Introduction to the specific structure of a new type of crane hook
The lifting hook is a kind of industrial use and has a wide range of use in various processing and transportation sites. Now a relatively intelligent lifting hook has appeared, which can complete the transportation of heavy objects more safely. This new type of lifting hook is equipped with a measurement unit. Let's take a look at its specific structure introduction:
This new type of hook includes the hook body, curved hook, power supply part, data transmission unit and measurement unit. The hook can be loaded, and the power supply unit is arranged on the hook body; the strain measurement unit is fixedly installed on the installation recess, and is connected to the power supply unit circuit to measure the variables received by the hook part; the input end of the data transmission unit and the strain measurement unit circuit are connected to receive the strain signal, and the output end and the external computing terminal communicate with the external computing terminal to transmit the strain signal to the computing terminal.
The advantage of the new hook is that the actual workload of lifting the hook can be judged by the change of strain, and then the hook lifting load is overloaded and whether the hook is under the safe range is controlled and supervised by connecting it with the external computing terminal to prevent the occurrence of production accidents caused by hook damage or overload, thereby achieving a safer hook lifting work.
The lifting hook is a kind of industrial use and has a wide range of use in various processing and transportation sites. Now a relatively intelligent lifting hook has appeared, which can complete the transportation of heavy objects more safely. This new type of lifting hook is equipped with a measurement unit. Let's take a look at its specific structure introduction:
This new type of hook includes the hook body, curved hook, power supply part, data transmission unit and measurement unit. The hook can be loaded, and the power supply unit is arranged on the hook body; the strain measurement unit is fixedly installed on the installation recess, and is connected to the power supply unit circuit to measure the variables received by the hook part; the input end of the data transmission unit and the strain measurement unit circuit are connected to receive the strain signal, and the output end and the external computing terminal communicate with the external computing terminal to transmit the strain signal to the computing terminal.
The advantage of the new hook is that the actual workload of lifting the hook can be judged by the change of strain, and then the hook lifting load is overloaded and whether the hook is under the safe range is controlled and supervised by connecting it with the external computing terminal to prevent the occurrence of production accidents caused by hook damage or overload, thereby achieving a safer hook lifting work.
The lifting hook is a kind of industrial use and has a wide range of use in various processing and transportation sites. Now a relatively intelligent lifting hook has appeared, which can complete the transportation of heavy objects more safely. This new type of lifting hook is equipped with a measurement unit. Let's take a look at its specific structure introduction:
This new type of hook includes the hook body, curved hook, power supply part, data transmission unit and measurement unit. The hook can be loaded, and the power supply unit is arranged on the hook body; the strain measurement unit is fixedly installed on the installation recess, and is connected to the power supply unit circuit to measure the variables received by the hook part; the input end of the data transmission unit and the strain measurement unit circuit are connected to receive the strain signal, and the output end and the external computing terminal communicate with the external computing terminal to transmit the strain signal to the computing terminal.
The advantage of the new hook is that the actual workload of lifting the hook can be judged by the change of strain, and then the hook lifting load is overloaded and whether the hook is under the safe range is controlled and supervised by connecting it with the external computing terminal to prevent the occurrence of production accidents caused by hook damage or overload, thereby achieving a safer hook lifting work.
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