000 03727nas|a2200409 i 4500
005 20260817162531.0
008 191199s1999 th uu m rtt 00| a1eng d
035 _a.b11765057
099 9 _aAIT Thesis no. GE-98-17
100 0 _aAtitep Srikongsri
245 1 0 _aAnalytical model of interaction between hexagonal wire mesh and silty sand backfill
260 _aBangkok :
_bAsian Institute of Technology,
_c1999
300 _a91, A8, B6 leaves
490 1 _aThesis ;
_vno. GE-98-17
500 _aA thesis submitted in partial fulfillment of the requirements for the degree of Master of Engineering, School of Civil Engineering
502 _aThesis (M.Eng.) - Asian Institute of Technology, 1999
520 _aAn analytical model for predicting the pullout resistance of hexagonal wire mesh reinfo1~cement for both galvanized and PVC-coated types has been proposed. The influence of transverse wires rotation was expressed in the deformation characteristic of hexagonal wire mesh reinforcement. The displacement along the reinforcement was calculated by using the proposed deformation characteristic corresponding to the reinforcement axial stiffness. The mobilized bearing resistance was calculated by a proposed hyperbolic bearing resistance/displacement relationship modified from Wongsawanon (1998). The mobilized friction resistance was simulated by linear, elasticperfectly plastic model. Some relevant parameters for the analysis were verified by pullout test with specially designed specimens. The validity of the method is confirmed by good agreement between calculated values and actual test results. The percentages of the friction resistance to the total pullout resistance were analytically obtained as 25% and 21 % for galvanized and PVC-coated hexagonal wire mesh reinforcements, respectively, and compared with the corresponding values of up to 46% and 37% predicted by Wongsawanon (1998). In addition, the tension in reinforcement was calculated by using limit equilibrium analysis. The tension was evaluated equal to the total resistance of surrounding soil behind the considered section. The computed values of tension were validated by the estimated tension from the measured strains data with the stress/strain relationship of an individual wire in hexagonal wire mesh. The effective embedment lengths and pullout displacement to mobilize the desired pullout resistance of hexagonal wire mesh reinforcement under different applied normal pressures were also be determined by the proposed analytical model.
650 0 _aSoil-structure interaction
700 1 _aBergado, Dennes T.,
_eChairperson
700 1 _aDer Guey, Lin,
_eChairperson
700 1 _aOtsu, Hiroyasu,
_eExamination committee
710 2 _aKasem Bundit University,
_eScholarship donor
810 2 _aAsian Institute of Technology.
_tThesis ;
_vno. GE-98-17
856 _3Full-Text
_uhttp://203.159.5.9/ait-thesis/detail.php?q=B12455
907 _a.b11765057
_bmnait
_cy
902 _a240331
998 _b0
_c991119
_dm
_ea
_fy
_g0
945 _lmnait
945 _lmnait
945 _lmnarc
942 _c20
942 _c40
909 _aBarcode : 30050120717235
_bCREATED : 1998-06-22
_cRECORD # : i12163533
_dLPATRON : 1015674
_eLCHKIN : 2003-11-04
_f# RENEWALS : 0
_g# OVERDUE : 0
_hIUSE3 : 0
_iTOT CHKOUT : 3
_jTOT RENEW : 1
909 _aBarcode : 30050120717201
_bCREATED : 1997-01-23
_cRECORD # : i12163545
_dLPATRON : 1022217
_eLCHKIN : 2012-04-25
_f# RENEWALS : 0
_g# OVERDUE : 0
_hIUSE3 : 0
_iTOT CHKOUT : 9
_jTOT RENEW : 15
909 _aBarcode : 30050160080759
_bCREATED : 2016-05-17
_cRECORD # : i12979855
_dLPATRON : 0
_eLCHKIN : -
_f# RENEWALS : 0
_g# OVERDUE : 0
_hIUSE3 : 0
_iTOT CHKOUT : 0
_jTOT RENEW : 0
999 _c5342
_d5342