1.12
補強レンガ積みは、鋼鉄補強材を組み込むことでレンガ壁の構造的完全性を高める高度な建築技術です。これらの補強材は、レンガの中空内に置かれるか、または 2 層の石積み (ワイスと呼ばれる) の間に挟まれ、グラウトで固定されます。グラウトは、ポートランド セメント、骨材、水で構成された液体混合物で、鋼鉄と…
強化レンガの石積みは、レンガの中空コア内に鋼の補強を組み込むか、2つの石積みのワイスの間に挟まれ、次にグラウト(ポルトランドセメント、骨材、および水の流体の組み合わせ)で固定されます。
グラウト補強レンガ石積みは、壁の空洞内に垂直および水平の鉄筋を備えています。
垂直バーの最小直径は4分の3インチで、特に長い壁では、最大で48インチ間隔で一貫した間隔で配置されます。
グラウトは、手動操作のバケットポンプまたは機械式ポンプのいずれによっても、1つの連続手順で堆積されるグラウトの量を指すリフトと呼ばれる段階で塗布されます。
補強材は、石積みの開口部の周り、基礎の上、および床と天井を接続するために使用されます。
天井を固定するための固定具は、壁に直接ボルトで固定することも、壁の空洞内に埋め込まれてグラウトされた機械式アンカーを使用して設置することもできます。
より薄い壁を使用した高層ビルの建設は、強化レンガ組積造を使用して実現できます。
View the full transcript and gain access to JoVE Core videos
Q1: What is reinforced brick masonry and how does it work?
Reinforced brick masonry incorporates steel reinforcement bars within hollow brick cores or between masonry wythes, then secures them with grout—a fluid mixture of Portland cement, aggregate, and water. This technique combines vertical and horizontal steel bars to enhance structural integrity, allowing construction of high-rise buildings with thinner, more robust walls.
Q2: What are the specifications for vertical reinforcement bars in reinforced brick masonry?
Vertical reinforcement bars must have a minimum diameter of three-fourths of an inch and are spaced at consistent intervals not exceeding 48 inches apart, particularly in longer walls requiring additional strength. These bars are embedded in hollow cores or collar joints and work with horizontal bars to provide comprehensive structural reinforcement throughout the wall system.
Q3: How is grout applied in reinforced brick masonry construction?
Grout is applied in stages called lifts, referring to the quantity of grout deposited in one continuous procedure. Application occurs either manually using bucket pumps or through mechanical pumps, ensuring thorough coverage and bonding of steel reinforcement to the brick and mortar structure.
Q4: Where is reinforcement typically placed in reinforced brick masonry walls?
Reinforcement is strategically positioned around masonry openings, atop foundations and parapet walls, and at connections between floors and ceilings. These critical locations require additional strength to handle structural loads and prevent failure at vulnerable points in the wall system throughout the structure.
Q5: How are ceiling and floor fixtures secured to reinforced brick masonry walls?
Fixtures can be directly bolted to reinforced masonry walls or attached using mechanical anchors embedded and grouted within wall cavities. This dual approach provides flexible, reliable connections for structural elements while maintaining the integrity and stability of the reinforced masonry system.
Q6: What advantages does reinforced brick masonry offer for high-rise construction?
Reinforced brick masonry enables construction of high-rise buildings using thinner walls while maintaining structural robustness and durability. The combination of steel reinforcement and grout bonding provides the necessary strength and stability for taller structures, broadening architectural possibilities and improving overall construction efficiency.
Q7: What is the composition of grout used in reinforced brick masonry?
Grout is a fluid mixture composed of Portland cement, aggregate, and water, serving as the bonding agent that secures steel reinforcement to brick and mortar. This composition ensures proper adhesion and structural integration of all reinforced masonry components throughout the wall system.