JP2009235347A - Vulcanization accelerator, rubber composition, and tire using it - Google Patents

Vulcanization accelerator, rubber composition, and tire using it Download PDF

Info

Publication number
JP2009235347A
JP2009235347A JP2008086732A JP2008086732A JP2009235347A JP 2009235347 A JP2009235347 A JP 2009235347A JP 2008086732 A JP2008086732 A JP 2008086732A JP 2008086732 A JP2008086732 A JP 2008086732A JP 2009235347 A JP2009235347 A JP 2009235347A
Authority
JP
Japan
Prior art keywords
vulcanization accelerator
rubber
rubber composition
vulcanization
substituent
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.)
Withdrawn
Application number
JP2008086732A
Other languages
Japanese (ja)
Inventor
Toshihiro Uchiyama
俊宏 内山
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.)
Bridgestone Corp
Original Assignee
Bridgestone 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 Bridgestone Corp filed Critical Bridgestone Corp
Priority to JP2008086732A priority Critical patent/JP2009235347A/en
Publication of JP2009235347A publication Critical patent/JP2009235347A/en
Withdrawn legal-status Critical Current

Links

Classifications

    • Y02T10/862

Landscapes

  • Tires In General (AREA)
  • Thiazole And Isothizaole Compounds (AREA)
  • Compositions Of Macromolecular Compounds (AREA)

Abstract

<P>PROBLEM TO BE SOLVED: To provide a vulcanization accelerator capable of improving employment environment by preventing generation of an amine and having excellent vulcanization performance, a rubber composition, and a tire using it. <P>SOLUTION: The vulcanization accelerator includes 2-mercaptobenzothiazole represented by general formula (1) (in the general formula (1), R<SB>1</SB>and R<SB>2</SB>each independently represent a hydrogen atom or a 1-8C hydrocarbon group which may have a substituent, R<SB>3</SB>represents a 1-18C hydrocarbon group which may have a substituent and a 6-18C aromatic group which may have a substituent). The rubber composition and the tire using it are provided. <P>COPYRIGHT: (C)2010,JPO&INPIT

Description

本発明は、加硫促進剤、ゴム組成物およびそれを用いたタイヤに関し、詳しくは、アミンの発生を防止して職場環境を改善することができるとともに、優れた加硫性能を有する加硫促進剤、ゴム組成物およびそれを用いたタイヤに関する。   The present invention relates to a vulcanization accelerator, a rubber composition, and a tire using the vulcanization accelerator. More specifically, the present invention can improve the workplace environment by preventing the generation of amines, and also promote vulcanization having excellent vulcanization performance. The present invention relates to an agent, a rubber composition, and a tire using the same.

従来、ゴム組成物の加硫に関しては、加硫剤および加硫促進剤を併用して加硫させることで効率的に加硫反応を起こすことが知られている。また、かかる加硫反応において、硫黄または有機加硫剤が使用される加硫系においては、加硫促進剤として、分子構造内に1級または2級アミンを有するものが一般的に使用されている。   Conventionally, regarding vulcanization of a rubber composition, it is known that a vulcanization reaction is efficiently caused by vulcanization using a vulcanizing agent and a vulcanization accelerator in combination. In such a vulcanization reaction, in a vulcanization system in which sulfur or an organic vulcanizing agent is used, a vulcanization accelerator having a primary or secondary amine in the molecular structure is generally used. Yes.

上記分子構造内に1級または2級アミンを有する加硫促進剤として、例えば、特許文献1には、加硫促進剤としてベンゾチアゾールスルフェンアミド誘導体が開示され、特許文献2には、チウラム系加硫促進剤が開示されている。また、特許文献3には、加硫促進剤として2−メルカプトベンゾチアゾール誘導体が開示されている。   As a vulcanization accelerator having a primary or secondary amine in the molecular structure, for example, Patent Document 1 discloses a benzothiazole sulfenamide derivative as a vulcanization accelerator, and Patent Document 2 discloses a thiuram-based compound. Vulcanization accelerators are disclosed. Patent Document 3 discloses a 2-mercaptobenzothiazole derivative as a vulcanization accelerator.

