JP5050334B2 - Desiccant-containing resin molded body and production method thereof, container using desiccant-containing resin molded body - Google Patents
Desiccant-containing resin molded body and production method thereof, container using desiccant-containing resin molded body Download PDFInfo
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- 239000002274 desiccant Substances 0.000 title claims abstract description 46
- 229920005989 resin Polymers 0.000 title claims abstract description 44
- 239000011347 resin Substances 0.000 title claims abstract description 44
- 238000004519 manufacturing process Methods 0.000 title claims abstract description 9
- 239000012778 molding material Substances 0.000 claims abstract description 81
- 238000002156 mixing Methods 0.000 claims abstract description 40
- BRPQOXSCLDDYGP-UHFFFAOYSA-N calcium oxide Chemical compound [O-2].[Ca+2] BRPQOXSCLDDYGP-UHFFFAOYSA-N 0.000 claims abstract description 39
- ODINCKMPIJJUCX-UHFFFAOYSA-N calcium oxide Inorganic materials [Ca]=O ODINCKMPIJJUCX-UHFFFAOYSA-N 0.000 claims abstract description 39
- 239000000292 calcium oxide Substances 0.000 claims abstract description 39
- 239000002808 molecular sieve Substances 0.000 claims abstract description 38
- URGAHOPLAPQHLN-UHFFFAOYSA-N sodium aluminosilicate Chemical compound [Na+].[Al+3].[O-][Si]([O-])=O.[O-][Si]([O-])=O URGAHOPLAPQHLN-UHFFFAOYSA-N 0.000 claims abstract description 38
- 239000000057 synthetic resin Substances 0.000 claims abstract description 32
- 229920003002 synthetic resin Polymers 0.000 claims abstract description 32
- 229920000642 polymer Polymers 0.000 claims abstract description 26
- 238000001746 injection moulding Methods 0.000 claims abstract description 14
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 claims description 76
- 238000010521 absorption reaction Methods 0.000 claims description 42
- 239000002250 absorbent Substances 0.000 claims description 17
- 230000002745 absorbent Effects 0.000 claims description 14
- 229920000058 polyacrylate Polymers 0.000 claims description 13
- 239000006096 absorbing agent Substances 0.000 claims description 12
- 239000000203 mixture Substances 0.000 claims description 12
- NIXOWILDQLNWCW-UHFFFAOYSA-N 2-Propenoic acid Natural products OC(=O)C=C NIXOWILDQLNWCW-UHFFFAOYSA-N 0.000 claims description 9
- SMZOUWXMTYCWNB-UHFFFAOYSA-N 2-(2-methoxy-5-methylphenyl)ethanamine Chemical compound COC1=CC=C(C)C=C1CCN SMZOUWXMTYCWNB-UHFFFAOYSA-N 0.000 claims description 7
- OYPRJOBELJOOCE-IGMARMGPSA-N Calcium-40 Chemical compound [40Ca] OYPRJOBELJOOCE-IGMARMGPSA-N 0.000 claims description 5
- 239000000463 material Substances 0.000 claims description 5
- 229920002125 Sokalan® Polymers 0.000 claims description 4
- 239000002253 acid Substances 0.000 claims 2
- 238000000465 moulding Methods 0.000 abstract description 6
- 238000010828 elution Methods 0.000 abstract description 2
- 239000000243 solution Substances 0.000 abstract 1
- 239000002585 base Substances 0.000 description 24
- 230000002093 peripheral effect Effects 0.000 description 18
- LYCAIKOWRPUZTN-UHFFFAOYSA-N Ethylene glycol Chemical compound OCCO LYCAIKOWRPUZTN-UHFFFAOYSA-N 0.000 description 14
- 238000011156 evaluation Methods 0.000 description 8
- WGCNASOHLSPBMP-UHFFFAOYSA-N hydroxyacetaldehyde Natural products OCC=O WGCNASOHLSPBMP-UHFFFAOYSA-N 0.000 description 7
- 229920001684 low density polyethylene Polymers 0.000 description 4
- 239000004702 low-density polyethylene Substances 0.000 description 4
- 230000000694 effects Effects 0.000 description 3
- 238000009472 formulation Methods 0.000 description 3
- 238000003780 insertion Methods 0.000 description 3
- 230000037431 insertion Effects 0.000 description 3
- 229920000092 linear low density polyethylene Polymers 0.000 description 3
- 239000004707 linear low-density polyethylene Substances 0.000 description 3
- -1 polypropylene Polymers 0.000 description 3
