TEXTURED BALL SEAT
20210245543 · 2021-08-12
Assignee
Inventors
Cpc classification
International classification
B43K1/08
PERFORMING OPERATIONS; TRANSPORTING
B23K26/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A metallic ball pen tip for a writing instrument comprising a feeding passage extending in an axial direction, the feeding passage reaching in a recess configured to receive a ball, the recess being defined by a cylindrical wall and a ball seat, wherein the ball seat comprises a plurality of feeding grooves and wherein the ball seat is textured, the texture comprising a plurality of blind holes having a depth equal to or smaller than 50 μm, preferably equal to or smaller than 10 μm, more preferably equal to or smaller than 5 μm, more preferably equal to or smaller than 1 μm, the blind holes having a total surface equal to or greater than 20% of the ball seat, preferably 60% and equal to or smaller than 90% of the ball seat, preferably 85%. A method of manufacturing a metallic ball pen tip.
Claims
1. A metallic ball pen tip for a writing instrument comprising a feeding passage extending in an axial direction, the feeding passage reaching in a recess configured to receive a ball, the recess being defined by a cylindrical wall and a ball seat wherein the ball seat comprises a plurality of feeding grooves and wherein the ball seat is textured, the texture comprising a plurality of blind holes having a depth equal to or smaller than 50 μm, the blind holes having a total surface equal to or greater than 20% of the ball seat, and equal to or smaller than 90% of the ball seat.
2. The metallic ball pen tip according to claim 1, wherein the blind holes have a closed contour section.
3. The metallic ball pen tip according to claim 2, wherein the blind holes have a circular section having a diameter equal to or greater than 10 μm and equal to or smaller than 150 μm.
4. The metallic ball pen tip according to claim 1, wherein the blind holes have an elongated section having a width equal to or greater than 10 μm and equal to or smaller than 150 μm and a length equal to or greater than 70 μm.
5. The metallic ball pen tip according to claim 4, wherein the blind holes are interconnected.
6. The metallic ball pen tip according to claim 4, wherein the blind holes into the feeding grooves.
7. The metallic ball pen tip according to claim 4, wherein the blind holes open into the feeding passage.
8. The metallic ball pen tip according to claim 3, wherein the blind holes are spaced apart from one another from a distance equal to or greater than half the diameter or half the width of the blind hole and equal to or smaller than the diameter or the width of the blind hole.
9. A writing instrument comprising a metallic ball pen tip according to claim 1.
10. A writing instrument according to claim 9, comprising a ball received in the recess.
11. A writing instrument according to claim 9, wherein the ball seat is made of metallic alloy and the ball is made of tungsten carbide alloy.
12. A method of manufacturing a metallic ball pen tip comprising a feeding passage extending in an axial direction, the feeding passage reaching in a recess configured to receive a ball, the recess being defined by a cylindrical wall and a ball seat, wherein the ball seat comprises a plurality of feeding grooves and wherein the ball seat is textured, the texture comprising a plurality of blind holes having a depth equal to or smaller than 50 μm, the blind holes having a total surface equal to or greater than 20% of the ball seat and equal to or smaller than 90% of the ball seat, the method comprising a step of making the blind holes using a laser technology.
13. A writing instrument according to claim 11, wherein the ball seat is made of brass.
14. A writing instrument according to claim 1, comprising a plurality of blind holes equal to or smaller than 10 μm.
15. A writing instrument according to claim 1, comprising a plurality of blind holes equal to or smaller than 5 μm.
16. A writing instrument according to claim 1, comprising a plurality of blind holes equal to or smaller than 1 μm.
17. A writing instrument according to claim 1, comprising blind holes having a total surface equal to or greater than 60% of the ball seat.
18. A writing instrument according to claim 4, wherein the blind holes have a length equal to or greater than 135 μm and equal to or smaller than 350 μm.
19. A writing instrument according to claim 4, wherein the blind holes have a length equal to or greater than 135 μm and equal to or smaller than 320 μm.
20. A method of manufacturing a metallic ball pen tip according to claim 19, wherein the laser technology used is a femtosecond laser.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0027]
[0028]
[0029]
[0030]
[0031]
DETAILED DESCRIPTION
[0032] Reference will now be made in detail to exemplary embodiments of the disclosure, examples of which are illustrated in the accompanying drawings. Wherever possible, the same reference numbers will be used throughout the drawings to refer to the same or like parts.
[0033]
[0034] The metallic ball pen tip 14 may be made of brass for example.
[0035] As shown at
[0036] As shown at
[0037] The ball seat 32 is textured and the texture comprises a plurality of blind holes 36 that can be better seen at
[0038] According to some embodiments, the blind holes 36 have a closed contour section 36A.
[0039] According to some embodiments, the blind holes 36 may have a circular section, see
[0040] According to some embodiments, the blind holes 36 may have an elongated section, see
[0041] According to some embodiments, the blind holes 36 may be interconnected with one another, see
[0042] According to some embodiments, the blind holes 36 may open into the feeding passage, see
[0043] According to some embodiments, the blind holes 36 may open into the feeding grooves, see
[0044] Comparative tests have been carried out on two metallic ball pen tips made of brass having the same geometry, except that one of the metallic ball pen tip had textured ball seat.
[0045] For example, the blind holes 36 may be of circular section having a diameter of 60 μm and a depth of 0.5 μm, the blind holes 36 being aligned on an imaginary grid, the blind holes 36 being disposed at the crossing of the imaginary grid and the blind holes being spaced apart from a distance equal to 60 μm, i.e., the crossing of the imaginary grid being spaced apart from a distance equal to 120 μm.
[0046] The blind holes 36 may be obtained using a laser technology, for example a femtosecond laser or a picosecond laser, for example with impulse around 350 fs (femtosecond).
[0047] The tests were carried out with a ball 24 being made of tungsten carbide and having a diameter of 1 mm (millimetre) received in the recess of the metallic ball pen tip 14 with an ink 22 having a viscosity comprised between 12 to 16 Pa.Math.s.sup.−1 (Pascal per second) in the ink reservoir 22. The ball 24 was rotated at a speed of 1432 t/min (tour per minute) on the surface of the ball seat 32, i.e. the speed correspond to the speed of the ball 24 relative to a sheet of paper for example. It has been measured that the average friction coefficient is reduced by at least 25% when the ball seat 32 is textured compared to the friction coefficient measured with a non-textured ball seat 32.
[0048] Throughout the description, including the claims, the term “comprising a” should be understood as being synonymous with “comprising at least one” unless otherwise stated. In addition, any range set forth in the description, including the claims should be understood as including its end value(s) unless otherwise stated. Specific values for described elements should be understood to be within accepted manufacturing or industry tolerances known to one of skill in the art, and any use of the terms “substantially” and/or “approximately” and/or “generally” should be understood to mean falling within such accepted tolerances.
[0049] Where any standards of national, international, or other standards body are referenced (e.g., ISO, etc.), such references are intended to refer to the standard as defined by the national or international standards body as of the priority date of the present specification. Any subsequent substantive changes to such standards are not intended to modify the scope and/or definitions of the present disclosure and/or claims.
[0050] Although the present disclosure herein has been described with reference to particular embodiments, it is to be understood that these embodiments are merely illustrative of the principles and applications of the present disclosure.
[0051] It is intended that the specification and examples be considered as exemplary only, with a true scope of the disclosure being indicated by the following claims.