しかしながら、加硫促進剤として用いる化合物の分子構造内に1級または2級アミンを有する場合、ゴム加硫時の温度によっては、分解反応を生じて臭気をもつアミンが発生し、職場環境上、改善の余地があった。そこで、アミンを生ずることのない加硫促進剤として、特許文献4には、アミノ化ポリスチレン誘導体が開示されている。
特開昭49−36744号公報(特許請求の範囲等) 特開2006―348081号公報(特許請求の範囲等) 特開2007−277214号公報(特許請求の範囲等) 特開平7−196854号公報(特許請求の範囲等)
However, when the compound used as a vulcanization accelerator has a primary or secondary amine in the molecular structure, depending on the temperature at the time of rubber vulcanization, a decomposition reaction may occur and an odorous amine is generated. There was room for improvement. Therefore, Patent Document 4 discloses an aminated polystyrene derivative as a vulcanization accelerator that does not produce an amine.
JP-A-49-36744 (Claims etc.) JP 2006-348081 A (Claims etc.) JP 2007-277214 A (Claims etc.) JP-A-7-196854 (Claims etc.)

しかしながら、特許文献4に記載の加硫促進剤では、平均分子量が1000〜100万と大きいため、配合した加硫剤である硫黄等に対し、十分な加硫促進効果を得られないという問題があった。よって、今日、十分な加硫促進効果を得られ、しかもアミンが形成されることのない加硫促進剤が望まれている。   However, in the vulcanization accelerator described in Patent Document 4, since the average molecular weight is as large as 1,000 to 1,000,000, there is a problem that a sufficient vulcanization acceleration effect cannot be obtained with respect to sulfur, which is a blended vulcanizing agent. there were. Therefore, a vulcanization accelerator that can obtain a sufficient vulcanization acceleration effect and does not form an amine is desired today.

そこで、本発明の目的は、臭気を生じるアミンの発生を防止して職場環境を改善でき、しかも優れた加硫性能を有する加硫促進剤、ゴム組成物およびそれを用いたタイヤを提供することにある。   Accordingly, an object of the present invention is to provide a vulcanization accelerator, a rubber composition, and a tire using the same, which can improve the workplace environment by preventing the generation of odor-producing amines and which has excellent vulcanization performance. It is in.

本発明者は、前記問題を解決するために鋭意検討した結果、特定の2―メルカプトベンゾチアゾールを有する加硫促進剤とすることで前記問題を解決し得ることを見出して、本発明を完成するに至った。   As a result of intensive studies to solve the above problems, the present inventors have found that the above problems can be solved by using a specific vulcanization accelerator having 2-mercaptobenzothiazole, and thus complete the present invention. It came to.

すなわち、本発明の加硫促進剤は、下記一般式(1)、

Figure 2009235347
(一般式(1)中、RおよびRは、各々独立に、水素原子、または置換基を有してもよい炭素数1〜8の炭化水素基を表し、Rは、置換基を有してもよい炭素数1〜18の炭化水素基または置換基を有してもよい炭素数6〜18の芳香族基を表す)で表される2―メルカプトベンゾチアゾールを含有することを特徴とするものである。 That is, the vulcanization accelerator of the present invention has the following general formula (1),
Figure 2009235347
(In General Formula (1), R 1 and R 2 each independently represent a hydrogen atom or a hydrocarbon group having 1 to 8 carbon atoms which may have a substituent, and R 3 represents a substituent. And a 2-mercaptobenzothiazole represented by a hydrocarbon group having 1 to 18 carbon atoms which may have or an aromatic group having 6 to 18 carbon atoms which may have a substituent. It is what.

また、本発明の加硫促進剤は、前記一般式(1)中のRおよびRが水素原子であり、かつRがベンジル基であることが好ましい。 In the vulcanization accelerator of the present invention, it is preferable that R 1 and R 2 in the general formula (1) are hydrogen atoms and R 3 is a benzyl group.

本発明のゴム組成物は、ゴム成分に対して、前記加硫促進剤と加硫剤とを配合してなることを特徴とするものである。   The rubber composition of the present invention is characterized in that the rubber component is blended with the vulcanization accelerator and the vulcanizing agent.

また、本発明のゴム組成物は、前記加硫剤が、硫黄であることが好ましく、前記ゴム成分が、ジエン系ゴム成分または天然ゴムであることが好ましい。   In the rubber composition of the present invention, the vulcanizing agent is preferably sulfur, and the rubber component is preferably a diene rubber component or natural rubber.

さらに、本発明のゴム組成物は、前記ゴム成分100質量部に対して、前記加硫促進剤を0.1〜10質量部配合してなることが好ましい。   Furthermore, the rubber composition of the present invention is preferably formed by blending 0.1 to 10 parts by mass of the vulcanization accelerator with respect to 100 parts by mass of the rubber component.

本発明のタイヤは、前記ゴム組成物を用いたことを特徴とするものである。   The tire of the present invention is characterized by using the rubber composition.

