JP2007015753A - Member for storing electrode - Google Patents

Member for storing electrode Download PDF

Info

Publication number
JP2007015753A
JP2007015753A JP2005201583A JP2005201583A JP2007015753A JP 2007015753 A JP2007015753 A JP 2007015753A JP 2005201583 A JP2005201583 A JP 2005201583A JP 2005201583 A JP2005201583 A JP 2005201583A JP 2007015753 A JP2007015753 A JP 2007015753A
Authority
JP
Japan
Prior art keywords
transparent resin
resin container
electrode
container
opening
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
JP2005201583A
Other languages
Japanese (ja)
Inventor
Katsunori Eto
勝憲 衛藤
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
DKK TOA Corp
Original Assignee
DKK TOA Corp
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by DKK TOA Corp filed Critical DKK TOA Corp
Priority to JP2005201583A priority Critical patent/JP2007015753A/en
Publication of JP2007015753A publication Critical patent/JP2007015753A/en
Pending legal-status Critical Current

Links

Images

Landscapes

  • Rigid Containers With Two Or More Constituent Elements (AREA)
  • Packaging Of Annular Or Rod-Shaped Articles, Wearing Apparel, Cassettes, Or The Like (AREA)

Abstract

<P>PROBLEM TO BE SOLVED: To provide a member for storing an electrode by which the stored content is confirmed without opening it, and showing a less load against environment. <P>SOLUTION: An electrode 100 for use in measuring the property of a substance is stored in a member 1 for storing an electrode, and a pair of transparent cylindrical resin containers (a first transparent resin container 10a and a second transparent resin container 10b) each having a bottom part and formed with an opening at one end are connected to the storing member and integrally assembled. Further, one transparent resin container (the first transparent resin container 10a) may be inserted with a terminal end of an opening 11b of the other transparent resin container (the second transparent resin container 10b). <P>COPYRIGHT: (C)2007,JPO&INPIT

Description

本発明は、物質の特性を測定する電極が収納された電極用収納体に関する。   The present invention relates to an electrode storage body in which an electrode for measuring a property of a substance is stored.

物質の特性、例えば、pH、酸化還元電位、イオン濃度や気中のガス濃度などの特性は、電極を用いて広く測定されており、測定対象に応じた多種類の電極が用いられている。
従来、このような電極を運搬または保管する際には、破損防止のために、紙製の箱に収納するのが一般的であった。
Properties of substances such as pH, oxidation-reduction potential, ion concentration and gas concentration in the air are widely measured using electrodes, and various types of electrodes are used depending on the measurement object.
Conventionally, when such an electrode is transported or stored, it is generally stored in a paper box to prevent breakage.

しかしながら、紙製の箱は不透明であり、内容物を透視できないため、目視によって電極の種類の確認や付属品梱包の確認を行えなかった。したがって、製品出荷時には、箱を開封して確認作業をしなければならないため、確認作業に手間を要する上に、箱が損傷するという問題があった。そこで、電極の収納体の材質を紙から透明樹脂に置き換えることが考えられるが、紙に比べて樹脂は廃棄の際の環境への負荷が大きいという問題がある。
本発明は、前記事情を鑑みてなされたものであり、開封しないで内容物を目視により確認できる上に、環境への負荷が小さい電極用収納体を提供することを目的とする。
However, since the paper box is opaque and the contents cannot be seen through, the type of electrode and the packing of accessories cannot be confirmed visually. Therefore, when the product is shipped, the box must be opened and the confirmation work must be performed, which requires a lot of trouble for the confirmation work and damages the box. Therefore, it is conceivable to replace the material of the electrode housing body from paper to a transparent resin, but there is a problem that the resin has a greater burden on the environment when discarded than paper.
The present invention has been made in view of the above circumstances, and an object of the present invention is to provide an electrode storage body that can visually check the contents without opening and has a low environmental load.

本発明の電極用収納体は、物質の特性を測定する電極が収納された電極用収納体であって、一端に開口部が形成された有底筒状の一対の透明樹脂製容器が接続されて一体化されていることを特徴とする。
本発明の電極用収納体においては、一方の透明樹脂製容器に、他方の透明樹脂製容器の開口部側末端が挿入されていることが好ましい。
また、本発明の電極用収納体においては、一対の透明樹脂製容器の間に、両端に開口部が形成された筒状の接続部材が介在しており、少なくとも一方の透明樹脂製容器に接続部材の末端が挿入されていることも好ましい。
さらに、本発明の電極収納体においては、一対の透明樹脂製容器の間に、両端に開口部が形成された筒状の接続部材が介在しており、少なくとも一方の透明樹脂製容器の開口部側末端が接続部材に挿入されていることも好ましい。
The electrode storage body of the present invention is an electrode storage body in which an electrode for measuring the characteristics of a substance is stored, and is connected to a pair of bottomed cylindrical transparent resin containers having an opening formed at one end. It is characterized by being integrated.
In the electrode storage body according to the present invention, it is preferable that the opening side end of the other transparent resin container is inserted into one transparent resin container.
Further, in the electrode storage body of the present invention, a cylindrical connecting member having openings formed at both ends is interposed between a pair of transparent resin containers, and is connected to at least one transparent resin container. It is also preferable that the end of the member is inserted.
Furthermore, in the electrode housing body of the present invention, a cylindrical connecting member having openings at both ends is interposed between a pair of transparent resin containers, and the opening of at least one transparent resin container It is also preferable that the side end is inserted into the connecting member.

本発明の電極用収納体は、開封しないで内容物を目視により確認できる。また、本発明の電極用収納体は、収納の目的以外にも、測定するサンプルや校正用の標準液を入れる容器として利用できるから、資源を有効に利用することができ、環境への負荷を小さくできる。   In the electrode storage body of the present invention, the contents can be visually confirmed without opening. In addition to the purpose of storage, the electrode storage body of the present invention can be used as a container for storing a sample to be measured or a standard solution for calibration, so that resources can be used effectively and the burden on the environment can be reduced. Can be small.

