Influence of web reinforcement on shear behavior and size effect of lightweight aggregate concrete deep beams: Experimental and theoretical studies
In practice, deep beams with web reinforcement are the predominant form of deep beams. Understanding the effect of web reinforcement in deep beams made of lightweight aggregate concrete (LWAC) is essential for the structural application of LWAC deep beams, but it is still a pending subject. In this...
Saved in:
Published in | Engineering structures Vol. 322; p. 119119 |
---|---|
Main Authors | , , , |
Format | Journal Article |
Language | English |
Published |
Elsevier Ltd
01.01.2025
|
Subjects | |
Online Access | Get full text |
Cover
Loading…
Abstract | In practice, deep beams with web reinforcement are the predominant form of deep beams. Understanding the effect of web reinforcement in deep beams made of lightweight aggregate concrete (LWAC) is essential for the structural application of LWAC deep beams, but it is still a pending subject. In this study, eight LWAC deep beams and two normal weight concrete deep beams were tested to investigate the influence of web reinforcement and beam depth on the shear behavior and size effect of LWAC deep beams. The experimental results showed that all deep beams failed in shear–compression mode, which is independent of the web reinforcement ratio and beam depth. The web reinforcement confined the concrete within the strut area and limited the concrete spalling, which positively affected the normalized serviceability/ultimate shear strength. Moreover, web reinforcement effectively mitigated the size effect by resisting the transverse tensile stress and improving the boundary confinement of the concrete struts, but could not eliminate the size effect in LWAC deep beams. Based on these results, a modified strut-and-tie model (MSTM) was developed to quantify the contribution of web reinforcements to the shear capacity more accurately than the conventional strut-and-tie model. The predictions obtained using the MSTM with the Warwick-Foster’s strut efficiency factor were in excellent agreement with the experimental results.
•Web reinforcement ratio (0–1.12 %) and beam depth (500–1000 mm) were considered in the shear experiment of lightweight aggregate concrete (LWAC) deep beams.•Effects of web reinforcement on shear behavior and size effect of LWAC deep beams are analyzed.•Presence of web reinforcements is confirmed effectively in mitigating the size effect.•Modified strut-and-tie model is developed to quantify the contribution of web reinforcement in shear mechanism. |
---|---|
AbstractList | In practice, deep beams with web reinforcement are the predominant form of deep beams. Understanding the effect of web reinforcement in deep beams made of lightweight aggregate concrete (LWAC) is essential for the structural application of LWAC deep beams, but it is still a pending subject. In this study, eight LWAC deep beams and two normal weight concrete deep beams were tested to investigate the influence of web reinforcement and beam depth on the shear behavior and size effect of LWAC deep beams. The experimental results showed that all deep beams failed in shear–compression mode, which is independent of the web reinforcement ratio and beam depth. The web reinforcement confined the concrete within the strut area and limited the concrete spalling, which positively affected the normalized serviceability/ultimate shear strength. Moreover, web reinforcement effectively mitigated the size effect by resisting the transverse tensile stress and improving the boundary confinement of the concrete struts, but could not eliminate the size effect in LWAC deep beams. Based on these results, a modified strut-and-tie model (MSTM) was developed to quantify the contribution of web reinforcements to the shear capacity more accurately than the conventional strut-and-tie model. The predictions obtained using the MSTM with the Warwick-Foster’s strut efficiency factor were in excellent agreement with the experimental results.
•Web reinforcement ratio (0–1.12 %) and beam depth (500–1000 mm) were considered in the shear experiment of lightweight aggregate concrete (LWAC) deep beams.•Effects of web reinforcement on shear behavior and size effect of LWAC deep beams are analyzed.•Presence of web reinforcements is confirmed effectively in mitigating the size effect.•Modified strut-and-tie model is developed to quantify the contribution of web reinforcement in shear mechanism. |
