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1

1941-, Clarke John L., ed. Structural lightweight aggregate concrete. Blackie Academic & Professional, 1993.

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2

Brown, Heather J., and Matthew Offenberg. Pervious concrete. ASTM International, 2012.

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3

Bennett, D. F. H. Structural concrete updates: High-strength concrete, lightweight concrete and shearheads. Published on behalf of the industry sponsors of the Reinforced Concrete Campaign by the British Cement Association, 1990.

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4

A, Holm Thomas, Vaysburd Alexander M, and American Concrete Institute, eds. Structural lightweight aggregate concrete performance. American Concrete Institute, 1992.

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5

P, Ries John, Holm Thomas A, ACI Committee 213., and American Concrete Institute Convention, eds. High-performance structural lightweight concrete. American Concrete Institute, 2004.

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6

Silaenkov, E. S. Dolgovechnostʹ izdeliĭ iz i͡a︡cheistykh betonov. Stroĭizdat, 1986.

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7

I͡Amleev, U. A. Tekhnologii͡a proizvodstva legkobetonnykh konstrukt͡siĭ. Stroĭizdat, 1985.

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8

ACI Committee 523. Guide for cast-in-place low density cellular concrete. American Concrete Institute, 2006.

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9

Komokhov, P. G. Strukturnai͡a︡ mekhanika i teplofizika legkogo betona. Vologodskiĭ nauch. t͡s︡entr, 1992.

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10

RILEM International Symposium on Autoclaved Aerated Concrete (1992 Zürich, Switzerland). Advances in autoclaved aerated concrete: Proceedings of the 3rd RILEM International Symposium on Autoclaved Aerated Concrete, Zürich, Switzerland, 14-16 October 1992. A.A. Balkema, 1992.

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11

Siebel, E. Verformungsverhalten, Energieaufnahme und Tragfähigkeit von Normal- und Leichtbeton im Kurzzeitdruckversuch. Beton-Verlag, 1989.

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12

International, T. Y. Lin, and United States. Federal Highway Administration., eds. Criteria for designing lightweight concrete bridges. U.S. Dept. of Transportation, Federal Highway Administration, 1985.

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13

Bo, Westerberg, and Statens råd för byggnadsforskning (Sweden), eds. Designing with 3 L concrete. Swedish Council for Building Research, 1985.

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14

Dellos, K. P. Legkie betony v mostakh. "Transport", 1986.

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15

Krichevskiĭ, A. P. Konstrukt͡s︡ionnyĭ shlakopemzobeton dli͡a︡ promyshlennogo stroitelʹstva. Stroĭizdat, 1986.

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16

Skinner, Eugene H. Structural uses and placement techniques for lightweight concrete in underground mining. U.S. Dept. of the Interior, Bureau of Mines, 1989.

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17

Stieltjes, Laurent. Construire en pouzzolane à la Réunion: Utilisation d'un matériau local adapté aux contraintes de l'habitat, du climat et de l'économie réunionnais. Bureau de recherches géologiques et minières, Service géologique régional océan Indien, 1986.

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18

Skinner, Eugene H. Structural uses and placement techniques for lightweight concrete in underground mining. Dept. of the Interior, 1989.

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19

institut, Moskovskiĭ lesotekhnicheskiĭ, ред. Kompleksnoe ispolʹzovanie drevesiny pri proizvodstve drevesno-t͡sementnykh materialov. Moskovskiĭ lesotekhnicheskiĭ in-t, 1989.

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20

institut, Moskovskiĭ lesotekhnicheskiĭ, ред. Kompleksnoe ispolʹzovanie drevesiny pri proizvodstve drevesno-t͡sementnykh materialov. Moskovskiĭ lesotekhnicheskiĭ in-t, 1988.

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21

Civieltechnisch Centrum Uitvoering Research en Regelgeving (Netherlands), ed. Structural behaviour of concrete with coarse lightweight aggregates. Published and distributed for CUR by A.A. Balkema, 1995.

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22

Leif, Berntsson, and Knovel (Firm), eds. Lightweight aggregate concrete: Science, technology, and applications. Noyes Publications, 2002.

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23

Leif, Berntsson, ed. Lightweight aggregate concrete: Science, technology, and applications. Noyes Publications/William Andrew Pub., 2003.

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24

Domagała, Lucyna. Konstrukcyjne lekkie betony kruszywowe: Structural lightweight aggregate concrete. Wydawnictwo PK, 2014.

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25

S, Aroni, RILEM Technical Committee 78-MCA., and RILEM Technical Committee 51-ALC., eds. Autoclaved aerated concrete: Properties, testing, and design : RILEM recommended practice. E & FN Spon, 1993.

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26

Nat͡sievskiĭ, I͡Uriĭ Danilovich. Povyshenie teplozashchitnykh svoĭstv paneleĭ iz legkogo betona. "Budivelʹnyk", 1986.