(第1の実施形態)
本発明の電極用収納体の第1の実施形態について説明する。
図1および図2に、本実施形態の電極用収納体を示す。この電極用収納体1は、物質の特性を測定する電極100が収納されたものであり、一端に開口部11aが形成された有底円筒状の第1の透明樹脂製容器10a(図3参照)と、一端に開口部11bが形成された有底円筒状の第2の透明樹脂製容器10b(図4参照)とを有し、これらが一体化されたものである。
電極収納体1における第1の透明樹脂製容器10aの開口部11a近傍には、2つの凹部A,Aおよび2つの凸部B,Bを有する凹凸部12aが形成され、第2の透明樹脂製容器10bの開口部11b近傍には、2つの凹部C,Cおよび凸部D,Dを有する凹凸部12bが形成されている。また、凹凸部12a,12bの形状は略同一になっている。ここでいう、凹部、凸部は、第1の透明樹脂製容器10aまたは第2の透明樹脂製容器10bを外側から見た際の形状のことである。
そして、第1の透明樹脂製容器10aに形成された凹凸部12aの凸部Bの裏面に、第2の透明樹脂製容器10bに形成された凹凸部12bの凸部Dの表面が接するように、第1の透明樹脂製容器10aに第2の透明樹脂製容器10bの開口部11b側末端が挿嵌されている(図2参照)。
また、電極用収納体1では、第2の透明樹脂製容器10bより外側にある第1の透明樹脂製容器10aの開口部11a側末端を覆うように、熱収縮した熱収縮性樹脂フィルム20が被覆されている。
(First embodiment)
A first embodiment of the electrode storage body of the present invention will be described.
FIG. 1 and FIG. 2 show the electrode storage body of the present embodiment. The electrode housing 1 contains an electrode 100 for measuring the properties of a substance, and has a bottomed cylindrical first transparent resin container 10a having an opening 11a formed at one end (see FIG. 3). ) And a bottomed cylindrical second transparent resin container 10b (see FIG. 4) having an opening 11b formed at one end thereof, and these are integrated.
An uneven portion 12a having two concave portions A 1 and A 2 and two convex portions B 1 and B 2 is formed in the vicinity of the opening 11a of the first transparent resin container 10a in the electrode housing 1 to form a second In the vicinity of the opening 11b of the transparent resin container 10b, an uneven portion 12b having two concave portions C 1 and C 2 and convex portions D 1 and D 2 is formed. Moreover, the shapes of the concavo-convex portions 12a and 12b are substantially the same. The concave portion and the convex portion here are shapes when the first transparent resin container 10a or the second transparent resin container 10b is viewed from the outside.
Then, the back surface of the convex portion B 1 of the first formed in the transparent resin vessel 10a uneven portion 12a, the contact surface of the convex portion D 1 of the second transparent resin vessel 10b which is formed in the concave-convex portion 12b In this way, the opening 11b side end of the second transparent resin container 10b is inserted into the first transparent resin container 10a (see FIG. 2).
Further, in the electrode housing 1, the heat-shrinkable resin film 20 that is heat-shrinked so as to cover the opening 11 a side end of the first transparent resin container 10 a located outside the second transparent resin container 10 b is provided. It is covered.

第1の透明樹脂製容器10aおよび第2の透明樹脂製容器10bは、内部が視認できる程度の透明性を有していればよく、いわゆる半透明であってもよいし、着色されていても構わない。
本実施形態では、第1の透明樹脂製容器10aおよび第2の透明樹脂製容器10bは、凹凸部12aが形成された第1の透明樹脂製容器10aへの第2の透明樹脂製容器10bの挿入を容易にするために、弾性の高い透明樹脂から構成されている。ここで、弾性の高い透明樹脂としては、例えば、ポリエチレン、ポリプロピレン、エチレン−α−オレフィン共重合体、スチレン−ブタジエンブロック共重合体、透明ABS樹脂、ポリ塩化ビニル、ポリ塩化ビニリデン、ポリエチレンテレフタレート、ポリブチレンテレフタレートなどが挙げられる。
第1の透明樹脂製容器10aおよび第2の透明樹脂製容器10bの材質は同じであってもよいし、異なっていてもよい。
The first transparent resin container 10a and the second transparent resin container 10b only have to be transparent enough to visually recognize the inside, and may be so-called translucent or colored. I do not care.
In the present embodiment, the first transparent resin container 10a and the second transparent resin container 10b are formed from the second transparent resin container 10b to the first transparent resin container 10a in which the uneven portion 12a is formed. In order to facilitate insertion, it is made of a transparent resin with high elasticity. Here, as the transparent resin having high elasticity, for example, polyethylene, polypropylene, ethylene-α-olefin copolymer, styrene-butadiene block copolymer, transparent ABS resin, polyvinyl chloride, polyvinylidene chloride, polyethylene terephthalate, poly Examples include butylene terephthalate.
The materials of the first transparent resin container 10a and the second transparent resin container 10b may be the same or different.

第1の透明樹脂製容器10aおよび第2の透明樹脂製容器10bの底面13a,13bは、開口部11a,11bを上に向けた際に第1の透明樹脂製容器10a、第2の透明樹脂製容器10bがそれぞれ自立できる形状になっていることが好ましい。
第1の透明樹脂製容器10aおよび第2の透明樹脂製容器10bの高さおよび直径は、電極用収納体1内に電極100および必要に応じて付属品を収納できる範囲であることが好ましく、具体的には、第1の透明樹脂製容器10aおよび第2の透明樹脂製容器10bの高さが15〜30cm、直径が5〜8cmであることが好ましい。
The bottom surfaces 13a and 13b of the first transparent resin container 10a and the second transparent resin container 10b are formed so that the first transparent resin container 10a and the second transparent resin are formed when the openings 11a and 11b are directed upward. It is preferable that each of the containers 10b has a shape capable of supporting itself.
It is preferable that the height and diameter of the first transparent resin container 10a and the second transparent resin container 10b are in a range in which the electrode 100 and accessories can be stored in the electrode storage body 1, Specifically, the first transparent resin container 10a and the second transparent resin container 10b preferably have a height of 15 to 30 cm and a diameter of 5 to 8 cm.

