The technology was jointly developed by Melbourne's VR TEK Corporation, Deakin University and the Commonwealth Science and Technology Organization (CSIRO), and received federal government support of A$516,000 through the Advanced Manufacturing Technology Cooperative Research Center. At the same time, it also received support from the Victorian government through the Victorian Centre for Advanced Materials Manufacturing.
Kim Carr, Minister of Innovation, Industry and Research of the Federal Government praised this achievement and provided a successful case for the sustainable development of Australian companies in the future, providing new employment opportunities for Australian workers.
According to statistics, Australia produces about 20 million waste tires each year, but only less than a quarter of them can be reused or recycled. The rest of the tires will be treated as waste and unreasonably, which will damage the environment and endanger public health.
The metal materials contained in the tires make recovery and reuse difficult. This new technology is characterized by the use of an energy-efficient mechanical separation method (The Mechanical Segmenting Method) to separate waste tires into metallic materials and high-quality rubber powders.
This new process of converting used tires into rubber powders free of metallic materials can be used to develop new rubber or other elastomer-based based items. The rubber crumb produced by this process is less expensive than the virgin rubber.
It is reported that the holder of the technology, VR TEK, is actively organizing new operations and marketing methods to promote the application of this new technology, including the export to the Chinese market.
Flow meters are instruments used to measure the rate of flow of liquids or gases. They typically consist of a pipe and a measuring device. As the fluid flows through the pipe, the flow meter can calculate the flow rate by measuring the time it takes for the fluid to pass and the pressure difference within the pipe. Flow meters can be used for various applications including industrial process control, environmental monitoring, fluid transportation, and laboratory research.
There are several types of flow meters, including turbine flow meters, electromagnetic flow meters, ultrasonic flow meters, and differential pressure flow meters, among others. Each type of flow meter has its specific advantages and range of applications. For example, turbine flow meters are suitable for measuring the flow rate of low-viscosity liquids, while electromagnetic flow meters are suitable for measuring the flow rate of conductive liquids.
Flow meters play a crucial role in many industries. In industrial settings, flow meters can help monitor and control the flow of liquids or gases in production processes. In environmental monitoring, flow meters can be used to measure the flow rates in wastewater and air emissions to ensure compliance with environmental regulations. In laboratory research, flow meters can be used to measure the flow rates of liquids or gases in experiments for accurate data analysis and experimental validation.
Thermal Mass Flow Meter Diagram,Thermal Dispersion Flow Switch,Thermal Mass Flow Switch
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