- 239000000843 powder Substances 0.000 description 3
- 229920000181 Ethylene propylene rubber Polymers 0.000 description 2
- 239000004743 Polypropylene Substances 0.000 description 2
- 238000013329 compounding Methods 0.000 description 2
- 238000001035 drying Methods 0.000 description 2
- 229920001971 elastomer Polymers 0.000 description 2
- 239000000806 elastomer Substances 0.000 description 2
- 229920000098 polyolefin Polymers 0.000 description 2
- 229920001155 polypropylene Polymers 0.000 description 2
- PQUXFUBNSYCQAL-UHFFFAOYSA-N 1-(2,3-difluorophenyl)ethanone Chemical compound CC(=O)C1=CC=CC(F)=C1F PQUXFUBNSYCQAL-UHFFFAOYSA-N 0.000 description 1
- NLHHRLWOUZZQLW-UHFFFAOYSA-N Acrylonitrile Chemical compound C=CC#N NLHHRLWOUZZQLW-UHFFFAOYSA-N 0.000 description 1
- OYPRJOBELJOOCE-UHFFFAOYSA-N Calcium Chemical compound [Ca] OYPRJOBELJOOCE-UHFFFAOYSA-N 0.000 description 1
- 239000004698 Polyethylene Substances 0.000 description 1
- 229910021536 Zeolite Inorganic materials 0.000 description 1
- 239000011358 absorbing material Substances 0.000 description 1
- 230000002411 adverse Effects 0.000 description 1
- 239000003513 alkali Substances 0.000 description 1
- 230000015572 biosynthetic process Effects 0.000 description 1
- 239000008280 blood Substances 0.000 description 1
- 210000004369 blood Anatomy 0.000 description 1
- 239000011575 calcium Substances 0.000 description 1
- 229910052791 calcium Inorganic materials 0.000 description 1
- 229920001577 copolymer Polymers 0.000 description 1
- 230000006866 deterioration Effects 0.000 description 1
- HNPSIPDUKPIQMN-UHFFFAOYSA-N dioxosilane;oxo(oxoalumanyloxy)alumane Chemical compound O=[Si]=O.O=[Al]O[Al]=O HNPSIPDUKPIQMN-UHFFFAOYSA-N 0.000 description 1
- 239000006185 dispersion Substances 0.000 description 1
- 238000005401 electroluminescence Methods 0.000 description 1
- HQQADJVZYDDRJT-UHFFFAOYSA-N ethene;prop-1-ene Chemical group C=C.CC=C HQQADJVZYDDRJT-UHFFFAOYSA-N 0.000 description 1
- 150000002334 glycols Chemical class 0.000 description 1
- 230000007062 hydrolysis Effects 0.000 description 1
- 238000006460 hydrolysis reaction Methods 0.000 description 1
- 230000033444 hydroxylation Effects 0.000 description 1
- 238000005805 hydroxylation reaction Methods 0.000 description 1
- 238000002347 injection Methods 0.000 description 1
- 239000007924 injection Substances 0.000 description 1
- 230000014759 maintenance of location Effects 0.000 description 1
- 239000012528 membrane Substances 0.000 description 1
- 229920000573 polyethylene Polymers 0.000 description 1
- 239000002861 polymer material Substances 0.000 description 1
- 102000004169 proteins and genes Human genes 0.000 description 1
- 108090000623 proteins and genes Proteins 0.000 description 1
- 238000007789 sealing Methods 0.000 description 1
- 229940047670 sodium acrylate Drugs 0.000 description 1
- 238000000859 sublimation Methods 0.000 description 1
- 230000008022 sublimation Effects 0.000 description 1
- 230000002195 synergetic effect Effects 0.000 description 1
- 238000003786 synthesis reaction Methods 0.000 description 1
- 229920005992 thermoplastic resin Polymers 0.000 description 1
- 210000002700 urine Anatomy 0.000 description 1
- 239000010457 zeolite Substances 0.000 description 1
Images
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- Wrappers (AREA)
- Drying Of Gases (AREA)
- Processes Of Treating Macromolecular Substances (AREA)
- Injection Moulding Of Plastics Or The Like (AREA)
- Solid-Sorbent Or Filter-Aiding Compositions (AREA)
- Compositions Of Macromolecular Compounds (AREA)
Abstract
Description
本発明は、高い乾燥環境を必要とする内容物を収納する容器内に在中させて乾燥剤として使用する又は部材として使用する瞬発性乾燥剤含有樹脂成形体及びその製造方法に関するものである。 TECHNICAL FIELD The present invention relates to an instantaneous desiccant-containing resin molded article that is used as a desiccant in a container that stores contents that require a high drying environment, or a method for producing the same.
