Method for producing foamed molded product

US9884439B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9884439-B2
Application numberUS-201514819100-A
CountryUS
Kind codeB2
Filing dateAug 5, 2015
Priority dateFeb 18, 2013
Publication dateFeb 6, 2018
Grant dateFeb 6, 2018

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A method for producing a foamed molded product includes: using a molding apparatus including a plasticizing cylinder having a high pressure kneading zone and a pressure reduction zone; and a screw; controlling a pressure of the pressure reduction zone to be a first pressure in a state that communication between the high pressure kneading zone and the pressure reduction zone is shut off, the first pressure being not less than an atmospheric pressure and not more than a maximum pressure of the high pressure kneading zone which is reached in a case that a molten resin is brought in contact and kneaded with a physical foaming agent; controlling back pressure of the screw to be a second pressure which is not less than the first pressure; and measuring a predetermined amount of the molten resin from which the gasified physical foaming agent has been separated.

First claim

Opening claim text (preview).

The invention claimed is: 1. A method for producing a foamed molded product, the method comprising: using a molding apparatus including a plasticizing cylinder having a high pressure kneading zone in which a molten resin, obtained by plasticizing a thermoplastic resin, is brought in contact and kneaded with a physical foaming agent, and a pressure reduction zone in which the gasified physical foaming agent is discharged from the molten resin brought in contact and kneaded with the physical foaming agent; and a screw arranged rotatably and movably back and forth in the plasticizing cylinder; plasticizing the thermoplastic resin to provide the molten resin; shutting off communication between the high pressure kneading zone and the pressure reduction zone; bringing in contact and kneading the molten resin with the physical foaming agent in a state that the communication between the high pressure kneading zone and the pressure reduction zone is shut off; controlling a pressure of the pressure reduction zone to be a first pressure in a state that the communication between the high pressure kneading zone and the pressure reduction zone is shut off, the first pressure being not less than an atmospheric pressure and not more than a maximum pressure of the high pressure kneading zone which is reached in a case that the molten resin is brought in contact and kneaded with the physical foaming agent; communicating the high pressure kneading zone and the pressure reduction zone; lowering a pressure of the molten resin brought in contact and kneaded with the physical foaming agent so as to separate the gasified physical foaming agent from the molten resin; controlling a back pressure of the screw to be a second pressure which is not less than the first pressure; measuring a predetermined amount of the molten resin from which the gasified physical foaming agent has been separated; and foaming and molding the measured molten resin into a desired shape. 2. The method for producing the foamed molded product according to claim 1 , wherein the second pressure is greater than the first pressure by a value in a range of 0.5 MPa to 5 MPa. 3. The method for producing the foamed molded product according to claim 1 , wherein the second pressure is not more than 10 MPa. 4. The method for producing the foamed molded product according to claim 1 , wherein the controlling of the pressure of the pressure reduction zone includes controlling a pressure of a gas in the pressure reduction zone. 5. The method for producing the foamed molded product according to claim 1 , wherein the controlling of the pressure of the pressure reduction zone includes introducing an inert gas into the pressure reduction zone so as to pressurize the pressure reduction zone and/or discharging the gasified physical foaming agent from the pressure reduction zone by using a back pressure valve. 6. The method for producing the foamed molded product according to claim 1 , wherein in a case that the gasified physical foaming agent is separated from the molten resin, a temperature of the pressure reduction zone is controlled to be lower than a temperature of the high pressure kneading zone. 7. The method for producing the foamed molded product according to claim 6 , wherein in a case that the gasified physical foaming agent is separated from the molten resin, the pressure reduction zone is cooled. 8. The method for producing the foamed molded product according to claim 1 , wherein a process, in which the molten resin and the physical foaming agent are brought in contact and kneaded with each other and the gasified physical foaming agent is separated from the molten resin, is repeated a plurality of times in a state that the molten resin is allowed to stay in the high pressure kneading zone. 9. The method for producing the foamed molded product according to claim 8 , wherein a process, in which the high pressure kneading zone and the pressure reduction zone are communicated with each other and shut off from each other, is repeated a plurality of times. 10. The method for producing the foamed molded product according to claim 1 , wherein the physical foaming agent, which is to be brought in contact and kneaded with the molten resin, is supplied to the high pressure kneading zone without controlling a supply amount of the physical foaming agent. 11. The method for producing the foamed molded product according to claim 1 , wherein the physical foaming agent is pressurized nitrogen or pressurized carbon dioxide. 12. The method for producing the foamed molded product according to claim 1 , wherein the physical foaming agent is pressurized carbon dioxide and further contains a functional material. 13. The method for producing the foamed molded product according to claim 12 , wherein the functional material is a metal complex. 14. The method for producing the foamed molded product according to claim 1 , wherein a concentration of the physical foaming agent in the molten resin is allowed to approach a saturated solubility by separating the gasified physical foaming agent from the molten resin. 15. The method for producing the foamed molded product according to claim 1 , wherein the communication between the high pressure kneading zone and the pressure reduction zone is shut off in accordance with a rotation state of the screw. 16. The method for producing the foamed molded product according to claim 15 , wherein the communication between the high pressure kneading zone and the pressure reduction zone is shut off by reverse rotation of the screw. 17. The method for producing the foamed molded product according to claim 15 , wherein the high pressure kneading zone and the pressure reduction zone are communicated with each other by any one of forward rotation of the screw, stop of rotation of the screw, and decrease in a number of reverse rotation of the screw.

Assignees

Inventors

Classifications

  • Feeding the blowing agent · CPC title

  • by injecting by forward movement of the plastizising screw · CPC title

  • Feeding the material into the injection moulding apparatus {, i.e. feeding the non-plastified material into the injection unit} · CPC title

  • B29C44/10Primary

    Applying counter-pressure during expanding · CPC title

  • applying a coating or covering · CPC title

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What does patent US9884439B2 cover?
A method for producing a foamed molded product includes: using a molding apparatus including a plasticizing cylinder having a high pressure kneading zone and a pressure reduction zone; and a screw; controlling a pressure of the pressure reduction zone to be a first pressure in a state that communication between the high pressure kneading zone and the pressure reduction zone is shut o…
Who is the assignee on this patent?
Hitachi Maxell
What technology area does this patent fall under?
Primary CPC classification B29C44/3446. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue Feb 06 2018 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).