本発明によると、臭気を生じるアミンの発生を防止して職場環境を改善でき、しかも優れた加硫性能を有する加硫促進剤、ゴム組成物およびそれを用いたタイヤを提供することができる。   ADVANTAGE OF THE INVENTION According to this invention, generation | occurrence | production of the amine which produces an odor can be prevented, a workplace environment can be improved, and also the vulcanization accelerator which has the outstanding vulcanization performance, a rubber composition, and a tire using the same can be provided.

以下に本発明の実施の形態について具体的に説明する。
本発明の加硫促進剤は、下記一般式(1)、

Figure 2009235347
(一般式(1)中、RおよびRは、各々独立に、水素原子、または置換基を有してもよい炭素数1〜8の炭化水素基を表し、Rは、置換基を有してもよい炭素数1〜18の炭化水素基または置換基を有してもよい炭素数6〜18の芳香族基を表す)で表される2―メルカプトベンゾチアゾールを含有するものである。かかる加硫促進剤は、ベンゾチアゾールスルフェンアミドのアミン部位がオキシカルボニル基になっていることによりアミンの発生がなくなり、職場環境を改善することができる。また、この加硫促進剤は優れた加硫性能を有する。 Embodiments of the present invention will be specifically described below.
The vulcanization accelerator of the present invention has the following general formula (1),
Figure 2009235347
(In General Formula (1), R 1 and R 2 each independently represent a hydrogen atom or a hydrocarbon group having 1 to 8 carbon atoms which may have a substituent, and R 3 represents a substituent. A 2-mercaptobenzothiazole represented by a hydrocarbon group having 1 to 18 carbon atoms which may have or an aromatic group having 6 to 18 carbon atoms which may have a substituent. . Such a vulcanization accelerator eliminates the generation of amine due to the oxycarbonyl group at the amine site of benzothiazole sulfenamide, and can improve the workplace environment. Further, this vulcanization accelerator has excellent vulcanization performance.

上記一般式(1)においてRおよびRが表す置換基を有してもよい炭素数1〜8の炭化水素基としては、例えば、メチル、エチル、プロピル、イソプロピル、ブチル、イソブチル、第二ブチル、第三ブチル、ペンチル、イソペンチル、第三ペンチル、ヘキシル、ヘプチル、オクチル、イソオクチル、2−エチルヘキシル、第三オクチル等のアルキル基、ヒドロキシエチル、2−ヒドロキシプロピル、3−ヒドロキシプロピル等の上記アルキル基の水酸基置換体であるヒドロキシアルキル基、上記アルキル基に対応するメトキシ、エトキシ、プロポキシ、イソプロポキシ、ブトキシ、オクトキシ、2−エチルヘキシルオキシ等のアルコキシ基、ビニル、プロペニル、ブテニル、ヘキセニル等の炭素数2〜30のアルケニル基等が挙げられ、かかる炭化水素基中の任意の−CH−は、−O−、−CO−、−COO−又は−SiH−で置換されていてもよく、一部あるいは全部の水素原子が、フッ素、塩素、臭素、ヨウ素等のハロゲン原子、シアノ基、−SO等で置換されていてもよい。 Examples of the hydrocarbon group having 1 to 8 carbon atoms which may have a substituent represented by R 1 and R 2 in the general formula (1) include, for example, methyl, ethyl, propyl, isopropyl, butyl, isobutyl, second Alkyl groups such as butyl, tertiary butyl, pentyl, isopentyl, tertiary pentyl, hexyl, heptyl, octyl, isooctyl, 2-ethylhexyl, tertiary octyl, etc., and the above alkyls such as hydroxyethyl, 2-hydroxypropyl, 3-hydroxypropyl, etc. A hydroxyalkyl group which is a hydroxyl group-substituted product, an alkoxy group such as methoxy, ethoxy, propoxy, isopropoxy, butoxy, octoxy and 2-ethylhexyloxy corresponding to the above alkyl group, carbon number such as vinyl, propenyl, butenyl and hexenyl 2-30 alkenyl groups, etc. Such optional -CH 2 in the hydrocarbon group - is, -O -, - CO -, - COO- or -SiH 2 - may be substituted with, some or all hydrogen atoms, fluorine, chlorine , A halogen atom such as bromine and iodine, a cyano group, —SO 2 and the like.

