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The Reasons for The Wear of Components in The Traveling Parts of Rotary Drilling RIGS

Views: 0     Author: Site Editor     Publish Time: 2025-05-08      Origin: Site

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Rotary drilling RIGS play a significant role in foundation construction. The normal operation of their traveling parts directly affects the construction efficiency and equipment lifespan. However, the wear problem of the components of the walking part often occurs. Here are the six major reasons for the wear of components in the traveling parts of rotary drilling RIGS.

1


1. Poor road conditions: Driving on uneven and gravel roads for a long time constantly subjects the walking parts to impact and friction, which can accelerate wear and shorten their service life.


2. Improper operation: Frequent sudden stops and turns, high-speed driving or long-term unilateral walking will cause uneven force on the walking parts, accelerating local wear.


3. Insufficient maintenance: Lack of regular lubrication and failure to promptly clean the soil and sand in the crevices of components increase the frictional resistance between components and accelerate the wear process.


4. Overloading operation: Operating beyond the rated load capacity of the equipment subjects the moving parts to excessive pressure, significantly accelerating the wear rate.


5. Component quality issues: Substandard walking components are selected, with poor material strength and wear resistance, making it difficult to adapt to high-intensity working environments.


6. Environmental factor influence: When working in special environments such as damp and saline-alkali conditions, the walking components are prone to corrosion, which in turn accelerates wear.


In conclusion, the wear of components in the traveling parts of rotary drilling RIGS is caused by the combined effect of multiple factors. To reduce wear and tear, it is necessary to comprehensively consider road conditions, standardize operations, strengthen maintenance, control loads, select high-quality components, and take environmental response measures, so as to ensure the stable operation and service life of the equipment.


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