Apparatus and method for controlling temperature gradient through wall thickness of container
US-9221223-B2 · Dec 29, 2015 · US
US10155338B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10155338-B2 |
| Application number | US-201414889682-A |
| Country | US |
| Kind code | B2 |
| Filing date | May 6, 2014 |
| Priority date | May 7, 2013 |
| Publication date | Dec 18, 2018 |
| Grant date | Dec 18, 2018 |
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An apparatus for fabricating containers. The apparatus including a plurality of mold segments, an injection cylinder, a closure cylinder and a motor cylinder. The injection cylinder defining a mold cavity substantially in the form of a container and accommodating a substantially tubular preform having a preform cavity in communication with an open end. The injection head establishes fluid communication with the preform and the injection cylinder is in fluid communication with the injection head and configured to inject a volume of liquid into the preform The closure cylinder is configured to exert a force on at least one of the mold segments to maintain them in a closed disposition. The motor cylinder is configured to drive the injection cylinder and being itself concurrently driven with the closure cylinder by a single pressure source.
Opening claim text (preview).
The invention claimed is: 1. An apparatus for fabricating containers, comprising: a plurality of mold segments, said plurality of mold segments defining a mold cavity substantially in the form of a container and configured to accommodate a substantially tubular preform having a preform cavity communicating with an open end; an injection head, said injection head configured to cooperate with said open end of said preform and establish fluid communication therewith; an injection cylinder, said injection cylinder comprising a chamber with a piston moveable therein and being disposed in fluid communication with said injection head, and further configured to inject a volume of liquid into said preform when said piston is advanced within said chamber; a closure cylinder, said closure cylinder being configured to exert a force on at least one of the mold segments so as to maintain said mold segments in a closed disposition; a motor cylinder comprising a piston, the piston of said motor cylinder driving said piston of said injection cylinder, the motor cylinder and closure cylinder being concurrently driven by a single pressure source. 2. The apparatus as claimed in claim 1 , wherein said injection cylinder and said motor cylinder are provided as two separate components. 3. The apparatus as claimed in claim 1 , wherein the piston of said motor cylinder is directly connected to the piston of said injection cylinder. 4. The apparatus as claimed in claim 1 , wherein said motor cylinder and said closing cylinder are double-acting cylinders. 5. A method for the fabrication of a container, comprising the steps of: providing a substantially tubular preform having a preform cavity communicating with an open end ( 109 ); disposing said preform at least partially within a mold cavity substantially in the form of a container, said mold cavity defined by a plurality of mold segments; pressurizing a motor cylinder, a piston of the motor cylinder driving a piston of an injection cylinder and thereby pressurizing a quantity of a liquid within said injection cylinder, while concurrently pressurizing a closing cylinder adapted to exert a force upon at least one of said mold segments and thereby maintain said mold segments in a closed disposition; and injecting said quantity of liquid within said injection cylinder into said preform cavity of said preform, said preform being thereby induced to deform and assume the shape of the mold cavity. 6. The method as claimed in claim 5 , further comprising after the injecting step, retracting the pistons of said motor cylinder and said closing cylinder. 7. The method as claimed in claim 6 , wherein during said retracting step a volume of liquid is drawn into said injection cylinder. 8. The method as claimed in claim 5 , further comprising the step of initiating prior to the injecting step and taking place concurrent to the injecting step advancing a stretching rod into said preform cavity of said preform, said stretching rod being urged against the surface of said preform cavity so as to induce said preform to deform along a longitudinal axis. 9. A container fabricated by the method of claim 5 . 10. The apparatus as claimed in claim 2 , wherein the piston of said motor cylinder is directly connected to the piston of said injection cylinder. 11. The apparatus as claimed in claim 2 , wherein said motor cylinder and said closing cylinder are double-acting cylinders. 12. The apparatus as claimed in claim 3 , wherein said motor cylinder and said closing cylinder are double-acting cylinders. 13. The method as claimed in claim 6 , further comprising the step of initiating prior to the injecting step and taking place concurrent to the injecting step advancing a stretching rod into said preform cavity of said preform, said stretching rod being urged against the surface of said preform cavity so as to induce said preform to deform along a longitudinal axis. 14. The method as claimed in claim 7 , further comprising the step of initiating prior to the injecting step and taking place concurrent to the injecting step advancing a stretching rod into said preform cavity of said preform, said stretching rod being urged against the surface of said preform cavity so as to induce said preform to deform along a longitudinal axis.
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