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 <front>
  <journal-meta>
   <journal-id journal-id-type="publisher-id">Bulletin of Belgorod State Technological University named after. V. G. Shukhov</journal-id>
   <journal-title-group>
    <journal-title xml:lang="en">Bulletin of Belgorod State Technological University named after. V. G. Shukhov</journal-title>
    <trans-title-group xml:lang="ru">
     <trans-title>Вестник Белгородского государственного технологического университета им. В.Г. Шухова</trans-title>
    </trans-title-group>
   </journal-title-group>
   <issn publication-format="print">2071-7318</issn>
  </journal-meta>
  <article-meta>
   <article-id pub-id-type="publisher-id">42012</article-id>
   <article-id pub-id-type="doi">10.34031/2071-7318-2021-6-2-8-14</article-id>
   <article-categories>
    <subj-group subj-group-type="toc-heading" xml:lang="ru">
     <subject>Строительство и архитектура</subject>
    </subj-group>
    <subj-group subj-group-type="toc-heading" xml:lang="en">
     <subject>Construction and architecture</subject>
    </subj-group>
    <subj-group>
     <subject>Строительство и архитектура</subject>
    </subj-group>
   </article-categories>
   <title-group>
    <article-title xml:lang="en">3D-ADDITIVE BUILDING TECHNOLOGIES. THEORY AND PRACTICE</article-title>
    <trans-title-group xml:lang="ru">
     <trans-title>3D-АДДИТИВНЫЕ СТРОИТЕЛЬНЫЕ ТЕХНОЛОГИИ. ТЕОРИЯ И ПРАКТИКА</trans-title>
    </trans-title-group>
   </title-group>
   <contrib-group content-type="authors">
    <contrib contrib-type="author">
     <name-alternatives>
      <name xml:lang="ru">
       <surname>Глаголев</surname>
       <given-names>Е. С.</given-names>
      </name>
      <name xml:lang="en">
       <surname>Glagolev</surname>
       <given-names>E. S.</given-names>
      </name>
     </name-alternatives>
     <bio xml:lang="ru">
      <p>кандидат технических наук;</p>
     </bio>
     <bio xml:lang="en">
      <p>candidate of technical sciences;</p>
     </bio>
     <xref ref-type="aff" rid="aff-1"/>
    </contrib>
   </contrib-group>
   <aff-alternatives id="aff-1">
    <aff>
     <institution xml:lang="ru">Белгородский государственный технологический университет им В.Г. Шухова</institution>
    </aff>
    <aff>
     <institution xml:lang="en">Belgorod State Technological University named after V.G. Shukhov</institution>
    </aff>
   </aff-alternatives>
   <volume>6</volume>
   <issue>2</issue>
   <fpage>8</fpage>
   <lpage>14</lpage>
   <self-uri xlink:href="https://naukaru.ru/en/nauka/article/42012/view">https://naukaru.ru/en/nauka/article/42012/view</self-uri>
   <abstract xml:lang="ru">
    <p>Представлены результаты исследования теоретических основ изготовления строительных материалов с помощью 3D-печати на основе композиционных вяжущих с применением различных способов формования, их практическая апробация на опытных образцах мелкозернистого бетона. Рассмотрены принципы регулирования структуры и свойств композитов за счёт применения минерального модификатора для возведения высотных строительных объектов по 3D-аддитивной технологии. Показано влияние характеристик компонентов сырья на свойства полученного композита. Структурообразование твердеющей цементосодержащей системы в присутствии минерального модификатора протекает более интенсивно за счёт высокой удельной поверхности и энергетической способности компонентов, представляющей собой активную минеральную добавку и основу для кристаллообразования новых гидратных соединений. Различие в прочностных показателях напечатанной стенки обусловлено направлением вырезки образца. Приложение разрушающей нагрузки вдоль направления формования 3D-принтера даёт несколько большую прочность, чем перпендикулярно направлению формования. Это явление можно объяснить формой слоя после затвердевания смеси, которая представляет собой эллипс в сечении.</p>
   </abstract>
   <trans-abstract xml:lang="en">
    <p>The results of the study of the theoretical foundations of the manufacture of building materials using 3D printing based on composite binders with various molding methods and their practical testing on prototypes of fine-grained concrete are presented. The principles of regulating the structure and properties of composites through the use of a mineral modifier for the construction of high-rise building objects using 3D-additive technology are considered. The influence of the characteristics of the raw material components on the properties of the obtained composite is shown. The structure formation of the hardening cement-containing system in the presence of a mineral modifier proceeds more intensively due to the high specific surface area and energy capacity of the components, which is an active mineral additive and the basis for the crystal formation of new hydrate compounds. The difference in the strength characteristics of the printed wall is due to the direction of the sample cut. Applying a breaking load along the direction of forming of a 3D printer gives a slightly higher strength than perpendicular to the direction of forming. This phenomenon can be explained by the shape of the layer after solidification of the mixture, which is an ellipse in cross section</p>
   </trans-abstract>
   <kwd-group xml:lang="ru">
    <kwd>3D-аддитивные технологии</kwd>
    <kwd>композиционные вяжущие</kwd>
    <kwd>мелкозернистые бетоны</kwd>
    <kwd>съемная и несъемная опалубка</kwd>
   </kwd-group>
   <kwd-group xml:lang="en">
    <kwd>3D additive technologies</kwd>
    <kwd>composite binders</kwd>
    <kwd>fine-grained concrete</kwd>
    <kwd>removable and non-removable formwork</kwd>
   </kwd-group>
  </article-meta>
 </front>
 <body>
  <p></p>
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