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27

Ivanov, I. A. Legkie betony s primeneniem zol ėlektrostant͡s︡iĭ. 2nd ed. Stroĭizdat, 1986.

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28

Harnwolf-Wilczyńska, Anna. Zależność wytrzymałości od składu fazowego popiołobetonów na tle procesów hydratacji tworzyw cementowych. Wydawn. Politechniki Warszawskiej, 1985.

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29

Shtolʹ, Trofim Mikhaĭlovich. Tekhnologii͡a︡ keramzitobetonnykh izdeliĭ na gori͡a︡chem zapolnitele. Stroĭizdat, 1986.

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30

Giergiczny, Zbigniew. Rola popiołów lotnych wapniowych i krzemionkowych w kształtowaniu właściwości współczesnych spoiw budowlanych. Wydawn. Politechniki Krakowskiej, 2006.

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31

Cousins, Thomas E. High-performance/high-strength lightweight concrete for bridge girders and decks. Transportation Research Board, 2013.

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32

C, Sweeney Steven, and Construction Engineering Research Laboratories (U.S.), eds. Development of high-performance lightweight concrete masonry units. US Army Corps of Engineers, Construction Engineering Research Laboratories, 1997.

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33

Poland) International Conference on Autoclaved Aerated Concrete (5th 2011 Bydgoszcz. 5th International Conference on Autoclaved Aerated Concrete "Securing a Sustainable Future": To be held at Bydgoszcz to celebrate 60 years of AAC experience in Poland : Bydgoszcz, Poland, September 14-17, 2011. University of Technology and Life Sciences Press, 2011.

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34

C, Ward G., Williams A. W, and Building Research Establishment, eds. The Renovation of no-fines housing: A guide to the performance and rehabilitation of loadbearing no-fines concrete dwellings built using the Wimpey and Scottish Special Housing Association systems. Building Research Establishment, 1991.

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35

Kowalsky, M. J. Shear behavior of lightweight concrete columns under seismic conditions. Dept. of Applied Mechanics & Engineering Sciences, Division of Structural Engineering, University of California, San Diego, 1995.

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36

Vincent, Edward C. Final contract report: Creep of high-strength normal and lightweight concrete. Virginia Transportation Research Council, 2004.

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37

Smith, Joanna Sian. The long-term shrinkage behaviour of lightweight aggregate concrete. Queen Mary College, 1987.

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38

Rudakov, V. M. Nepreryvnyĭ avtomaticheskiĭ kontrolʹ proizvodstva avtoklavnykh betonov. Stroĭizdat, Leningradskoe otd-nie, 1985.

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39

Alumi͡aė, A. Ė. Stroitelʹnai͡a teplofizika, dolgovechnostʹ konstrukt͡siĭ. "Valgus", 1986.

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40

Fédération internationale du béton. Task Group 8.1 ., ed. Lightweight aggregate concrete: Codes and standards : state-of-art report prepared by. International Federation of Structural Concrete, 1999.

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41

Peterman, Robert J. Evaluation of strand transfer and development lengths in pretensioned girders with semi-lightweight concrete. Purdue University, [Joint Transportation Research Program, 1999.

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42

Kassner, Bernard L. Material investigation of the full-depth, precast concrete deck panels of the old Woodrow Wilson Bridge. Virginia Transportation Research Council, 2007.

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43

Legras, Philippe. Construire en béton cellulaire. Eyrolles, 2007.

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44

Concrete Society. Lightweight Concrete Ccommittee., ed. Design and cost studies of lightweight concrete highway bridges: Report of an investigation by the Lightweight ConcreteCommittee. Concrete Society, 1986.

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45

Cousins, Tommy, Carin Roberts-Wollmann, and Michael C. Brown. High-Performance/High-Strength Lightweight Concrete for Bridge Girders and Decks. Transportation Research Board, 2013. http://dx.doi.org/10.17226/22638.

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46

Ignatova, Ol'ga, and Vladimir Zavadskiy. Technology of insulation and wall materials and products. INFRA-M Academic Publishing LLC., 2025. https://doi.org/10.12737/2141115.

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The textbook provides an analysis and characteristics of various thermal, waterproofing and wall materials, an assessment of their suitability for use in construction. Classifications by structure, purpose, basic construction and operational properties, and areas of application are given. The basic schemes of manufacturing thermal insulation materials based on mineral and organic raw materials, as well as the basic principles of creating bitumen and polymer waterproofing materials are presented. Modern technologies for the production of wall products from cellular concretes, lightweight concre
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47

Chandra, Satish, and Leif Berntsson. Lightweight Aggregate Concrete. Noyes Data Corporation/Noyes Publications, 2002.

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48

Lightweight aggregate concrete. FIB, 2000.

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49

Berntsson, Leif, and Satish Chandra. Lightweight Aggregate Concrete. Elsevier Science & Technology Books, 2002.

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50

Structural Lightweight Aggregate Concrete. Routledge, 1993.

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