上記一般式(1)においてRが表す置換基を有してもよい炭素数1〜18の炭化水素基としては、例えば、メチル、エチル、プロピル、イソプロピル、ブチル、イソブチル、第二ブチル、第三ブチル、ペンチル、第二ペンチル、第三ペンチル、ヘキシル、ヘプチル、オクチル、イソオクチル、2−エチルヘキシル、第三オクチル、ノニル、イソノニル、デシル、ウンデシル、ドデシル、トリデシル、テトラデシル、ペンタデシル、ヘキサデシル、ヘプタデシル、オクタデシル等のアルキル基、ヒドロキシエチル、2−ヒドロキシプロピル、3−ヒドロキシプロピル等の上記アルキル基の水酸基置換体であるヒドロキシアルキル基、上記アルキル基に対応するメトキシ、エトキシ、プロポキシ、イソプロポキシ、ブトキシ、オクトキシ、2−エチルヘキシルオキシ等のアルコキシ基、ビニル、プロペニル、ブテニル、ヘキセニル等の炭素数2〜30のアルケニル基等が挙げられ、かかる炭化水素基中の任意の−CH−は、−O−、−CO−、−COO−又は−SiH−で置換されていてもよく、一部あるいは全部の水素原子が、フッ素、塩素、臭素、ヨウ素等のハロゲン原子、シアノ基、−SO等で置換されていてもよい。 Examples of the hydrocarbon group having 1 to 18 carbon atoms that may have a substituent represented by R 3 in the general formula (1) include methyl, ethyl, propyl, isopropyl, butyl, isobutyl, sec-butyl, Tributyl, pentyl, secondary pentyl, tertiary pentyl, hexyl, heptyl, octyl, isooctyl, 2-ethylhexyl, tertiary octyl, nonyl, isononyl, decyl, undecyl, dodecyl, tridecyl, tetradecyl, pentadecyl, hexadecyl, heptadecyl, octadecyl Alkyl groups such as hydroxyethyl, 2-hydroxypropyl, 3-hydroxypropyl, etc., hydroxyalkyl groups which are hydroxyl-substituted products of the above alkyl groups, methoxy, ethoxy, propoxy, isopropoxy, butoxy, octoxy corresponding to the above alkyl groups , 2- Examples include alkoxy groups such as ethylhexyloxy, alkenyl groups having 2 to 30 carbon atoms such as vinyl, propenyl, butenyl, hexenyl, etc., and any —CH 2 — in the hydrocarbon group is —O—, —CO—. , —COO— or —SiH 2 — may be substituted, and some or all of the hydrogen atoms may be substituted with halogen atoms such as fluorine, chlorine, bromine and iodine, cyano groups, —SO 2 and the like. Also good.

上記一般式(1)においてRが表す置換基を有してもよい炭素数6〜18の芳香族基としては、例えば、フェニル、オルトトリル、2,3−キシリル、1−ナフチル、2−ナフチル等のアリール基等が挙げられ、かかる芳香族基中、一部あるいは全部の水素原子が、フッ素、塩素、臭素、ヨウ素等のハロゲン原子、シアノ基、−SO等で置換されていてもよい。 Examples of the aromatic group having 6 to 18 carbon atoms that may have a substituent represented by R 3 in the general formula (1) include phenyl, orthotolyl, 2,3-xylyl, 1-naphthyl, and 2-naphthyl. In such aromatic groups, some or all of the hydrogen atoms may be substituted with halogen atoms such as fluorine, chlorine, bromine and iodine, cyano groups, —SO 2 and the like. .

また、本発明の加硫促進剤は、下記式(2)、

Figure 2009235347
で表されるように、上記一般式(1)中のRおよびRが水素原子であり、かつRがベンジル基であることが所望の効果を得る上で好ましい。 Further, the vulcanization accelerator of the present invention has the following formula (2),
Figure 2009235347
In order to obtain a desired effect, it is preferable that R 1 and R 2 in the general formula (1) are hydrogen atoms and R 3 is a benzyl group.

本発明の加硫促進剤の合成方法は、上記一般式(1)で表される加硫促進剤が合成できれば特に限定されないが、例えば、上記式(2)の加硫促進剤の合成方法としては、2―メルカプトベンゾチアゾールナトリウム塩にトルエンを加え、攪拌しながら25〜30℃で2-ブロモエチルホスホン酸ジエチルを滴下し、さらに同温で1時間攪拌を続けた後、反応液を水洗し芒硝で脱水して合成する方法がある。   The method for synthesizing the vulcanization accelerator of the present invention is not particularly limited as long as the vulcanization accelerator represented by the general formula (1) can be synthesized. Add 2-toluene to 2-mercaptobenzothiazole sodium salt, add dropwise 2-bromoethylphosphonic acid diethyl ester at 25-30 ° C. with stirring, and continue stirring at the same temperature for 1 hour, and then wash the reaction solution with water. There is a method of dehydrating and synthesizing with sodium sulfate.