従来、血糖値などのセンサー、尿蛋白検出などの検査紙、サブリメント、電子部品、有機エレクトロルミネッセンス素子などの高い乾燥環境を必要とする内容物を収納する容器内に、乾燥剤をベースとなる合成樹脂に混合分散させた成形材料を射出成形した乾燥剤含有樹脂成形体を在中させていた。例えば、ベース樹脂としてポリオレフィンを使用し、このポリオレフィン中に、乾燥剤として主体のモレキュラシーブとグリコールを混合分散させ、グリコールの吸水により低密度ポリエチレンの合成樹脂ベースに微細なクラックを発生させて、瞬発性を持たせた乾燥剤含有樹脂成形体が知られていた。 Conventionally, synthesis based on a desiccant in a container that stores contents that require a high drying environment, such as sensors for blood sugar levels, test paper for detecting urine protein, sublimation, electronic components, organic electroluminescence elements, etc. A desiccant-containing resin molded body in which a molding material mixed and dispersed in a resin is injection-molded has been present. For example, when polyolefin is used as the base resin, molecular sieves and glycols as the drying agent are mixed and dispersed in the polyolefin, and fine cracks are generated in the synthetic resin base of low-density polyethylene due to water absorption of the glycol. There has been known a desiccant-containing resin molded article having a water content.
しかしながら、上述の従来の乾燥剤含有樹脂成形体は、グリコールを使用しているので、水分の吸収率が高くなって来ると、表面にグリコールが溶出し、グリコールの膜が表面に出来て来るため、容器に収納している内容物に悪影響をもたらす危惧があった。そして、グリコールの膜が出来始めると、急速に吸水能力が低下してしまう。また、グリコールが内容物や指に付着してしまう。そのうえ、乾燥剤の主体がモレキュラシーブであるため、吸水効果の消失が早く、トータルとしての吸水量が低かった。 However, since the above-mentioned conventional desiccant-containing resin molded article uses glycol, when the moisture absorption rate increases, glycol elutes on the surface and a film of glycol is formed on the surface. There was a risk of adversely affecting the contents stored in the container. And if the film | membrane of glycol begins to be made, a water absorption capability will fall rapidly. In addition, glycol adheres to the contents and fingers. In addition, since the main component of the desiccant is molecular sieve, the water absorption effect disappeared quickly and the total water absorption amount was low.
本発明は、上述の従来の乾燥剤含有樹脂成形体の問題点を解決したものであり、吸水能力の瞬発性が高く、乾燥剤の溶出がなく、衛生的な問題がなく、吸水能力の寿命が長い瞬発性乾燥剤含有樹脂成形体及びその製造方法を提供するものである。 The present invention solves the problems of the above-mentioned conventional desiccant-containing resin molded articles, has high water absorption ability, has no elution of desiccant, has no hygienic problems, and has a life of water absorption ability. The present invention provides a flashing desiccant-containing resin molded article having a long length and a method for producing the same.
すなわち、本発明の第1の発明は、吸水性の酸化カルシウムとモレキュラシーブとを、アクリル酸系高分子吸水体を含まない合成樹脂成形材料に混合分散して一次混合成形材料を作製し、前記一次混合成形材料に、さらに、吸水性のアクリル酸系高分子吸水体を混合分散して二次混合成形材料を作製し、前記二次混合成形材料を用いて射出成形法により成形した乾燥剤含有樹脂成形体であって、
前記一次混合成形材料の配合比率が、モレキュラシーブを25〜35重量%、酸化カルシウムを25〜33重量%、アクリル酸系高分子吸水体を含まない合成樹脂成形材料を40重量%以上にし、かつ、二次混合成形材料の配合において、一次混合成形材料に混合分散するアクリル酸系高分子吸水体を5重量%以下にすることを特徴とする乾燥剤含有樹脂成形体である。
That is, the first invention of the present invention, the water absorption of the calcium oxide and molecular sieves to prepare a mixture dispersion to primary mixing the molding material in a synthetic resin molding material containing no acrylic acid-based polymer water-absorbent structure, said primary the mixed molding, further, water absorption by mixing and dispersing the acrylic acid polymer water absorber to produce a secondary mixture molding materials, desiccant-containing resin molded by injection molding using the secondary mixing molding materials A molded body,
The blending ratio of the primary mixed molding material is 25 to 35% by weight of molecular sieve, 25 to 33% by weight of calcium oxide, and 40% by weight or more of a synthetic resin molding material that does not contain an acrylic polymer water absorbent , and In the blending of the secondary mixed molding material, the desiccant-containing resin molded body is characterized in that the acrylic polymer water-absorbing body mixed and dispersed in the primary mixed molding material is 5% by weight or less.