ArticleNumber | 119119 |
Author | Wu, Tao Yang, Xue Liu, Yang Liu, Xi |
Author_xml | – sequence: 1 givenname: Xue surname: Yang fullname: Yang, Xue email: ms_yangxue@163.com organization: School of Civil Engineering, Xi’an Shiyou University, Xi’an 710061, China – sequence: 2 givenname: Tao surname: Wu fullname: Wu, Tao email: wutao760922@163.com organization: School of Civil Engineering, Chang’an University, Xi’an 710061, China – sequence: 3 givenname: Xi surname: Liu fullname: Liu, Xi email: xliu1205@126.com organization: School of Civil Engineering, Chang’an University, Xi’an 710061, China – sequence: 4 givenname: Yang surname: Liu fullname: Liu, Yang email: 13891705608@163.com organization: School of Civil Engineering, Chang’an University, Xi’an 710061, China |
BookMark | eNqFkM1OAjEUhbvARECfwb7AYNsZBuqOEFQSEje6bjrt7VAytKQtoL6GL2xHjFuTm_uT3HNy8o3QwHkHCN1RMqGE1ve7Cbg2pnBUacIIqyaU8lwDNCS0ogVhvL5Goxh3hBA2n5Mh-lo70x3BKcDe4DM0OIB1xgcFe3AJe4fjFmTADWzlyfqApdM42k_AYAyo1Ms6227TGfqOZdsGaGUCrLxTAfKiAQ5ZL_fxAa_eDxBsby27H6u0BZ-_rMp3TEdtId6gKyO7CLe_c4zeHlevy-di8_K0Xi42hWI1TYWUNdeyrGvTADe84XPKZoxpJhtTm0rJiqvZdDYt5xqmmleGEcpN2fBSc2OmUI7R7OKrgo8xgBGHHE2GD0GJ6HmKnfjjKXqe4sIzKxcXJeR4JwtBRGV7iNqGzERob__1-AYLUovV |
Cites_doi | 10.1061/(ASCE)ST.1943-541X.0000295 10.1016/j.engstruct.2016.01.025 10.1177/1369433217711618 10.1016/j.engstruct.2022.114202 10.1016/j.engstruct.2020.110832 10.1680/macr.2010.62.4.267 10.1016/j.engstruct.2007.10.005 10.1016/j.conbuildmat.2018.12.037 10.1016/j.engstruct.2016.03.002 10.1016/j.istruc.2021.03.052 10.3151/jact.10.14 10.1061/(ASCE)MT.1943-5533.0000833 10.3151/jact.8.303 10.2219/rtriqr.46.53 10.1016/j.conbuildmat.2022.126713 10.1016/j.engstruct.2023.116883 10.1061/(ASCE)ST.1943-541X.0001786 10.1016/j.engstruct.2010.09.026 10.1061/(ASCE)0733-9445(2009)135:3(239) 10.1016/j.istruc.2022.09.104 |
ContentType | Journal Article |
Copyright | 2024 Elsevier Ltd |
Copyright_xml | – notice: 2024 Elsevier Ltd |
DBID | AAYXX CITATION |
DOI | 10.1016/j.engstruct.2024.119119 |
DatabaseName | CrossRef |
DatabaseTitle | CrossRef |
DatabaseTitleList | |
DeliveryMethod | fulltext_linktorsrc |
Discipline | Engineering |
ExternalDocumentID | 10_1016_j_engstruct_2024_119119 S014102962401681X |
GroupedDBID | --K --M -~X .~1 0R~ 1B1 1~. 1~5 4.4 457 4G. 5GY 5VS 7-5 71M 8P~ 9JN AABNK AACTN AAEDT AAEDW AAIKJ AAKOC AALRI AAOAW AAQFI AATTM AAXKI AAXUO ABFNM ABJNI ABMAC ABQEM ABQYD ACDAQ ACGFS ACIWK ACLVX ACRLP ACSBN ADBBV ADEZE ADTZH AEBSH AECPX AEIPS AEKER AENEX AFJKZ AFRAH AFTJW AGHFR AGUBO AGYEJ AHHHB AHJVU AIEXJ AIKHN AITUG AKRWK ALMA_UNASSIGNED_HOLDINGS AMRAJ ANKPU ATOGT AXJTR BJAXD BKOJK BLXMC BNPGV CS3 DU5 EBS EFJIC EO8 EO9 EP2 EP3 FDB FIRID FNPLU FYGXN G-Q GBLVA IHE IMUCA J1W JJJVA KOM LY7 M41 MO0 N9A O-L O9- OAUVE OZT P-8 P-9 P2P PC. Q38 RNS ROL RPZ SCC SDF SDG SDP SES SEW SPC SPCBC SSE SSH SST SSZ T5K TN5 XPP ZMT ~02 ~G- 29G AAQXK AAYWO AAYXX ABEFU ABWVN ABXDB ACNNM ACRPL ACVFH ADCNI ADMUD ADNMO AEUPX AFPUW AFXIZ AGCQF AGQPQ AGRNS AI. AIGII AIIUN AKBMS AKYEP APXCP ASPBG AVWKF AZFZN CITATION EJD FEDTE FGOYB G-2 HVGLF HZ~ R2- RIG SET VH1 WUQ ZY4 |
ID | FETCH-LOGICAL-c261t-aa69da366fbe9f9b9812722d2abf6f4ca49c757538de5d94f2019f3b93d9ff5e3 |
IEDL.DBID | .~1 |
ISSN | 0141-0296 |
IngestDate | Tue Jul 01 01:22:17 EDT 2025 Sun Apr 06 06:54:24 EDT 2025 |
IsPeerReviewed | true |
IsScholarly | true |
Keywords | Lightweight aggregate concrete Shear strength Deep beams Web reinforcement Strut-and-tie model |
Language | English |
LinkModel | DirectLink |
MergedId | FETCHMERGED-LOGICAL-c261t-aa69da366fbe9f9b9812722d2abf6f4ca49c757538de5d94f2019f3b93d9ff5e3 |
ParticipantIDs | crossref_primary_10_1016_j_engstruct_2024_119119 elsevier_sciencedirect_doi_10_1016_j_engstruct_2024_119119 |
ProviderPackageCode | CITATION AAYXX |
PublicationCentury | 2000 |
PublicationDate | 2025-01-01 2025-01-00 |
PublicationDateYYYYMMDD | 2025-01-01 |
PublicationDate_xml | – month: 01 year: 2025 text: 2025-01-01 day: 01 |
PublicationDecade | 2020 |
PublicationTitle | Engineering structures |
PublicationYear | 2025 |
Publisher | Elsevier Ltd |
Publisher_xml | – name: Elsevier Ltd |
