Milling machine processing technology, milling machine processing technology has those

Updated on technology 2024-03-01
9 answers
  1. Anonymous users2024-02-06

    Is it to mill the outer circle, or the inner hole? What are the two sides of the two-sided approach? What is an electronic ruler? Is it a digital caliper? What is a count?

    Round milling with discs, milling inner holes can also be with boring and milling heads. Milling double-sided processing first positions the positioning datum. When the center of the workpiece circle coincides with the center of rotation of the tool along the table feed direction, the amount of table movement is a variable of the radius of the workpiece.

    If the center does not coincide, you can use the trial cutting method: the worktable feeds an integer quantity, mills for a week, measures how much the diameter or radius of the workpiece is reduced, and then estimates the difference between the scale value and the actual one.

    I don't understand the meaning of your question, can you be clearer? I'm from Beijing, you're **? The terminology varies from place to place.

  2. Anonymous users2024-02-05

    Is it CNC milling, I don't understand.

  3. Anonymous users2024-02-04

    Dear, in response to your problem, Xiaolu found the following results: the milling machine processing technology is as follows: 1. Milling: it is divided into plane milling, façade milling, spiral milling, etc., which is used to mill various surfaces and cambers, complex surfaces, etc.; 2. Broaching:

    Also known as broach cutting, it is divided into cylindrical surface broaching, groove broaching, conical broaching, etc., which is used for broaching cylindrical, groove, conical, etc.; 3. Keyway milling: used for cutting keyway, generally used for connecting screws; 4. Grooving processing: used for cutting the groove of copper, aluminum, steel and other metal materials, and can also cut holes and linear grooves; 5. Broach drilling:

    It is used for drilling holes, generally used for installing screws and cantilever frames, etc.; 6. Milling cutter drilling: used for drilling holes, generally used for installing screws and cantilever frames, etc.; 7. Broach cutting: used for cutting planes, curved surfaces and complex surfaces, generally used for cutting holes and grooves; 8. Pulse milling:

    It is used for milling surfaces, complex surfaces, etc., and is generally used for cutting holes and grooves; 9. Broach broaching: used for broaching cylindrical, grooved, conical, etc.; 10. Broach keyway processing: used for cutting keyway, generally used for connecting screws; 11. Broach cutting:

    It is used for cutting cylinders, geometry, cones, etc.; 12. Multi-head milling: used for milling surfaces, complex surfaces, etc.;

  4. Anonymous users2024-02-03

    Modeling-programming-blanking-tool preparation-machine straightening-finding coordinates-tool setting-input parameters-running program.

  5. Anonymous users2024-02-02

    Macro programs are compared with ordinary programs, the program words of general programs are constants, and a program can only describe one geometric shape, so it lacks flexibility and applicability. And the user macro program ontology can be programmed with variables, which is okay.

  6. Anonymous users2024-02-01

    Did you learn to code? Otherwise, you can't take the next step...

  7. Anonymous users2024-01-31

    The methods of milling machine processing include end milling and horizontal milling.

    The corresponding machine tools are vertical milling machines and horizontal milling machines.

    The horizontal milling machine can be used to process various planes, inclined planes, grooves, etc. with various cylindrical milling cutters, disc milling cutters, angle milling cutters, profile milling cutters and face milling cutters. If appropriate milling machine accessories are used, special shaped parts such as gears, cams, arc grooves and spiral surfaces can be processed, and milling machine accessories such as universal milling heads, round worktables, and indexing heads can be configured, and medium and small parts can also be drilled after using boring bars. With the addition of an end mill head, an end mill can be used for cutting (the end mill head is a special accessory) to further expand the range of use of the machine.

    This machine tool is suitable for all kinds of machining industries.

    Compared with the vertical milling machine and the horizontal milling machine, the main difference is that the spindle is vertically arranged, in addition to the different spindle arrangement, the workbench can be lifted up and down, and the milling cutter used in the vertical milling machine is relatively flexible and has a wide range of applications. End mills, clamping cutterheads, drills, etc. can be used. It can be milled keyway, milling plane, boring, etc.