次に、本発明の第2の発明は、吸水性の酸化カルシウムとモレキュラシーブとを、アクリル酸系高分子吸水体を含まない合成樹脂成形材料に混合分散して一次混合成形材料を作製し、前記一次混合成形材料に、さらに、吸水性のアクリル酸系高分子吸水体を混合分散して二次混合成形材料を作製し、前記二次混合成形材料を用いて射出成形法により成形した乾燥剤含有樹脂成形体の製造方法であって、
前記一次混合成形材料の配合において、モレキュラシーブを25〜35重量%、酸化カルシウムを25〜33重量%、アクリル酸系高分子吸水体を含まない合成樹脂成形材料を40重量%以上にし、かつ、二次混合成形材料の配合において、一次混合成形材料に混合分散するアクリル酸系高分子吸水体を5重量%以下にすることを特徴とする乾燥剤含有樹脂成形体の製造方法である。
Next, the second invention of the present invention, the water absorption of the calcium oxide and molecular sieves, and mixed and dispersed in the synthetic resin molded material containing no acrylic acid-based polymer water absorber to produce a primary mixed molding material, wherein a primary mixing molding material, further, the water absorption of the acrylic acid polymer water absorber mixed and dispersed to prepare a secondary mixing molding materials, desiccant-containing molded by injection molding using the secondary mixing molding materials A method for producing a resin molded body, comprising:
In the blending of the primary mixed molding material, the molecular sieve is 25 to 35% by weight, the calcium oxide is 25 to 33% by weight, the synthetic resin molding material not containing the acrylic polymer water absorbent is 40% by weight or more, and In the blending of the next mixed molding material, the desiccant-containing resin molded body is characterized in that the acrylic polymer water-absorbing body mixed and dispersed in the primary mixed molding material is 5% by weight or less.
そして、本発明の第3の発明は、射出成形法により成形した乾燥剤含有樹脂成形体を用いた容器であって、
前記容器は内容器と、外容器とからなり、
前記内容器は、吸水性の酸化カルシウムとモレキュラシーブとを、アクリル酸系高分子吸水体を含まない合成樹脂成形材料に混合分散して一次混合成形材料を作製し、前記一次混合成形材料に、さらに、吸水性のアクリル酸系高分子吸水体を混合分散して二次混合成形材料を作製し、前記二次混合成形材料を用いて射出成形法により成形した乾燥剤含有樹脂成形体から形成されており、
前記一次混合成形材料の配合比率が、モレキュラシーブを25〜35重量%、酸化カルシウムを25〜33重量%、アクリル酸系高分子吸水体を含まない合成樹脂成形材料を40重量%以上にし、かつ、二次混合成形材料の配合において、一次混合成形材料に混合分散するアクリル酸系高分子吸水体を5重量%以下にすることを特徴とする乾燥剤含有樹脂成形体を用いた容器である。
And 3rd invention of this invention is a container using the desiccant containing resin molding object shape | molded by the injection molding method,
The container comprises an inner container and an outer container,
The inner container has a water absorption of calcium oxide and molecular sieves, and mixed and dispersed in the synthetic resin molded material containing no acrylic acid-based polymer water absorber to produce a primary mixed molding material, the primary mixing molding material, further the water absorption of the acrylic acid polymer water absorber mixed and dispersed to prepare a secondary mixing molding materials, formed from the desiccant-containing resin molded body formed by injection molding using the secondary mixing molding materials And
The blending ratio of the primary mixed molding material is 25 to 35% by weight of molecular sieve, 25 to 33% by weight of calcium oxide, and 40% by weight or more of a synthetic resin molding material that does not contain an acrylic polymer water absorbent , and It is a container using a desiccant-containing resin molded body characterized in that, in blending of the secondary mixed molding material, the acrylic polymer water-absorbing body mixed and dispersed in the primary mixed molding material is 5% by weight or less.
本発明の瞬発性乾燥剤含有樹脂成形体は、図1に示すように、合成樹脂ベース(11)中に、モレキュラシーブ(12)と酸化カルシウム(13)と高分子吸水体(14)とが
混合分散している。この瞬発性乾燥剤含有樹脂成形体を容器内に在中させると、容器内の高湿度環境下で吸水が開始するが、この吸水第一段階においては、図2(a)に示すように、表面に近い高分子吸水体が先ず吸水を開始する(図の符号14wが、吸水した高分子吸水体を示す)。次に、中湿度環境下の吸水第二段階においては、図2(b)に示すように、表面に近い酸化カルシウムも吸水を開始する(図の符号13wが、吸水した酸化カルシウムを示す)。そして、定湿度環境下の吸水第三段階においては、図2(c)に示すように、モレキュラシーブも吸水を開始し(図の符号12wが、吸水したモレキュラシーブを示す)、更に、吸水して膨張した高分子吸水体及び酸化カルシウムの周りの合成樹脂ベースに微細なクラック(11c)が発生して、内側のモレキュラシーブ、酸化カルシウム及びモレキュラシーブも吸水するようになる。この結果、本発明の瞬発性乾燥剤含有樹脂成形体は、吸水能力の瞬発性が高く、しかも、吸水能力の寿命が長い。
As shown in FIG. 1, the instantaneous desiccant-containing resin molded product of the present invention is a mixture of a molecular sieve (12), calcium oxide (13), and a polymer water absorbent (14) in a synthetic resin base (11). Is distributed. When this instantaneous desiccant-containing resin molded product is present in the container, water absorption starts under a high humidity environment in the container, but in this first stage of water absorption, as shown in FIG. The polymer water-absorbing body close to the surface first starts water absorption (
また、本発明の瞬発性乾燥剤含有樹脂成形体は、従来の乾燥剤含有樹脂成形体のように乾燥剤としてグリコール系の成分を使用していないため、乾燥剤の溶出がなく、衛生的な問題がない。 In addition, the instant desiccant-containing resin molded article of the present invention does not use a glycol-based component as a desiccant unlike the conventional desiccant-containing resin molded article, so that the desiccant does not elute and is hygienic. there is no problem.
