TECHNICAL FIELD
[0001] The present invention relates to a wearable article that is worn by a person on his
body and touches his skin, such as a case as a component of a wristwatch, a bracelet,
or a neckless, a manufacturing method for the wearable article, and a wristwatch structured
using the wearable article or the manufacturing method.
BACKGROUND ART
[0002] Metallic glass materials have conventionally been used as components of industrial
products because of having the excellent dimensional accuracy, abrasion resistance,
and durability, as described in Patent Literature 1, for example.
[0003] On the other hand, the metallic glass materials can be accurately formed to have
a complicated shape by a molding process such as the injection molding and therefore
have recently been examined to be used for wearable articles such as a main body case
of a wristwatch (wristwatch case) or a band of a wristwatch. There are many kinds
of metallic glasses and the preferable material that can be stably made into glass
is zirconium-based metallic glass, and in particular, Zr-Cu-Al-Ni-based metallic glass
is well balanced between the mechanical characteristics and the manufacturability.
[0004] In view of the above, using the zirconium-based metallic glass for the wearable article
has been suggested.
[0005] However, when the metal material containing nickel, such as the zirconium-based metallic
glass, touches the skin, nickel is released from the metal material and for some people,
may cause a nickel allergy depending on the body constitution. For example, a molded
article is formed by molding the Zr-Cu-Al-Ni-based metallic glass and then a nickel
release test is carried out (European Standard EN 1811). In this test, the nickel
is released from the metal material of the molded article, and the criteria of the
standard cannot be satisfied.
[0006] In view of this, a nickel-free metallic glass material has been desired but since
nickel is a component that largely contributes to the metallic glass formability,
it is practically difficult to form the nickel-free zirconium-based metallic glass
material.
REFERENCES
PATENT LITERATURE
DISCLOSURE OF THE INVENTION
PROBLEMS TO BE SOLVED BY THE INVENTION
[0008] The present invention has been made in view of the above conventional circumstances,
and an object is to provide a wearable article made of metallic glass, in which the
release of nickel can be suppressed, a manufacturing method for the wearable article,
and a wristwatch structured using the wearable article or the manufacturing method.
SOLUTIONS TO THE PROBLEMS
[0009] One solution to the problem is a wearable article made of metallic glass containing
nickel as a raw material and formed by a molding process to have a body contact part
to be in contact with a skin, wherein a foreign substance not containing the raw material
of the metallic glass but containing a raw material of a mold used in the molding
process has been removed from a surface of the body contact part.
EFFECTS OF THE INVENTION
[0010] The present invention is structured as described above and therefore can suppress
the release of nickel.
BRIEF DESCRIPTION OF THE DRAWINGS
[0011]
Fig. 1 is a perspective view illustrating one example of a wristwatch as a wearable
article according to the present invention, from which a back cover has been detached.
Fig. 2 is graph expressing the results of the nickel release test on Examples according
to the present invention and Comparative Examples according to the conventional technique.
Fig. 3 is an electron microscope image showing a magnified main part in Comparative
Examples according to the conventional technique.
Fig. 4 is an electron microscope image showing a magnified main part in Examples according
to the present invention.
DESCRIPTION OF PREFERRED EMBODIMENT
[0012] A first feature of the present embodiment is a wearable article made of metallic
glass containing nickel as a raw material and formed by a molding process to have
a body contact part to be in contact with a skin, wherein a foreign substance not
containing the raw material of the metallic glass but containing a raw material of
a mold used in the molding process has been removed from a surface of the body contact
part.
[0013] Here, "wearable article" includes a case as a component of a wristwatch, a back cover
of the case, a band for a wristwatch, a bracelet, a neckless, a ring, earrings, pierced
earrings, a frame of eyeglasses, and the like.
[0014] This structure can prevent the expansion of corrosion that starts from the foreign
substance containing the raw material of the mold used in the molding process and
that is caused by the influence from the potential difference between the foreign
substance and the metallic glass, or the like. As a result, the wearable article having
the body contact part that releases less nickel can be provided.
[0015] A second feature is a manufacturing method for the wearable article, including a
step of performing the molding process using the metallic glass containing nickel
as the raw material, and a step of removing the foreign substance from the surface
of the body contact part by performing a removal process.
[0016] This structure can prevent the expansion of the corrosion from the foreign substance
containing the raw material of the mold used in the molding process, because the foreign
substance is removed from the surface of the body contact part in the removal process.
As a result, the release of nickel from the body contact part can be suppressed.
[0017] A third feature is that the removal process includes a polishing process for removing
the foreign substance effectively.
