Research Report on the Development of Pre mixed Concrete Industry in Xi’an City in 2025

2025 is a crucial year for the conclusion of the 14th Five Year Plan and the planning and layout of the 15th Five Year Plan.

China’s urban development has comprehensively entered a new stage centered on improving the quality and efficiency of existing resources.

The Central Urban Work Conference held in July 2025 established the overall goal of building an innovative, livable, beautiful, resilient, civilized, and intelligent modern people’s city, and made “focusing on building safe and reliable resilient cities” and “promoting convenient and efficient smart cities” the core tasks, providing fundamental guidance for urban construction in the new era.

Cast In Plate

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Identification and treatment of early freezing of cast-in-place concrete

Early freezing of cast-in-place concrete has significant adverse effects on concrete strength, steel bond strength, impermeability, and frost resistance.

Cast In Plate

Therefore, for cast-in-place concrete constructed in low-temperature environments, it is important to take measures to ensure the quality of concrete engineering by identifying and treating it according to changes in climate and temperature at all times, including anti freezing and post freezing measures.

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Precast concrete drainage ditch: urban drainage solution

In urban infrastructure construction, an efficient drainage system is the key to dealing with waterlogging during the rainy season and ensuring a clean environment.

Yatai Building Materials, with the core concept of “Thai Chain Intelligent Manufacturing”, has launched precast concrete drainage ditches to provide durable and convenient drainage solutions for urban, road and bridge, garden and other scenes.

Concrete Lifting Clutch

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The entire industry is experiencing losses! A region releases operational data for the concrete industry

Recently, the data of Chengdu’s ready mixed concrete industry in 2025 reflects the industry difficulties in first tier cities across the country.

There are 147 compliant enterprises in the city (24 state-owned enterprises and 123 private enterprises), with a total output of 41.

22 million cubic meters, a year-on-year decrease of 15%.

Concrete Plate Anchors

The capacity utilization rate is only 24%, and most enterprises are operating at half capacity or even temporarily shut down.

The industry concentration is extremely high, with 8 leading enterprises accounting for 49% of the total output, and small and medium-sized enterprises struggling to survive.

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Research on Mix Proportion Optimization and Construction Performance Control Technology of Low Carbon Concrete in Construction Engineering

The global low-carbon transformation is forcing the construction industry to innovate.

Concrete, as the most widely used building material, has a significant proportion of carbon emissions.

Steel Rebar Chairs

In traditional technologies, high cement usage conflicts with low-carbon goals, and the use of solid waste admixtures often leads to poor construction performance, becoming a pain point in the industry.

Under the concept of green development, analyzing material characteristics, optimizing mix ratio parameters, and innovating construction control technologies can solve this contradiction.

Responding to the dual carbon strategy, providing a new path for high-quality development of concrete engineering, connecting theoretical exploration with key links in engineering practice.

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Why is adding water repeatedly prohibited during concrete construction

In concrete construction practice, the phenomenon of adding water on site is very common and has been repeatedly prohibited.

On the one hand, it is due to the weak quality awareness of construction personnel, who add water arbitrarily for the convenience of construction.

On the other hand, the lack of workability in concrete makes it difficult to meet construction requirements, especially in today’s complex concrete structures with dense steel bars.

Ferrule Loop Insert

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Literature Sharing 76: Predictive Modeling and Experimental Validation of the Effect of Temperature on the Strength of Sustainable Polymer

Sustainability and extreme environmental adaptability have always been research hotspots in the field of building materials.

PVC Chamfer

Geopolymer concrete (GPC) has become an ideal substitute material for traditional Portland cement concrete (OPC) due to its advantages of low carbon emissions and utilization of industrial by-products.

Especially in special scenarios such as industrial plants and high-temperature work areas, their high-temperature mechanical properties directly affect structural safety.

This article combines experimental testing and machine learning (ML) modeling to systematically explore the variation law of compressive strength of GPC under high temperature environment, providing key technical support for its engineering application.

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