また、本発明の瞬発性乾燥剤含有樹脂成形体においては、混合分散する高分子吸水体が、酸化カルシウムの吸水膨張による合成樹脂ベースの強度劣化を緩和させ、また、酸化カルシウムの吸水による水酸化カルシウムの微量異物の発生を防止している。 In the instant desiccant-containing resin molded body of the present invention, the mixed and dispersed polymer water-absorbing body alleviates the deterioration in strength of the synthetic resin base due to the water absorption expansion of calcium oxide, and the hydroxylation due to the water absorption of calcium oxide. Prevents the generation of trace foreign matter of calcium.
次に、本発明の瞬発性乾燥剤含有樹脂成形体の一実施形態について、図及び表を用いて詳細に説明する。 Next, one embodiment of the instantaneous desiccant-containing resin molded body of the present invention will be described in detail with reference to the drawings and tables.
本実施形態の瞬発性乾燥剤含有樹脂成形体(10)は、図1に示すように、合成樹脂ベース(11)中に、乾燥剤としてモレキュラシーブ(12)と酸化カルシウム(13)と高分子吸水体(14)とを混合分散したものである。使用するモレキュラシーブは、10〜30μmの粉体で、30重量%まで水分を吸収し、瞬発性に優れるものである。ゼオライトの一種で、3Aと言われる水の分子だけを吸収するタイプのものを使用する。酸化カルシウムは、10〜300μmの粉体で、30重量%まで水分を吸収し、体積が膨張するものである。高分子吸水体は、アクリル酸ナトリウムにアクリロニトリルを加えアルカリ加水分解させた三次元構造を持つ吸水体であり、10〜50μmの粉体で、400重量%まで水分を吸収し、高湿度環境下で瞬時に水分を吸収し、水分を吸収したときの量と膨張率が大きい。ベースの合成樹脂としては、低密度ポリエチレン、直鎖状低密度ポリエチレン、ポリプロピレンなどの熱可塑性樹脂を使用するが、乾燥剤の酸化カルシウムや高分子吸水体は吸水すると膨張するため、適度の柔軟性を有することが望ましい。このため、必要に応じては、柔軟性を付与するために、エチレンプロピレンゴム(EPR)やエチレンプロピレン三次元共重合体(EPDM)をベースの合成樹脂に混合してもよい。また、ベースの合成樹脂として、柔軟性のあるスチレン系エラストマーやポリエチレンテレフタレート系エラストマーを用いてもよい。 As shown in FIG. 1, the instantaneous desiccant-containing resin molded body (10) of the present embodiment includes a molecular sieve (12), calcium oxide (13), and polymer water absorption as a desiccant in a synthetic resin base (11). The body (14) is mixed and dispersed. The molecular sieve to be used is a powder of 10 to 30 μm, absorbs water up to 30% by weight, and has excellent instantaneous properties. A type of zeolite that absorbs only water molecules called 3A is used. Calcium oxide is a powder of 10 to 300 μm, absorbs moisture up to 30% by weight, and expands in volume. The polymer water-absorbing body is a water-absorbing body having a three-dimensional structure in which acrylonitrile is added to sodium acrylate and subjected to alkali hydrolysis. The water-absorbing body absorbs water up to 400% by weight in a 10-50 μm powder under high humidity. Moisture is absorbed instantaneously, and the amount and expansion rate when absorbing moisture are large. As the base synthetic resin, thermoplastic resins such as low-density polyethylene, linear low-density polyethylene, and polypropylene are used. However, the calcium oxide or polymer water-absorbing agent of the desiccant expands when it absorbs water, so it has moderate flexibility. It is desirable to have Therefore, if necessary, ethylene propylene rubber (EPR) or ethylene propylene three-dimensional copolymer (EPDM) may be mixed with the base synthetic resin in order to impart flexibility. Moreover, you may use a flexible styrene-type elastomer and a polyethylene terephthalate-type elastomer as a base synthetic resin.