第1の透明樹脂製容器10aおよび第2の透明樹脂製容器10bには所定の位置に目盛り線を形成しておくことが好ましい。目盛り線を形成しておけば、第1の透明樹脂製容器10aおよび第2の透明樹脂製容器10bを計量容器として利用できる。
目盛り線としては、第1の透明樹脂製容器10aおよび第2の透明樹脂製容器10bの所定の位置の周面に沿って形成された凸条または溝などが挙げられる。
The first transparent resin container 10a and the second transparent resin container 10b are preferably formed with graduation lines at predetermined positions. If the graduation line is formed, the first transparent resin container 10a and the second transparent resin container 10b can be used as the weighing containers.
Examples of the scale lines include ridges or grooves formed along the peripheral surfaces at predetermined positions of the first transparent resin container 10a and the second transparent resin container 10b.

熱収縮性樹脂フィルム20としては、例えば、ポリ塩化ビニル、ポリエチレンテレフタレート(PET)、ポリスチレン、スチレン−ブタジエンブロック共重合体、ポリプロピレン、ポリエチレン、多層ポリオレフィンなどの樹脂フィルムが挙げられる。高い熱収縮性を得るためには、前記樹脂フィルムをあらかじめ延伸しておくことが好ましい。
この熱収縮性樹脂フィルム20には、開封を容易にするために、ミシン目21が形成されていることが好ましい。
Examples of the heat-shrinkable resin film 20 include resin films such as polyvinyl chloride, polyethylene terephthalate (PET), polystyrene, styrene-butadiene block copolymer, polypropylene, polyethylene, and multilayer polyolefin. In order to obtain high heat shrinkability, it is preferable to stretch the resin film in advance.
The heat-shrinkable resin film 20 is preferably formed with perforations 21 for easy opening.

電極用収納体1への電極100の収納は、例えば、以下のようにして行われる。まず、第1の透明樹脂製容器10a内に電極100および必要に応じて取扱説明書、検査合格証や電極内部液等の付属品を入れる。その後、第1の透明樹脂製容器10aに、第2の透明樹脂製容器10bを開口部11b側末端から挿入し、第1の透明樹脂製容器10aに形成された凹凸部12aの凸部Bに、第2の透明樹脂製容器10bに形成された凹凸部12bの凸部Dを嵌め込む。次に、第1の透明樹脂製容器10aの開口部11a側末端およびその周辺を、熱収縮していない熱収縮性樹脂フィルムで覆った後、加熱して熱収縮性樹脂フィルムを収縮させて第1の透明樹脂製容器10aおよび第2の透明樹脂製容器10bに密着させる。これにより、電極用収納体1を形成しつつ、電極用収納体1内に電極100を収納することができる。 For example, the electrode 100 is stored in the electrode storage body 1 as follows. First, the electrode 100 and accessories such as an instruction manual, an inspection certificate, and an electrode internal solution are placed in the first transparent resin container 10a. Thereafter, the second transparent resin container 10b is inserted into the first transparent resin container 10a from the end on the opening 11b side, and the protrusion B 1 of the uneven part 12a formed in the first transparent resin container 10a. in, fitting the convex portion D 1 of the second formed in the transparent resin vessel 10b uneven portion 12b. Next, after covering the opening 11a side end of the first transparent resin container 10a and the periphery thereof with a heat-shrinkable resin film which is not heat-shrinked, the heat-shrinkable resin film is shrunk by heating to make the first The first transparent resin container 10a and the second transparent resin container 10b are brought into close contact with each other. Thereby, the electrode 100 can be stored in the electrode storage body 1 while forming the electrode storage body 1.

電極用収納体1に収納される電極100としては、例えば、pH測定用の電極、酸化還元電位または酸化還元電流測定用の電極、イオン濃度測定用の電極、溶存酸素濃度測定用の電極、あるいは、ガス濃度測定用の電極などが挙げられる。電極100の形状としては、図1に示すように、棒状のものでもよいが、他の形状であっても構わない。   Examples of the electrode 100 housed in the electrode housing 1 include, for example, an electrode for measuring pH, an electrode for measuring redox potential or redox current, an electrode for measuring ion concentration, an electrode for measuring dissolved oxygen concentration, or And electrodes for gas concentration measurement. As shown in FIG. 1, the electrode 100 may have a rod shape, but may have another shape.

以上説明した電極用収納体1は、第1の透明樹脂製容器10aおよび第2の透明樹脂製容器10bが接続されて一体化されたものであるから、開封しなくても内容物を目視により確認することができる。
また、上述した電極用収納体1では、第1の透明樹脂製容器10aの凹凸部12aに第2の透明樹脂製容器10bの凹凸部12bが挿嵌されており、第1の透明樹脂製容器10aから第2の透明樹脂製容器10bが抜き出にくくなっている。そのため、一体化した第1の透明樹脂製容器10aと第2の透明樹脂製容器10bとが分離しにくくなっており、例えば、輸送時等、激しく振動する場合でも分離しにくい。
さらに、上述した電極用収納体1では、第1の透明樹脂製容器10aの開口部11a側末端を覆うように、熱収縮した熱収縮性樹脂フィルム20が被覆されており、第1の透明樹脂製容器10aと第2の透明樹脂製容器10bの一体化を補助している。したがって、一体化した第1の透明樹脂製容器10aと第2の透明樹脂製容器10bとがより分離しにくくなっている。しかも、このような熱収縮性樹脂フィルム20の被覆は封印の役割を果たすため、未開封か開封済みかを目視により容易に判断できる。
Since the electrode housing 1 described above is formed by connecting and integrating the first transparent resin container 10a and the second transparent resin container 10b, the contents can be visually observed without opening. Can be confirmed.
Further, in the electrode housing 1 described above, the uneven portion 12b of the second transparent resin container 10b is inserted into the uneven portion 12a of the first transparent resin container 10a, so that the first transparent resin container The second transparent resin container 10b is difficult to be extracted from 10a. For this reason, the integrated first transparent resin container 10a and the second transparent resin container 10b are difficult to separate, and are difficult to separate even when vibrated vigorously, for example, during transportation.
Further, in the electrode housing 1 described above, the heat-shrinkable resin film 20 that has been heat-shrinked is covered so as to cover the opening 11a side end of the first transparent resin container 10a, and the first transparent resin Integration of the container 10a and the second transparent resin container 10b is assisted. Therefore, the integrated first transparent resin container 10a and the second transparent resin container 10b are more difficult to separate. Moreover, since the coating of the heat-shrinkable resin film 20 serves as a seal, it can be easily determined visually whether it is unopened or opened.

