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Molding diagram

Fig. 3. Schematic process flow diagram for an imitation cheese product having the following formulation dry ingredients, calcium caseinate (or rennet casein), 24.5 wt % tapioca flour, 3.0 wt % salt, 2.16 wt % adipic acid, 0.6 wt % vitamins and minerals, 0.1 wt % sorbic acid (mold inhibitor), 0.5 wt % fat—color blend, soybean oil hydrogenated to a Wiley melting point of 36°C, 21.3 wt % lactylated monoglycerides, 0.05 wt % red-orange coloring, 0.01 wt... Fig. 3. Schematic process flow diagram for an imitation cheese product having the following formulation dry ingredients, calcium caseinate (or rennet casein), 24.5 wt % tapioca flour, 3.0 wt % salt, 2.16 wt % adipic acid, 0.6 wt % vitamins and minerals, 0.1 wt % sorbic acid (mold inhibitor), 0.5 wt % fat—color blend, soybean oil hydrogenated to a Wiley melting point of 36°C, 21.3 wt % lactylated monoglycerides, 0.05 wt % red-orange coloring, 0.01 wt...
Fig. 2. Schematic diagram of the molding apparatus used for the manufacture of ORNL s porous carbon fiber-carbon binder composites. Fig. 2. Schematic diagram of the molding apparatus used for the manufacture of ORNL s porous carbon fiber-carbon binder composites.
The manufacture of elastomeric radial lip seals centers around the molding operation. Figure 2 [1] illustrates the manufacturing flow diagram for the two primary processes used compression molding and injection molding. [Pg.451]

Figure 2 Typical process flow diagrams (a) compression molding, (b) injection molding. Figure 2 Typical process flow diagrams (a) compression molding, (b) injection molding.
Figure 25 Schematic diagram of an injection/transfer molding machine [9]. (a) Hydraulic separation unit for upper mold plate, (b) Hydraulic separation unit for middle mold plate, (c) Shuttle system with automatic sprue nipple removal, (d) Brushing unit for cleaning middle mold plate, (e) Hydraulic ejector for automatic ejection. Figure 25 Schematic diagram of an injection/transfer molding machine [9]. (a) Hydraulic separation unit for upper mold plate, (b) Hydraulic separation unit for middle mold plate, (c) Shuttle system with automatic sprue nipple removal, (d) Brushing unit for cleaning middle mold plate, (e) Hydraulic ejector for automatic ejection.
Fig. 6-25 Flow diagram virgin plastics, molded products with runners, granulating runners, to regrind blend with virgin plastics. Fig. 6-25 Flow diagram virgin plastics, molded products with runners, granulating runners, to regrind blend with virgin plastics.
Fig. 8-73 A 2-D molding area diagram (MAD) that plots injection pressure (ram pressure) vs. mold temperature. Fig. 8-73 A 2-D molding area diagram (MAD) that plots injection pressure (ram pressure) vs. mold temperature.
Fig. 8-74 After a 3-D molding volume diagram (MVD) is constructed, it can be analyzed to find the optimum combination of melt temperature, mold temperature, and injection or ram pressure. Fig. 8-74 After a 3-D molding volume diagram (MVD) is constructed, it can be analyzed to find the optimum combination of melt temperature, mold temperature, and injection or ram pressure.
K Kunststoffe (plastic in German) MAD molding area diagram... [Pg.652]

Figure 14.1 Schematic diagram of extrusion blow molding ... Figure 14.1 Schematic diagram of extrusion blow molding ...
Figure 6. X-ray fiber diagram of poly(5-methyl-1,4-hexadiene) prepared with a Etj,AlCl/S-TiCl, catalyst at 0°C in pentane solvent. Compression molded sample cold drawn to four times its original length. Figure 6. X-ray fiber diagram of poly(5-methyl-1,4-hexadiene) prepared with a Etj,AlCl/S-TiCl, catalyst at 0°C in pentane solvent. Compression molded sample cold drawn to four times its original length.
Figure 7.2 Schematic diagram of an ingot in a refractory mold. From Z. Jastrzebski, The Nature and Properties of Engineering Materials, 2nd ed. Copyright 1976 by John Wiley Sons, Inc. This material is used by permission of John Wiley Sons, Inc. Figure 7.2 Schematic diagram of an ingot in a refractory mold. From Z. Jastrzebski, The Nature and Properties of Engineering Materials, 2nd ed. Copyright 1976 by John Wiley Sons, Inc. This material is used by permission of John Wiley Sons, Inc.
Figure 7.75 Schematic diagram of eight-cavity mold for injection molding operations. The molded parts of interest are indicated by the shaded regions. Figure 7.75 Schematic diagram of eight-cavity mold for injection molding operations. The molded parts of interest are indicated by the shaded regions.
Figure 7.81 Schematic diagram of rotating mold system used in continuous extrusion blow molding. Reprinted, by permission, from A. B. Strong, Plastics Materials and Processing, 2nd ed., p. 489. Copyright 2000 by Prentice Hall, Inc. Figure 7.81 Schematic diagram of rotating mold system used in continuous extrusion blow molding. Reprinted, by permission, from A. B. Strong, Plastics Materials and Processing, 2nd ed., p. 489. Copyright 2000 by Prentice Hall, Inc.
Figure 7.85 Schematic diagram of the reaction injection molding (RIM) process. Figure 7.85 Schematic diagram of the reaction injection molding (RIM) process.
Figure 7.90 Schematic diagram of a typical resin transfer molding (RTM) process. Reprinted, by permission, M. Schwartz, Composite Materials Handbook, 2nd ed., p. 4.56. Copyright 1992 by McGraw-HiU. Figure 7.90 Schematic diagram of a typical resin transfer molding (RTM) process. Reprinted, by permission, M. Schwartz, Composite Materials Handbook, 2nd ed., p. 4.56. Copyright 1992 by McGraw-HiU.
Fig 23. Diagram of molding of molten polymer flat film canvas 1 — flat-slit extrusion head (spinneret) 2 — receiving roller ("drum )... [Pg.33]


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See also in sourсe #XX -- [ Pg.141 ]




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Mold area diagram

Mold volume diagram

Molding area diagram

Molding volume diagram

Molding volume diagram (MVD

Three-plate injection mold diagram

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