SIMULTANEOUS LAMINATION AND BLOW-MOLDING PROCESS
20190143574 ยท 2019-05-16
Inventors
Cpc classification
B29C49/0691
PERFORMING OPERATIONS; TRANSPORTING
B29C49/6605
PERFORMING OPERATIONS; TRANSPORTING
B29C49/06914
PERFORMING OPERATIONS; TRANSPORTING
B29C49/64
PERFORMING OPERATIONS; TRANSPORTING
B29C49/06916
PERFORMING OPERATIONS; TRANSPORTING
B29C2049/4856
PERFORMING OPERATIONS; TRANSPORTING
International classification
B29C49/00
PERFORMING OPERATIONS; TRANSPORTING
B29C49/64
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A process for laminating elements together to form an article having a predetermined shape including an interior cavity comprises: placing a first sheet atop a first die; placing a first pressure introduction port atop the first sheet; placing a second sheet atop the first port and atop the first sheet; placing a second die atop the second sheet; clamping the first sheet, first port, and second sheet between the first and second dies to form an assembly comprising first die, first sheet, pressure introduction port, second sheet, and second die; introducing an applied gas pressure between the first and second sheets of the assembly, via the first pressure introduction port; heating the assembly to a temperature at which the first and second sheets can thermally deform, thereby achieving simultaneous lamination and blow molding of the first and second sheets; and cooling the assembly, such that the article is created.
Claims
1. A process for laminating a first element to a second element to form a single article having a predetermined shape including an interior cavity, the process comprising: placing a first sheet atop a first die; placing a first pressure introduction port atop the first sheet; placing a second sheet atop the first pressure introduction port and atop the first sheet; placing a second die atop the second sheet; clamping the first sheet, first pressure introduction port, and second sheet between the first and second dies to form an assembly comprising first die, first sheet, pressure introduction port, second sheet, and second die; introducing an applied gas pressure between the first and second sheets of the assembly, via the first pressure introduction port; heating the assembly to a temperature at which the first and second sheets can thermally deform, thereby achieving simultaneous lamination and blow molding of the first and second sheets; and cooling the assembly, such that the single article having the predetermined shape including the interior cavity is created.
2. The process of claim 1, additionally comprising: removing the applied gas pressure; unclamping the assembly; and removing the single article.
3. The process of claim 1, additionally comprising placing a second pressure introduction port atop the first sheet after the first sheet is placed atop the first die and before the second sheet is placed atop the first sheet.
4. The process of claim 1, additionally comprising leaving a pressure introduction port in place between the two sheets.
5. The process of claim 1, additionally comprising removing a pressure introduction port from between the two sheets.
6. The process of claim 1, additionally comprising placing a second pressure introduction port between the two sheets, at least one of the first and second pressure introduction ports having an exterior shape which conforms to a desired interior profile shape of the cavity.
7. The process of claim 1, wherein cooling the assembly comprises actively cooling the assembly
8. The process of claim 1, wherein at least one of the first and second sheets includes locator holes.
9. The process of claim 1, wherein at least one of the lower and upper dies includes locator pins.
10. The process of claim 1, wherein at least one of the lower and upper dies includes locator holes.
11. An apparatus for performing simultaneous lamination and blow molding of two sheets of material to form a single article having a predetermined shape including an interior cavity, the apparatus comprising: a lower die; an upper die; a first sheet; a second sheet; a pressure introduction port; a clamp; a gas pressure source; and a heater.
12. The apparatus of claim 11, wherein at least one of the first die and the second die contains a recess characterized throughout its profile by continuously varying curvature, determining, at least in part, a shape profile of the interior cavity of the single article.
13. The apparatus of claim 11, wherein at least one of the first die and the second die contains a recess characterized by a shape profile comprising a plurality of regions, a discontinuity of curvature occurring where one of the plurality of regions meets another of the plurality of regions.
14. The apparatus of claim 13, wherein the shape profile is one of rectangular and trapezoidal.
15. The apparatus of claim 11, additionally comprising a cooler.
16. The apparatus of claim 11, wherein at least one of the first and second sheets includes locator holes.
17. The apparatus of claim 11, wherein at least one of the lower and upper dies includes locator pins.
18. The apparatus of claim 11, wherein at least one of the lower and upper dies includes locator holes.
19. The apparatus of claim 11, additionally comprising a second pressure introduction port.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0013]
[0014]
[0015]
[0016]
[0017]
[0018]
[0019]
[0020]
[0021]
[0022]
[0023]
[0024]
DETAILED DESCRIPTION OF EMBODIMENTS
[0025] Embodiments described herein include a process for simultaneous lamination and blow-molding. Embodiments further include apparatus for performing simultaneous lamination and blow-molding.
[0026]
[0027] It will be appreciated that there may be some gas leakage out of the space between the two sheets during step 106, when gas pressure is first applied before heating occurs. The initial magnitude of applied pressure can be smaller early in the process, and then can increase later in the process after some initial sticking together of the two sheets has occurred during heating, in order to minimize any leakage which occurs.
[0028] In some embodiments, a second pressure introduction port (see 402 in
[0029] In some embodiments the cooling carried out in step 110 includes an active cooling method, such as water cooling. In some embodiments, passive cooling may be sufficient. In other embodiment, a combination of active and passive cooling may be used.