本発明のゴム組成物は、ゴム成分に対して、上記加硫促進剤と加硫剤とを配合してなるものである。   The rubber composition of the present invention is obtained by blending the above vulcanization accelerator and vulcanizing agent with a rubber component.

本発明におけるゴム成分としては、天然ゴム、汎用合成ゴム、例えば、乳化重合スチレン−ブタジエンゴム、溶液重合スチレン−ブタジエンゴム、高シス−1,4ポリブタジエンゴム、低シス−1,4ポリブタジエンゴム、高シス−1,4ポリイソプレンゴム等、ジエン系特殊ゴム、例えば、ニトリルゴム、水添ニトリルゴム、クロロプレンゴム等、オレフィン系特殊ゴム、例えば、エチレン−プロピレンゴム、ブチルゴム、ハロゲン化ブチルゴム、アクリルゴム、クロロスルホン化ポリエチレン等、その他特殊ゴム、例えば、ヒドリンゴム、フッ素ゴム、多硫化ゴム、ウレタンゴム等を挙げることができ、好ましくは、ジエン系ゴム成分または天然ゴムである。また、これらのゴム成分の1種のみを含むものであってもよく、2種以上を含むものであってもよい。   As the rubber component in the present invention, natural rubber, general-purpose synthetic rubber such as emulsion polymerization styrene-butadiene rubber, solution polymerization styrene-butadiene rubber, high cis-1,4 polybutadiene rubber, low cis-1,4 polybutadiene rubber, high Cis-1,4 polyisoprene rubber, etc., diene special rubber, for example, nitrile rubber, hydrogenated nitrile rubber, chloroprene rubber, etc., olefin special rubber, for example, ethylene-propylene rubber, butyl rubber, halogenated butyl rubber, acrylic rubber, Other special rubbers such as chlorosulfonated polyethylene, for example, hydrin rubber, fluorine rubber, polysulfide rubber, urethane rubber and the like can be mentioned, and diene rubber component or natural rubber is preferable. Moreover, only 1 type of these rubber components may be included, and 2 or more types may be included.

本発明における加硫剤としては、特に限定されるものではなく、硫黄、有機加硫剤等が挙げられるが、好ましくは硫黄である。また、かかる加硫剤の配合量としては、ゴム成分100質量部に対して、上記加硫剤を0.1〜10質量部配合してなることが好ましく、1〜5質量部配合してなることがさらに好ましい。   The vulcanizing agent in the present invention is not particularly limited, and examples thereof include sulfur and organic vulcanizing agents, and sulfur is preferred. Moreover, as a compounding quantity of this vulcanizing agent, it is preferable to mix | blend 0.1-10 mass parts of the said vulcanizing agent with respect to 100 mass parts of rubber components, and it mixes | blends 1-5 mass parts. More preferably.

さらに、本発明のゴム組成物は、ゴム成分100質量部に対して、上記加硫促進剤を0.1〜10質量部配合してなることが好ましく、1〜5質量部配合してなることがさらに好ましい。0.1質量部未満では十分な加硫性能を得られない場合があり、一方、10質量部を超えて含有させても、所期の性能のさらなる向上効果は発現しにくく、混合や成型等における作業性が低下するため、好ましくない。   Furthermore, the rubber composition of the present invention is preferably formed by blending 0.1 to 10 parts by mass of the vulcanization accelerator with respect to 100 parts by mass of the rubber component, and 1 to 5 parts by mass. Is more preferable. If the amount is less than 0.1 parts by mass, sufficient vulcanization performance may not be obtained. On the other hand, even if the content exceeds 10 parts by mass, the desired performance improvement effect is hardly exhibited, such as mixing and molding. This is not preferable because the workability in the process is reduced.

