JPS6071671A - Vibration-damping coating compound - Google Patents

Vibration-damping coating compound

Info

Publication number
JPS6071671A
JPS6071671A JP17881083A JP17881083A JPS6071671A JP S6071671 A JPS6071671 A JP S6071671A JP 17881083 A JP17881083 A JP 17881083A JP 17881083 A JP17881083 A JP 17881083A JP S6071671 A JPS6071671 A JP S6071671A
Authority
JP
Japan
Prior art keywords
epoxy resin
urethane
compound
vibration
vibration damping
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
JP17881083A
Other languages
Japanese (ja)
Inventor
Toshio Sato
俊雄 佐藤
Akio Suzuki
明夫 鈴木
Toshio Nemoto
根本 俊夫
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.)
Toyota Tsusho Corp
Original Assignee
Toyota Tsusho 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 Toyota Tsusho Corp filed Critical Toyota Tsusho Corp
Priority to JP17881083A priority Critical patent/JPS6071671A/en
Publication of JPS6071671A publication Critical patent/JPS6071671A/en
Pending legal-status Critical Current

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Abstract

PURPOSE:A vibration-damping coating compound for cevering cars, ships, etc., having improved peel strength and impact resistance, preventing noise caused by vibration of steel plate, obtained by blending a resin component of an epoxy resin and urethane-modified epoxy resin with a scaly inorganic substance in a specific ratio. CONSTITUTION:(A) 100pts.wt. resin coponent of (i) 10pts.wt. epoxy resin, and (ii) 1-100pts.wt. urethane-modified epoxy resin consisting of a polyisocyanate compound (e.g., pentane diisocyanate, etc.), a polyoxy compound (e.g., ethylene glycol, etc.), and an epoxy compound (e.g., butylglycidyl ether, etc.) is blended with (B) 10-200pts.wt. scaly inorganic substance (e.g., mica, etc. having 60- 100 meshes by Tyler standard sieve), to give the desired coating compound. EFFECT:Having improved vibraion-damping performances in a wide temperature range.

Description

【発明の詳細な説明】 〔産業上の利用分野〕 本究明は自動車、その他の車両、農業機械、建設機械、
船舶等の鋼板に塗布されてシート状塗膜を形成し、これ
ら鋼板の振動による騒音を防止するための制振塗料に関
する。
[Detailed description of the invention] [Industrial application field] This research is applicable to automobiles, other vehicles, agricultural machinery, construction machinery,
This invention relates to a vibration damping paint that is applied to steel plates of ships and the like to form a sheet-like coating film to prevent noise caused by vibrations of these steel plates.

〔従来技術〕[Prior art]

この種の制4辰塗料等制振材としては、アスファルト糸
の制振材や各種の合成樹脂にマイカ等の鱗片状無機物質
を添加してなる制振材が開発されている。しかしながら
、これらのいずれの制振材においても広範囲の温度領域
においてはかならずしも十分な制振性能を発揮するとは
いえず、またこれら制振材の制振性能の最高値もかなら
ずしも高いとはいえない。
As this type of vibration damping materials such as paints, damping materials made of asphalt yarn and various synthetic resins to which scaly inorganic substances such as mica have been developed have been developed. However, it cannot be said that any of these damping materials necessarily exhibits sufficient damping performance in a wide temperature range, and the maximum value of the damping performance of these damping materials cannot necessarily be said to be high.

〔発明の目的〕[Purpose of the invention]

本発明は、このような実状に着目してなされたもので、
その主たる目的は、広範囲の温度領域において十分な制
振性能を発揮し得るシート状塗膜を形成できる制振塗料
を提供するにあり、さらには鋼板等母材に対する接着性
に優れかつ耐衝撃性の高いシート状塗膜を形成できる制
振塗料を提供するにある。
The present invention was made by paying attention to such actual situation.
The main purpose is to provide a vibration damping paint that can form a sheet-like coating that exhibits sufficient vibration damping performance in a wide temperature range, and also has excellent adhesion to base materials such as steel plates and impact resistance. To provide a vibration-damping paint capable of forming a sheet-like coating film with high corrosion resistance.