    The horizontal milling machine can also use the above tools, but it is not as convenient as end milling, mainly because the hanger can be used to enhance the strength of the tool (mainly side and face milling cutters, sheet milling cutters, etc.). It can be used for slotting, plane milling, parting, etc. Horizontal milling machines generally come with an end mill head, which is not as powerful and rigid as a vertical mill, but it is sufficient for end milling.

    This makes the horizontal milling machine more powerful than the vertical milling machine in general. Vertical milling machines do not have this feature and cannot process workpieces suitable for horizontal milling. The productivity is higher than that of horizontal milling machines.

    Product use: It is suitable for processing planes, inclined planes, grooves, holes, etc. of various parts, and is an ideal processing equipment for machinery manufacturing, molds, instruments, meters, automobiles, motorcycles and other industries.

  8. Anonymous users2024-01-30

    Milling is the process of fixing the blank and passing it through the blank with a high-speed rotating milling cutter to cut out the desired shape and features. Conventional milling is often used to mill simple contour features such as contours and slots. CNC milling machines can perform the machining of complex shapes and features.

    The milling and boring machining center can carry out three-axis or multi-axis milling and boring processing, which is used for machining, molds, inspection tools, fetal tools, thin-walled complex curved surfaces, artificial prostheses, blades, etc. When choosing CNC milling content, we should give full play to the advantages and key role of CNC milling machine.

    Processing technology: 1) Curve profile on the workpiece, straight line, arc, thread or spiral curve, especially the curve profile such as non-circular curve and list curve given by mathematical expression.

    2) The spatial curve or surface of the mathematical model has been given.

    3) Parts that are simple in shape, but have a wide range of sizes and are difficult to detect.

    4) The inner cavity and the inside of the box that are difficult to observe, control and detect when processed with ordinary machine tools.

    5) Holes or planes with strict size requirements.

    6) Simple surfaces or shapes that can be machined in a single clamping.

    7) The use of CNC milling processing can effectively improve productivity, reduce the labor intensity of the general processing content.

    The main processing objects suitable for CNC milling are the following categories: plane profile parts, variable bevel parts, space surface profile parts, holes and threads, etc.

  9. Anonymous users2024-01-29

    Climb milling and conventional milling. Features of climb milling and conventional milling:

    1.In climb milling, the cutting thickness of each cutter varies from small to large. When the cutter tooth is just in contact with the workpiece, the cutting thickness is zero, and only when the cutter tooth slides a certain distance on the cutting surface left by the previous cutter tooth, and the cutting thickness reaches a certain value, the cutter tooth really starts cutting.

    Conventional milling makes the cutting thickness gradually change from large to small, and the sliding distance of the cutter teeth on the cutting surface is also very small. In addition, the distance traveled by the cutter teeth on the workpiece is also shorter than that of conventional milling. Therefore, under the same cutting conditions, the tool is prone to wear when conventional milling is used.

    2.In conventional milling, because the horizontal cutting force of the milling cutter on the workpiece is in the opposite direction to the direction of the workpiece's feed movement, the worktable screw and nut can always keep one side of the thread tightly together. And during down milling, it is not, because the direction of horizontal milling force is consistent with the direction of workpiece feed movement, when the force of cutter teeth on workpiece is larger, due to the existence of gap between workbench screw and nut, workbench will produce channeling, not only destroys the smoothness of cutting process, affects the processing quality of workpiece, and can damage the tool when serious.

    3.In the case of conventional milling, the cold and hard phenomenon of the machined surface is more serious due to the large friction between the cutter teeth and the workpiece.

    4.During down-milling, the cutter teeth are cut from the surface of the workpiece every time, so it is not suitable for machining workpieces with hard skin.

    5.The average cutting thickness is larger, the cutting distortion is smaller, and the power consumption is lower than that of conventional milling (5% less power consumption when milling carbon steel and 14% less when milling difficult-to-machine materials).

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