本実施形態の瞬発性乾燥剤含有樹脂成形体の製造方法は、吸水性のモレキュラシーブと酸化カルシウムとを、ベースとなる合成樹脂成形材料に混合分散して一次混合成形材料を作製し、この一次混合成形材料に、さらに、瞬発吸水性の高分子吸水体を混合分散して二次混合成形材料を作製し、この二次混合成形材料を用いて射出成形法により成形するものである。これら一次及び二次混合成形材料の組成配合を定めるために、次の様な各種配合評価を行った。
(一次混合成形材料の配合評価)
ベース合成樹脂とモレキュラシーブと酸化カルシウムの配合比率を変えた6種類の一次混合成形材料を作製し、これら一次混合成形材料を用いて、射出成形法により6種類の図
3に示すセンサー容器(20)の内容器(200)を作製し、これら内容器を40℃で90%RHの環境下で26時間保管したのち、それぞれの内容器の吸水量(初期吸水量)を測定した。その結果を表1に示す。なお、ベース合成樹脂は、低密度ポリエチレンと直鎖状低密度ポリエチレンとを1対1の比率で混合したものである。また、内容器(200)は、図3に示すように、周壁(201)と底板(204)とからなる外観円柱状の容器である。周壁の上端外周に、容器本体(110)の係止突条(114)で係止される挿着リング(203)を設け、挿着リングの下方の周壁外周面は、周方向へ連続する三角形状であり容器本体(110)の周壁(111)内周面との間に隙間(202)を形成し、そして、底板(204)の下面に、図3及び図4に示すように、容器本体(110)の底板(115)上面に当接する4個の当接リブ(205)を中心から放射状に等間隔で設けるものである。
The method for producing the instantaneous desiccant-containing resin molded body of the present embodiment is to produce a primary mixed molding material by mixing and dispersing water-absorbing molecular sieve and calcium oxide in a base synthetic resin molding material. A secondary water-absorbing polymer material is further mixed and dispersed in the molding material to produce a secondary mixed molding material, which is then molded by an injection molding method. In order to determine the composition of the primary and secondary mixed molding materials, the following various composition evaluations were performed.
(Composition evaluation of primary mixed molding materials)
Six types of primary mixed molding materials with different blending ratios of base synthetic resin, molecular sieve and calcium oxide were prepared, and six types of sensor containers (20) shown in FIG. 3 were produced by injection molding using these primary mixed molding materials. After the inner containers (200) were prepared and stored in an environment of 90% RH at 40 ° C. for 26 hours, the water absorption amount (initial water absorption amount) of each inner container was measured. The results are shown in Table 1. The base synthetic resin is a mixture of low density polyethylene and linear low density polyethylene in a ratio of 1: 1. In addition, as shown in FIG. 3, the inner container (200) is a cylindrical container having an outer appearance including a peripheral wall (201) and a bottom plate (204). An insertion ring (203) that is locked by a locking protrusion (114) of the container body (110) is provided on the outer periphery of the upper end of the peripheral wall, and the outer peripheral surface of the peripheral wall below the insertion ring is a triangle that continues in the circumferential direction A gap (202) is formed between the inner wall surface of the container body (110) and the peripheral wall (111), and the container body is formed on the lower surface of the bottom plate (204) as shown in FIGS. Four contact ribs (205) that contact the upper surface of the bottom plate (115) of (110) are provided radially from the center at equal intervals.
(二次混合成形材料の配合評価)
ベース合成樹脂とモレキュラシーブと酸化カルシウムを混合した一次混合成形材料に、アクリル酸系の高分子吸水体を配合比率を変えて混合して、4種類の二次混合成形材料を作製した。そして、これら二次混合成形材料を用いて、射出成形法により6種類の図3に示すセンサー容器(20)の内容器(200)を作製し、これら内容器を40℃で90%RHの環境下で26時間保管したのち、それぞれの内容器の吸水量(初期吸水量)を測定した。その結果を表2に示す。なお、ベース合成樹脂は、一次混合成形材料と同様に、低密度ポリエチレンと直鎖状低密度ポリエチレンとを1対1の比率で混合したものである。また、内容器の仕様も一次混合成形材料と同様である。
(Compounding evaluation of secondary mixed molding materials)
Four types of secondary mixed molding materials were prepared by mixing the primary synthetic molding material in which the base synthetic resin, the molecular sieve and the calcium oxide were mixed with an acrylic acid-based polymer water-absorbing material at different blending ratios. Then, using these secondary mixed molding materials, six types of inner containers (200) of the sensor container (20) shown in FIG. 3 are produced by injection molding, and these inner containers are in an environment of 90% RH at 40 ° C. After storing for 26 hours, the water absorption amount (initial water absorption amount) of each inner container was measured. The results are shown in Table 2. The base synthetic resin is a mixture of low-density polyethylene and linear low-density polyethylene in a 1: 1 ratio, similar to the primary mixed molding material. The specification of the inner container is the same as that of the primary mixed molding material.