〔発明の構成〕[Structure of the invention]

本発明は、かかる目的を達成すべく、エポキシ樹脂10
重量部と分子内にウレタン結合を有するウレタン変性エ
ポキシ樹脂1〜100重量部を樹脂成分とし、当該樹脂
成分ioo重量部と鱗片状無機物質10〜200重量部
を主成分とする制振塗料にその要旨がある。
In order to achieve such an object, the present invention provides epoxy resin 10
The resin component is 1 to 100 parts by weight of a urethane-modified epoxy resin having urethane bonds in the molecule, and the vibration damping paint has 10 to 200 parts by weight of the resin component and 10 to 200 parts by weight of a scaly inorganic substance. There is a gist.

しかして、本発明において、ウレタン変性エポキシ樹脂
とは分子内にウレタン結合を有するもので、ポリイソシ
アネート化合物とポリオキシ化合物とによって生成した
ウレタンプンポリマーをエポキシ化合物に付加して得ら
れる。
Thus, in the present invention, the urethane-modified epoxy resin has a urethane bond in its molecule, and is obtained by adding a urethane polymer produced from a polyisocyanate compound and a polyoxy compound to an epoxy compound.

ポリイソシアネート化合物としては、具体的にはペンタ
ンンイソシアネート、ヘキサンジイソシアネート、ジプ
ロピルエーテルジイソシアネート等の脂肪族ジイソシア
ネート、トリンンシイソシア′ネート、フェニレンジイ
ソシアネート、ビフェニルジイソシアネート等の芳香族
ジイソシアネート、ジイソシアネートジメチルベンゾ−
r/し、ジイソシアネートメチルシクロヘキサン等の環
状脂肪族ジイソシアネートが使用される。
Specific examples of the polyisocyanate compound include aliphatic diisocyanates such as pentane isocyanate, hexane diisocyanate, and dipropyl ether diisocyanate, aromatic diisocyanates such as phosphorus isocyanate, phenylene diisocyanate, and biphenyl diisocyanate, and dimethyl benzoate diisocyanate.
Cycloaliphatic diisocyanates such as diisocyanate methylcyclohexane are used.

また、ポリオキシ化合物としては、具体的にはエチレン
クリコール、シエチレンクリコ−/l/%)リエチレン
クリコール、プロピレンクリコール等のジオール、1−
リメチロールプロパン、トリメチロールエタン、ヘキサ
ントリオール、グリセリン等のトリオール、ポリプロピ
レングリコール、ポリブチレングリコール等のポリオキ
シアルキレングリコール等多価アルコール −)Vとアジピン酸、セバシン酸等の飽和脂肪酸、マレ
イン酸、フタール酸等の不飽和脂肪酸とのボリエヌテル
が使用される。
In addition, examples of polyoxy compounds include diols such as ethylene glycol, ethylene glycol/l/%), propylene glycol, etc.
Triols such as limethylolpropane, trimethylolethane, hexanetriol, glycerin, polyhydric alcohols such as polyoxyalkylene glycols such as polypropylene glycol and polybutylene glycol -) V and saturated fatty acids such as adipic acid and sebacic acid, maleic acid, phthal Borienether with unsaturated fatty acids such as acids are used.

また、エポキシ化合物としては、具体的にはブチ ル 
グ リ シ ジ ルエ ー テ ル、 ア リ ル グ
 リ シ シ ル エ ーチル、ビスフェノ−+− /
L/ Aジグリシジルエーテル、ポリグリコールジグリ
シシルエーテ/1/等のグリシジル化合物が使用される
In addition, as an epoxy compound, specifically butyl
Glycyl ether, aryl glycyl ether, bispheno+-/
Glycidyl compounds such as L/A diglycidyl ether and polyglycol diglycidyl ether/1/ are used.

さらに、本発明において、Qt4片状無機物質としては
マイカ、グラファイト、ガラスフレーク等が使用され、
それらの大きさはタイラーfIFf*で60〜1DOメ
ツシユを中心にした粒度分布のものが望ましい。
Furthermore, in the present invention, mica, graphite, glass flakes, etc. are used as the Qt4 flaky inorganic substance,
As for their size, it is preferable that the particle size distribution is centered around a 60 to 1 DO mesh in terms of Tyler fIFf*.