[0018] A fourth feature is that the foreign substance is removed from the entire surface
of a molded article formed by the molding process in order to prevent the expansion
of the corrosion effectively.
[0019] A fifth feature is that, as a specific aspect with the excellent mechanical characteristics
and manufacturability, the metallic glass is zirconium-based metallic glass.
[0020] A sixth feature is that, as a specific aspect with the excellent mechanical characteristics
and manufacturability, the metallic glass is metallic glass containing zirconium,
copper, aluminum, and nickel.
[0021] A seventh feature is that the foreign substance is a foreign substance containing
iron.
[0022] An eighth feature is that a wristwatch is manufactured using the wearable article
or the manufacturing method.
EXAMPLES
[0023] Next, preferred examples with the above features will be described in detail with
reference to the drawings.
[0024] Fig. 1 illustrates a wristwatch A manufactured using a wearable article and a manufacturing
method according to the present embodiment.
[0025] The wristwatch A includes a wristwatch case 10 and a band 20, which correspond to
the wearable article, a watch mechanism 30 housed in the wristwatch case 10, and the
like.
[0026] The wristwatch case 10 includes a case frame main body 11 and a back cover 12 attached
to the back side of the case frame main body 11, which are integrally structured.
[0027] The case frame main body 11 is formed to have a frame-like shape with a space penetrating
from a front surface side to a back surface side. In a state that the watch mechanism
30 is incorporated, the opening part on the front surface side is covered with a cover
glass 13 and the opening part on the back surface side is covered with the back cover
12.
[0028] The back cover 12 is a member with a thin-plate shape, and is fixed to the back surface
side of the case frame main body 11 with a screw or other fastening means such as
engagement or threadening.
[0029] This back cover 12 is formed by the molding process using the metallic glass containing
nickel as the raw material, and the back surface thereof is a body contact part 12a
that will be in contact with the skin.
[0030] From the entire surface of the back cover 12 including the body contact part 12a,
the foreign substance not containing the raw material of the metallic glass but containing
the raw material of the mold used in the molding process is removed by a removal process
which will be described below.
[0031] Specific examples of the metallic glass include metallic glass containing zirconium
(Zr)-copper (Cu)-aluminum (Al)-nickel (Ni).
[0032] In this Example, the metallic glass containing Zr55Cu30Al10Ni5 (atm%) was used as
the particularly preferable aspect.
[0033] Note that the molding process is the process in which the molding is performed by
bringing the raw material into contact with the mold, and specific examples of the
molding process include an injection molding process, a casting process, a forging
process, a pultrusion process, an extrusion process, and a pressing process.
[0034] The raw material of the mold used in the molding process is the material a part of
which is possibly transferred to the molded article (the back cover 12) to trigger
the corrosion of the molded article.
[0035] In this example, the raw material of the mold is the metal material containing iron
(Fe) as one component, and iron is not contained in the compositions of the metallic
glass.
[0036] Specific examples of the removal process include polishing processes (including barrel
polishing, lap polishing, buff polishing, blast polishing, chemical mechanical polishing,
chemical polishing, and other polishing processes), grinding processes (including
hairline processes), cutting processes, and the like.
[0037] Next, results of performing the nickel release test in the examples with the above
structures in comparison to comparative examples will be described in detail.
[0038] A test piece in each of Examples 1 to 6 and Comparative Examples 1 to 3 in Fig. 2
is made of the metallic glass as the raw material and the test piece is formed to
have a plate shape with approximately the same size as the back cover 12 of the wristwatch
A by the injection molding.
[0039] The test pieces of Comparative Examples 1 to 3 are made by the injection molding
and the removal process is not performed (As-Cast article).
[0040] The test pieces of Examples 1 to 3 are made by the injection molding and then the
polishing process in which the test piece is brought into sliding contact with a rotating
disc-like polishing material.
[0041] The test pieces of Examples 4 to 6 are made by the injection molding, the polishing
process in which the test piece is brought into sliding contact with a rotating disc-like
polishing material, and then the hairline process is performed so that the surface
thereof has microscopic unevenness. Namely, these test pieces according to Examples
4 to 6 are the ones having the larger surface area due to the unevenness.
[0042] The graph in Fig. 2 shows the results of carrying out the nickel release test based
on the European Standard EN 1811 in regard to Examples 1 to 6, and Comparative Examples
1 to 3 by the conventional technique. In this test, each test piece was immersed in
a predetermined solution for a predetermined period and then the amount of nickel
released per unit area for this period was obtained.