(各種内容器による容器内湿度評価)
次に、一次混合成形材料と二次混合成形材料を用いて、射出成形法により各2種類ずつ4種類の図3に示す内容器(200)を作製し、また、別途に、ポリプロピレンを用いて、射出成形法により図3に示す外容器(100)を作製し、4種類の内容器をそれぞれ外容器の容器本体(110)内に挿着して図3に示すセンサー容器(20)を4種類作製した。これら4種類のセンサー容器の内容器内に、それぞれ湿度検出センサーを挿入して蓋部を閉じて密封し、30℃で80%RHの環境下で保管し、容器内の湿度が10%RHになるまでの経過時間を測定した。その結果を表3及び表4に示す。なお、外容器は、図3に示すように、容器本体(110)の上端開口部に蓋部(120)が後方のヒンジ(201)を介して開閉可能に接続する外観円柱状の容器であり、容器本体は、周壁(111)と底板(115)とからなり、周壁の上端外周面に蓋部(120)との咬合リング(112)を設け、上方外周面に蓋部受けリング(113)を設け、上方内周面に周方向に内容器(200)を係止する複数の係止突条(114)を設け、蓋部(120)は、天板(121)と周壁(123)とからなり、天板下面に、容器本体を封止するインナーリング(122)(外周面を容器本体の周壁上端部内周面に密接)を垂設し、周壁の前方下端に開
閉用つまみ(125)を突設し、周壁の下端内周面に容器本体との咬合リング(124)を設けるものである。
(In-container humidity evaluation using various internal containers)
Next, using the primary mixed molding material and the secondary mixed molding material, two types of inner containers (200) shown in FIG. 3 are produced by injection molding, and separately, using polypropylene. The outer container (100) shown in FIG. 3 is produced by an injection molding method, and four types of inner containers are respectively inserted into the container main bodies (110) of the outer containers, and the sensor container (20) shown in FIG. Kinds were made. The humidity sensor is inserted into each of the four types of sensor containers, the lid is closed and sealed, and stored in an environment of 80% RH at 30 ° C., and the humidity in the container is 10% RH. The elapsed time to become was measured. The results are shown in Tables 3 and 4. As shown in FIG. 3, the outer container is a cylindrical container having an outer appearance in which the lid (120) is connected to the upper end opening of the container main body (110) through the rear hinge (201) so as to be opened and closed. The container body includes a peripheral wall (111) and a bottom plate (115), and an occlusal ring (112) with a lid portion (120) is provided on the outer peripheral surface of the upper end of the peripheral wall, and a lid receiving ring (113) is provided on the upper outer peripheral surface. A plurality of locking protrusions (114) for locking the inner container (200) in the circumferential direction are provided on the upper inner peripheral surface, and the lid (120) includes a top plate (121), a peripheral wall (123), and An inner ring (122) for sealing the container body (the outer peripheral surface is in close contact with the inner peripheral surface of the upper end of the peripheral wall of the container main body), and an opening / closing knob (125) at the lower front end of the peripheral wall. And an occlusal ring (124) with the container body is provided on the inner peripheral surface of the lower end of the peripheral wall It is intended.
上述した一次混合成形材料の配合評価、二次混合成形材料の配合評価、各種内容器による容器内湿度評価の結果から、一次混合成形材料の配合を、モレキュラシーブを25〜35重量%、酸化カルシウムを25〜33重量%、合成樹脂成形材料を40重量%以上とし、一次混合成形材料へ混合分散する高分子吸水体を5重量%以下にして、二次混合成形材料を作製することにした。 From the results of the above-described evaluation of the mixing of the primary mixed molding material, the evaluation of the mixing of the secondary mixed molding material, and the humidity evaluation in the containers using various inner containers, the mixing of the primary mixed molding material is 25 to 35% by weight of molecular sieve and calcium oxide. The secondary mixed molding material was prepared by setting the polymer water-absorbing body to 25 to 33% by weight, the synthetic resin molding material to 40% by weight or more, and the polymer water absorbent mixed and dispersed in the primary mixed molding material to 5% by weight or less.
