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    used as the platform for the new mold design application.
    Fig. 1 shows a Windows-native 3D injection mold designsystem compared with IMOLD. Users’ applications can be
    created and run as a standalone exe file or as a User DLL
    or Extension DLL in SolidWorks. The SolidWorks Add-In
    Manager allows users to control which third party software
    is loaded at any time during their SolidWorks session. More
    than one package can be loaded at once, and the settings
    will be maintained across SolidWorks sessions.
    3.1. SolidWorks
    SolidWorks recently emerged as one of the 3D product de-
    sign software for Windows, providing one of the most pow-
    erful and intuitive mechanical design solution in its class. In
    SolidWorks, parts are created by building a “base feature,”
    and adding other features such as bosses, cuts, holes, fil-
    lets, or shells. The base feature may be an extrusion, revo-
    lution, swept profile, or loft. To create a base feature, sketch
    a two-dimensional geometric profile and move the profile
    through space to create a volume. Geometry can be sketched
    on construction planes or on planar surfaces of parts.
    Feature-based solid-modeling programs are making
    two-dimensional design techniques obsolete. However,
    Unix-based solid-modeling software are expensive. With
    the introduction of SolidWorks for Microsoft Windows,
    the cost is less than the price of earlier dimension driven
    solid-modeling programs [3].
    3.2. Parasolid as a 3D kernel
    SolidWorks uses Parasolid as a 3D kernel. Parasolid ker-
    nel modeling toolkit, is recognized as a world’s leading,
    production-proven core solid modeler. Designed as an exact
    boundary-representation solid modeler, Parasolid provides
    robust solid-modeling, generalized cellular modeling and in-
    tegrated surface/sheet modeling capabilities and is designed
    for easy integration into CAD/CAM/CAE systems to give
    rapid time to market. Its extensive functionality is supplied
    as a library of routines with an object-oriented program-
    ming interface. It is essentially a solid modeler, which can
    be used to [4]: (i) build and manipulate solid objects; (ii)
    calculate mass and moments of inertia, and perform inter-
    ference detection; (iii) output the objects in various picto-
    rial ways; (iv) store the objects in some sort of database or
    archive and retrieve them later; and (iv) support freeform
    surfaces.
    3.3. API [5]
    The SolidWorks application programming interface (API)
    is an OLE programming interface to SolidWorks. The API
    contains hundreds of functions that can be called fromVisual
    Basic, VBA (Excel, Access, etc.), C, C++, or SolidWorks
    macro files. These functions provide the programmer with
    direct access to SolidWorks functionality such as creating
    a line, extruding a boss, or verifying the parameters of a
    surface.
    The API interface uses an object-oriented approach. All
    the API functions are methods or properties that apply to an
    object. Fig. 2 is one particular view of the SolidWorks API
    objects.
    SolidWorks exposes functionality through OLE automa-
    tion using Dispatch and also through standard COM objects.
    The Dispatch interface [6] will package arguments and re-
    turn values as Variants so that languages such as Basic can1、引言
    在广泛的产品范围中更广泛的使用塑料零件,从消费产品到机械、汽车和飞机,注塑工艺已被确认为一个重要的制造工艺,模具设计过程通常是新产品的开发至关重要的一步。按常规,模具设计一直是一个很"神化"的艺术,需要多年的经验,才可以相对精通。由于初期学习这项艺术中比较困难,越来越少的人在这一领域从经验和知识的专家们身上受益。为了改变目前的状况,其方法之一是使用了计算机辅助设计(CAD)系统
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