References | Devine, Barbachyn, Thrall (bib20) 2018; 115 Yu, Bažant (bib29) 2011; 137 Jin, Zhang, Li (bib23) 2022; 45 Lu, Lin, Yu (bib38) 2013; 110 (bib25) 1970; 67 Kong, Robins, Cole (bib34) 1971; 68 Kong, Robins, Cole (bib6) 1971; 68 Mohamed, Farghaly, Benmokrane (bib22) 2017; 143 Manharawy, Mahmoud, EI-Mahdy (bib8) 2022; 260 Hou, Xu, Zhang (bib28) 2014; 26 Zhang, Tan, Leong (bib40) 2009; 135 Smith, Vantsiotis (bib46) 1982; 79 Breña, Roy (bib39) 2009; 106 Liu, Guner, Mihaylov (bib3) 2019; 116 Collins, Michell, Bentz (bib31) 2008; 86 Gedik, Nakamura, Yamamoto (bib43) 2012; 10 Quintero-Febres, Parra-Montesinos, Wight (bib27) 2006; 103 Wu, Yang, Wei (bib17) 2019; 199 Wight, MacGregor (bib1) 2016 Wu, Wei, Liu (bib4) 2020; 117 Reineck, Todisco (bib32) 2014; 111 Huber, Huber, Kollegger (bib24) 2016; 113 (bib12) 2019 Zhang, Tan (bib47) 2007; 29 Shin, Lee, Moon (bib37) 1999; 96 Zaborac, Choi, Bayrak (bib18) 2020; 218 Chinese Standard GB/T 50081-2019 (bib19) 2019 Kondalraj, Appa Rao (bib21) 2021; 32 Sahoo, Sagi, Singh (bib42) 2010; 8 Li, Chen, Yi (bib48) 2021; 241 Warwick, Foster (bib33) 1993 Shuraim, El-Sayed (bib2) 2016; 117 Garcia, Pereira, Pierott (bib9) 2021; 118 Birrcher, Tuchscherer, Huizinga (bib10) 2013; 110 Mihaylov, Bentz, Collins (bib16) 2010; 107 Jin, Zhang, Song (bib11) 2023; 295 Soltanabadi, Behfarnia, Mamazizi (bib26) 2022; 324 Bažant, Yu (bib13) 2008; 105 ACI Committee 318, Building Code Requirement for Structural Concrete (ACI 318–19) and Commentary (ACI 318–19R). American Concrete Institute, 2014. Zaborac, Choi, Bayrak (bib15) 2020; 218 EN 1992-1-1: 2004 (bib30) 2004 Wu, Wei, Liu (bib49) 2018; 21 Tan, Kong, Teng (bib35) 1997; 94 Sagaseta, Vollum (bib41) 2010; 62 Yang, Ashour (bib7) 2011; 33 Tan, Lu (bib44) 1999; 96 Tanimura, Sato (bib45) 2005; 46 Yang (bib5) 2010; 107 Tan, Kong, Teng (bib36) 1995; 92 10.1016/j.engstruct.2024.119119_bib14 EN 1992-1-1: 2004 (10.1016/j.engstruct.2024.119119_bib30) 2004 Kong (10.1016/j.engstruct.2024.119119_bib6) 1971; 68 Zaborac (10.1016/j.engstruct.2024.119119_bib18) 2020; 218 Zhang (10.1016/j.engstruct.2024.119119_bib47) 2007; 29 Mihaylov (10.1016/j.engstruct.2024.119119_bib16) 2010; 107 Zaborac (10.1016/j.engstruct.2024.119119_bib15) 2020; 218 Devine (10.1016/j.engstruct.2024.119119_bib20) 2018; 115 Warwick (10.1016/j.engstruct.2024.119119_bib33) 1993 Wu (10.1016/j.engstruct.2024.119119_bib17) 2019; 199 Liu (10.1016/j.engstruct.2024.119119_bib3) 2019; 116 Tan (10.1016/j.engstruct.2024.119119_bib44) 1999; 96 Tan (10.1016/j.engstruct.2024.119119_bib36) 1995; 92 Reineck (10.1016/j.engstruct.2024.119119_bib32) 2014; 111 Chinese Standard GB/T 50081-2019 (10.1016/j.engstruct.2024.119119_bib19) 2019 Manharawy (10.1016/j.engstruct.2024.119119_bib8) 2022; 260 Birrcher (10.1016/j.engstruct.2024.119119_bib10) 2013; 110 Soltanabadi (10.1016/j.engstruct.2024.119119_bib26) 2022; 324 Garcia (10.1016/j.engstruct.2024.119119_bib9) 2021; 118 Li (10.1016/j.engstruct.2024.119119_bib48) 2021; 241 Bažant (10.1016/j.engstruct.2024.119119_bib13) 2008; 105 Zhang (10.1016/j.engstruct.2024.119119_bib40) 2009; 135 Jin (10.1016/j.engstruct.2024.119119_bib23) 2022; 45 Quintero-Febres (10.1016/j.engstruct.2024.119119_bib27) 2006; 103 Wu (10.1016/j.engstruct.2024.119119_bib4) 2020; 117 Yang (10.1016/j.engstruct.2024.119119_bib5) 2010; 107 Yu (10.1016/j.engstruct.2024.119119_bib29) 2011; 137 Hou (10.1016/j.engstruct.2024.119119_bib28) 2014; 26 Wight (10.1016/j.engstruct.2024.119119_bib1) 2016 Sagaseta (10.1016/j.engstruct.2024.119119_bib41) 2010; 62 Shuraim (10.1016/j.engstruct.2024.119119_bib2) 2016; 117 Gedik (10.1016/j.engstruct.2024.119119_bib43) 2012; 10 Tan (10.1016/j.engstruct.2024.119119_bib35) 1997; 94 Breña (10.1016/j.engstruct.2024.119119_bib39) 2009; 106 Smith (10.1016/j.engstruct.2024.119119_bib46) 1982; 79 Kong (10.1016/j.engstruct.2024.119119_bib34) 1971; 68 Kondalraj (10.1016/j.engstruct.2024.119119_bib21) 2021; 32 Lu (10.1016/j.engstruct.2024.119119_bib38) 2013; 110 Shin (10.1016/j.engstruct.2024.119119_bib37) 1999; 96 Yang (10.1016/j.engstruct.2024.119119_bib7) 2011; 33 Mohamed (10.1016/j.engstruct.2024.119119_bib22) 2017; 143 Sahoo (10.1016/j.engstruct.2024.119119_bib42) 2010; 8 Huber (10.1016/j.engstruct.2024.119119_bib24) 2016; 113 Collins (10.1016/j.engstruct.2024.119119_bib31) 2008; 86 (10.1016/j.engstruct.2024.119119_bib25) 1970; 67 Jin (10.1016/j.engstruct.2024.119119_bib11) 2023; 295 (10.1016/j.engstruct.2024.119119_bib12) 2019 Wu (10.1016/j.engstruct.2024.119119_bib49) 2018; 21 Tanimura (10.1016/j.engstruct.2024.119119_bib45) 2005; 46 |