10……成形体
11……合成樹脂ベース
11c……クラック
12……モレキュラシーブ
12w……吸水したモレキュラシーブ
13……酸化カルシウム
13w……吸水した酸化カルシウム
14……高分子吸水体
14w……吸水した高分子吸水体
20……容器
100……外容器
101……ヒンジ
110……容器本体
111,123,201……周壁
112,124……咬合リング
113……蓋部受けリング
114……係止突条
115,204……底板
120……蓋部
121……天板
122……インナーリング
125……開閉用つまみ
200……内容器
202……隙間
203……挿着リング
205……当接リブ
10 …… Molded body 11 …… Synthetic resin base 11c ……
Claims (3)
前記一次混合成形材料の配合比率が、モレキュラシーブを25〜35重量%、酸化カルシウムを25〜33重量%、アクリル酸系高分子吸水体を含まない合成樹脂成形材料を40重量%以上にし、かつ、二次混合成形材料の配合において、一次混合成形材料に混合分散するアクリル酸系高分子吸水体を5重量%以下にすることを特徴とする乾燥剤含有樹脂成形体。 A water absorption of calcium oxide and molecular sieves, and mixed and dispersed in the synthetic resin molded material containing no acrylic acid-based polymer water absorber to produce a primary mixed molding material, the primary mixing molding material, further, the water-absorbent acrylic and mixing and dispersing the acid-based polymer water absorber to produce a secondary mixture molding materials, a desiccant-containing resin molded body formed by injection molding using the secondary mixing molding materials,
The blending ratio of the primary mixed molding material is 25 to 35% by weight of molecular sieve, 25 to 33% by weight of calcium oxide, and 40% by weight or more of a synthetic resin molding material that does not contain an acrylic polymer water absorbent , and A desiccant-containing resin molded article characterized in that, in the blending of the secondary mixed molding material, the acrylic polymer water-absorbing body mixed and dispersed in the primary mixed molding material is 5% by weight or less.
前記一次混合成形材料の配合において、モレキュラシーブを25〜35重量%、酸化カルシウムを25〜33重量%、アクリル酸系高分子吸水体を含まない合成樹脂成形材料を40重量%以上にし、かつ、二次混合成形材料の配合において、一次混合成形材料に混合分散するアクリル酸系高分子吸水体を5重量%以下にすることを特徴とする乾燥剤含有樹脂成形体の製造方法。 A water absorption of calcium oxide and molecular sieves, and mixed and dispersed in the synthetic resin molded material containing no acrylic acid-based polymer water absorber to produce a primary mixed molding material, the primary mixing molding material, further, the water-absorbent acrylic and mixing and dispersing the acid-based polymer water absorber to produce a second mixed molding material, a manufacturing method of the desiccant-containing resin molded body formed by injection molding using the secondary mixing molding materials,
In the blending of the primary mixed molding material, the molecular sieve is 25 to 35% by weight, the calcium oxide is 25 to 33% by weight, the synthetic resin molding material not containing the acrylic polymer water absorbent is 40% by weight or more, and A method for producing a desiccant-containing resin molded article, characterized in that, in blending of the secondary mixed molding material, the acrylic polymer water-absorbing body mixed and dispersed in the primary mixed molding material is 5% by weight or less.
前記容器は内容器と、外容器とからなり、
前記内容器は、吸水性の酸化カルシウムとモレキュラシーブとを、アクリル酸系高分子吸水体を含まない合成樹脂成形材料に混合分散して一次混合成形材料を作製し、前記一次混合成形材料に、さらに、吸水性のアクリル酸系高分子吸水体を混合分散して二次混合成形材料を作製し、前記二次混合成形材料を用いて射出成形法により成形した乾燥剤含有樹脂成形体から形成されており、
前記一次混合成形材料の配合比率が、モレキュラシーブを25〜35重量%、酸化カルシウムを25〜33重量%、アクリル酸系高分子吸水体を含まない合成樹脂成形材料を40重量%以上にし、かつ、二次混合成形材料の配合において、一次混合成形材料に混合分散するアクリル酸系高分子吸水体を5重量%以下にすることを特徴とする乾燥剤含有樹脂成形体を用いた容器。 A container using a desiccant-containing resin molded article molded by an injection molding method,
The container comprises an inner container and an outer container,
The inner container has a water absorption of calcium oxide and molecular sieves, and mixed and dispersed in the synthetic resin molded material containing no acrylic acid-based polymer water absorber to produce a primary mixed molding material, the primary mixing molding material, further the water absorption of the acrylic acid polymer water absorber mixed and dispersed to prepare a secondary mixing molding materials, formed from the desiccant-containing resin molded body formed by injection molding using the secondary mixing molding materials And
The blending ratio of the primary mixed molding material is 25 to 35% by weight of molecular sieve, 25 to 33% by weight of calcium oxide, and 40% by weight or more of a synthetic resin molding material that does not contain an acrylic polymer water absorbent , and A container using a desiccant-containing resin molded body characterized in that, in the blending of the secondary mixed molding material, the acrylic polymer water-absorbing body mixed and dispersed in the primary mixed molding material is 5% by weight or less.
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Free format text: JAPANESE INTERMEDIATE CODE: R250 |
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LAPS | Cancellation because of no payment of annual fees |