Introduction: On-site dynamic balancing technology is an extremely wide range of practical technologies used by industrial and mining companies. According to statistics, about 50% of the mechanical vibration is caused by the imbalance force. Therefore, it is necessary to change the mass of the moving part of the rotating machine and reduce the unbalanced force, that is, to balance the rotor.

The importance of on-site balancing instrument

In modern times, there are many methods used for balance (in-situ dynamic balance instrument) used by various types of machines. For example, one-side balance (also called static balance) often uses a balance frame, and double-sided balance (also called dynamic balance) uses various kinds of dynamic balance testing machines. . Although the dynamic balance testing machine can better balance the rotor itself, but for large differences in the size of the rotor, often require a different size dynamic balancing machine, and the test still need to remove the rotor from the machine took time and effort. The on-site balance not only can reduce the labor of assembling and disassembling the rotor, but also eliminates the need for a dynamic balancer. At the same time, due to the state of the test and the actual working conditions, the accuracy of the unbalance measurement can be improved and the vibration of the system can be reduced. The International Standard ISO 1940-1973 (E) "Balanced Accuracy of Rigid Body Rotators" states that precision rotors with a G0.4 balance precision must be used for on-site balancing, otherwise balancing is meaningless.

The ACEPO M30 on-site ballast balancer can analyze on-site whether there is any malfunction in the equipment. Using the system-provided test weight method or influence coefficient method to carry out dynamic balance correction, the system will automatically calculate the plus (minus) weight of the mass size and angle. In this way, the imbalance of more than 90% of the rotor (shaft) is eliminated, which greatly saves the cost of disassembly, transportation, installation, and maintenance, thereby bringing significant economic benefits to the company.

Machining Titanium

In the process of machining titanium alloy, the titanium alloy material itself has low modulus of elasticity, large elastic deformation, high cutting temperature, low thermal conductivity and high chemical activity at high temperature, which makes the sticky knife phenomenon serious, easily aggravating the tool wear and even breakage, which leads to the poor machinability of the titanium alloy. Therefore, machining titanium alloy requires proper cutting tools and good machining technology.

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