References_xml | – volume: 110 start-page: 671 year: 2013 end-page: 680 ident: bib38 article-title: Shear strength of reinforced concrete deep beams publication-title: Acids Struct J – volume: 110 start-page: 297 year: 2013 end-page: 306 ident: bib10 article-title: Minimum web reinforcement in deep beams publication-title: Acids Struct J – volume: 117 start-page: 71 year: 2016 end-page: 85 ident: bib2 article-title: Experimental verification of strut and tie model for HSC deep beams without shear reinforcement publication-title: Eng Struct – volume: 115 start-page: 1023 year: 2018 end-page: 1036 ident: bib20 article-title: Experimental evaluation of deep beams with high- strength concrete and high-strength reinforcing bar publication-title: Acids Struct J – volume: 68 start-page: 514 year: 1971 end-page: 520 ident: bib34 article-title: Web reinforcement effects on lightweight concrete deep beams publication-title: Acids J Proceed – volume: 107 start-page: 663 year: 2010 end-page: 670 ident: bib5 article-title: Tests on lightweight concrete deep beams publication-title: Acids Struct J – volume: 295 year: 2023 ident: bib11 article-title: Effect of stirrups on shear performance of geometrically-similar reinforced concrete deep beams: An experimental study publication-title: Eng Struct – year: 1993 ident: bib33 article-title: Investigation into the efficiency factor used in non-flexural reinforced concrete member design – volume: 117 start-page: 75 year: 2020 end-page: 89 ident: bib4 article-title: Shear behavior of large-scale deep beams with lightweight-aggregate concrete publication-title: Acids Struct J – volume: 45 year: 2022 ident: bib23 article-title: Meso-scale analysis of shear performance and size effect of CFRP sheets strengthened RC beams publication-title: Struct – volume: 96 start-page: 549 year: 1999 end-page: 556 ident: bib37 article-title: Shear strength of reinforced high-strength concrete beams with shear span-to-depth ratios between 1.5 and 2.5 publication-title: Acids Struct J – volume: 8 start-page: 303 year: 2010 end-page: 314 ident: bib42 article-title: Effect of detailing of web reinforcement on the behavior of bottle-shaped struts publication-title: J Adv Concr Technol – volume: 218 year: 2020 ident: bib15 article-title: Assessment of deep beams with inadequate web reinforcement using strut-and-tie models publication-title: Eng Struct – volume: 26 start-page: 466 year: 2014 end-page: 475 ident: bib28 article-title: Shear behaviors of reinforced ultrahigh toughness cementitious composite slender beams with stirrups publication-title: J Mater Civ Eng – year: 2004 ident: bib30 article-title: Eurocode 2: design of concrete structures: part 1-1: general rules and rules for buildings – volume: 79 start-page: 201 year: 1982 end-page: 213 ident: bib46 article-title: Shear strength of deep beams publication-title: Acids J Proceed – volume: 241 year: 2021 ident: bib48 article-title: Effect of member depth and concrete strength on shear strength of RC deep beams without transverse reinforcement publication-title: Eng Strut – volume: 137 start-page: 607 year: 2011 end-page: 617 ident: bib29 article-title: Can stirrups suppress size effect on shear strength of RC beams publication-title: J Struct Eng – start-page: 3 year: 2019 end-page: 19 ident: bib12 article-title: CSA Committee A23 publication-title: Design of Concrete Structures – volume: 260 year: 2022 ident: bib8 article-title: Experimental and numerical investigation of lightweight foamed reinforced concrete deep beams with steel fibers publication-title: Eng Struct – year: 2016 ident: bib1 article-title: Reinforced Concrete – volume: 46 start-page: 53 year: 2005 end-page: 58 ident: bib45 article-title: Evaluation of shear strength of deep beams with stirrups publication-title: Q Rep RTRI – volume: 21 start-page: 109 year: 2018 end-page: 124 ident: bib49 article-title: Experimental investigation of shear models for lightweight aggregate concrete deep beams publication-title: Adv Struct Eng – volume: 111 start-page: 1363 year: 2014 end-page: 1372 ident: bib32 article-title: Database of shear tests for non-slender reinforced concrete beams without stirrups publication-title: Acids Struct J – volume: 105 start-page: 685 year: 2008 end-page: 691 ident: bib13 article-title: Minimizing statistical bias to identify size effect from beam shear database publication-title: Acids Struct J – volume: 94 start-page: 572 year: 1997 end-page: 582 ident: bib35 article-title: Effect of web reinforcement