MOLD FOR PRODUCING A PART MADE FROM PLASTIC MATERIALS, COMPRISING AN OPTIMIZED SEALING SYSTEM
20180272575 ยท 2018-09-27
Assignee
Inventors
Cpc classification
B29C43/18
PERFORMING OPERATIONS; TRANSPORTING
B29C2043/3283
PERFORMING OPERATIONS; TRANSPORTING
B29K2871/00
PERFORMING OPERATIONS; TRANSPORTING
B29C33/0044
PERFORMING OPERATIONS; TRANSPORTING
B29C33/0038
PERFORMING OPERATIONS; TRANSPORTING
International classification
B29C43/36
PERFORMING OPERATIONS; TRANSPORTING
B29C43/18
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A mold used in the production of plastic materials includes a fixed element and a moving element forming a mold cavity in the closed position of the mold, at least one of the elements including at least a sealing system of the mold cavity, the sealing system being provided with at least one deformable surface made from elastic material in order to produce a sealing contact with a closure surface of the mold cavity, and the deformable surface being mounted to slide in a wall of the mold in such a way as to adjust the sealing contact.
Claims
1. A mold for a production of a part including plastic material (MP), the mold comprising: a fixed element and a moving element forming a mold cavity in a closed position of the mold, wherein: at least one of the fixed element and the moving element includes at least a sealing system of the cavity, said sealing system including at least one deformable surface including elastic material and forming a sealing contact with a closure surface of the mold cavity, and said at least one deformable surface being configured to slide in a wall of the mold to adjust the sealing contact.
2. The mold according to claim 1, wherein said elastic material comprises at least one polymer including polyetheretherketone.
3. The mold according to claim 1, wherein the at least one deformable surface is configured to move in translation parallel to a mold closing direction.
4. The mold according to claim 1, wherein the sealing system comprises a means for displacing said at least one deformable surface in said wall and configured to press said surface against the closure surface to create a force reacting against a force exerted by the moving element during a phase of compressing the plastic material (MP).
5. The mold according to claim 4, wherein the displacement means comprises a hydraulic cylinder.
6. The mold according to claim 1, wherein the at least one deformable surface has a shape that is complementary to the surface of the closure surface that is in contact with said at least one deformable surface.
7. The mold according to claim 1, wherein said sealing system comprises at least two deformable surfaces including one surface configured to slide in a wall of the fixed element and an other surface configured to slide in a wall of the moving element, the at least two deformable surfaces together being configured to prevent the plastic material (MP) from flowing outside the overmoulding cavity (4).
8. The mold according to claim 7, wherein one of the surfaces is fixed in the wall.
9. A method for overmoulding an insert by a plastic material by means of the mold according to claim 1, wherein at least one surface of the insert is as closure surface.
Description
[0028] The invention will be better understood on reading the accompanying figures, which are given solely by way of example and not limiting in any way, in which:
[0029]
[0030]
[0031]
[0032]
[0033] We now refer to
[0034] The mould (1) comprises a first element (2), preferably fixed, and a second element (3), preferably movable and displaceable according to a mould closing direction.
[0035] The two elements (2, 3) come into contact with each other, directly or via a member, in closed position of the mould (1), and they form the mould cavity (4). According to the examples of
[0036] One of the elements (2, 3) of the mould (1) comprises at least a sealing system (5) of the mould cavity (4) so as to prevent any plastic material (MP) from flowing outside the cavity (4), between the first element (2) and the second element (3) (in the case of
[0037] Thus, the deformable surface (6) acts as a seal due, firstly to its elasticity allowing it to adapt to any shape of the closure surface, and secondly to its mobility, allowing it to apply a pressure necessary for its elastic deformation and to reduce the gap between the deformable surface (6) and the closure surface.
[0038] The closure surface can be the surface of one of the elements (2,3) of the mould or the surface of an insert (9) as illustrated on
[0039] According to one embodiment, the elastic material of the deformable surface (6) comprises at least one or more polymers from the group consisting of a polyetheretherketone, known as PEEK.
[0040] There are several grades of this PEEK material. To prevent burrs in a direction perpendicular to the mould closing direction, and in particular between the surface (6) and the closure surface, those skilled in the art will choose, depending on the materials implemented, the pressures and temperatures implemented, the PEEK grade allowing deformations of the thickness of the surface (6), in the mould closing direction, of about 0.1 mm, to allow an adjustment creating a seal between the elements closing the mould cavity (4).
[0041] The elastic material may also comprise, alone or in combination, Teflon PFA (PTFE), VITON (synthetic rubber from the family of fluorinated elastomers).
[0042] The elastic material may also comprise other components. For example, the elastic material may comprise at least 65% by weight, and preferably at least 90% by weight of one or more polymers from the group consisting of polyetheretherketone, known as PEEK, polyimide, known as PI, polyamide-imide, known as PAI, polyphenylene sulphide, known as PPS, and VITON.
[0043] According to the invention, the deformable surface (6) may be in direct contact with the plastic material (MP).
[0044] The deformable surface (6) preferably has a shape complementary to the closure surface, such as the insert (9), in contact with the deformable surface (6). As illustrated on
[0045] According to the embodiment of
[0046] One or more blocks of elastic material can be inserted in the mould (1). They are preferably placed in the upper and lower parts of the mould, in other words on the fixed element (2) and on the moving element (3).
[0047] According to the examples of
[0048] Advantageously, the sealing system (5) comprising a means (8) for displacing the deformable surface (6) in the wall (7). This system presses the deformable surface (6) against the closure surface, such as the insert (9), to create a force reacting against a force exerted by the moving element (3) during the phase of compressing the plastic material (MP).
[0049] On the example of
[0050] According to another embodiment, illustrated on
[0051] The invention also relates to a method for overmoulding an insert by a plastic material by means of a mould (1) according to the invention.
[0052] The method comprises at least the following steps according to the example of
[0057] In the case of deformable surfaces (6) in the upper and lower parts, they can help to eject the part on its periphery.