また、本実施形態のように、第1の透明樹脂製容器10aと第2の透明樹脂製容器10bの凹凸部12a,12bに凹部および凸部がそれぞれ2以上形成されている場合には、第1の透明樹脂製容器10aに第2の透明樹脂製容器10bを挿入する際の挿入深さを、凹部および凸部の数に応じて複数選択でき、電極用収納体1の長さを容易に変更できる。例えば、図5に示すように、第1の透明樹脂製容器10aに形成された凹凸部12aの凸部Bの裏面に、第2の透明樹脂製容器10bに形成された凹凸部12bの凸部Dの表面が接するまで(第1の透明樹脂製容器10aに形成された凹凸部12aの凹部Aの裏面に、第2の透明樹脂製容器10bに形成された凹凸部12bの凹部Cの表面が接するまで)、第1の透明樹脂製容器10aに第2の透明樹脂製容器10bの開口部11b側末端を挿入すれば、電極用収納体1を短くできる。このように長さの調節が可能であれば、種々の長さの電極に対応できるため、電極用収納体の種類を少なくでき、コストダウンや在庫管理の容易化を図ることができる。また、長さの調節が可能であれば、短い電極はそれに応じた短い電極用収納体に収納することができるため、保管や輸送時のスペースを小さくすることができる。 Further, as in this embodiment, when two or more concave portions and convex portions are formed on the concave and convex portions 12a and 12b of the first transparent resin container 10a and the second transparent resin container 10b, respectively, A plurality of insertion depths when inserting the second transparent resin container 10b into the one transparent resin container 10a can be selected according to the number of concave and convex portions, and the length of the electrode housing 1 can be easily set. Can change. For example, as shown in FIG. 5, the rear surface of the convex portion B 2 of the first formed in the transparent resin vessel 10a uneven portion 12a, the convex of the second formed in the transparent resin vessel 10b uneven portion 12b until contact surface parts D 1 (the back surface of the concave portion a 1 of the first formed in the transparent resin vessel 10a uneven portion 12a, the recess C of the concave-convex portion 12b formed on the second transparent resin vessel 10b If the opening 11b side end of the second transparent resin container 10b is inserted into the first transparent resin container 10a, the electrode housing 1 can be shortened. If the length can be adjusted in this way, it is possible to deal with electrodes having various lengths, so that the types of electrode storage bodies can be reduced, and cost reduction and inventory management can be facilitated. In addition, if the length can be adjusted, the short electrode can be stored in a short electrode storage body corresponding to the length, so that the space for storage and transportation can be reduced.

電極用収納体1において、第1の透明樹脂製容器10aおよび第2の透明樹脂製容器10bを構成する透明樹脂は弾性が高いものであるため、外部から衝撃が加えられても緩和することができ、内部に衝撃を伝達しにくい。したがって、例えば、電極100が収納された電極用収納体1を床に落とした場合でも衝撃が緩和され、電極100の破損を防ぐことができる。   In the electrode housing 1, since the transparent resin constituting the first transparent resin container 10 a and the second transparent resin container 10 b is highly elastic, it can be relaxed even if an impact is applied from the outside. It is difficult to transmit the impact to the inside. Therefore, for example, even when the electrode storage body 1 in which the electrode 100 is stored is dropped on the floor, the impact is alleviated and the electrode 100 can be prevented from being damaged.

また、電極用収納体1は、開封され、電極100が取り出された後に、第1の透明樹脂製容器10aおよび第2の透明樹脂製容器10bを収納の目的外の容器として利用できる。例えば、電極100を校正する標準液を入れるための容器として利用できる。したがって、資源を有効に利用できるため、環境への負荷が小さい。   Moreover, after the electrode storage body 1 is opened and the electrode 100 is taken out, the first transparent resin container 10a and the second transparent resin container 10b can be used as containers other than the storage purpose. For example, it can be used as a container for containing a standard solution for calibrating the electrode 100. Therefore, since resources can be used effectively, the load on the environment is small.

なお、本発明の電極用収納体は上述した実施形態に限定されない。例えば、上述した実施形態では、第1の透明樹脂製容器10aおよび第2の透明樹脂製容器10bが円筒状の容器、すなわち、長さ方向に直交する断面の形状が円形の容器であったが、他の形状であっても構わない。例えば、長さ方向に直交する断面の形状が、三角形、四角形等の多角形、半円形、半楕円形、星形等である容器であっても構わない。断面形状が円形以外である場合には、電極用収納体が転倒した状態でも転がりにくい。また、容器の断面が多角形や星形など角を有する形状の場合には、その角が曲線化されていても構わない。
第1の透明樹脂製容器10aおよび/または第2の透明樹脂製容器10bには、図6に示すように、底面13aの周囲に、転倒を防止する転倒防止手段14が設けられていてもよい。ここで、転倒防止手段14は、透明樹脂製容器(第1の透明樹脂製容器10a)と一体であってもよいし、別体であってもよい。
The electrode storage body of the present invention is not limited to the embodiment described above. For example, in the above-described embodiment, the first transparent resin container 10a and the second transparent resin container 10b are cylindrical containers, that is, containers having a circular cross section perpendicular to the length direction. Other shapes may be used. For example, a container whose cross-sectional shape orthogonal to the length direction is a polygon such as a triangle or a quadrangle, a semi-circle, a semi-ellipse, or a star may be used. When the cross-sectional shape is other than circular, it is difficult to roll even when the electrode storage body is overturned. Further, when the cross section of the container has a shape such as a polygon or a star, the corner may be curved.
As shown in FIG. 6, the first transparent resin container 10a and / or the second transparent resin container 10b may be provided with an overturn prevention means 14 for preventing the overturn around the bottom surface 13a. . Here, the fall prevention means 14 may be integrated with the transparent resin container (first transparent resin container 10a) or may be a separate body.

さらに、上述した実施形態の電極用収納体1では、第1の透明樹脂製容器10aの開口部11a側末端およびその周辺を覆うように、熱収縮した熱収縮性樹脂フィルム20が被覆されていたが、電極用収納体1の全体を覆うように、熱収縮した熱収縮性樹脂フィルム20が被覆されていてもよい。あるいは、第1の透明樹脂製容器10aの開口部11a側末端に、熱収縮した熱収縮性樹脂フィルム20が被覆されていなくてもよい。   Furthermore, in the electrode storage body 1 of the above-described embodiment, the heat-shrinkable heat-shrinkable resin film 20 is covered so as to cover the opening 11a side end of the first transparent resin container 10a and its periphery. However, the heat-shrinkable resin film 20 that has been heat-shrinked may be coated so as to cover the entire electrode housing 1. Alternatively, the heat-shrinkable heat-shrinkable resin film 20 may not be coated on the opening 11a side end of the first transparent resin container 10a.