on high-strength concrete deep beams publication-title: Acids Struct J – volume: 143 year: 2017 ident: bib22 article-title: Effect of vertical and horizontal web reinforcement on the strength and deformation of concrete deep beams reinforced with GFRP Bars publication-title: J Struct Eng – volume: 33 start-page: 136 year: 2011 end-page: 145 ident: bib7 article-title: Aggregate interlock in lightweight concrete continuous deep beams publication-title: Eng Struct – volume: 113 start-page: 41 year: 2016 end-page: 58 ident: bib24 article-title: Investigation of the shear behavior of RC beams on the basis of measured crack kinematics publication-title: Eng Struct – volume: 67 start-page: 1010 year: 1970 end-page: 1018 ident: bib25 article-title: Kong FK, Robins PJ, Cole DF. Web reinforcement effects on deep beams publication-title: ACI J Porc – volume: 324 year: 2022 ident: bib26 article-title: Numerical investigation of RC deep beams containing recycled aggregates publication-title: Constr Build Mater – volume: 103 start-page: 577 year: 2006 end-page: 588 ident: bib27 article-title: Strength of struts in deep concrete members designed using strut-and-tie methods publication-title: Acids Strut J – year: 2019 ident: bib19 article-title: Standard for Test Methods of Concrete Physical and Mechanical Properties. – volume: 32 start-page: 914 year: 2021 end-page: 928 ident: bib21 article-title: Experimental investigation of RC deep beams with web reinforcement and improvement of ACI 318–19 strut coefficient. publication-title: Struct – volume: 218 year: 2020 ident: bib18 article-title: Assessment of deep beams with inadequate web reinforcement using strut-and-tie models publication-title: Eng Struct – volume: 106 start-page: 678 year: 2009 end-page: 689 ident: bib39 article-title: Evaluation of load transfer and strut strength of deep beams with short longitudinal bar anchorages publication-title: Acids Struct J – volume: 116 start-page: 253 year: 2019 end-page: 264 ident: bib3 article-title: Mixed-type modeling of structures with slender and deep beam elements publication-title: Acids Struct J – volume: 10 start-page: 14 year: 2012 end-page: 30 ident: bib43 article-title: Effect of stirrups on the shear failure mechanism of deep beams publication-title: J Adv Concr Technol – reference: ACI Committee 318, Building Code Requirement for Structural Concrete (ACI 318–19) and Commentary (ACI 318–19R). American Concrete Institute, 2014. – volume: 29 start-page: 3241 year: 2007 end-page: 3254 ident: bib47 article-title: Size effect in RC deep beams: experimental investigation and STM verification publication-title: Eng Struct – volume: 92 start-page: 395 year: 1995 end-page: 405 ident: bib36 article-title: High-strength concrete deep beams with effective span and shear span variations publication-title: Acids Struct J – volume: 135 start-page: 239 year: 2009 end-page: 252 ident: bib40 article-title: Single-span deep beams subjected to unsymmetrical loads publication-title: J Struct Eng – volume: 199 start-page: 526 year: 2019 end-page: 539 ident: bib17 article-title: Mechanical properties and microstructure of lightweight aggregate concrete with and without fibers publication-title: Constr Build Mater – volume: 96 start-page: 836 year: 1999 end-page: 845 ident: bib44 article-title: Shear behavior of large reinforced concrete deep beams and code comparisons publication-title: Acids Struct J – volume: 118 start-page: 203 year: 2021 end-page: 214 ident: bib9 article-title: Shear strength of sand-lightweight concrete deep beams with steel fibers publication-title: Acids Struct J – volume: 68 start-page: 514 year: 1971 end-page: 520 ident: bib6 article-title: Web reinforcement effects on lightweight concrete deep beams publication-title: Acids J Proceed – volume: 107 start-page: 726 year: 2010 end-page: 734 ident: bib16 article-title: Behavior of large deep beams subjected to monotonic and reversed cyclic shear publication-title: Acids Struct J – volume: 62 start-page: 267 year: 2010 end-page: 282 ident: bib41 article-title: Shear design of short-span beams publication-title: Mag Concr Res – volume: 86 start-page: 32 year: 2008 end-page: 39 ident: bib31 article-title: Shear design of concrete structures publication-title: Struct Eng J – volume: 137 start-page: 607 issue: 5 year: 2011 ident: 10.1016/j.engstruct.2024.119119_bib29 article-title: Can stirrups suppress