CNC plasma cutting machine programming method

CNC plasma cutting machine programming is generally divided into manual and automatic two ways, these two methods have their own advantages, in some cases can use automatic programming, which is based on the actual situation to decide what kind of programming method , Now for everyone to introduce about the plasma CNC cutting machine programming.

The coordinate information of the part contours during the automatic programming of the CNC plasma cutter can be completed by the POLYLINE command, which consists of a series of straight lines and arcs connected end to end. In the graphics database, information is stored in the form of vertices (ie, connected points) of sub-entities. There are two pieces of information related to the position of a shape: the vertex (VERT.Ex) coordinate value, and the vertex convexity (BULGE). After the PoLYline command draws the contour outline of the entity, you can use the o and ectARX functions to easily know the coordinate values ​​and crown values ​​of each vertex. In this way, the starting point, end point, coordinates, and starting point, end point, and radius of the straight line on the part contour are obtained. , the center of the geometric information. When the contour requirements are not strict, such as guardrail flower shape, text, etc., can also be used LINE command, using the principle of rough interpolation, continuous description of the contour shape of the parts, direct generation of the top.

The general process of CNC plasma cutting machine manual programming is as follows: Analyze the part drawing, a numerical control process, a mathematical process, write an NC code, check and debug the NC program, a piece of test, an error analysis, tedious, tedious, error-prone, and difficult to dictate. memory. Too many description points for complex machining parts are even more inapplicable. When programming automatically, AutoCAD 20oo can generate the NC machining code directly from the graphic entity that describes the outline of the part by using two-dimensional graphics, which can avoid manual programming of complex memories. Significantly improve programming efficiency and programming quality. Especially in complex contour programming, it can give full play to its advantages.

CNC plasma cutting machine programming is generally divided into manual and automatic two ways, these two methods have their own advantages, in some cases can use automatic programming, which is based on the actual situation to decide what kind of programming method , Now for everyone to introduce about the plasma CNC cutting machine programming.

The coordinate information of the part contours during the automatic programming of the CNC plasma cutter can be completed by the POLYLINE command, which consists of a series of straight lines and arcs connected end to end. In the graphics database, information is stored in the form of vertices (ie, connected points) of sub-entities. There are two pieces of information related to the position of the shape: the vertex (VERT.Ex) coordinate value, and the vertex convexity (BULGE). After the PoLYline command draws the contour outline of the entity, you can use the o and ectARX functions to easily know the coordinate values ​​and crown values ​​of each vertex. In this way, the starting point, end point, coordinates, and starting point, end point, and radius of the straight line on the part contour are obtained. , the center of the geometric information. When the contour requirements are not strict, such as guardrail flower shape, text, etc., can also be used LINE command, using the principle of rough interpolation, continuous description of the contour shape of the parts, direct generation of the top.

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Green lasers include DPSS (diode-pumped solid-state) Laser and Diode Laser . They are widely used in photodynamic therapy, laser communication and material analysis etc.Fllowing wavelength are available for Green Laser :  501 nm 514 nm 515 nm  522 nm  523.5 nm  526.5 nm  532 nm  540 nm 543 nm 550 nm 552 nm 555 nm  556 nm  561 nm 

Green High energy laser: energy >450 mJ;
Green narrow pulse width: pulse width <0.8 ns;Green High Power Laser: power >200 W;
Green high stability laser: stability <0.1%;
Green Low Noise Laser: noise <0.25%;
Green Single Longitudinal Mode Laser: line width <0.00001 nm.
Green high power laser: power >200 W;
Green high stability laser: stability <0.1%;
Green low noise laser: noise <0.25%;
Green single longitudinal mode laser: line width <0.00001 nm.

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