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In the selection of aluminum profile processing equipment, it is necessary to clearly prepare the object to be processed.In general, aluminum profile processing equipment can be used when it is necessary to use a large number of tools for processing on one workpiece.For the positioning of cumbersome workpieces, there is a porous processing positioning positioning accuracy, the use of aluminum profile processing machine features high positioning accuracy, it is easy to implement.
The repetitive production type workpieces are also more suitable for the use of aluminum profile processing equipment and are suitable for processing small pieces of single-piece production. With regard to small batches, the ones referred to are those that range from 1 to 100 pieces, but the number of batches is not much, but it requires repeated production.
In addition, the aluminum profile processing equipment is suitable for: the shape of the workpiece is different in size, but similar to the workpiece, it is easy to realize the aluminum part of the GT process.Afterwards, for parts with complex shapes, including complex shapes such as molds, aerospace parts, etc., various special-shaped parts can be processed on aluminum profile processing equipment by means of automatic programming technology.
Box type and board parts utilize rotary table on horizontal aluminum profile processing equipment.For the multi-face machining of the box parts, the more common ones include the spindle box, the pump body, the valve body, and the internal combustion engine block. If the top surface is to be clamped in one process, attention should be paid to the use of a pentahedron machining center.
Vertical aluminum profile processing equipment is suitable for machining cover lid cylinder heads, plane cams, etc. For the gantry machining center, it is used to process large aluminum box and plate parts, such as the locomotive cylinder block, processing center column, bed, and printing wallboard machine.
Selection of machine specifications According to the determined size of the machined workpiece, the table size of the required machine tool and the stroke of the three linear coordinate systems are determined accordingly.The size of the table should ensure that the workpiece can be smoothly mounted on the workpiece, the processing dimensions must be within the coordinates of the stroke, in addition to consider the limitations of the tool change space and coordinate interference area.
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