What Makes SYSTEM 3E Technology Economical?

SYSTEM 3E technology offers significant cost savings throughout the construction process, thanks to its innovative design and efficient use of resources. The key factors that contribute to these savings include: Reduced Construction Time One of the most significant savings comes from the dramatic reduction in construction time. For example, building walls for a house with

On-Site Construction Guidelines

When using SYSTEM 3E EKO+ elements, the following practical rules should be observed during construction: First Layer Installation: The first layer of S0 and S0 300 elements should be laid using cement or lime-cement mortar to ensure a strong and rigid connection between the SYSTEM 3E structure and the foundations. Waterproofing Layer: Before stacking the

Practical Use Recommendations for SYSTEM 3E EKO+ Elements

SYSTEM 3E EKO+ elements are designed for mortar-free construction in most cases, with the exception of the first layer (which should be mortared to the foundations, higher floors, and above lintels). The technology includes 37 unique types of elements, each tailored for specific use in line with the technical design project. It's essential that the

Applications of SYSTEM 3E Elements

SYSTEM 3E is a versatile building technology designed for a wide range of wall structures across various types of buildings. It is suitable for use in single-family homes, multi-family residences,public utility buildings, and industrial facilities. The SYSTEM 3E EKO+ technology is particularly suited for both load-bearing and non-load-bearing walls in low-rise buildings. Additionally, the same

Applications of SYSTEM 3E Elements

SYSTEM 3E is a versatile building technology designed for a wide range of wall structures across various types of buildings. It is suitable for use in single-family homes, multi-family residences,public utility buildings, and industrial facilities. The SYSTEM 3E EKO+ technology is particularly suited for both load-bearing and non-load-bearing walls in low-rise buildings. Additionally, the same

Why is SYSTEM 3E Technology Competitive?

The competitiveness of SYSTEM 3E technology comes from its innovative design, unique material, and efficient production process, all of which offer significant advantages over traditional construction methods. Key Benefits of SYSTEM 3E Technology: Versatile Application: SYSTEM 3E is ideal for both external and internal load-bearing walls. Its mortarless design makes the construction process faster and

What Makes SYSTEM 3E Technology Unique?

SYSTEM 3E stands out as the only manufacturer of shaped structural elements made from natural perlite. Introduced to the market in 2018, this groundbreaking technology is protected by multiple patents covering its composition, design, and manufacturing process, with intellectual property rights across the Australia, European Union, USA, China, India, and Eurasia. Here’s what makes SYSTEM

What is SYSTEM 3E Technology?

SYSTEM 3E is a revolutionary technology for building eco-friendly, energy-efficient, and cost-effective walls in all types of buildings. It’s built on the innovative SYSTEM 3E Elements, which feature two key advancements: Perlite-Based Material: This unique material makes SYSTEM 3E the thinnest and most thermally efficient single-layer wall system available in Europe, offering superior insulation properties.

What is the application of SYSTEM 3E elements?

SYSTEM 3E is designed for construction of wall structures in single-family, multi-familyand collective residential buildings, public utility buildings and industrial buildings. SYSTEM 3E EKO+ technology is dedicated for load-bearing and non-load-bearing walls in low-rise constructions. Additionally, the same structural elements can be used as infill and internal walls in high-rise concrete structural constructions. There are

What types of products SYSTEM 3E offers?

SYSTEM 3E EKO+ product offer Construction elements are made of concrete with lightweight aggregates in SYSTEM 3E EKO+ technology intended for external and internal load-bearing and non-load-bearing walls. The elements are designed to be used as load-bearing material for the construction of external and internal walls in residential and non-residential buildings. In dependence on the

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