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Observation on the technological evolution of the construction machinery industry: innovative breakthrough paths for intelligent lifting equipment

Apr 28, 2025

In the field of modern construction machinery, intelligent lifting equipment is undergoing revolutionary technological iterations. The new generation of construction machinery represented by advanced lifting equipment is reshaping the industry's technical standards through the breakthrough design of three core technical modules.

In terms of power system innovation, the dual-mode drive architecture realizes the organic integration of traditional fuel and clean energy. The coordinated control technology of the diesel power unit and the dual motor group not only breaks through the physical limit of traditional power output, but also builds a precise control system for stepless speed change. This composite power solution significantly reduces energy conversion losses while ensuring the continuous operation capability of the equipment, providing a feasible path for the green transformation of construction machinery.

The intelligent upgrade of the control system marks a fundamental change in the human-machine interaction mode. A closed-loop control system is formed by integrating digital signal transmission and mechanical actuators. The millimeter-level positioning accuracy of the remote control module and the synergy of the multi-level speed regulation device enable the lifting operation to shift from traditional experience-driven to data-driven. Especially in confined space operation scenarios, the intelligent walking control system and the dynamic stability base form a space perception matrix to achieve sub-meter-level space penetration accuracy.

The field of structural design presents an innovative trend of miniaturization and modularization. The compact chassis structure breaks through the volume limitation of traditional equipment, and forms adaptive space matching capabilities through the combined application of adjustable support mechanisms and elastic walking devices. This design philosophy not only solves the problem of cramped working surfaces commonly found in urban renewal projects, but also creates a paradigm for all-terrain adaptation of construction machinery under complex working conditions.

The current technological development of the industry presents three significant characteristics: the clean transformation of the energy structure has entered the stage of large-scale application from concept verification; digital twin technology promotes the in-depth evolution of equipment control towards virtualization and remoteness; the modular concept of structural design is giving birth to a new generation of scalable equipment platforms. These technological breakthroughs not only improve the efficiency of single-machine operations, but also create new value nodes in the engineering general contracting model, and promote the transformation of traditional construction methods towards intensive and intelligent directions.

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