さらにまた、本発明のゴム組成物には、上記加硫促進剤、ゴム成分および加硫剤の他、ゴム業界で通常用いられている各種添加剤を、本発明の効果を阻害しない範囲で適宜配合することができる。例えば、カーボンブラック、シリカ、炭酸カルシウム等の無機充填剤、シランカップリング剤等のカップリング剤、軟化剤、N−シクロへキシル−2−ベンゾチアジル−スルフェンアミド、N−オキシジエチレン−ベンゾチアジル−スルフェンアミド等の老化防止剤、酸化亜鉛、ステアリン酸、オゾン劣化防止剤、発泡剤、発泡助剤等が挙げられ、これらは1種を単独で使用してもよいし、2種以上を併用してもよい。なお、これら各種添加剤としては、市販品を使用することができる。   Furthermore, in the rubber composition of the present invention, in addition to the above vulcanization accelerator, rubber component and vulcanizing agent, various additives usually used in the rubber industry are appropriately added within a range that does not impair the effects of the present invention. Can be blended. For example, inorganic fillers such as carbon black, silica and calcium carbonate, coupling agents such as silane coupling agents, softeners, N-cyclohexyl-2-benzothiazyl-sulfenamide, N-oxydiethylene-benzothiazyl-sulfur Examples include anti-aging agents such as phenamide, zinc oxide, stearic acid, antiozonants, foaming agents, foaming aids, etc. These may be used alone or in combination of two or more. May be. In addition, a commercial item can be used as these various additives.

本発明のゴム組成物は、以上の各成分を適宜選択した装置、条件、手法等にて混練り、熱入れ、押出等することにより調製され、タイヤ等の各種ゴム製品に好適に適用することができる。   The rubber composition of the present invention is prepared by kneading, heating, extruding, and the like using the apparatus, conditions, and methods appropriately selected from the above components, and suitably applied to various rubber products such as tires. Can do.

混練りは、混練り装置への投入体積、ローターの回転速度、ラム圧等や、混練り温度、混練り時間、混練り装置等の諸条件について特に制限はなく、所望に応じ適宜選択することができる。混練り装置としては、例えば、ロールなどの開放式混練機やバンバリーミキサーなどの密閉式混練機等が挙げられ、市販品を好適に使用することができる。   The kneading is not particularly limited with respect to various conditions such as the input volume to the kneading apparatus, the rotational speed of the rotor, the ram pressure, the kneading temperature, the kneading time, the kneading apparatus, etc., and should be appropriately selected as desired. Can do. Examples of the kneading apparatus include an open kneader such as a roll and a closed kneader such as a Banbury mixer, and commercially available products can be preferably used.

熱入れまたは押出についても、熱入れまたは押出の時間、熱入れまたは押出の装置等の諸条件について特に制限はなく、所望に応じ適宜選択することができる。また、熱入れまたは押出の装置についても、市販品を好適に使用することができる。   Regarding the heating or extrusion, there are no particular limitations on the conditions such as the heating or extrusion time, the heating or extrusion apparatus, and the like, and they can be appropriately selected as desired. Moreover, a commercial item can be used conveniently also about the apparatus of a hot-heating or extrusion.

また、本発明のタイヤは、トレッド、ベルトなどのゴム部材に上記本発明のゴム組成物を用いたものであればよく、その具体的な構造や他の材料等については特に制限されるものではない。なお、本発明のタイヤに充填する気体としては、通常の或いは酸素分圧を調整した空気の他、窒素、アルゴン、ヘリウム等の不活性ガスを用いることができる。   In addition, the tire of the present invention may be any tire as long as the rubber composition of the present invention is used for a rubber member such as a tread or a belt, and the specific structure and other materials are not particularly limited. Absent. In addition, as gas with which the tire of the present invention is filled, an inert gas such as nitrogen, argon, helium, etc. can be used in addition to air having normal or oxygen partial pressure adjusted.

次に、本発明を実施例に基づき説明する。   Next, this invention is demonstrated based on an Example.

(実施例1、比較例1および2)
(加硫促進剤Aの合成)
窒素置換した300ml容量の四径フラスコに、2−メルカプトベンゾチアゾールナトリウム塩18.9g(0.1mol)とトルエン200mlを加えた。攪拌しながら25〜30℃で2−ブロモエチルホスホン酸ジエチル24.5g(0.1mol)を20分かけて滴下し、さらに室温で1時間攪拌を続けた。反応後、反応液を水洗し、芒硝で脱水した。
(Example 1, Comparative Examples 1 and 2)
(Synthesis of vulcanization accelerator A)
2-mercaptobenzothiazole sodium salt (18.9 g, 0.1 mol) and toluene (200 ml) were added to a nitrogen-substituted 300-ml flask. While stirring, 24.5 g (0.1 mol) of diethyl 2-bromoethylphosphonate was added dropwise at 25 to 30 ° C. over 20 minutes, and stirring was further continued at room temperature for 1 hour. After the reaction, the reaction solution was washed with water and dehydrated with sodium sulfate.

