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UNIVERSITI SINS MLYSI 1st. Semester Examination 2005/2006 cademic Session Peperiksaan Semester Pertama Sidang kademik 2005/2006 November 2005 ES 253E/3 Theory of Structures ES 253E/3 Teori Struktur Duration: 3 hours Masa: 3 jam Instructions to candidates: rahan kepada calon: 1. Ensure that this paper contains ELEVEN (11) printed pages including appendices before you start your examination. Sila pastikan kertas peperiksaan ini mengandungi SEELS (11) muka surat bercetak termasuk lampiran sebelum anda memulakan peperiksaan ini. 2. This paper contains SIX (6) questions. nswer LL (SIX) questions. Kertas ini mengandungi ENM (6) soalan. Jawab SEMU (6) soalan. 3. ll questions CN E answered in English or ahasa Malaysia or a combination of both languages. Semua soalan OLEH dijawab dalam ahasa Inggeris atau ahasa Malaysia atau kombinasi keduadua bahasa. 4. ll questions MUST E answered on a new sheet. Semua jawapan MESTILH dijawab pada muka surat baru. 5. Write the answered question numbers on the cover sheet of the answer script. Tuliskan nombor soalan yang dijawab di luar kulit buku jawapan anda. 2/-

- 2 - [ES 253E/3] 1. a (i) Explain the concept of statical determinacy without using any equations. Terangkan konsep kebolehtentuan statik tanpa menggunakan persamaan. (ii) Figure 1 shows a rigid jointed frame with three supports, and C where, are fixed and C is pinned. Check for the statical determinacy of the frame. Rajah 1 menunjukkan satu kerangka dengan sambungan tegar yang disokong pada tiga penyokong, dan C. Penyokong, adalah tegar manakala penyokong C pula adalah pin. Semak kebolehtentuan statik kerangka berkenaan. C Figure 1 3/-

- 3 - [EK 261E/3] (iii) The three-span continuous beam shown in Figure 2 is supported by four supports,, E and F where is pin and, E, F are roller supports. Two hinges C and D exist between supports and E. Check for the statical determinacy of the beam. Rasuk selanjar dengan tiga rentang yang ditunjukkan dalam Rajah 2 disokong oleh empat penyokong,, E dan F. adalah dipin manakala, E dan F adalah disokong di atas bebola. Dua sambungan pin C dan D terdapat di antara penyokong dan E. Semak kebolehtentuan statik rasuk berkenaan. C D E F Figure 2 (5 marks) 1. (b) Figure 3 shows a simple frame with two members and C. Member C is inclined at an angle from the horizontal line. Support is a fixed support. Vertical member is subjected to a linearly varying load from 0 at to 3kN/m at. uniformly distributed load of intensity 2.5kN/m acts along member C in vertical direction. horizontal concentrated load 25kN acts at join. Rajah 3 menunjukkan satu kerangka mudah dengan dua anggota dan C. nggota C berada dalam kedudukan sudut dari garis ufuk. Penyokong adalah tegar. nggota pugak dikenakan satu beban teragih lelurus yang berubah daripada nilai keamatan 0 kn/m di kepada nilai keamatan 3kN/m di. Satu beban teragih seragam dengan keamatan 2.5kN/m bertindak di sepanjang anggota C dalam arah pugak. Satu beban tertumpu ufuk 25kN bertindak di sambungan. (i) Compute the reactions at support. ased on the solutions obtained, comment on the effect of inclination angle of member C on the magnitude of reactions at support. Kirakan daya tindakbalas pada penyokong. erdasarkan penyelesaian yang diperolehi, komen tentang kesan sudut condongan anggota C ke atas magnitud daya tindakbalas pada penyokong. 4/-

- 4 - [ES 253E/3] (ii) Draw the shear force and bending moment diagrams of the frame for the case where member C is in horizontal position. Sketch also the qualitative deflected shape. Lukis gambarajah daya ricih dan momen lentur untuk kerangka di atas untuk kes di mana anggota C berada dalam kedudukan ufuk. Lakarkan juga bentuk pesongan kualitatif. 2.5 kn/m C 25 kn 5m 9m 3 kn/m Figure 3 (15 marks) 2. (a) Determine all the member forces for the truss shown in Figure 4.0 by the method of joints and classify whether they are in tension or compression. (14 marks) Kira daya dalam kesemua anggota kekuda dalam Rajah 4.0 menggunakan kaedah sambungan. Nyatakan samaada anggota tersebut mengalami daya mampatan atau tegangan. (14 markah) 5/-

- 5 - [ES 253E/3] (b) Check your answer for forces in member D, CD and CE by using section method. Show your calculations and classify whether they are in tension or compression. (3 marks) Semak jawapan untuk daya bagi anggota D, CD dan CE menggunakan kaedah keratan. Tunjukkan pengiraan dan nyatakan samada anggota tersebut mengalami daya mampatan atau tegangan. (3 markah) (c) Without any calculations, what will be the values of forces for member DE and CE if the force of 20kN at joint E, in Figure 4.0, is applied upward? (3 marks) Tanpa sebarang pengiraan, berapakah nilai daya dalam anggota DE dan CE sekiranya daya 20kN di sambungan E, dalam Rajah 4.0 dikenakan arah ke atas? (3 markah) D E 2m C 2m 20 kn 2m 2m 2m Figure 4.0 3. (a) Sketch the horizontal forces acting on cable structures and the arch structures. (2 marks) Lakarkan daya mengufuk yang bertindak ke atas struktur kabel dan struktur gerbang. (2 markah) 6/-