熱収縮性樹脂フィルム20のミシン目21の形成方向は、電極用収納体1の長手方向であったが、それ以外の方向でもよく、周方向でも構わない。例えば、熱収縮性樹脂フィルムに3〜5mm程度の間隔を有して平行な2本のミシン目を周方向に形成してもよい。このように2本のミシン目を周方向に形成する場合には、2本のミシン目の間の中央付近が第1の透明樹脂製容器10aの開口部11a側末端付近になるように位置合わせをして、第1の透明樹脂製容器10aおよび第2の透明樹脂製容器10bを熱収縮性樹脂フィルムで被覆することが好ましい。2本のミシン目の間の中央付近が第1の透明樹脂製容器10aの開口部11a側末端付近に位置していれば、開封後に第1の透明樹脂製容器10aおよび第2の透明樹脂製容器10bをビーカー代わりの容器として利用するのに便利であるばかりでなく、熱収縮性樹脂フィルムが廃棄されることが防止されるため、環境への負荷がより小さくなる。
また、測定者にとって便利であることから、熱収縮性樹脂フィルムに、収納する電極100の種類に応じた有用な情報(例えば、pH計の校正用標準液の温度特性表や溶存酸素計の校正時に有用な酸素飽和度の温度特性表等)をあらかじめ印刷しておくことが好ましい。熱収縮性樹脂フィルムには、容器に対応した目盛り線をあらかじめ印刷してもよいが、その場合には、熱収縮性樹脂フィルムの被覆する際、位置合わせの正確性を高くすることが好ましい。
The formation direction of the perforation 21 of the heat-shrinkable resin film 20 is the longitudinal direction of the electrode housing 1, but it may be the other direction or the circumferential direction. For example, two parallel perforations may be formed in the circumferential direction with an interval of about 3 to 5 mm on the heat-shrinkable resin film. When the two perforations are formed in the circumferential direction in this way, alignment is performed so that the vicinity of the center between the two perforations is near the end of the first transparent resin container 10a on the opening 11a side. Thus, it is preferable to cover the first transparent resin container 10a and the second transparent resin container 10b with a heat-shrinkable resin film. If the vicinity of the center between the two perforations is located near the opening 11a side end of the first transparent resin container 10a, the first transparent resin container 10a and the second transparent resin Not only is it convenient to use the container 10b as a container instead of a beaker, but the heat-shrinkable resin film is prevented from being discarded, so the burden on the environment is further reduced.
In addition, since it is convenient for the measurer, useful information according to the type of electrode 100 to be stored in the heat-shrinkable resin film (for example, the temperature characteristic table of the calibration standard solution of the pH meter and the calibration of the dissolved oxygen meter) It is preferable to print in advance an oxygen saturation temperature characteristic table that is sometimes useful. The heat-shrinkable resin film may be preliminarily printed with a scale line corresponding to the container. In that case, it is preferable to increase the accuracy of alignment when the heat-shrinkable resin film is coated.

上述した実施形態では、第1の透明樹脂製容器10aに第2の透明樹脂製容器10bの開口部11b末端が挿入されていたが、第2の透明樹脂製容器10bに第1の透明樹脂製容器10aの開口部11a側末端が挿入されていても構わない。   In the embodiment described above, the end of the opening 11b of the second transparent resin container 10b is inserted into the first transparent resin container 10a, but the first transparent resin container 10b is made of the first transparent resin container 10b. The opening 11a side end of the container 10a may be inserted.

上述した実施形態では、第1の透明樹脂製容器10a凹凸部12aには、2つの凹部A,A、凸部B,Bが形成され、第2の透明樹脂製容器10bの凹凸部12bには、2つの凹部C,C、凸部D,Dが形成されていたが、凹部および凸部がそれぞれ3以上形成されていても構わないし、凹部および凸部がそれぞれ1つ形成されていても構わない。凹部および凸部がそれぞれ3以上形成されている場合も電極用収納体の長さを調節できる。また、第1の透明樹脂製容器10aおよび第2の透明樹脂製容器10bのいずれか一方のみが凹部および凸部を2以上有していてもよい。第1の透明樹脂製容器10aおよび第2の透明樹脂製容器10bのいずれか一方のみが凹部および凸部を2以上有する場合も、電極用収納体1の長さの調節が可能である。また、上記実施形態では、凹凸部が各透明樹脂製容器の開口部末端側に形成されていたが、全体に形成されていてもよい。凹凸部が全体に形成されている場合には凹凸部を目盛り線として利用できる。
さらに、凹凸部の代わりに、凹部または凸部が1つ形成されていても構わない。
In the embodiment described above, the first transparent resin container 10a concavo-convex portion 12a is formed with two concave portions A 1 , A 2 and convex portions B 1 , B 2 , and the concavo-convex portion of the second transparent resin container 10b. Two concave portions C 1 and C 2 and convex portions D 1 and D 2 were formed in the portion 12b. However, three or more concave portions and convex portions may be formed, or the concave portion and the convex portion may be formed respectively. One may be formed. The length of the electrode storage body can also be adjusted when three or more concave portions and convex portions are formed. Further, only one of the first transparent resin container 10a and the second transparent resin container 10b may have two or more concave portions and convex portions. Even when only one of the first transparent resin container 10a and the second transparent resin container 10b has two or more concave portions and convex portions, the length of the electrode housing 1 can be adjusted. Moreover, in the said embodiment, although the uneven | corrugated | grooved part was formed in the opening part terminal side of each transparent resin container, you may form in the whole. When the concavo-convex portion is formed on the entire surface, the concavo-convex portion can be used as a scale line.
Furthermore, one concave or convex portion may be formed instead of the concave and convex portion.