次いで、溶媒を170g留去して残渣を除冷し、結晶析出後、n−ヘキサン100mlを添加して氷冷した。析出した結晶を濾取し、n−ヘキサン150mlで洗浄し,50℃で減圧乾燥して、白色粉末24.1g(収率80.0%)を得た。得られた白色粉末をH−NMR(CDCl)で同定し、下記式(2)で示される化合物であることを確認した。 Next, 170 g of the solvent was distilled off to remove the residue, and after crystal precipitation, 100 ml of n-hexane was added and ice-cooled. The precipitated crystals were collected by filtration, washed with 150 ml of n-hexane, and dried under reduced pressure at 50 ° C. to obtain 24.1 g of white powder (yield 80.0%). The obtained white powder was identified by 1 H-NMR (CDCl 3 ) and confirmed to be a compound represented by the following formula (2).

Figure 2009235347
Figure 2009235347

δ(ppm)
5.39 {s,2H,−S−C(=O)O−CH−C}
7.41 {m,6H,ベンゼン環}
7.50 {t,1H,ベンゼン環}
7.89 {d,1H,ベンゼン環}
8.03 {d,1H,ベンゼン環}
δ (ppm)
5.39 {s, 2H, —S—C (═O) O—CH 2 —C 6 H 5 }
7.41 {m, 6H, benzene ring}
7.50 {t, 1H, benzene ring}
7.89 {d, 1H, benzene ring}
8.03 {d, 1H, benzene ring}

(未加硫のゴム組成物の作製)
下記表1に示す配合内容の各ゴム組成物を、ラボプラストミルを使用して混練り配合し、未加硫のゴム組成物を得た。
(Preparation of unvulcanized rubber composition)
Each rubber composition having the blending contents shown in Table 1 below was kneaded and blended using a lab plast mill to obtain an unvulcanized rubber composition.

(ゴム組成物の加硫特性試験)
各未加硫のゴム組成物について、キュラスト試験をオリエンティック製キュラストメーターで行い145℃で測定した。T10は加硫反応によるトルクの上昇が全体の10%に達した時間(分)、T90は加硫反応によるトルクの上昇が全体の90%に達した時間(分)、Mはトルクの最大値(N・m)を表す。結果を表1に併記する。
(Vulcanization test of rubber composition)
Each unvulcanized rubber composition was subjected to a curast test using an Oriental curast meter and measured at 145 ° C. T10 is the time when the torque increase due to the vulcanization reaction reaches 10% (min), T90 is the time when the torque increase due to the vulcanization reaction reaches 90% (min), MH is the maximum torque Represents the value (N · m). The results are also shown in Table 1.

Figure 2009235347
*1:ノクラックNS―6(大内新興化学工業(株)製)
*2:ノクセラーCZ(大内新興化学工業(株)製、N−シクロヘキシル−2―ベンゾチアゾリルスルフェンアミド)
*3:ノクセラーDZ(大内新興化学工業(株)製、N,N―ジシクロヘキシル―2―ベンゾチアゾリルスルフェンアミド)
*4:マノボンドC22.5(OMG製、コバルト含有量=22.5質量%)
Figure 2009235347
* 1: Nocrack NS-6 (Ouchi Shinsei Chemical Co., Ltd.)
* 2: Noxeller CZ (Ouchi Shinsei Chemical Co., Ltd., N-cyclohexyl-2-benzothiazolylsulfenamide)
* 3: Noxeller DZ (Ouchi Shinsei Chemical Co., Ltd., N, N-dicyclohexyl-2-benzothiazolylsulfenamide)
* 4: Manobond C22.5 (made by OMG, cobalt content = 22.5% by mass)

Claims (7)

