METHOD FOR PRODUCING AN INJECTION-MOLDED COMPONENT AND CYLINDER FOR A NEEDLE-FREE SYRINGE
20190016027 ยท 2019-01-17
Inventors
- Michael Dehling (Hahnbach, DE)
- Andreas Knie (Regensburg, DE)
- Manfred Moritz (Amberg, DE)
- Christian Lanzl (Bernhardswald, DE)
Cpc classification
B29C45/0053
PERFORMING OPERATIONS; TRANSPORTING
B29C45/261
PERFORMING OPERATIONS; TRANSPORTING
A61M5/30
HUMAN NECESSITIES
B29L2031/7544
PERFORMING OPERATIONS; TRANSPORTING
A61M2207/00
HUMAN NECESSITIES
International classification
B29C45/00
PERFORMING OPERATIONS; TRANSPORTING
A61M5/30
HUMAN NECESSITIES
Abstract
The invention relates to a method for producing an injection-molded part, the injection-molded part being a plastic cylinder for a needle-free syringe. The cylinder has an opening. The invention further relates to an injection-molding tool for producing the cylinder, the injection molded tool including an outer mold component and an inner mold component, which together define a clearance which determine the injection-molded part and the cylinder. The outer mold component and the inner mold component are designed such that the clearance is formed without an obstacle for plastic between the outer mold component and the inner mold component.
Claims
1. A method for producing an injection-molded part for a needle-free syringe, the method comprising the steps of: forming an injection-molding tool from an outer mold component for an injection molding process and an inner mold component for the injection molding process, so that a clearance is formed; forming a cylinder in the clearance during the injection-molding process, wherein the cylinder contacts, on all sides, an inner surface of the outer mold component and an outer surface of the inner mold component; and, forming a through-bore in the region of a front end of the cylinder with a beam of a laser.
2. The method of claim 1, wherein a substantially planar outer surface on the cylinder is formed by the outer mold component at a front end thereof and a substantially planar inner surface on the cylinder is formed by the inner mold component at a corresponding front end thereof, the planar outer surface and the planar inner surface defining a wall at the front end of the cylinder.
3. The method of claim 2, wherein the through-bore is formed with the laser centrally and substantially parallel to a longitudinal axis within the wall of the cylinder.
4. The method of claim 3, wherein the laser is selected in terms of power and/or pulse rate so that the ablated material is sublimated.
5. The method of claim 2, wherein the through-bore, introduced in the wall by means of the laser, has a diameter in the range of 0.015 mm to 1 mm, wherein the through-bore, produced by the laser, is designed such that the diameter remains substantially constant along a thickness of the wall.
6. The method of claim 1, wherein a funnel-shaped contour is formed by the outer mold component at a front end of the cylinder and a substantially planar inner surface of the cylinder is formed by the inner mold component at a corresponding front end of the inner mold component, wherein the funnel-shaped contour and the planar inner surface define a wall at the front end of the cylinder.
7. The method of claim 6, wherein the through-bore is performed with the laser centrally and substantially parallel to a longitudinal axis of the cylinder and the wall at the front end of the cylinder.
8. The method of claim 7, wherein the laser is selected in terms of power and/or pulse rate so that the ablated material is sublimated.
9. The method of claim 6, wherein the through-bore, introduced in the wall by the laser, has a diameter in the range of 0.015 mm to 1 mm, wherein the through-bore produced by the laser is designed such that the diameter remains substantially constant along a thickness of the wall.
10. A cylinder for a needle-free syringe, the cylinder comprising: a wall formed at a front end of the cylinder, the cylinder for the needle-free syringe defining a longitudinal axis substantially aligned perpendicularly to the wall; and, a through-bore arranged within the wall, the through-bore introduced with a laser beam wherein the through-bore is substantially parallel to the longitudinal axis, and wherein the through-bore has a diameter in the range of 0.015 mm to 1 mm and is designed such that the diameter remains substantially constant along a thickness of the wall.
11. The cylinder of claim 10, wherein the wall at the front end of the cylinder is defined by a substantially planar inner surface and a substantially planar outer surface.
12. The cylinder of claim 10, wherein the wall at the front end of the cylinder is defined by a substantially planar inner surface and a funnel-shaped contour at the front end of the cylinder.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0024] Various embodiments are disclosed, by way of example only, with reference to the accompanying schematic drawings in which corresponding reference symbols indicate corresponding parts, in which:
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DETAILED DESCRIPTION
[0034] At the outset, it should be appreciated that like drawing numbers on different drawing views identify identical, or functionally similar, structural elements. It is to be understood that the claims are not limited to the disclosed aspects.
[0035] Furthermore, it is understood that this disclosure is not limited to the particular methodology, materials and modifications described and as such may, of course, vary. It is also understood that the terminology used herein is for the purpose of describing particular aspects only, and is not intended to limit the scope of the claims.
[0036] Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood to one of ordinary skill in the art to which this disclosure pertains. It should be understood that any methods, devices or materials similar or equivalent to those described herein can be used in the practice or testing of the example embodiments.
[0037] It should be appreciated that the term substantially is synonymous with terms such as nearly, very nearly, about, approximately, around, bordering on, close to, essentially, in the neighborhood of, in the vicinity of, etc., and such terms may be used interchangeably as appearing in the specification and claims. It should be appreciated that the term proximate is synonymous with terms such as nearby, close, adjacent, neighboring, immediate, adjoining, etc., and such terms may be used interchangeably as appearing in the specification and claims. The term approximately is intended to mean values within ten percent of the specified value.
[0038] Adverting now to the figures,
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[0043] Bore 15, illustrated in
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[0045] As illustrated in
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[0047] It will be appreciated that various aspects of the disclosure above and other features and functions, or alternatives thereof, may be desirably combined into many other different systems or applications. Various presently unforeseen or unanticipated alternatives, modifications, variations, or improvements therein may be subsequently made by those skilled in the art which are also intended to be encompassed by the following claims.
LIST OF REFERENCE NUMERALS
[0048] 1 injection-molding tool [0049] 2 outer mold component [0050] 3 inner mold component [0051] 4 clearance [0052] 5 projection [0053] 6 front end of outer mold component [0054] 7 front end of inner mold component [0055] 10 injection-molded part [0056] 11 cylinder [0057] 12 front end [0058] 13 wall [0059] 14 plastic [0060] 15 bore, hole, opening [0061] 16 inner surface [0062] 17 outer surface [0063] 18 planar outer surface [0064] 19 planar inner surface [0065] 20 laser [0066] 21 laser beam [0067] 25 funnel-shaped contour [0068] 27 tip [0069] 60 inner planar contour [0070] 70 outer level contour [0071] A range [0072] B thickness [0073] D diameter [0074] L longitudinal axis