size effect on shear strength of RC beams publication-title: J Struct Eng doi: 10.1061/(ASCE)ST.1943-541X.0000295 – volume: 113 start-page: 41 year: 2016 ident: 10.1016/j.engstruct.2024.119119_bib24 article-title: Investigation of the shear behavior of RC beams on the basis of measured crack kinematics publication-title: Eng Struct doi: 10.1016/j.engstruct.2016.01.025 – volume: 21 start-page: 109 issue: 1 year: 2018 ident: 10.1016/j.engstruct.2024.119119_bib49 article-title: Experimental investigation of shear models for lightweight aggregate concrete deep beams publication-title: Adv Struct Eng doi: 10.1177/1369433217711618 – volume: 260 year: 2022 ident: 10.1016/j.engstruct.2024.119119_bib8 article-title: Experimental and numerical investigation of lightweight foamed reinforced concrete deep beams with steel fibers publication-title: Eng Struct doi: 10.1016/j.engstruct.2022.114202 – volume: 218 year: 2020 ident: 10.1016/j.engstruct.2024.119119_bib15 article-title: Assessment of deep beams with inadequate web reinforcement using strut-and-tie models publication-title: Eng Struct doi: 10.1016/j.engstruct.2020.110832 – volume: 62 start-page: 267 issue: 4 year: 2010 ident: 10.1016/j.engstruct.2024.119119_bib41 article-title: Shear design of short-span beams publication-title: Mag Concr Res doi: 10.1680/macr.2010.62.4.267 – year: 2019 ident: 10.1016/j.engstruct.2024.119119_bib19 – volume: 29 start-page: 3241 issue: 12 year: 2007 ident: 10.1016/j.engstruct.2024.119119_bib47 article-title: Size effect in RC deep beams: experimental investigation and STM verification publication-title: Eng Struct doi: 10.1016/j.engstruct.2007.10.005 – volume: 199 start-page: 526 year: 2019 ident: 10.1016/j.engstruct.2024.119119_bib17 article-title: Mechanical properties and microstructure of lightweight aggregate concrete with and without fibers publication-title: Constr Build Mater doi: 10.1016/j.conbuildmat.2018.12.037 – volume: 117 start-page: 71 year: 2016 ident: 10.1016/j.engstruct.2024.119119_bib2 article-title: Experimental verification of strut and tie model for HSC deep beams without shear reinforcement publication-title: Eng Struct doi: 10.1016/j.engstruct.2016.03.002 – volume: 32 start-page: 914 year: 2021 ident: 10.1016/j.engstruct.2024.119119_bib21 article-title: Experimental investigation of RC deep beams with web reinforcement and improvement of ACI 318–19 strut coefficient. publication-title: Struct doi: 10.1016/j.istruc.2021.03.052 – volume: 111 start-page: 1363 issue: 6 year: 2014 ident: 10.1016/j.engstruct.2024.119119_bib32 article-title: Database of shear tests for non-slender reinforced concrete beams without stirrups publication-title: Acids Struct J – volume: 10 start-page: 14 issue: 1 year: 2012 ident: 10.1016/j.engstruct.2024.119119_bib43 article-title: Effect of stirrups on the shear failure mechanism of deep beams publication-title: J Adv Concr Technol doi: 10.3151/jact.10.14 – volume: 107 start-page: 726 issue: 6 year: 2010 ident: 10.1016/j.engstruct.2024.119119_bib16 article-title: Behavior of large deep beams subjected to monotonic and reversed cyclic shear publication-title: Acids Struct J – year: 2016 ident: 10.1016/j.engstruct.2024.119119_bib1 – volume: 26 start-page: 466 issue: 3 year: 2014 ident: 10.1016/j.engstruct.2024.119119_bib28 article-title: Shear behaviors of reinforced ultrahigh toughness cementitious composite slender beams with stirrups publication-title: J Mater Civ Eng doi: 10.1061/(ASCE)MT.1943-5533.0000833 – volume: 86 start-page: 32 issue: 10 year: 2008 ident: 10.1016/j.engstruct.2024.119119_bib31 article-title: Shear design of concrete structures publication-title: Struct Eng J – volume: 79 start-page: 201 issue: 3 year: 1982 ident: 10.1016/j.engstruct.2024.119119_bib46 article-title: Shear strength of deep beams publication-title: Acids J Proceed – volume: 107 start-page: 663 issue: 6 year: 2010 ident: 10.1016/j.engstruct.2024.119119_bib5 article-title: Tests on lightweight concrete deep beams publication-title: Acids Struct J – volume: 218 year: 2020 ident: 10.1016/j.engstruct.2024.119119_bib18 article-title: Assessment of deep beams with inadequate web reinforcement using strut-and-tie models publication-title: Eng Struct doi: 10.1016/j.engstruct.2020.110832 – volume: 68 start-page: 514 issue: 47 year: 1971 ident: 10.1016/j.engstruct.2024.119119_bib34 article-title: Web reinforcement effects on lightweight concrete