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April 10, 2026Construction and Building Materials0 citationsOpen Access

Structure, properties and decay of ancient Chinese blue brick masonry in the Bell Tower of Xi’ an

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JHJing HeState Administration of Cultural HeritageJZJianfeng ZhuState Administration of Cultural HeritageWLWei LiuChinese Academy of Medical Sciences & Peking Union Medical College

Key Points

  • The study aims to analyze the structure and decay mechanisms of ancient blue brick masonry at the Xi'an Bell Tower.
  • Core drilling to investigate masonry structure
  • Multianalytical approach for material and decay analysis
  • Assessment of internal construction layers and existing damages
  • Evaluation of firing temperatures and their effects on vitrification
  • Masonry structure consists of layers: paint coating, modern blue brick, ancient blue brick, and rammed earth.
  • High compressive strength of blue bricks attributed to enhanced vitrification from traditional firing techniques.
  • Migration of saline solutions leads to salt crystallization, causing significant surface brick damage.
  • Application of a resin coating worsens salt-related deterioration.

Abstract

The internal structure of the ancient blue bricks masonry at the base of the Xi'an Bell Tower was investigated by core drilling, and the constituting building materials and decay products/mechanisms were studied using a multianalytical approach. Results show that the masonry structure (from outside to inside) included a surface (paint) coating (∼0.5 cm thick) - modern blue brick masonry (∼22 cm thick) - ancient blue brick masonry (∼140 cm thick) - internal rammed earth. The rammed earth included quartz, feldspars, calcite, and clay minerals. Blue bricks were made up of quartz, K-feldspar, and high- T (>1000 °C) phases (anorthite, augite/enstatite) with a highly vitrified aluminosilicate matrix, consistent with calculated firing T for modern (1126 °C) and ancient (1057 °C) blue bricks. The high compressive strength of surface bricks (10.5 MPa) and inner bricks (9.5 MPa) was consistent with high- T enhanced vitrification under reducing conditions after addition of water at the end of the firing process in traditional "Yin shui" blue bricks making. Saline solutions migrated from the rammed earth core and lime mortars (containing calcite, and minor gypsum,) to the bricks, inducing precipitation of secondary calcite (lublinite) along with soluble salts, such as halite and nitratine, the latter originated from atmospheric NO x . Crystallization of soluble salts caused extensive damage to the surface bricks. An impervious polyethylene-acrylic resin coating was applied to the surface of the powdery bricks, which further aggravated salt damage. These results provide new insights into the internal structure of ancient Chinese masonry buildings and the sources and effects of salt crystallization in blue bricks, offering valuable guidance for the conservation of the base of the Xi'an Bell Tower and similar ancient masonry buildings. • Layered structure (paint coating→modern/ancient blue brick→rammed earth) of Bell Tower base revealed. • Blue bricks have a high strength from "Yin shui" firing leading to enhanced vitrification. • Migration of saline solutions induces soluble salt precipitation, damaging surface bricks. • Impervious resin coating exacerbates salt-related damage.

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Cite This Study

He et al. (2026) studied this question.

synapsesocial.com/papers/69d8940c6c1944d70ce050efhttps://doi.org/10.1016/j.conbuildmat.2026.146203
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