F  
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3.     (10 points) Shown in the figure are the four structure schemes of the moving pulley shaft system in a lifting device. In each structure scheme, the lifting load is constant; the shaft diameter, shaft material and method of heat treatment are the same, respectively. 0~A#>R'  
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(1)   Determine the loads carried by the shaft and shaft types in each structure scheme. C*~aSl7  
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(2)   Determine the stresses on the shaft and their changing characteristics in each structure scheme. ~hX-u8Ul'N  
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(3)   Compare the strength difference of the four shafts. ETw]! br  
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(a)             (b)           (c)             (d) D,;\F,p  
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4.     (8 points) Shown in the figure is a transmission layout for a belted conveyer. The arrangement for speed reduction is as follows: 1(motor)→2(chain drive)→3(gear reducer)→4(belt drive)→5(conveyer). Point out the unreasonable aspects of the arrangement and give a correct order represented with the drive number. YMzBAf  
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5.     (15 points) Shown in the figure, a helical gear shaft is supported by a pair of angular contact ball bearings (7208AC) with ; the radial loads acting on the bearings are , ; the externally axial load on the shaft is ; the rotating speed of the shaft is . *o4%ul\3Y|  
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(1)   Find the axial forces on the two bearings: , . I'_v{k5ZI  
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(2)   If , find the equivalent dynamic loads of the two bearings: , . 5 si}i'in  
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(3)   Find the bearing lives: , . @PXXt#   
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6.     (15 points) In a gear train shown in the figure, , , , , , , , , , the rotating direction of the gear 1 is as shown in the figure. Find both the magnitude and the direction of . 40+fGRyOL  
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7.     (15 points) Shown in Fig. (a) is the dynamically equivalent model of a mechanical system. The equivalent resistant moment of force is a given function of the rotating angle shown in Fig. (b) with the period . The equivalent driving moment of force is constant. The equivalent moment of inertia of the system is (constant). The average rotating speed of the equivalent link is . 35}P0+  
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(1)   Find the equivalent driving moment of force. ~V!EtZG$  
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(2)   Find the coefficient of speed fluctuation , maximal rotating speed and minimal rotating speed of the equivalent link. Y0rf9  
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(3)   If the allowable coefficient of speed fluctuation is , find the minimum moment of inertia of the flywheel on the crankshaft A of the equivalent link. ZIDFF  
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8.     (15 points) Point out all the mistakes in the shaft system shown in the figure and explain them with brief words.
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