下記一般式(1)、
Figure 2009235347
(一般式(1)中、RおよびRは、各々独立に、水素原子、または置換基を有してもよい炭素数1〜8の炭化水素基を表し、Rは、置換基を有してもよい炭素数1〜18の炭化水素基または置換基を有してもよい炭素数6〜18の芳香族基を表す)で表される2―メルカプトベンゾチアゾールを含有することを特徴とする加硫促進剤。
The following general formula (1),
Figure 2009235347
(In General Formula (1), R 1 and R 2 each independently represent a hydrogen atom or a hydrocarbon group having 1 to 8 carbon atoms which may have a substituent, and R 3 represents a substituent. And a 2-mercaptobenzothiazole represented by a hydrocarbon group having 1 to 18 carbon atoms which may have or an aromatic group having 6 to 18 carbon atoms which may have a substituent. Vulcanization accelerator.
前記一般式(1)中のRおよびRが水素原子であり、かつRがベンジル基である請求項1記載の加硫促進剤。 The vulcanization accelerator according to claim 1, wherein R 1 and R 2 in the general formula (1) are hydrogen atoms, and R 3 is a benzyl group. ゴム成分に対して、請求項1または2記載の加硫促進剤と加硫剤とを配合してなることを特徴とするゴム組成物。   A rubber composition comprising the rubber component and the vulcanization accelerator according to claim 1 or 2 and a vulcanizing agent. 前記加硫剤が、硫黄である請求項3記載のゴム組成物。   The rubber composition according to claim 3, wherein the vulcanizing agent is sulfur. 前記ゴム成分が、ジエン系ゴム成分または天然ゴムである請求項3または4記載のゴム組成物。   The rubber composition according to claim 3 or 4, wherein the rubber component is a diene rubber component or a natural rubber. 前記ゴム成分100質量部に対して、前記加硫促進剤を0.1〜10質量部配合してなる請求項3〜5のうちいずれか一項に記載のゴム組成物。   The rubber composition according to any one of claims 3 to 5, wherein 0.1 to 10 parts by mass of the vulcanization accelerator is blended with 100 parts by mass of the rubber component. 請求項3〜6のうちいずれか一項に記載のゴム組成物を用いたことを特徴とするタイヤ。   A tire using the rubber composition according to any one of claims 3 to 6.
JP2008086732A 2008-03-28 2008-03-28 Vulcanization accelerator, rubber composition, and tire using it Withdrawn JP2009235347A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2008086732A JP2009235347A (en) 2008-03-28 2008-03-28 Vulcanization accelerator, rubber composition, and tire using it

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2008086732A JP2009235347A (en) 2008-03-28 2008-03-28 Vulcanization accelerator, rubber composition, and tire using it

Publications (1)

Publication Number Publication Date
JP2009235347A true JP2009235347A (en) 2009-10-15

Family

ID=41249703

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2008086732A Withdrawn JP2009235347A (en) 2008-03-28 2008-03-28 Vulcanization accelerator, rubber composition, and tire using it

Country Status (1)

Country Link
JP (1) JP2009235347A (en)

Similar Documents

Publication Publication Date Title
JP5269504B2 (en) Method for producing rubber composition
JP5269503B2 (en) Method for producing rubber composition
JP4598148B2 (en) Sulfenamide, rubber vulcanization accelerator containing the sulfenamide, and method for producing the same
JP5418141B2 (en) Rubber composition
JP5347353B2 (en) Method for producing silica-containing diene rubber composition
KR20170019354A (en) Alkylidene aminoganidine and salt thereof, modifier composition, modified rubber for tire, rubber composition for tire, and tire
JP2011052089A (en) Rubber composition for tire and pneumatic tire using the same
JP2014210870A (en) Rubber composition for tire tread and pneumatic tire using the same
JP2009269977A (en) Vulcanization accelerator, rubber composition, and tire using it
JP2010248315A (en) Rubber composition, and pneumatic tire using the same
JP5654362B2 (en) Rubber composition for tire and pneumatic tire
JP4993378B2 (en) Vulcanization accelerator, rubber composition, and tire using the same
JP2009235348A (en) Vulcanization accelerator, rubber composition, and tire using it
JP2009235349A (en) Vulcanization accelerator, rubber composition, and tire using it
JP6331544B2 (en) Rubber composition, method for producing the same, and pneumatic tire using the same
JP4994282B2 (en) Vulcanization accelerator, rubber composition, and tire using the same
JP2009235347A (en) Vulcanization accelerator, rubber composition, and tire using it
JP2010059290A (en) Vulcanization accelerator, rubber composition, and tire using the same
JP2009235344A (en) Vulcanization accelerator, rubber composition, and tire using it
JP2009235345A (en) Vulcanization accelerator, rubber composition, and tire using it
JP2014080535A (en) Coupling agent for rubber-carbon black and rubber composition for tire
JP6125323B2 (en) Rubber composition and pneumatic tire
JP5485841B2 (en) Rubber composition for tire and pneumatic tire
JP2015199833A (en) rubber composition and pneumatic tire
JP2014118526A (en) Coupling agent for rubber and carbon black and rubber composition

Legal Events

Date Code Title Description
A621 Written request for application examination

Free format text: JAPANESE INTERMEDIATE CODE: A621

Effective date: 20110316

A977 Report on retrieval

Free format text: JAPANESE INTERMEDIATE CODE: A971007

Effective date: 20121017

A761 Written withdrawal of application

Free format text: JAPANESE INTERMEDIATE CODE: A761

Effective date: 20121019