なお、本発明においては、上記した樹脂成分と鱗片状無
機物質を主成分とするものであるが、その他に希釈剤、
硬化剤等を添加してよいことは当然である。希釈剤とし
てはキジロールが好適であり、また硬化剤としてはエポ
キシ樹脂の硬化剤として使用されるポリアミン、ポリア
ミドアミン、変性脂肪族ポリアミン、変性芳香族ポリア
ミン等が好適である。
In addition, in the present invention, the main components are the above-mentioned resin component and scaly inorganic substance, but in addition, a diluent,
It goes without saying that a curing agent or the like may be added. As the diluent, Kijiroru is suitable, and as the curing agent, polyamines, polyamidoamines, modified aliphatic polyamines, modified aromatic polyamines, etc., which are used as curing agents for epoxy resins, are suitable.

〔発明の作用・効果〕[Action/effect of the invention]

本発明によれば、第2図および第6図から明らかなよう
に、本発明に係る制振塗料(口)〜(ト)にて形成され
たシート状塗膜は樹脂酸@がエポキシ樹脂単独(イ)の
ものに比し損失係数ηが高く、かつエポキシ樹脂単独(
イ)およびウレタン変性エポキシ樹脂単独(す)に比し
広範囲の温度領域において高いηを示しておシ、本発明
に係る制振塗料(口)〜(ト)が広範囲の温度領域にお
いて優れた制振性能を備えていることがわかる。
According to the present invention, as is clear from FIG. 2 and FIG. The loss coefficient η is higher than that of (a), and the epoxy resin alone (
A) and urethane-modified epoxy resin alone (S) show higher η in a wide temperature range. It can be seen that it has excellent vibration performance.

また、第4図および第4表から明らかなように、本発明
に係る制振塗料Qす〜ψ)にて形成されたシート状塗膜
は剥離強度および耐衝撃性共に高い値であるのに対し、
エポキシ樹脂単独し)およびウレタン変性エポキシ樹脂
単独(+)のものは少くとも剥離強度、耐衝撃性のいず
れかの値が低いことがわかる。
Furthermore, as is clear from Fig. 4 and Table 4, the sheet-like coating film formed with the vibration damping paint Qs~ψ) according to the present invention has high peel strength and impact resistance. On the other hand,
It can be seen that the epoxy resin alone) and the urethane-modified epoxy resin alone (+) had low values in at least one of peel strength and impact resistance.

なお、鱗片状無機物質の混合割合は塗料の塗布性、塗料
塗膜の接着性等から本発明の範囲に駆足される。
The mixing ratio of the scale-like inorganic substance is determined within the scope of the present invention based on the applicability of the paint, the adhesion of the paint film, etc.

〔実施例〕〔Example〕

以下、本発明の実施例を示すが、本実施例においては制
振性能の目安となる損失係数ηを第1図に示す測定装置
を使用して次の通り算出した。すなわち、鉄板製の支持
板11の」−面に本発明に係る種々の制振塗料を塗布し
て所定厚みのシート状塗膜12を形成し、これら支持板
11とシー1−状塗膜の一端を強固な定盤上に支持する
。次いで、これら両者11、12を加振器21によって
固有振動数で共振させた後瞬時に加微力を零にして自由
振動させ、この自由振動の減衰をピックアップ22、増
幅器26、笑時間分析器24およびレベルレコーダ25
を用いて測定して減衰度D ( db/s )をめる。
Examples of the present invention will be described below. In this example, the loss coefficient η, which is a measure of vibration damping performance, was calculated as follows using the measuring device shown in FIG. That is, a sheet-like coating film 12 of a predetermined thickness is formed by applying various damping paints according to the present invention to the "-" side of a support plate 11 made of iron plate, and the sheet-like coating film 12 is formed between the support plate 11 and the sheet-like coating film. One end is supported on a strong surface plate. Next, both of these 11 and 12 are caused to resonate at a natural frequency by an exciter 21, and then the applied force is instantly reduced to zero to allow them to freely oscillate.The attenuation of this free oscillation is detected by a pickup 22, an amplifier 26, and a time analyzer 24. and level recorder 25
Measure the attenuation degree D (db/s) using

この減衰度りから、下記式によシ損失係数ηを算出した
。また、本実施例においてはη≧0.05i制振効果あ
υとした。なお、第1図において符号26は発倣器を示
す。
From this attenuation degree, the loss coefficient η was calculated using the following formula. Further, in this embodiment, η≧0.05i vibration damping effect υ. In addition, in FIG. 1, the reference numeral 26 indicates an emitter.