deep beams publication-title: Acids J Proceed – volume: 8 start-page: 303 issue: 3 year: 2010 ident: 10.1016/j.engstruct.2024.119119_bib42 article-title: Effect of detailing of web reinforcement on the behavior of bottle-shaped struts publication-title: J Adv Concr Technol doi: 10.3151/jact.8.303 – volume: 96 start-page: 549 issue: 4 year: 1999 ident: 10.1016/j.engstruct.2024.119119_bib37 article-title: Shear strength of reinforced high-strength concrete beams with shear span-to-depth ratios between 1.5 and 2.5 publication-title: Acids Struct J – year: 1993 ident: 10.1016/j.engstruct.2024.119119_bib33 – volume: 92 start-page: 395 issue: 11 year: 1995 ident: 10.1016/j.engstruct.2024.119119_bib36 article-title: High-strength concrete deep beams with effective span and shear span variations publication-title: Acids Struct J – volume: 116 start-page: 253 issue: 4 year: 2019 ident: 10.1016/j.engstruct.2024.119119_bib3 article-title: Mixed-type modeling of structures with slender and deep beam elements publication-title: Acids Struct J – volume: 105 start-page: 685 issue: 6 year: 2008 ident: 10.1016/j.engstruct.2024.119119_bib13 article-title: Minimizing statistical bias to identify size effect from beam shear database publication-title: Acids Struct J – volume: 67 start-page: 1010 year: 1970 ident: 10.1016/j.engstruct.2024.119119_bib25 article-title: Kong FK, Robins PJ, Cole DF. Web reinforcement effects on deep beams publication-title: ACI J Porc – ident: 10.1016/j.engstruct.2024.119119_bib14 – volume: 115 start-page: 1023 issue: 4 year: 2018 ident: 10.1016/j.engstruct.2024.119119_bib20 article-title: Experimental evaluation of deep beams with high- strength concrete and high-strength reinforcing bar publication-title: Acids Struct J – volume: 241 year: 2021 ident: 10.1016/j.engstruct.2024.119119_bib48 article-title: Effect of member depth and concrete strength on shear strength of RC deep beams without transverse reinforcement publication-title: Eng Strut – volume: 103 start-page: 577 year: 2006 ident: 10.1016/j.engstruct.2024.119119_bib27 article-title: Strength of struts in deep concrete members designed using strut-and-tie methods publication-title: Acids Strut J – volume: 96 start-page: 836 issue: 5 year: 1999 ident: 10.1016/j.engstruct.2024.119119_bib44 article-title: Shear behavior of large reinforced concrete deep beams and code comparisons publication-title: Acids Struct J – volume: 46 start-page: 53 issue: 1 year: 2005 ident: 10.1016/j.engstruct.2024.119119_bib45 article-title: Evaluation of shear strength of deep beams with stirrups publication-title: Q Rep RTRI doi: 10.2219/rtriqr.46.53 – volume: 324 year: 2022 ident: 10.1016/j.engstruct.2024.119119_bib26 article-title: Numerical investigation of RC deep beams containing recycled aggregates publication-title: Constr Build Mater doi: 10.1016/j.conbuildmat.2022.126713 – year: 2004 ident: 10.1016/j.engstruct.2024.119119_bib30 – volume: 110 start-page: 671 issue: 4 year: 2013 ident: 10.1016/j.engstruct.2024.119119_bib38 article-title: Shear strength of reinforced concrete deep beams publication-title: Acids Struct J – volume: 106 start-page: 678 issue: 63 year: 2009 ident: 10.1016/j.engstruct.2024.119119_bib39 article-title: Evaluation of load transfer and strut strength of deep beams with short longitudinal bar anchorages publication-title: Acids Struct J – volume: 295 year: 2023 ident: 10.1016/j.engstruct.2024.119119_bib11 article-title: Effect of stirrups on shear performance of geometrically-similar reinforced concrete deep beams: An experimental study publication-title: Eng Struct doi: 10.1016/j.engstruct.2023.116883 – volume: 143 issue: 8 year: 2017 ident: 10.1016/j.engstruct.2024.119119_bib22 article-title: Effect of vertical and horizontal web reinforcement on the strength and deformation of concrete deep beams reinforced with GFRP Bars publication-title: J Struct Eng doi: 10.1061/(ASCE)ST.1943-541X.0001786 – volume: 68 start-page: 514 issue: 47 year: 1971 ident: 10.1016/j.engstruct.2024.119119_bib6 article-title: Web reinforcement effects on lightweight concrete deep beams publication-title: Acids J Proceed – volume: 110 start-page: 297 year: 2013 ident: 10.1016/j.engstruct.2024.119119_bib10 article-title: Minimum web reinforcement in deep beams publication-title: Acids Struct J – volume: 118 start-page: 203 issue: 2 year: 2021 ident: 10.1016/j.engstruct.2024.119119_bib9 article-title: