Biaxial stretch blow-molded container
US-2015210420-A1 · Jul 30, 2015 · US
US10766183B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10766183-B2 |
| Application number | US-201515528906-A |
| Country | US |
| Kind code | B2 |
| Filing date | Oct 13, 2015 |
| Priority date | Nov 27, 2014 |
| Publication date | Sep 8, 2020 |
| Grant date | Sep 8, 2020 |
A practical reading order for non-experts. Skip the full description unless you need deep technical detail.
What the patent document calls the invention.
A short plain-language summary of the technical disclosure.
Who owns or filed the patent and who is credited as inventor.
Filing, priority, publication, and grant dates set the timeline.
The legal scope of protection — read this for what is actually claimed.
Technology tags used to group this patent with similar filings.
Prior art links and similar publications in this corpus.
Official abstract text for this publication.
A liquid blow-molding method for molding a delamination container from a resin container material. The resin container material includes an outer layer, an inner layer, and an ambient air introduction hole. The delamination container includes an outer layer body and an inner layer body, which is laminated on the inner side of the outer layer body in a manner such that the inner layer body is separatable from the outer layer body. The liquid blow-molding method includes the container molding step of molding the container material into the delamination container by supplying a pressurized liquid into the container material; and the inner layer body separation step of separating the inner layer body from the outer layer body by sucking the liquid out of the delamination container.
Opening claim text (preview).
The invention claimed is: 1. A liquid blow-molding method for molding a delamination container from a resin container material, the resin container material including an outer layer, an inner layer, and an ambient air introduction hole provided in the outer layer to communicate between the outer layer and the inner layer, and the delamination container including an outer layer body and an inner layer body laminated on an inner side of the outer layer body in a manner such that the inner layer body is separatable from the outer layer body, the liquid blow-molding method comprising: a container molding step of molding the resin container material into the delamination container by actuating a plunger pump in a positive direction and supplying a pressurized liquid into the resin container material; and an inner layer body separation step of separating the inner layer body from the outer layer body by actuating the plunger pump in a reverse direction and sucking the pressurized liquid, which has been filled in the delamination container, out of the delamination. 2. The liquid blow-molding method for molding a delamination container according to claim 1 , the liquid blow-molding method further comprising: an inner layer body return step, performed after the inner layer body separation step, of laminating the inner layer body on an inner surface of the outer layer body by supplying the pressurized liquid again into the delamination container, in which the inner layer body has been separated from the outer layer body. 3. The liquid blow-molding method for molding a delamination container according to claim 2 , wherein the pressurized liquid supplied into the delamination container in the inner layer body return step is less in amount than the pressurized liquid supplied into the resin container material in the container molding step. 4. The liquid blow-molding method for molding a delamination container according to claim 2 , wherein, in the container molding step, the pressurized liquid is supplied into the resin container material by actuating a plunger pump in a positive direction, in the inner layer body separation step, the pressurized liquid, which has been filled in the delamination container, is sucked out of the delamination container by actuating the plunger pump in a reverse direction, and in the inner layer body return step, the pressurized liquid is supplied into the delamination container by actuating the plunger pump in the positive direction again. 5. The liquid blow-molding method for molding a delamination container according to claim 3 , wherein, in the container molding step, the pressurized liquid is supplied into the resin container material by actuating a plunger pump in a positive direction, in the inner layer body separation step, the pressurized liquid, which has been filled in the delamination container, is sucked out of the delamination container by actuating the plunger pump in a reverse direction, and in the inner layer body return step, the pressurized liquid is supplied into the delamination container by actuating the plunger pump in the positive direction again. 6. The liquid blow-molding method for molding a delamination container according to claim 1 , wherein, the resin container material comprises a preform having a bottomed tubular shape. 7. The liquid blow-molding method for molding a delamination container according to claim 6 , the liquid blow-molding method further comprising: a stretching step, performed prior to the container molding step, of stretching the preform in an axis direction by a stretching rod, wherein the inner layer body separation step is performed after the stretching rod is withdrawn from the delamination container. 8. The liquid blow-molding method for molding a delamination container according to claim 2 , wherein, the resin container material comprises a preform having a bottomed tubular shape. 9. The liquid blow-molding method for molding a delamination container according to claim 3 , wherein, the resin container material comprises a preform having a bottomed tubular shape. 10. The liquid blow-molding method for molding a delamination container according to claim 4 , wherein, the resin container material comprises a preform having a bottomed tubular shape. 11. The liquid blow-molding method for molding a delamination container according to claim 5 , wherein, the resin container material comprises a preform having a bottomed tubular shape. 12. The liquid blow-molding method for molding a delamination container according to claim 8 , the liquid blow-molding method further comprising: a stretching step, performed prior to the container molding step, of stretching the preform in an axis direction by a stretching rod, wherein the inner layer body separation step is performed after the stretching rod is withdrawn from the delamination container. 13. The liquid blow-molding method for molding a delamination container according to claim 9 , the liquid blow-molding method further comprising: a stretching step, performed prior to the container molding step, of stretching the preform in an axis direction by a stretching rod, wherein the inner layer body separation step is performed after the stretching rod is withdrawn from the delamination container. 14. The liquid blow-molding method for molding a delamination container according to claim 10 , the liquid blow-molding method further comprising: a stretching step, performed prior to the container molding step, of stretching the preform in an axis direction by a stretching rod, wherein the inner layer body separation step is performed after the stretching rod is withdrawn from the delamination container. 15. The liquid blow-molding method for molding a delamination container according to claim 11 , the liquid blow-molding method further comprising: a stretching step, performed prior to the container molding step, of stretching the preform in an axis direction by a stretching rod, wherein the inner layer body separation step is performed after the stretching rod is withdrawn from the delamination container.
Means for providing controlled or limited stretch ratio · CPC title
Stretching rods · CPC title
using multilayered preforms or parisons · CPC title
characterised by using particular environment or blow fluids other than air · CPC title
Bonding · CPC title
Related publications grouped by family.
Answers are generated from the same data shown on this page.