η=2D/(aWR) 但しa =20ioge−8.
68WR=2πf、H(ffi :固有振動数)〔実施
例1〕 ウレタン変性エポキシ樹脂としてエピタンE195(大
日本インキ化学工業株式会社製、商標)、鱗片状無機物
質としてマイカ、硬化剤としてラッカマイトWHO51
(大日本インキ化学工業株式会社製、商標)をそれぞれ
使用して第1表に示す成分の制振塗料(イ)〜(す)を
調製し、これらの制振塗料(イ)〜(す)により第1図
に示すシート状塗膜12を厚さ2 mmに形成し、これ
らの各温度における損失係数ηを算出して第2表に示す
結果を得た。これらの結果を第2図および第6図に示す
η=2D/(aWR) where a=20ioge-8.
68WR = 2πf, H (ffi: natural frequency) [Example 1] Epithane E195 (manufactured by Dainippon Ink & Chemicals Co., Ltd., trademark) as the urethane-modified epoxy resin, mica as the scaly inorganic substance, and Laccamite WHO51 as the hardening agent.
(manufactured by Dainippon Ink & Chemicals Co., Ltd., trademark) respectively to prepare vibration damping paints (A) to (S) with the components shown in Table 1, and these vibration damping paints (A) to (S). A sheet-like coating film 12 shown in FIG. 1 was formed to a thickness of 2 mm using the above methods, and the loss coefficient η at each of these temperatures was calculated to obtain the results shown in Table 2. These results are shown in FIGS. 2 and 6.

各制振塗料(イ)〜(す)において、制振塗料(ロ)〜
(力は本発明に係る制振塗料であシ、また(イ)は樹脂
成分がエポキシ樹脂単独のもの、(す)は樹脂成分がウ
レタン変性エポキシ樹脂単独のものである。これらの結
果かられかるように、樹脂成分がエポキシ樹脂単独の制
振顔料(イ)はウレタン父性エポキシ樹脂単独または同
樹脂が混在している制振塗料(ロ)〜(す)に比し損失
係数ηの最高値が著しく低い。丑た、これらの制振顔料
(ロ)〜(す)においては、ウレタン父性エポキシ樹脂
の割合に比例して損失係数ηの最高値が低温側へ移行し
、ウレタン父性エポキシ樹脂単独の制振塗料(す)は5
0°C以上の温度領域においては十分な制振性能を発揮
し得なくなる。従って、常温からそれ以上の広範囲の温
度領域においては、本発明に係る各制振塗料(ロ)〜(
ト)が高い損失係数ηを示し、十分な制振性能を発揮す
る。
In each vibration damping paint (A) to (S), vibration damping paint (B) to
(The force is obtained by using the damping paint according to the present invention, (a) is the case where the resin component is only epoxy resin, and (S) is the case where the resin component is only urethane-modified epoxy resin. From these results, As can be seen, the vibration damping pigment (a) whose resin component is an epoxy resin alone has the highest value of loss coefficient η compared to the vibration damping paints (b) to (s) whose resin component is a urethane paternal epoxy resin alone or a mixture of the same resins. In addition, in these vibration damping pigments (B) to (S), the maximum value of the loss coefficient η shifts to the low temperature side in proportion to the proportion of urethane paternal epoxy resin, and when the urethane paternal epoxy resin alone The damping paint is 5
In a temperature range of 0°C or higher, sufficient vibration damping performance cannot be exhibited. Therefore, in a wide temperature range from room temperature to higher, each vibration damping paint (b) to (
g) exhibits a high loss coefficient η and exhibits sufficient vibration damping performance.

