Speed variable pump
US-2018229414-A1 · Aug 16, 2018 · US
US11241810B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11241810-B2 |
| Application number | US-201816603676-A |
| Country | US |
| Kind code | B2 |
| Filing date | Apr 19, 2018 |
| Priority date | Apr 19, 2017 |
| Publication date | Feb 8, 2022 |
| Grant date | Feb 8, 2022 |
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A molding machine configured to achieve space saving and simplification of the hydraulic circuit. Provided is a molding machine configured to form a molded body by closing, in a state where a parison is disposed by injecting molten resin between first and second molds capable of being opened and closed, the first and second molds and maintaining pressure applied to the first and second molds. A hydraulic circuit to conduct oil for generating hydraulic pressure; the flow adjustment valve, a pressure adjustment valve, and a path control valve included in the hydraulic circuit; and a multi-functional valve unit.
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The invention claimed is: 1. A molding machine configured to form a molded body by closing first and second molds in a state where a parison is disposed by injecting molten resin between the first and second molds capable of being opened and closed, and then maintaining pressure applied to the first and second molds, comprising: a hydraulic circuit to conduct oil for generating hydraulic pressure; a flow adjustment valve, a pressure adjustment valve, and a path control valve included in the hydraulic circuit; and a multi-functional valve unit, wherein at least hydraulic mechanisms injecting the molten resin, opening and closing the molds, and maintaining the pressure applied to the first and second molds are driven by the hydraulic pressure generated by the oil sucked out and conducted to a downstream side from a tank storing the oil using a same pump; the flow adjustment valve adjusts a flow rate of the oil; the pressure adjustment valve adjusts the hydraulic pressure; the path control valve determines a conduction path of the oil in the hydraulic circuit; and the multi-functional valve unit integrally comprises the flow adjustment valve, the pressure adjustment valve, and the path control valve. 2. The molding machine of claim 1 , wherein the pump, the multi-functional valve unit, and the hydraulic mechanisms are arranged from an upstream side to a downstream side in the hydraulic circuit; and La>Lb, where La is an average value of path lengths between the multi-functional valve unit and the hydraulic mechanisms in the hydraulic circuit, and Lb is a path length between the pump and the multi-functional valve unit in the hydraulic circuit. 3. The molding machine of claim 1 , wherein the multi-functional valve unit has a substantially rectangular parallelepiped shape; and the flow adjustment valve, the pressure adjustment valve, and the path control valve are provided on a surface of the substantially rectangular parallelepiped shape. 4. The molding machine of claim 3 , wherein a plurality of channels in the multi-functional valve unit is provided so as to extend from a surface of the substantially rectangular parallelepiped shape along a direction perpendicular to the surface. 5. The molding machine of claim 1 , configured to have two stages and comprising a resin supply device for injecting the resin, wherein the resin supply device comprises an extruder for melting and kneading raw resin into molten resin; the first and second molds and the multi-functional valve unit are provided in a lower stage; the resin supply device is provided in an upper stage; the first and second molds and the multi-functional valve unit are disposed along a longitudinal direction of the extruder; and the first and second molds are opened and closed along the longitudinal direction of the extruder. 6. A molding machine comprising: a hydraulic circuit; a hydraulic mechanism for injection; a hydraulic mechanism for opening and closing; an injection part; and first and second platens on which first and second molds are mounted, wherein the hydraulic circuit conducts oil for generating hydraulic pressure; the hydraulic mechanism for injection and the hydraulic mechanism for opening and closing are driven by hydraulic pressure; the injection part is driven by the hydraulic mechanism for injection to inject molten resin between the first and second molds to form a parison; the first and second platens are configured to be driven by the hydraulic mechanism for opening and closing and open and close the first and second molds; the hydraulic circuit comprises a first accumulator for accumulating oil; the hydraulic mechanism for injection and the hydraulic mechanism for opening and closing are sequentially driven by hydraulic pressure generated by the oil discharged from the first accumulator; and the hydraulic circuit is configured to stop supplying the oil to the hydraulic mechanism for opening and closing from the first accumulator when the hydraulic mechanism for injection is driven by the hydraulic pressure and to stop supplying the oil to the hydraulic mechanism for injection from the first accumulator when the hydraulic mechanism for opening and closing is driven by the hydraulic pressure. 7. The molding machine of claim 6 , wherein the first accumulator is divided into a plurality of parts. 8. The molding machine of claim 6 , comprising a hydraulic mechanism for pressure maintenance, wherein the hydraulic mechanism for pressure maintenance is driven by hydraulic pressure; the hydraulic mechanism for pressure maintenance is configured to maintain pressure applied to the first and second molds in a closed state; the hydraulic circuit comprises a second accumulator for storing oil; and the hydraulic mechanism for pressure maintenance is driven by hydraulic pressure generated by the oil discharged from the second accumulator. 9. The molding machine of claim 8 , wherein the hydraulic pressure generated by the oil discharged from the second accumulator does not drive the hydraulic mechanism for opening and closing and the hydraulic mechanism for injection. 10. The molding machine of claim 6 , comprising a back-pressure adjustment valve for adjusting back pressure in the hydraulic mechanism for injection when molten resin is injected into the injection part. 11. The molding machine of claim 6 , comprising an extruder for melting raw resin into molten resin, wherein the first accumulator is disposed below the extruder and on a back side of the hydraulic mechanism for opening and closing. 12. A method for manufacturing a foam molded body by means of the molding machine of claim 6 , comprising: an injection step of injecting, by being driven by the hydraulic mechanism for injection, a foam molten resin between the first and second molds to form a foam parison; and a mold closing step of closing the first and second molds by being driven by the hydraulic mechanism for opening and closing, wherein the hydraulic mechanism for injection and the hydraulic mechanism for opening and closing are sequentially driven by hydraulic pressure generated by the oil discharged from the first accumulator. 13. The method of claim 12 , comprising a pressure maintenance step of maintaining pressure applied to the first and second molds in a closed state by a hydraulic mechanism for pressure maintenance, wherein the hydraulic mechanism for pressure maintenance is driven by hydraulic pressure generated by oil discharged from a second accumulator.
Component parts, details or accessories; Auxiliary operations · CPC title
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using a single drive system providing both the mould closing and clamping pressure and also the injection pressure, e.g. using a fixed injection piston · CPC title
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of articles of definite length, i.e. discrete articles {(B29C35/0227 takes precedence)} · CPC title
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