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According to this third element of today development, a circulation rotator for revolving a cross-sectional asymmetrical condition of a laminar flowing product is offered in a warm runner system for supplying a laminar flowing material. The hot runner system has (i) an upstream melt flow, (ii) a pair of intermediary thaw flows downstream from the upstream melt passage, and also (iii) for a minimum of one intermediary melt passage, an involved pair of downstream thaw passages downstream from the at the very least one intermediary thaw passage.


SHORT SUMMARY OF THE ILLUSTRATIONS For a better understanding of today creation as well as to reveal more plainly exactly how it may be carried right into effect, referral will currently be made using instance to the going along with illustrations, showing short articles made according to a recommended embodiment of today development, in which: FIG.


1 b, in a schematic profile, highlights a hot runner manifold based on the previous art; FIG. 2 is a sight on A-A of FIG. 16; FIG. 3, in a sectional sight, shows the thaw circulation in a key runner of the warm jogger manifold of FIG. 1 b as it branches right into a set of second joggers; FIG.


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16; FIG. 5, is a view on C-C of FIG. 16; FIG. 6, in a sectional sight, shows the thaw circulation of FIG. 4 as the second jogger branches into a pair of tertiary joggers; FIG. 7, is a view on D-D on FIG. 1 b; FIG. valve gate systems. 8, is a sight on E-E of FIG.


9, is a sectional sight on p-p of FIG. 10 a flow-rotating plug based on an embodiment of the innovation; FIG - valve gate systems. 10, in a viewpoint sight, highlights the flow-rotating plug of FIG. 8; FIG. 11 a, in a profile, highlights a portion of a pile mold having the plug of FIG.


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23; FIG. 25, is a view on M-M of FIG. 23; FIG. 26, is a sight on N-N of FIG. 23; FIG. 27, is a sight on O-O of FIG. 23; FIG. 28, in a schematic sight, highlights a warm runner system integrating a supporting plug based on an additional element of the here and now creation; FIG.




28; FIG. 30, is a view on M ′-M ′- of FIG. 28; FIG. 31, is a sight on N ′-N ′ of FIG. 28; as well as, FIG. 32, is a sight on O ′-O ′ of FIG. 30. COMPREHENSIVE SUMMARY OF THE INNOVATION Describing FIG. 1 a, there is highlighted in a side view, a section of a pile shot molding device 10 in accordance with the prior art.


The runner system 12 consists of a key runner 16 for obtaining melt from a melt resource (disappointed). At an initial branch 18, the main runner 16 branches into 2 secondary runners 20. The additional runners 20, at respective 2nd branches 22, then branch right into tertiary joggers 24. The tertiary joggers 24 supply thaw to connected nozzles 26, which infuse the thaw into linked mold tooth cavities (disappointed).


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1 b, there is highlighted in a profile, a manifold 14 b of a shot molding apparatus 10 b according to the prior art. The manifold 14 b includes a jogger system 12 b. The runner system 12 b includes a main runner 16 b for obtaining thaw from a melt source (disappointed). FIGS. 2-8 are explained relative to the manifold 14 b just for simplicity. Referring to FIG. 2, there is shown a sectional view of main jogger 16 b at A-A of FIG. 1 b. A heated peripheral part 28 of the melt around the jogger wall of the key jogger 16 b is shown by shading.


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2, the hotter thaw adjacent the jogger wall surface is significantly evenly dispersed regarding the jogger wall. At the initial branch 18 b, the warmed peripheral part 28 of the flow is separated into 2, as revealed in FIG. 3. Each of these halves of the warmed perimeter after that moves right into the secondary runners 20 b of the manifold 14 b.

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