上述した実施形態では、第1の透明樹脂製容器10aの凹凸部12aに第2の透明樹脂製容器10bの凹凸部12bが挿嵌されていたが、本発明はこれに限定されない。例えば、第1の透明樹脂製容器10aおよび第2の透明樹脂製容器1の凹凸部をそれぞれねじ状とし、その凹凸部同士を螺合して第1の透明樹脂製容器10aおよび第2の透明樹脂製容器10bを一体化させてもよい。   In the embodiment described above, the concavo-convex portion 12b of the second transparent resin container 10b is inserted into the concavo-convex portion 12a of the first transparent resin container 10a, but the present invention is not limited to this. For example, the concavo-convex portions of the first transparent resin container 10a and the second transparent resin container 1 are each formed into a screw shape, and the concavo-convex portions are screwed together to form the first transparent resin container 10a and the second transparent resin. The resin container 10b may be integrated.

上述した実施形態では、第1の透明樹脂製容器10aの開口部11a近傍および第2の透明樹脂製容器10bの開口部11b近傍に凹凸部12a,12bが形成されていたが、凹凸部12a,12bが形成されていなくても構わない。凹凸部12a,12bが形成されていない場合には、透明樹脂として、上述したような弾性の高い透明樹脂以外に、弾性の低い透明樹脂を使用することもできる。弾性の低い透明樹脂としては、例えば、ポリスチレン、スチレン−アクリル共重合体、アクリル樹脂、ポリカーボネートなどが挙げられる。   In the embodiment described above, the uneven portions 12a and 12b are formed in the vicinity of the opening portion 11a of the first transparent resin container 10a and in the vicinity of the opening portion 11b of the second transparent resin container 10b. 12b may not be formed. In the case where the concavo-convex portions 12a and 12b are not formed, a transparent resin having low elasticity can be used as the transparent resin in addition to the transparent resin having high elasticity as described above. Examples of the low-elasticity transparent resin include polystyrene, styrene-acrylic copolymer, acrylic resin, and polycarbonate.

(第2の実施形態)
図7および図8に、本発明の電極用収納体の第2の実施形態を示す。なお、本実施形態において第1の実施形態と同じ構成のものは図1〜図4と同じ符号を付して説明を省略する。
本実施形態の電極用収納体2は、第1の透明樹脂製容器10aと第2の透明樹脂製容器10bとの間に、両端に開口部31a,31bが形成された円筒状の透明樹脂製の接続部材30が介在して一体化されたものである。
(Second Embodiment)
7 and 8 show a second embodiment of the electrode storage body of the present invention. In addition, in this embodiment, the thing of the same structure as 1st Embodiment attaches | subjects the same code | symbol as FIGS. 1-4, and abbreviate | omits description.
The electrode housing 2 of the present embodiment is made of a cylindrical transparent resin in which openings 31a and 31b are formed at both ends between a first transparent resin container 10a and a second transparent resin container 10b. The connection member 30 is interposed and integrated.

本実施形態における接続部材30の材質としては、第1の透明樹脂製容器10aおよび第2の透明樹脂製容器10bの材質と同じものが挙げられる。
また、接続部材30には、凹部E〜Eおよび凸部F〜Fを有する凹凸部32が形成されている(図9参照)。ここで、凹部、凸部とは、接続部材30を外側から見た際の形状のことである。
そして、接続部材30に形成された凹凸部32の凸部Fの裏面に第1の透明樹脂製容器10aに形成された凹凸部12aの凸部Bの表面が接するように、接続部材30に第1の透明樹脂製容器10aの開口部11a側末端が挿嵌されている。また、接続部材30に形成された凹凸部32の凸部Fの裏面に第2の透明樹脂製容器10bに形成された凹凸部12bの凸部Dの表面が接するように、接続部材30に第2の透明樹脂製容器10bの開口部11b側末端が挿嵌されている。
また、接続部材30の開口部31a側末端および開口部31b側末端を共に覆うように、熱収縮した熱収縮性樹脂フィルム20が被覆されている。
Examples of the material of the connection member 30 in the present embodiment include the same materials as those of the first transparent resin container 10a and the second transparent resin container 10b.
Further, the connecting member 30, concave-convex portion 32 having a recess E 1 to E 3 and the convex portion F 1 to F 4 are formed (see FIG. 9). Here, the concave portion and the convex portion are shapes when the connection member 30 is viewed from the outside.
As the surface of the convex portion B 1 of the first formed in the transparent resin vessel 10a irregular portion 12a on the rear surface of the convex portion F 1 of the concave-convex portion 32 formed in the connecting member 30 are in contact with the connecting member 30 The opening 11a side end of the first transparent resin container 10a is inserted. Further, as the surface of the convex portion D 1 of the second formed in the transparent resin vessel 10b uneven portion 12b in contact with the back surface of the convex portion F 4 of the concave-convex portion 32 formed in the connecting member 30, connecting member 30 The end of the second transparent resin container 10b on the opening 11b side is inserted.
Moreover, the heat-shrinkable resin film 20 that has been heat-shrinked is covered so as to cover both the opening 31a-side end and the opening 31b-side end of the connecting member 30.

電極用収納体2への電極100の収納は、例えば、以下のようにして行われる。まず、接続部材30の一端に第1の透明樹脂製容器10aの開口部11a末端を挿入し、接続部材30に形成された凹凸部32の凸部Fに、第1の透明樹脂製容器10aに形成された凹凸部12aの凸部Bを嵌め込む。次いで、第1の透明樹脂製容器10aおよび接続部材30内に電極100および必要に応じて取扱説明書、検査合格証や電極内部液等の付属品を入れる。次いで、接続部材30の他端に第2の透明樹脂製容器10bの開口部11b側末端を挿入し、接続部材30に形成された凹凸部32の凸部Fに、第2の透明樹脂製容器10bに形成された凹凸部12bの凸部Dを嵌め込む。そして、接続部材30の末端およびその周辺を、熱収縮していない熱収縮性樹脂フィルムで覆った後、加熱して熱収縮性樹脂フィルムを収縮させて接続部材30と第1の透明樹脂製容器10aおよび第2の透明樹脂製容器10bとに密着させる。これにより、電極用収納体2を形成しつつ、電極用収納体2内に電極100を収納することができる。 The electrode 100 is stored in the electrode storage body 2 in the following manner, for example. First, the connection openings 11a-terminus of the first transparent resin vessel 10a is inserted into one end of the member 30, the convex portion F 1 of the concave-convex portion 32 formed in the connecting member 30, the first transparent resin container 10a the convex portion B 1 of the formed concavo-convex portions 12a to fit. Next, the electrode 100 and accessories such as an instruction manual, a test pass certificate, and an electrode internal solution are placed in the first transparent resin container 10a and the connection member 30 as necessary. Then, the connection member is inserted into the other end of the 30 openings 11b side end of the second transparent resin vessel 10b, the connecting member 30 irregular portion 32 convex portion F 4 of the formed, made the second transparent resin fitting the convex portion D 1 of the formed container 10b uneven portion 12b. Then, after covering the end of the connection member 30 and its periphery with a heat-shrinkable resin film that is not heat-shrinked, the heat-shrinkable resin film is shrunk by heating to connect the connection member 30 and the first transparent resin container. 10a and the second transparent resin container 10b. Thereby, the electrode 100 can be stored in the electrode storage body 2 while forming the electrode storage body 2.