- 6 - [ES 253E/3] (b) The cable system shown in Figure 5.0 carries a uniformly distributed load of 5kN/m between the supports and three point loads of 10 kn, at 15m interval. The horizontal distance between supports is 60m and the vertical distance between the lowest point and the left support is 3m. The right support is 6m higher than the left support. Determine: i. the lowest point of the cable (x) ii. the maximum and minimum tension between and (T min and T max ) iii. the tension in anchor cables (T and T ) iv. vertical and horizontal reactions at supports (R V, R H and R V, R H ) v. size of the cable, if the allowable stress = 14000 kn/m 2. (13 marks) Satu sistem kabel seperti yang ditunjukkan dalam Rajah 5.0, menanggung beban teragih seragam sebanyak 5 kn/m di sepanjang rentang antara kedua-dua penyokong dan tiga beban tumpu bernilai 10 kn, yang berjarak 15m antara satu sama lain. Jarak ufuk antara penyokong ialah 60 m dan jarak menegak dari titik terendah dan penyokong di sebelah kiri ialah 3m. Penyokong di sebelah kanan berada 6 m lebih tinggi daripada penyokong kiri. Kira: i. kedudukan titik terendah kabel (x) ii. nilai tegangan maksima dan minima kabel antara penyokong dan (T min dan T max.) iii. tegangan kabel sauh (T dan T ) iv. tindakbalas menegak dan mengufuk di penyokong (R V, R H dan R V, R H ) v. saiz keratan rentas kabel yang diperlukan sekiranya tegasan kabel tersebut ialah 14000 kn/m 2. (13 markah) y 30 0 45 0 x 3m 6m 10 kn 15m 15m 15m 15m 10 kn 10 kn 5 kn/m Figure 5.0 7/-

- 7 - [ES 253E/3] 4. (a) Sketch and explain why the three pinned arch can be used for longer spans than the simply supported beam? (3 marks) Lakar dan terangkan kenapa gerbang tiga engsel boleh digunakan untuk rentang yang lebih panjang berbanding rasuk disokong mudah? (3 markah) (b) Unsymmetrical three pinned arch shown in Figure 6.0 is in the form of 4hx( L x) y 2, where L= 40 m and h = 10m. Support is 3.6m higher than L support E. It is designed to carry a uniformly distributed load of 5 kn/m spanning 20m on CD and a point load of 15 kn and 10 kn at point and D respectively. Joint, C and E are hinged. Determine: i. support reactions at and E. ii. bending moment at and D. iii. shear force, Q and thrust, N on the right hand side of point C and D (with loading). (12 marks) Gerbang tiga engsel tidak simetri dalam Rajah 6.0 dibentuk dari persamaan 4hx( L x) y 2, iaitu L = 40 m dan h = 10m. Penyokong berada 3.6m lebih L tinggi daripada penyokong E. Ia direkabentuk untuk membawa beban teragih seragam sebanyak 5 kn/m di sepanjang rentang 20m di bahagian CD dan beban tumpu 15 kn di titik dan 10 kn di titik D. Sambungan, C dan E adalah engsel. Tentukan: i. daya tindakbalas di penyokong dan E. ii. momen lentur di titik dan D. iii. daya ricih, Q dan daya paksi N di sebelah kanan titik C dan D (dengan beban kenaan). (12 markah) 8/-

- 8 - [ES 253E/3] 5 kn/m 15 kn C D 10 kn 3.6m y h=10m x E 4m 6m 10m 10m 10m Figure 6.0 5. (a) The moment-area method is a technique for determining the slope of the elastic curve and its deflection due to bending. The method is based on two theorems. Explain the moment-area theorems. (4 marks) Kaedah momen-luas merupakan satu teknik untuk menentukan kecerunan lengkung elastik dan pesongan akibat daripada lenturan. Kaedah ini berdasarkan kepada dua teorem. Jelaskan teorem momen-luas berkenaan. (4 markah) 9/-

- 9 - [ES 253E/3] (b) Determine the maximum deflection for the beam shown in Figure 7.0. Use the moment-area method or conjugate-beam method. Take E = 200 GPa and I = 600 (10 6 ) mm 4. (11 marks) Tentukan pesongan maksimum untuk rasuk yang ditunjukkan dalam Rajah 7. Gunakan kaedah momen-luas atau kaedah rasuk-konjugat. Diberi E = 200 GPa dan I = 600 (10 6 ) mm 4. (11 markah) 200 kn.m 50 kn 30kN/m C D 6 m 10 m 6 m I I 2I Figure 7.0 10/-

- 10 - [ES 253E/3] 6. Figure 8.0 shows a bridge frame which is constructed to allow a moving truck travel on it. Draw the influence lines for: (i) the reaction forces at supports and E, (ii) the shear at point C, (iii) the bending moment at point C, and determine the maximum bending moment at point C. (15 marks) Rajah 8.0 menunjukkan satu kerangka jambatan yang dibina untuk trak bergerak melaluinya. Lakarkan garis imbas untuk: (i) daya-daya tindakbalas di penyokong dan E, (ii) daya ricih di titik C, dan (iii) momen lentur di titik C, dan tentukan momen lentur maksimum di titik C. (15 markah) 5 kn 12 kn 8 kn 8 kn C D 5 m 1.5 m 1 m 1 m E 8 m 4 m Figure 8.0 - ooo O ooo -

- 11 - [ES 253E/3] PPENDIX reas and Centroids of Geometric Shapes Shape rea Centroid 2bh 3 3b x 8 bh 3 3b x 4 3bh 4 2b x 5 bh 4 4b x 5