第1表 各制振塗料(イ)〜(す)の成分割合(注 各
成分の割合はいずれも重量部である)第2表 各制振塗
料(イ)〜(す)におけるη(×1O−2)〔実施例2
〕 ウレタン変性エポキシ樹脂としてエピタンF195、鱗
片状無機物質としてマイカ、硬化剤としてラッカマイト
WH036S(犬日本インキ化学工業株式会社製、商標
)をそれぞれ使用して第6表に示す成分の制振塗料シ)
〜(ヨ)全調製し、これら各制振塗料し)〜(ヨ)にて
形成されたシート状塗膜全J工S規格による耐衝撃試験
(J工5K−5400)に供して耐衝撃値を測定した。
Table 1 Component ratio of each damping paint (A) to (S) (Note: All ratios of each component are parts by weight) Table 2 η (×1O) for each vibration damping paint (A) to (S) -2) [Example 2
] A damping paint with the components shown in Table 6 was prepared using Epithane F195 as a urethane-modified epoxy resin, mica as a scaly inorganic substance, and Laccamite WH036S (manufactured by Inu Nippon Ink Chemical Co., Ltd., trademark) as a hardening agent.
~(Y) All of the sheet-like coatings formed from these vibration damping paints were subjected to the impact resistance test (J Engineering 5K-5400) according to the J Engineering S standard (J Engineering 5K-5400) and the impact resistance value was determined. was measured.

得られた結果を第4表に示す。また、各制振塗料シ)〜
(ヨ)により2枚の鉄板を貼シ合せ、これら全JIS規
格による剥離強度試験(J工5K−6854)に供して
剥離強度を測定した。得られた結果を第4図に示す。な
お、第4図において(A)はウレタン変性エポキシ樹脂
の割合、(B)はエポキシ樹脂の割合を示す。
The results obtained are shown in Table 4. In addition, each vibration damping paint) ~
(Y), two iron plates were pasted together, and the peel strength was measured by subjecting them to a peel strength test (J Engineering 5K-6854) according to all JIS standards. The results obtained are shown in FIG. In FIG. 4, (A) shows the proportion of urethane-modified epoxy resin, and (B) shows the proportion of epoxy resin.

各制振塗料い)〜(ヨ)において、制振塗料Q→〜ψ)
は本発明に係る制振塗料であり、またし)は樹脂成分が
エポキシ樹脂単独のもの、(ヨ)は樹脂成分がウレタン
変性エポキシ樹脂単独のものである。これらの結果から
れかるように、樹脂成分がエポキシ樹脂単独の制振塗料
0)はウレタン変性エポキシ樹脂単独または同樹脂が混
在している制振塗料Q→〜(ヨ)に比し耐衝撃値が著し
く低い。一方、剥離強度については、エポキシ樹脂とウ
レタン変性エポキシ樹脂の混合割合が同一割合に近ずく
に従って大きくな9、いずれか一方の樹脂単独の制振塗
料し)、(ヨ)が最も低い。従って、耐衝撃性および剥
離強度の両者を満足させるのは本発明に係る各制振塗料
Q→〜ψ)であシ、これらの各制振塗料Q→〜(fJ)
は振動、衝撃等が著しく加わる自動車等の鋼板の制振材
用として極めて有効である。
For each vibration damping paint Q) ~ (Y), vibration damping paint Q → ~ ψ)
1 is a vibration damping coating according to the present invention, and 2) is a resin component consisting solely of an epoxy resin, and 2) is a resin component solely consisting of a urethane-modified epoxy resin. As can be seen from these results, the vibration damping paint 0) whose resin component is an epoxy resin alone has a higher impact resistance value than the vibration damping paint Q → ~ (Y) whose resin component is a urethane-modified epoxy resin alone or a mixture of the same resin. is extremely low. On the other hand, as for the peel strength, as the mixing ratio of the epoxy resin and the urethane-modified epoxy resin approaches the same ratio, the value increases, and the vibration damping paint using either resin alone has the lowest value. Therefore, it is each vibration damping paint Q→~ψ) according to the present invention that satisfies both impact resistance and peel strength, and each of these vibration damping paints Q→~(fJ)
It is extremely effective for use as a damping material for steel plates for automobiles, etc., which are subjected to significant vibrations, shocks, etc.

