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WHB810
YZH
8474209000
With the continuous advancement of mining technology, the use of automation and intelligent equipment in mining operations has been increasing. YZH Pedestal grizzly rock breaker systems, as highly automated tools, play a significant role in mining crushing systems. In a specific project in South Africa, YZH Pedestal grizzly rock breaker systems were successfully applied to handle high-hardness minerals such as granite, greatly improving crushing efficiency and operational safety. This article will detail the advantages of YZH Pedestal grizzly rock breaker systems in mining crushing and analyze their technical background and future development trends using the South African project as an example.
YZH Pedestal grizzly rock breaker systems have gradually become indispensable in mining automation. They combine advanced control technology, precise mechanical structures, and efficient power systems to perform complex tasks in high-load, high-intensity environments. Compared to traditional manual operations, YZH Pedestal grizzly rock breaker systems offer higher precision and stability, significantly improving work efficiency and reducing the risks associated with human error.
In mining crushing systems, YZH Pedestal grizzly rock breaker systems are primarily used to handle large materials during the crushing process. Equipped with efficient sensors and control systems, they can accurately identify and process large rocks, ensuring continuous and stable operation of the crushing station. By fitting various tools such as grabs and breakers, YZH Pedestal grizzly rock breaker systems can flexibly adapt to different operational needs and perform precise material handling, greatly enhancing both the efficiency and safety of the crushing station.
The core task of the South African project was to install YZH Pedestal grizzly rock breaker systems at the feed inlet of a mobile crushing station, specifically to handle high-hardness minerals like granite. The project required the crushed material to be granite, with a hardness of 7 KWh/t (Bond work index) and a compressive strength of no more than 180 MPa. To ensure the efficient operation of the crushing station, the YZH Pedestal grizzly rock breaker systems needed to reduce the maximum particle size of the material (600mm) to below 500mm.
Granite, being a hard material, often presents challenges such as material blockages in traditional crushing methods. Therefore, an automated and efficient solution for primary material crushing is essential. The YZH Pedestal grizzly rock breaker systems perform the initial crushing of large blocks, ensuring that the crushed material can smoothly pass through the conveyor system into the next processing stage. This automation solution not only improves crushing efficiency but also solves many problems associated with traditional manual handling.
Model No | Unit | WHB810 |
Boom weight | kg | 3420 |
Max Horizontal Working radius | mm | 1070 |
Max Vertical Working radius | mm | 8150 |
Min Vertical working radius | mm | 2620 |
Rotation | ° | 360 |
With the continuous advancement of mining technology, the use of automation and intelligent equipment in mining operations has been increasing. YZH Pedestal grizzly rock breaker systems, as highly automated tools, play a significant role in mining crushing systems. In a specific project in South Africa, YZH Pedestal grizzly rock breaker systems were successfully applied to handle high-hardness minerals such as granite, greatly improving crushing efficiency and operational safety. This article will detail the advantages of YZH Pedestal grizzly rock breaker systems in mining crushing and analyze their technical background and future development trends using the South African project as an example.
YZH Pedestal grizzly rock breaker systems have gradually become indispensable in mining automation. They combine advanced control technology, precise mechanical structures, and efficient power systems to perform complex tasks in high-load, high-intensity environments. Compared to traditional manual operations, YZH Pedestal grizzly rock breaker systems offer higher precision and stability, significantly improving work efficiency and reducing the risks associated with human error.
In mining crushing systems, YZH Pedestal grizzly rock breaker systems are primarily used to handle large materials during the crushing process. Equipped with efficient sensors and control systems, they can accurately identify and process large rocks, ensuring continuous and stable operation of the crushing station. By fitting various tools such as grabs and breakers, YZH Pedestal grizzly rock breaker systems can flexibly adapt to different operational needs and perform precise material handling, greatly enhancing both the efficiency and safety of the crushing station.
The core task of the South African project was to install YZH Pedestal grizzly rock breaker systems at the feed inlet of a mobile crushing station, specifically to handle high-hardness minerals like granite. The project required the crushed material to be granite, with a hardness of 7 KWh/t (Bond work index) and a compressive strength of no more than 180 MPa. To ensure the efficient operation of the crushing station, the YZH Pedestal grizzly rock breaker systems needed to reduce the maximum particle size of the material (600mm) to below 500mm.
Granite, being a hard material, often presents challenges such as material blockages in traditional crushing methods. Therefore, an automated and efficient solution for primary material crushing is essential. The YZH Pedestal grizzly rock breaker systems perform the initial crushing of large blocks, ensuring that the crushed material can smoothly pass through the conveyor system into the next processing stage. This automation solution not only improves crushing efficiency but also solves many problems associated with traditional manual handling.
Model No | Unit | WHB810 |
Boom weight | kg | 3420 |
Max Horizontal Working radius | mm | 1070 |
Max Vertical Working radius | mm | 8150 |
Min Vertical working radius | mm | 2620 |
Rotation | ° | 360 |
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