本実施形態の電極用収納体2では、第1の透明樹脂製容器10aと第2の透明樹脂製容器10bとが接続部材30を介して一体化したものであるから、開封しなくても内容物を目視により確認することができる。
また、上述した電極用収納体2では、第1の透明樹脂製容器10aの凹凸部12aおよび第2の透明樹脂製容器10bの凹凸部12bが接続部材30の凹凸部32に挿嵌されており、接続部材30から第1の透明樹脂製容器10aおよび第2の透明樹脂製容器10bが抜き出にくくなっている。そのため、一体化した第1の透明樹脂製容器10aおよび第2の透明樹脂製容器10bと接続部材30とが分離しにくくなっている。
さらには、接続部材30の末端を覆うように、熱収縮した熱収縮性樹脂フィルム20が被覆されているから、一体化した第1の透明樹脂製容器10aおよび第2の透明樹脂製容器10bと接続部材30とがより分離しにくくなっている。
しかも、本実施形態では、接続部材30の長さによって電極用収納体2の長さを適宜調節できる。
In the electrode storage body 2 of the present embodiment, the first transparent resin container 10a and the second transparent resin container 10b are integrated through the connection member 30, so that the contents are not opened. Objects can be confirmed visually.
Further, in the electrode housing 2 described above, the uneven portion 12 a of the first transparent resin container 10 a and the uneven portion 12 b of the second transparent resin container 10 b are inserted into the uneven portion 32 of the connection member 30. The first transparent resin container 10a and the second transparent resin container 10b are difficult to be extracted from the connection member 30. Therefore, the integrated first transparent resin container 10a and second transparent resin container 10b are difficult to separate from the connection member 30.
Further, since the heat-shrinkable heat-shrinkable resin film 20 is covered so as to cover the end of the connecting member 30, the integrated first transparent resin container 10a and second transparent resin container 10b The connection member 30 is more difficult to separate.
Moreover, in the present embodiment, the length of the electrode housing 2 can be adjusted as appropriate depending on the length of the connection member 30.

また、電極用収納体2では、第1の実施形態と同様に、第1の透明樹脂製容器10aおよび第2の透明樹脂製容器10bを収納目的外の容器としても利用でき、資源を有効に利用できるため、環境への負荷が小さい。   In addition, in the electrode storage body 2, as in the first embodiment, the first transparent resin container 10 a and the second transparent resin container 10 b can be used as containers other than the storage purpose, and resources can be effectively used. Since it can be used, the load on the environment is small.

なお、上述した第2の実施形態では、接続部材30に第1の透明樹脂製容器10aの開口部11a側末端および第2の透明樹脂製容器10bの開口部11b側末端が挿入されていたが、本発明では、接続部材30の末端が、第1の透明樹脂製容器10aの開口部11a側末端および/または第2の透明樹脂製容器10bの開口部11b側末端に挿入されていてもよい。その場合には、接続部材30の末端が挿入された第1の透明樹脂製容器10aの開口部11a側末端および/または第2の透明樹脂製容器10bの開口部11b側末端を覆うように、熱収縮した熱収縮性樹脂フィルム20が被覆されていることが好ましい。
また、上記第2の実施形態では、接続部材30が透明樹脂製であったが、接続部材は透明樹脂製に限定されず、それ以外の材質、例えば、不透明な樹脂、紙、金属などであってもよい。接続部材が不透明な材質から構成されていても、透明樹脂製容器を介して内部を見ることができるから、本発明の効果が損なわれることはない。
In the second embodiment described above, the opening 11a side end of the first transparent resin container 10a and the opening 11b side end of the second transparent resin container 10b are inserted into the connection member 30. In the present invention, the end of the connection member 30 may be inserted into the opening 11a side end of the first transparent resin container 10a and / or the opening 11b side end of the second transparent resin container 10b. . In that case, so as to cover the opening 11a side end of the first transparent resin container 10a and / or the opening 11b side end of the second transparent resin container 10b into which the end of the connecting member 30 is inserted, It is preferable that the heat-shrinkable heat-shrinkable resin film 20 is coated.
In the second embodiment, the connecting member 30 is made of a transparent resin. However, the connecting member is not limited to a transparent resin, and other materials such as opaque resin, paper, metal, etc. May be. Even if the connecting member is made of an opaque material, the inside can be seen through the transparent resin container, so that the effect of the present invention is not impaired.

本発明に係る第1の実施形態の電極用収納体を示す斜視図である。It is a perspective view which shows the container for electrodes of 1st Embodiment which concerns on this invention. 図1の電極用収納体の要部を示す縦断面図である。It is a longitudinal cross-sectional view which shows the principal part of the container for electrodes of FIG. 図1の電極用収納体を構成する第1の透明樹脂製容器を示す側面図である。It is a side view which shows the 1st transparent resin container which comprises the container for electrodes of FIG. 図1の電極用収納体を構成する第2の透明樹脂製容器を示す側面図である。It is a side view which shows the 2nd transparent resin container which comprises the container for electrodes of FIG. 図1の電極用収納体の変形例の要部を示す縦断面図である。It is a longitudinal cross-sectional view which shows the principal part of the modification of the electrode storage body of FIG. 本発明の電極用収納体を構成する透明樹脂製容器の他の例を示す斜視図である。It is a perspective view which shows the other example of the container made from transparent resin which comprises the container for electrodes of this invention. 本発明に係る第2の実施形態の電極用収納体を示す斜視図である。It is a perspective view which shows the container for electrodes of 2nd Embodiment which concerns on this invention. 図7の電極用収納体の要部を示す縦断面図である。It is a longitudinal cross-sectional view which shows the principal part of the container for electrodes of FIG. 図7の電極用収納体を構成する接続部材を示す側面図である。It is a side view which shows the connection member which comprises the container for electrodes of FIG.