[0030] In some embodiments one or both of the dies contains pressure relief holes, not shown, to accommodate movement of gas, such as air or other gas, exterior to the expanding cavity, as that gas is displaced by the expansion of the cavity when pressure is introduced between the two sheets. In some embodiments one or both of the dies is made of a porous sintered material to accommodate movement of gas exterior to the expanding cavity as that gas is displaced by the expansion of the cavity when pressure is introduced between the two sheets. In some embodiments one or both of the dies contains pressure relief grooves, not shown, to accommodate the movement of gas along the surface of the die between that surface and an adjacent sheet, as that gas is displaced by the expansion of the cavity when pressure is introduced between the two sheets.
[0031]
[0032]
[0033]
[0034]
[0035]
[0036]
[0037]
[0038] The shape of the pressure introduction port or ports need not be a round tube as illustrated in
[0039]
[0040]
[0041] While the two sheets 301 and 501 are drawn in
[0042]
[0043]
[0044] Apparatus 200 used in the invention comprises a lower die 201, an upper die 601, a pressure introduction port 401, a clamp (not shown, as any one of various types of clamp well known in the art could be used) a source of gas pressure (not shown, as such sources are well known in the art) and a heater (not shown, as any one of various types of heater well known in the at could be used). The clamp could, for example, be a hydraulic press having clamping platens. The heater could, for example, comprise electrical cartridge heaters within the clamping platens of a hydraulic press.
[0045] In some embodiments, apparatus 200 used in the invention can include an active cooler, for example using water cooling via flow channels in the clamping platens of a hydraulic press.
[0046] In some embodiments, apparatus 200 used in the invention can include locator holes in one of both of the sheets 301 and 501 to be laminated, and locator pins in one or both of the dies 201 and 601, and locator holes in one or both of the dies 201 and 601. The use of other alignment means known in the art is also possible without departing from the scope and spirit of the invention.
[0047] Recessed regions 202 and 602 illustrated in
[0048] For example, a die may have a recessed region, not shown, similar to region 202, can have a rectangular profile comprising two vertical sidewalls and a flat bottom. The portion 310 of the lower sheet 301, if not softened excessively by heating, can be blown into such a rectangular-profile recess in a not-fully-conforming manner wherein the portion 310 is stopped by the flat bottom of the recessed region while the blown portion retains a smoothly curving profile, rather than being blown in a fully-conforming manner to form a rectangular profile.
[0049] Similarly, a different recessed region, not shown, similar to region 202, can have a trapezoidal cross section comprising a flat bottom and two symmetric slanting sidewalls. The portion 310 of the lower sheet 301, if not softened excessively by heating, can be blown into such a trapezoidal-profile recess in a not-fully-conforming manner wherein the portion 310 is stopped by the flat bottom of the recessed region and the slanting sidewalls of the recessed region while the blown portion retains a smoothly curving profile, rather than being blown in a fully-conforming manner to form a trapezoidal profile.
[0050] Similarly, a different recessed region, not shown, similar to region 202, can have a deep cross section such that the portion 310 of the lower sheet 301, if not softened excessively by heating, can be blown into such a deep recess in a not-fully-conforming manner, wherein the portion 310 does not make contact with the surface of the recessed region, while the blown portion retains a smoothly curving profile, rather than being blown in a fully-conforming manner.
[0051] The process of introducing gas pressure between the two sheets to be bonded can comprise supplying a gas at a pressure higher than ambient pressure, or can comprise lowering the pressure around the apparatus by supplying a partial vacuum around the apparatus with respect to ambient pressure supplied between the two sheets, or can comprise some combination of supplying a pressure higher than ambient pressure between the two sheets and lowering the pressure around the apparatus.
[0052] In some embodiments, a recess such as 202 or 602 may be absent from one of dies 201 and 601.
[0053] Descriptive language in this disclosure and in associated claims refers to an apparatus in the orientations shown in
[0054] It will be appreciated that the process steps are set forth below in claim 1 and the claims dependent therefrom in a descriptive order that is useful for tutorial purposes, but that the order of process steps may be varied without departing from the scope and spirit of the invention. For example, a first sheet could be lightly adhered to a first die, and a second sheet lightly adhered to a second die, before the two dies are placed against each other, with sheet surfaces in contact, before one or more pressure introduction ports are inserted between the sheet surfaces, and clamping (and subsequent steps) are carried out as described above. As another example, a pressure port may be introduced between the edges of two sheets which have been lightly adhered together by a piercing and separating action which places it atop a first sheet and beneath a second sheet.
[0055] Other process variations may readily be envisaged, that should be considered as encompassed in the spirit of the invention disclosed herein. For example, two sheets to be laminated may be lightly adhered together before being introduced between the first and second dies, with the first pressure introduction port being introduced either before or after the adhesion, before the clamping and subsequent steps.
[0056] Embodiments described herein provide various benefits. In particular, embodiments provide for fabrication of laminated parts having shallow cavities which are difficult or impossible to fabricate by prior-art means,
[0057] Although the description has been described with respect to particular embodiments thereof, these particular embodiments are merely illustrative, and not restrictive. It will also be appreciated that one or more of the elements depicted in the drawings/figures can also be implemented in a more separated or integrated manner, or even removed or rendered as inoperable in certain cases, as is useful in accordance with a particular application.
[0058] Thus, while particular embodiments have been described herein, latitudes of modification, various changes, and substitutions are intended in the foregoing disclosures, and it will be appreciated that in some instances some features of particular embodiments will be employed without a corresponding use of other features without departing from the scope and spirit as set forth. Therefore, many modifications may be made to adapt a particular situation or material to the essential scope and spirit.