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Acrylic PC PMMA Prototype CNC Machining 0.15mm Tolerance Polishing Surface

    Buy cheap Acrylic PC PMMA Prototype CNC Machining 0.15mm Tolerance Polishing Surface from wholesalers
     
    Buy cheap Acrylic PC PMMA Prototype CNC Machining 0.15mm Tolerance Polishing Surface from wholesalers
    • Buy cheap Acrylic PC PMMA Prototype CNC Machining 0.15mm Tolerance Polishing Surface from wholesalers

    Acrylic PC PMMA Prototype CNC Machining 0.15mm Tolerance Polishing Surface

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    Brand Name : Zhishun
    Price : Negotiation
    Model Number : Zhishun
    Delivery Time : 3-10 working days after received your payment
    Payment Terms : T/T
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    Acrylic PC PMMA Prototype CNC Machining 0.15mm Tolerance Polishing Surface

    Transparent Acrylic PC / PMMA Plastic Rapid Prototype High Polishing Part


    In plastic CNC machining (Digital Computer Control), the part is manufactured by machining in the mass of a plastic block by digital milling machines. This rapid prototyping technology is suitable for unit production in the context of functional testing.

    CNC machining of plastic prototype parts is a so-called “subtractive” method because there is removal of material. A wide selection of resins allows parts to be obtained in the “right material”, thus allowing mechanical properties close to the injection-moulded part (ABS, PC, PP, PVC, POM, PMMA, PA 6/66).

    This is the most efficient and economical technology for the rapid manufacturing of fewer than ten prototypes or plastic models.


    Company Information:


    Item NameHigh Polishing Transparent Acrylic Clear PC PMMA CNC Rapid Prototyping
    Product FeaturePMMA rapid prototyping
    CNC max sizeNo max size but bigger
    3D printer max size580mm x 580mm x 360mm
    Tolerance+/-0.05mm
    Material AvailablePlastic:ABS,PMMA,PC,PP,POM,PA,Silicon,Rubber
    Metal: aluminum,copper,brass,stainless steel,sheet metal

    Available

    rapid prototyping

    processes

    Prototype design
    CNC precision machining
    SLA/SLS 3D printer prototyping
    Silicone Rubber Mold and Vacuum Casting
    RIM(Reaction Injection Molding)
    Sheet metal fabrication
    Mould manufacturing
    Surface finishingPainting, polishing, silk printing, anodizing,electroplating,etc
    Delivery time3-15 days usually,and can be discussed upon the quantity
    PackingCarton box,wooden case or as specified

    In manufacturing, computer numerical control (CNC) or simply numerical control (NC) is the automated control of machining tools (drills, boring tools, lathes) by means of a computer, in which a NC machine operates on a piece of material (metal, plastic, wood, ceramic, or composite) to transform it to precise specifications. NC machines combine a motorized maneuverable tool and often a motorized maneuverable platform, which are both controlled by a computer core, according to specific input instructions. Instructions are delivered to an NC machine in the form of graphical computer-aided design (CAD) files, which are transformed into a sequential program of machine control instructions, and then executed.


    As with CNC subtractive methods, the computer-aided-design – computer-aided manufacturing CAD -CAM workflow in the traditional Rapid Prototyping process starts with the creation of geometric data, either as a 3D solid using a CAD workstation, or 2D slices using a scanning device. For Rapid prototyping this data must represent a valid geometric model; namely, one whose boundary surfaces enclose a finite volume, contain no holes exposing the interior, and do not fold back on themselves.


    In other words, the object must have an "inside". The model is valid if for each point in 3D space the computer can determine uniquely whether that point lies inside, on, or outside the boundary surface of the model. CAD post-processors will approximate the application vendors' internal CAD geometric forms (e.g., B-splines) with a simplified mathematical form, which in turn is expressed in a specified data format which is a common feature in additive manufacturing: STL (stereolithography) a de facto standard for transferring solid geometric models to SFF machines. To obtain the necessary motion control trajectories to drive the actual SFF, rapid prototyping, 3D printing or additive manufacturing mechanism, the prepared geometric model is typically sliced into layers, and the slices are scanned into lines (producing a "2D drawing" used to generate trajectory as in CNC's toolpath), mimicking in reverse the layer-to-layer physical building process.

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