Application of PDM Technology in ISO/TS16949:2002 Implementation (2)

2) Linking of data. Correlation templates are set up correspondingly. The product source data in the same project will be linked to the same items of other templates after being input in one type of template. At the same time, the modification and deletion of data are also linked.

3) Two-way classification management of documents: Vertically generate TS16 sets with products as the main line
949 management document, as the task output is attached to the corresponding node of the project tree, it is convenient to view the quality file of any process at any stage of the project; horizontally, the file template type is used to sort and summarize each type of file, and the same type of files of different products are returned. Classes are in the same directory, which facilitates the reference and comparison of different products in the same process operation.

4) Document Query, Permission and Printing: Supports the classification of documents, provides a variety of search methods, in addition to the encoding, name and classification in the general query, but also includes the type of project, the task and the different status of the document. Permissions are designed based on the different levels of confidentiality of the document, and people in different project roles can only view documents with corresponding permissions. The file is applied for printing and supports the batch printing function of the associated file.

2.3 Statistical analysis of document data

1) Implement quality data management in the form of object management: PDM is based on products. According to the performance of products at different stages of the life cycle, the data can be divided into five categories, namely: workflow data, design BOM data, Quality file data, process BOM data, and manufacturing BOM data are shown in Table 1. The product quality document data is the guarantee for the normal design and production of the product, so it should also be managed as the source data of the product.


Although there are big differences in the way these data are expressed, in the PDM system, they are encapsulated in an object manner, and unified version control is performed, each completing a relatively independent data life cycle (designing an electronic audit, filing, and changing). .

2) Data analysis: The front-end PDM system reads the production process data in the quality file through the data acquisition interface; the back-end outputs the collected production process data to the statistical analysis software through the integration with the statistical analysis software, and analyzes and processes the data. The result is encapsulated in the form of an object.

3) Knowledge reuse: Encapsulate commonly used professional terms and statistical data in the PDM knowledge base. When editing quality documents, such as control plans, the data of the knowledge base can be read through the relevant connection, and the human quality file is automatically filled in. Manual manual labor is avoided and output in the document format required by TS16949.

3. Aerospace molding company implements TS16949 standard implementation with PDM system

The company is a company specializing in the research, development, production and sales of automotive parts and plastic molds. During the implementation of the TS16949 standard, the enterprise found that the standard has a wide range of requirements for implementing software. The simple quality management software cannot fully meet its strict requirements on product design characteristics and process characteristics. In April 2006, the company's technology center began to fully implement the PDM system, which achieved the above two requirements and achieved remarkable results. The basic implementation structure is shown in Figure 2.

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