符号の説明Explanation of symbols

1,2 電極用収納体
10a 第1の透明樹脂製容器
10b 第2の透明樹脂製容器
11a,11b 開口部
12a,12b 凹凸部
13a,13b 底面
14 転倒防止手段
20 熱収縮性樹脂フィルム
21 ミシン目
30 接続部材
31a,31b 開口部
32 凹凸部
100 電極
DESCRIPTION OF SYMBOLS 1, 2 Electrode storage body 10a 1st transparent resin container 10b 2nd transparent resin container 11a, 11b Opening part 12a, 12b Uneven part 13a, 13b Bottom face 14 Fall prevention means 20 Heat-shrinkable resin film 21 Perforation 30 Connection member 31a, 31b Opening part 32 Uneven part 100 Electrode

Claims (4)

物質の特性を測定する電極が収納された電極用収納体であって、一端に開口部が形成された有底筒状の一対の透明樹脂製容器が接続されて一体化されていることを特徴とする電極用収納体。   A container for an electrode in which an electrode for measuring a property of a substance is stored, wherein a pair of bottomed cylindrical transparent resin containers having an opening formed at one end are connected and integrated. An electrode housing. 一方の透明樹脂製容器に、他方の透明樹脂製容器の開口部側末端が挿入されている請求項1に記載の電極用収納体。  The electrode storage body according to claim 1, wherein an opening side end of the other transparent resin container is inserted into one transparent resin container. 一対の透明樹脂製容器の間に、両端に開口部が形成された筒状の接続部材が介在しており、少なくとも一方の透明樹脂製容器の開口部側末端が接続部材に挿入されている請求項1に記載の電極用収納体。   A cylindrical connecting member having openings at both ends is interposed between a pair of transparent resin containers, and the opening side end of at least one transparent resin container is inserted into the connecting member. Item 2. The electrode storage body according to Item 1. 一対の透明樹脂製容器の間に、両端に開口部が形成された筒状の接続部材が介在しており、少なくとも一方の透明樹脂製容器に接続部材の末端が挿入されている請求項1に記載の電極用収納体。   A cylindrical connecting member having openings at both ends is interposed between the pair of transparent resin containers, and the terminal of the connecting member is inserted into at least one of the transparent resin containers. The electrode storage body described.
JP2005201583A 2005-07-11 2005-07-11 Member for storing electrode Pending JP2007015753A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2005201583A JP2007015753A (en) 2005-07-11 2005-07-11 Member for storing electrode

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2005201583A JP2007015753A (en) 2005-07-11 2005-07-11 Member for storing electrode

Publications (1)

Publication Number Publication Date
JP2007015753A true JP2007015753A (en) 2007-01-25

Family

ID=37753261

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2005201583A Pending JP2007015753A (en) 2005-07-11 2005-07-11 Member for storing electrode

Country Status (1)

Country Link
JP (1) JP2007015753A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2010122615A1 (en) * 2009-04-24 2010-10-28 Takahashi Satoshi Can and method of manufacturing same

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS6151329U (en) * 1984-09-10 1986-04-07
JPS6199491U (en) * 1984-12-05 1986-06-25
JPH01177127U (en) * 1988-06-03 1989-12-18
WO2004092720A1 (en) * 2003-03-25 2004-10-28 Arkray Inc. Sensor-receiving container

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS6151329U (en) * 1984-09-10 1986-04-07
JPS6199491U (en) * 1984-12-05 1986-06-25
JPH01177127U (en) * 1988-06-03 1989-12-18
WO2004092720A1 (en) * 2003-03-25 2004-10-28 Arkray Inc. Sensor-receiving container

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2010122615A1 (en) * 2009-04-24 2010-10-28 Takahashi Satoshi Can and method of manufacturing same

Similar Documents

Publication Publication Date Title
ITSV20000058A1 (en) DEVICE IN THE FORM OF A VESSEL AND / OR IN THE FORM OF A CLOSING DEVICE.
TW200701975A (en) Packaging container for test sensors
JP5511336B2 (en) Package rack
US9415559B2 (en) Flexible pouch with inner wall indicia
JP2007015753A (en) Member for storing electrode
JP2023552158A (en) plate packaging
JP6769753B2 (en) Packaging box with inner box
JP2007060903A (en) Tobacco case auxiliary member
JP6299068B2 (en) Liquid container
GB2506429A (en) Window arrangement for a packaged product
JP5261333B2 (en) Packaging case
JP2009040573A (en) Package for roll taking-up paper pipe
FR2816923A1 (en) Package unit for fragile object comprises plate with four elements folded around object, bellow buttons hold different shaped articles by deforming according to object geometry
JP2005187026A (en) Reel packing sheet
JP6534644B2 (en) Blister pack
JP2009028324A (en) Lunch box
RU9438U1 (en) CASE FOR STORAGE AND TRANSPORTATION OF OBJECTS HAVING A RECTANGULAR PRISM FORM, FOR EXAMPLE, AUDIO CASSETTE OR VIDEO CASSETTE
JP3110655U (en) Drug container
JP2009179332A (en) Storing container
CN219328772U (en) Calibration reference element, calibration reference system, bracket and calibration kit
JP2001315753A (en) Goods-delivery box
JP3173306U (en) File case with 3 pockets
JP3220289U (en) Transparent bag for banknotes to prevent wrinkles on banknotes
TW201739675A (en) Battery package
JP4872303B2 (en) Inspection system

Legal Events

Date Code Title Description
A621 Written request for application examination

Free format text: JAPANESE INTERMEDIATE CODE: A621

Effective date: 20080701

A977 Report on retrieval

Free format text: JAPANESE INTERMEDIATE CODE: A971007

Effective date: 20110318

A131 Notification of reasons for refusal

Free format text: JAPANESE INTERMEDIATE CODE: A131

Effective date: 20110329

A02 Decision of refusal

Free format text: JAPANESE INTERMEDIATE CODE: A02

Effective date: 20110809