Shear strength of sand-lightweight concrete deep beams with steel fibers publication-title: Acids Struct J – volume: 33 start-page: 136 issue: 1 year: 2011 ident: 10.1016/j.engstruct.2024.119119_bib7 article-title: Aggregate interlock in lightweight concrete continuous deep beams publication-title: Eng Struct doi: 10.1016/j.engstruct.2010.09.026 – volume: 135 start-page: 239 issue: 3 year: 2009 ident: 10.1016/j.engstruct.2024.119119_bib40 article-title: Single-span deep beams subjected to unsymmetrical loads publication-title: J Struct Eng doi: 10.1061/(ASCE)0733-9445(2009)135:3(239) – volume: 117 start-page: 75 issue: 1 year: 2020 ident: 10.1016/j.engstruct.2024.119119_bib4 article-title: Shear behavior of large-scale deep beams with lightweight-aggregate concrete publication-title: Acids Struct J – volume: 94 start-page: 572 issue: 5 year: 1997 ident: 10.1016/j.engstruct.2024.119119_bib35 article-title: Effect of web reinforcement on high-strength concrete deep beams publication-title: Acids Struct J – start-page: 3 year: 2019 ident: 10.1016/j.engstruct.2024.119119_bib12 article-title: CSA Committee A23 – volume: 45 year: 2022 ident: 10.1016/j.engstruct.2024.119119_bib23 article-title: Meso-scale analysis of shear performance and size effect of CFRP sheets strengthened RC beams publication-title: Struct doi: 10.1016/j.istruc.2022.09.104 |
SSID | ssj0002880 |
Score | 2.4394736 |
Snippet | In practice, deep beams with web reinforcement are the predominant form of deep beams. Understanding the effect of web reinforcement in deep beams made of... |
SourceID | crossref elsevier |
SourceType | Index Database Publisher |
StartPage | 119119 |
SubjectTerms | Deep beams Lightweight aggregate concrete Shear strength Strut-and-tie model Web reinforcement |
Title | Influence of web reinforcement on shear behavior and size effect of lightweight aggregate concrete deep beams: Experimental and theoretical studies |
URI | https://dx.doi.org/10.1016/j.engstruct.2024.119119 |
Volume | 322 |
hasFullText | 1 |
inHoldings | 1 |
isFullTextHit | |
isPrint | |
link | http://utb.summon.serialssolutions.com/2.0.0/link/0/eLvHCXMwpV1LS8NAEF5KvehBfGJ9lD14TR-76SbbWyktrUIvWugt7LNUNC2mIHjwT_iHnd0kmoLgwVsIOyHsDPPim28QuiWSgd9jNNDUdatoLAOpOzQglkithAGf6FG-MzaZh3eL3qKGhuUsjINVFr4_9-neWxdv2sVttjerVfvBQxQJZxCTuizuLtwEexg5K299_MA8SOy3p7nDgTu9g_Ey6TKnaYVCkYQtR3bmKHd-i1CVqDM-QodFuogH-R8do5pJT9BBhUTwFH1Oyz0jeG0xeEX8ajwdqvKdP7xOcebWVuNyIh-LVONs9W5wDuZwYs-uRn_zbVIsllCDu-4ahloZkkp40MZsQF68ZH08quwE8J-qzELiLIclnqH5ePQ4nATFqoVAQQm1DYRgXAvKmJWGWy45xP2IEE2EtMyGSoRcRZDZ0VibnuahhbyBWyo51dzanqHnqJ6uU3OBsOPwoxGFvEB3Q62JVF0omrQyysRUatZAnfJ6k03OqJGUULOn5FsjidNIkmukgfqlGpId40jA7_8lfPkf4Su0T9zCX99zuUZ1OGBuIAvZyqY3sybaG0zvJ7Mv_lnhgQ |
linkProvider | Elsevier |
linkToHtml | http://utb.summon.serialssolutions.com/2.0.0/link/0/eLvHCXMwpV1LTwIxEJ4oHNSD8Rnx2YPXFWiXsuVmDAQUuQgJt027bQlGFyIkJv4N_7DT7i6BxMSDt82ms9l0mm8e-foNwC1VHHGPs0Az161ikQqUrrGAWqp0Ig1iomf5Dnh3FD6OG-MteCjuwjhaZY79GaZ7tM7fVPPdrM6n0-qLpyhSwTEm1XlUH29D2alTNUpQvu89dQcrQKaRH6Dm1gfOYIPmZdJJptSKtSIN75zemVPd-S1IrQWezgHs5xkjuc9-6hC2THoEe2s6gsfw3StGjZCZJQiM5MN4RdTEN__ILCULN7maFJfyiUw1WUy_DMn4HM7szZXpn75TSuQEy3DXYCNYLmNeiQ_amDnay_dFi7TXxgL4T61dhySLjJl4AqNOe_jQDfJpC0GCVdQykJILLRnnVhlhhRIY-puUaiqV5TZMZCiSJiZ3LNKmoUVoMXUQlinBtLC2YdgplNJZas6AOBk_1mSYGuh6qDVVSR3rJp2YxERMaV6BWrG98TwT1YgLttlrvPJI7DwSZx6pQKtwQ7xxPmKE_r-Mz_9jfAM73eFzP-73Bk8XsEvd_F_fgrmEEi42V5iULNV1fuh-ALTW5DI |
openUrl | ctx_ver=Z39.88-2004&ctx_enc=info%3Aofi%2Fenc%3AUTF-8&rfr_id=info%3Asid%2Fsummon.serialssolutions.com&rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Ajournal&rft.genre=article&rft.atitle=Influence+of+web+reinforcement+on+shear+behavior+and+size+effect+of+lightweight+aggregate+concrete+deep+beams%3A+Experimental+and+theoretical+studies&rft.jtitle=Engineering+structures&rft.au=Yang%2C+Xue&rft.au=Wu%2C+Tao&rft.au=Liu%2C+Xi&rft.au=Liu%2C+Yang&rft.date=2025-01-01&rft.issn=0141-0296&rft.volume=322&rft.spage=119119&rft_id=info:doi/10.1016%2Fj.engstruct.2024.119119&rft.externalDBID=n%2Fa&rft.externalDocID=10_1016_j_engstruct_2024_119119 |
thumbnail_l | http://covers-cdn.summon.serialssolutions.com/index.aspx?isbn=/lc.gif&issn=0141-0296&client=summon |
thumbnail_m | http://covers-cdn.summon.serialssolutions.com/index.aspx?isbn=/mc.gif&issn=0141-0296&client=summon |
thumbnail_s | http://covers-cdn.summon.serialssolutions.com/index.aspx?isbn=/sc.gif&issn=0141-0296&client=summon |