[0043] The results indicate that the amount of released nickel in Examples 1 to 6 is remarkably
smaller than that in Comparative Examples 1 to 3, and all of them are much lower than
the criterion 0.50 µg/cm
2/week of EN 1811. In addition, the amount of released nickel is desirably 0.28 µg/cm
2/week or less as a criterion in at least a part of the ornament industry, and it is
understood that the amount of released nickel is much lower than this criterion.
[0044] The amount of nickel release in Comparative Examples 1 to 3 is much more than that
in Examples 1 to 6, and the amount of nickel in the two out of the three is more than
the criterion.
[0045] The comparison between Examples 1 to 3 and Examples 4 to 6 indicates that the amount
of released nickel is not remarkably different.
[0046] Fig. 3 is a representative image of a part of the surface of the test pieces in Comparative
Examples 1 to 3 that is observed with an electron microscope. The image shows that
the surface of the test pieces in Comparative Examples 1 to 3 has the projecting foreign
substance (attached substance).
[0047] The inventors of the present application have conducted the elemental analysis (energy
dispersive X-ray analysis) by using the characteristic X-rays emitted from the foreign
substance when the substance is irradiated with the electron beam with the use of
the known surface analyzer including the electron microscope.
[0048] The results from this analysis indicate that this foreign substance includes the
component that is not contained in the raw material of the metallic glass but contained
in the raw material of the mold used in the molding process (such as iron (Fe)).
[0049] Fig. 4 is a representative image of a part of the surface of the test pieces in
Examples 1 to 6 that is observed with an electron microscope. In this image, the foreign
substance was not found.
[0050] The above results indicate that the foreign substance observed in Comparative Examples
1 to 3 (Fig. 3) is the one transferred from a part of the mold used in the molding
process.
[0051] Moreover, it is considered that in Examples 1 to 6, the foreign substance is removed
by the polishing process.
[0052] The inventors of the present application estimated that in Comparative Examples 1
to 3, the corrosion expanded starting from the foreign substance so that more nickel
was released. In contrast to this, in Examples 1 to 6, the inventors of the present
application estimated that much less nickel was released because the foreign substance
was removed.
[0053] The inventors of the present application also assumed that the increase in surface
area due to the foreign substance led to more nickel release. However, this assumption
was denied by the fact that there was no remarkable difference in amount of released
nickel between Examples 1 to 3 where the polishing process was performed and Examples
4 to 6 where the surface area was increased by the hairline process.
[0054] Therefore, according to the Examples, the expansion of corrosion starting from the
foreign substance containing the raw material of the mold used in the molding process
can be prevented, and as a result, the release of nickel from the body contact part
12a of the back cover 12 can be suppressed.
[0055] In the above Examples, the removal process is performed on the entire surface of
the back cover 12 as the particularly preferable aspect. However, as another example,
the removal process may be performed on only the body contact part 12a of the back
cover 12.
[0056] In the above Examples, the material, the surface processing method, and the like
for the case frame main body 11 and the band 20 are not specified. As another example,
however, it is possible that the case frame main body 11 and/or the band 20 is formed
in a manner that the metallic glass containing nickel as the raw material is molded
and then the aforementioned removal process is performed on at least the surface of
the body contact part.
DESCRIPTION OF REFERENCE SIGNS
[0057]
10: wristwatch case
11: case frame main body
12: back cover
12a: body contact part
20: band
30: watch mechanism
A: wristwatch
1. A wearable article made of metallic glass containing nickel as a raw material and
formed by a molding process to have a body contact part to be in contact with a skin,
wherein a foreign substance not containing the raw material of the metallic glass
but containing a raw material of a mold used in the molding process has been removed
from a surface of the body contact part.
2. A manufacturing method for the wearable article according to claim 1, comprising a
step of performing the molding process using the metallic glass containing nickel
as the raw material, and a step of removing the foreign substance from the surface
of the body contact part by performing a removal process.
3. The manufacturing method according to claim 2, wherein the removal process includes
a polishing process.
4. The wearable article or the manufacturing method according to any one of claims 1
to 3, wherein the foreign substance is removed from an entire surface of a molded
article including the body contact part formed by the molding process.
5. The wearable article or the manufacturing method according to any one of claims 1
to 4, wherein the metallic glass is zirconium-based metallic glass.
6. The wearable article or the manufacturing method according to claim 5, wherein the
metallic glass is metallic glass containing zirconium, copper, aluminum, and nickel.
7. The wearable article or the manufacturing method according to any one of claims 1
to 6, wherein the foreign substance is a foreign substance containing iron.
8. A wristwatch structured using the wearable article or the manufacturing method according
to any one of claims 1 to 7.