第6表 各制振塗料シ)〜(ヨ)の成分割合第4表 各
制振塗料における耐衝撃性
Table 6 Component ratio of each vibration damping paint

【図面の簡単な説明】[Brief explanation of the drawing]

第1図は減衰度測定装置の概略構成図、第2図および第
6図は各制振塗料にて形成されたシート状塗膜の各温度
に対するηの関係を示すグラフ、第4図は各制振塗料に
よる両樹脂の成分割合に対する剥離強度の関係を示すグ
ラフである。 符号の説明 11・・・支持板、12・・・シート状塗膜、21・・
・加振器。 出願人豊田通商株式会社
Figure 1 is a schematic configuration diagram of the attenuation measuring device, Figures 2 and 6 are graphs showing the relationship of η to each temperature of sheet-like coatings formed with each damping paint, and Figure 4 is a graph showing the relationship between η and each temperature. It is a graph showing the relationship between the peel strength and the component ratio of both resins in a damping paint. Explanation of symbols 11...Support plate, 12...Sheet-like coating film, 21...
・Vibrator. Applicant Toyota Tsusho Corporation

Claims (1)

【特許請求の範囲】[Claims] エポキシ樹脂10重量部と分子内にウレタン結合を有す
るウレタン変性エポキシ樹脂1〜100重量部′f:樹
脂成分とし、当該樹脂成分100重量部と鱗片状無機物
質10〜200重量部を主成分とする制振塗料。
10 parts by weight of an epoxy resin and 1 to 100 parts by weight of a urethane-modified epoxy resin having urethane bonds in the molecule'f: Resin component, with 100 parts by weight of the resin component and 10 to 200 parts by weight of a scaly inorganic substance as main components. Damping paint.
JP17881083A 1983-09-27 1983-09-27 Vibration-damping coating compound Pending JPS6071671A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP17881083A JPS6071671A (en) 1983-09-27 1983-09-27 Vibration-damping coating compound

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP17881083A JPS6071671A (en) 1983-09-27 1983-09-27 Vibration-damping coating compound

Publications (1)

Publication Number Publication Date
JPS6071671A true JPS6071671A (en) 1985-04-23

Family

ID=16055048

Family Applications (1)

Application Number Title Priority Date Filing Date
JP17881083A Pending JPS6071671A (en) 1983-09-27 1983-09-27 Vibration-damping coating compound

Country Status (1)

Country Link
JP (1) JPS6071671A (en)

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH03125029U (en) * 1990-03-30 1991-12-18
JP2006342360A (en) * 2006-08-21 2006-12-21 Chugoku Marine Paints Ltd Epoxy resin composition capable of forming coating film having high elongation, anticorrosion coating composition, its coating film, substrate covered with the coating film, and method for preventing corrosion of substrate
WO2008081680A1 (en) 2007-01-05 2008-07-10 Nihon Tokushu Toryo Co., Ltd. Two-package type, air-drying, vibration-damping coating composition
CN107201071A (en) * 2016-05-20 2017-09-26 南京长江涂料有限公司 A kind of graphene sheet Conductive mica oil tank static electricity conductive anticorrosive paint and preparation method thereof
CN113999610A (en) * 2021-11-16 2022-02-01 四川大学 High-damping wide-temperature-range polyurethane/epoxy damping coating and preparation method thereof

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH03125029U (en) * 1990-03-30 1991-12-18
JP2006342360A (en) * 2006-08-21 2006-12-21 Chugoku Marine Paints Ltd Epoxy resin composition capable of forming coating film having high elongation, anticorrosion coating composition, its coating film, substrate covered with the coating film, and method for preventing corrosion of substrate
WO2008081680A1 (en) 2007-01-05 2008-07-10 Nihon Tokushu Toryo Co., Ltd. Two-package type, air-drying, vibration-damping coating composition
JP2008163277A (en) * 2007-01-05 2008-07-17 Nippon Tokushu Toryo Co Ltd Two-pot room temperature-curing coating type damping paint composition
CN107201071A (en) * 2016-05-20 2017-09-26 南京长江涂料有限公司 A kind of graphene sheet Conductive mica oil tank static electricity conductive anticorrosive paint and preparation method thereof
CN113999610A (en) * 2021-11-16 2022-02-01 四川大学 High-damping wide-temperature-range polyurethane/epoxy damping coating and preparation method thereof
CN113999610B (en) * 2021-11-16 2022-10-25 四川大学 High-damping wide-temperature-range polyurethane/epoxy damping coating and preparation method thereof

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