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The Department of Water’s dynamic management of large-scale water meters starts from three aspects. The first is to implement tracking management from meter readings and control the leakage rate of large-scale water. By setting up accounts for users with a monthly flow rate of 5000 cubic meters or more, conducting water analysis and comparison, checking leaks from changes in meter reading values, and sorting water meters whose water volume suddenly increases or is too small to become a focus of investigation. For users with a sudden increase in water volume, the watch management personnel communicate with the user in a timely manner to prevent the user from losing money due to the water pipe breakage, and to reduce the difficulty of water charge payment in the future. For users with smaller water volume, the watch management personnel Find out the reasons in a timely manner and try their best to avoid loopholes in water management. The second is to establish a work system, and use some methods to read meter data from irregular meters, centralize statistical data, shorten the interval between meter readings, and ensure that the failure tables and other problems are found in the shortest time and reduce the loss of water. Users who have stolen water have created a shock and eliminated the hidden dangers in the bud. The third is to use the existing information resources of the Water Division to analyze real-time analysis of the water volume at each pressure measurement point of the remote transmission meter to discover the changes in the user's water volume in time and provide important means for handling the failure table at the first time.
Recently, in order to further strengthen measurement management, reduce the leakage rate, and better serve users, Hangzhou Xiaoshan Water Supply Co., Ltd. deploys watch-keeping personnel to implement dynamic management of large-scale water meters of some village-level large water meters and unit users, and strives to achieve Timeliness and refinement of operational processing.
The types of five axis Cnc Milling Machines mainly include the following:Vertical cradle type five axis machining center: suitable for machining small and medium-sized parts.A gantry type five axis machining center with a movable worktable: It processes various complex shapes of parts through the swinging five axis heads.Bridge type gantry five axis machining center: fast response speed, suitable for five axis machining of large parts.Horizontal swing head five axis machining center: characterized by high precision of worktable rotation, large load-bearing capacity, suitable for continuous milling of ring and box parts.Horizontal cradle type five axis machining center: fast response speed, high precision, fast machining cycle, especially suitable for boring inclined holes of small and medium-sized parts.These types are suitable for different types of parts processing based on different mechanical structures and motion modes, providing efficient and accurate processing solutions.
Five Axis Machining is a mode of CNC machining.
According to ISO regulations, when describing the motion of CNC machine tools, a right-handed Cartesian coordinate system is used; The coordinate axis parallel to the spindle is defined as the z-axis, and the rotational coordinates around the x, y, and z-axis are A, B, and C, respectively. The motion of each coordinate axis can be achieved by the worktable or the tool, but the direction is defined by the relative motion direction of the tool to the workpiece. Usually, five axis linkage refers to linear interpolation motion of any five coordinates in x, y, z, A, B, and C.
In other words, the five axes refer to the three moving axes of x, y, and z plus any two rotating axes. Compared to the common three-axis (x, y, z degrees of freedom) machining, five axis machining refers to machining parts with complex geometric shapes that require the machining tool to be able to position and connect in the five degrees of freedom.
The machine tool used for five axis machining is usually referred to as a five axis machine tool or a five axis machining center. Five axis machining is commonly used in the aerospace field to process body components, turbine components, and impellers with free-form surfaces. Five axis machine tools can process different sides of workpieces without changing their position on the machine, greatly improving the machining efficiency of prismatic parts.