Flexibility process for grouping processing tobacco
A technology of flexible method and processing method, which is applied to tobacco, tobacco preparation, tobacco processing and other directions, can solve the problems of insufficient module refinement, limited modular processing, insufficient product personalization, and insufficient degree of differentiation, so as to achieve product realization. Individualization and differentiation, reduction of mutual waiting times, and the effect of simplifying production
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Embodiment 1
[0029]For example, if an existing brand is divided into 3 modules, which are produced by vertical group processing, for the multi-line parallel layout design, it is only necessary to select any silk production line such as figure 1 In line A, or line B, or line C, the modules of this brand can be produced sequentially.
Embodiment 2
[0031] For example, if an existing brand is divided into 3 modules, and the production is carried out by vertical group processing, in terms of multi-line parallel arrangement design, choosing 3 silk production lines is figure 1 The ABC line in the simultaneous processing of its modules, via figure 1 The leaf integration or wire integration in the process realizes module mixing, solves the single-line or two-line design method, and produces 3 modules. There must be a certain line that produces 2 or more modules. The sequential production of modules causes the modules produced first to wait for later. The modules produced are mixed, resulting in the waiting state of the later stage of production, resulting in a waste of equipment capacity, and the problem that the storage time of each module is not easy to control. However, by adopting the multi-line parallel arrangement design of the present invention, this production mode can be easily realized.
Embodiment 3
[0033] If an existing brand is divided into multiple modules (3 or more), it is produced by vertical grouping processing. For multi-line parallel layout design, if the number of modules ≤ the number of production lines, such as figure 1 The A, B, C3 lines in the production line can adopt the module parallel production mode; if the number of modules > the number of production lines, such as figure 1 A, B, and C 3 wire-making lines in the production line, and when there are 4 or more modules, the parallel production mode of the first 3 modules can also be used, and more than one module produced later can adopt the queuing principle. The latter module can be produced. If several production lines are completed at the same time, the subsequent module can choose the production line closest to its own processing parameters for production, saving equipment adjustment time. Through the queuing principle and the proximity principle, the production efficiency can be effectively improved...
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