長炭素繊維は、高強度および高弾性率および優れた機械的性質を有する新しい材料である。有機繊維の炭化と黒鉛化によって得られる微結晶グラファイト材料です。その比重は鋼鉄の1/4以下であり、その強度は鋼鉄のそれよりも高い。耐食性、高弾性率、溶融しない。含浸押出し成形してペレット状にした各種樹脂基材 長炭素繊維ポリマー。 直接成形品に使用できます。近年、それは航空宇宙、機械および電子化学薬品で広く利用されています。
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PA66 ポリアミド 66 ナチュラルブラック充填 lcf ロングカーボンファイバー中国製高品質PA66 Nylon (PA) has a series of excellent properties, such as high mechanical strength, chemical resistance, oil resistance, wear resistance, self-lubrication, easy processing and forming, and has become one of the thermoplastic engineering plastics widely used at home and abroad. But in the practical application, the performance requirements of nylon are different under different conditions or environment. For example, electric drill and motor shell, pump impeller, bearing, diesel engine and air conditioning fan and other parts require nylon material to have high strength, high rigidity and high dimensional stability; Because of the poor toughness of nylon at low temperature, it is necessary to toughen it. In some outdoor applications, nylon materials must be weather-resistant modification in long-term outdoor environment. PA66-LCF Long carbon fiber reinforced nylon has excellent damping properties in 3D printing and has better performance than glass fiber reinforced nylon. In the design of tools for industrial applications, traditional techniques have used aluminum or alternative metal alloys because metal components perform better and meet the requirements of the tool. In many cases, thermoplastics can meet the strength requirements of such tools, but not the rigidity requirements for performing test tasks. Carbon fiber reinforced nylon is an ideal substitute for metal. Due to the combination of the light weight of nylon and the mechanical strength and thermal properties of carbon fiber, the strength and stiffness of carbon fiber composite nylon material is significantly improved, and its mechanical strength even exceeds that of 3D-printed PEEK and PEKK. In the automobile industry, from internal and external components such as vehicle anchors and instruments to engine housing, metal parts can be replaced. As we all know, automotive carbon fiber is widely used in automobile manufacturing due to its strong thermal and mechanical properties. As a substitute for metal parts, carbon fiber reinforced nylon has a wide range of application prospects in the automobile industry, which can realize the possibility of weight reduction and design optimization, as well as environmental protection and economic advantages. TDS 応用 パッケージ 特許もっと見る
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PA6 LFT-G ブランドヘルメット製造用複合長炭素繊維ポリアミド 6PA6原料 ポリアミド 6 は、ポリカプロラクタムまたはナイロン 6(PA6) としても知られ、半透明から不透明の黄色または乳白色の熱可塑性樹脂です。PA6の相対密度は1.12〜1.14g /cm3、融点は219〜225℃、引張強さは68〜83MPa、圧縮強さは82〜88MPa、耐低温性は良好です(-75℃は不可)脆性)、耐摩耗性、自己潤滑性、耐油性に優れています。 PA6 の優れた構造と特性により、国内外でますます多くの研究者が PA6 に関する重要な研究開発を行っています。これには、製造用の新しい重合化学物質の探索、その構造と特性の変更、新しい加工方法の発見などが含まれます。 PA6-LCF 高比強度、高比弾性率、高温耐性などの優れた特性を備えた長炭素繊維(LCF)強化ナイロン複合材料は、ナイロンハイテク分野の応用空間を拡大し、現在最も重要な強化複合材料の1つです。 TDS 当社によるテスト済みであり、参照のみを目的としています。 応用 インジェクション技術 私たちに関しては 今すぐご連絡ください。もっと見る
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LFT-G PP ポリプロピレン長炭素繊維強化素材 高性能 ブラック長炭素繊維 近年、世界中のさまざまな産業(自動車、航空宇宙、軍事、建築土木など)における軽量化への要求の高まりや、環境に優しく持続可能な素材の使用に対する要求がますます厳しくなっていることから、さまざまな業界で繊維強化熱可塑性複合材料の使用が増加しています。 特に炭素繊維強化複合材料は、製品がライフサイクルを終えて廃棄された後も高いリサイクル価値があり、効果的なリサイクル技術と方法により、炭素繊維強化複合材料のコストを大幅に削減できます。 The recovery method of fiber reinforced thermoplastic composites is closely related to the shape and forming method of fiber reinforced in resin. Take carbon fiber reinforced thermoplastic composites as an example. The reinforced forms of carbon fiber mainly include short fiber reinforced, long fiber reinforced and continuous fiber reinforced, and the main preparation method is melt forming. For thermoplastic resins with high melting point, such as polyetherimide (PEI) and polyetherether ketone (PEEK), solvent forming can be adopted. Due to the linear molecular structure of thermoplastic resin, it is easy to transform from solid state to liquid state at high temperature. Therefore, thermoplastic composite materials can be recycled by remelting and reshaping method, which is more recyclable than thermosetting resin matrix composite materials. PP-LCF datasheet Application Our materails all can be recycled At present, more and more companies are developing recycling methods for fiber reinforced thermoplastic composites. For example, the 2014 Chevrolet Corvette uses composite materials containing recycled carbon fiber in 21 body panel components, including doors, boot LIDS, side coops and fenders. Ford Motor Company has used recycled long carbon fiber and polypropylene (LCF/PP) composites to replace the original ASA engineering plastic as the rigid part of the A-pillar bracket in its 2018 Explorer sport utility SUV. About LFT-G Xiamen LFT composite plastic Co., Ltd. is a brand-name company that focuses on LFR&LFRT. Long Glass Fiber Series (LGF) & Long Carbon Fiber Series (LCF). The company's thermoplastic LFT can be used for LFT-G injection molding and extrusion, and can also be used for LFT-D molding. It can be produced according to customer requirements: 5~25mm length. The company's long-fiber continuous infiltration reinforced thermoplastics have passed ISO9001&16949 system certification, and the products have obtained lots of national trademarks and patents. In particular, the carbon fiber LFT series produced by our company has broken the technical blockade of foreign countries. For domestic: automotive, military parts, firearms, aerospace, new energy, medical equipment, electric wind energy, sports equipment and other fields require high-performance thermoplastic special engineering plastics. And other new technology innovation industries provide product and technical support.もっと見る
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LFT-G PLA ポリ乳酸長炭素繊維強化素材 黒色 24時間オンライン返信PLA-LCF Polylactic acid or PLA is a bio-based polymer made using lactic acid from the sugar fermentation process. It was originally intended as a more environmentally friendly alternative to crude oil-based polymers and is technically biodegradable (albeit under industrial compost conditions). In addition to being the most widely used polymer in the desktop 3D printing space, PLA also has a variety of applications in packaging, disposable cups and more. Although it is very cost effective, easy to process and easy to 3D print, pure PLA has poor thermal and mechanical stability and is therefore not suitable for any high performance applications. 材料特性を改善する 1 つの方法は、炭素繊維強化材料などの添加剤を使用することです。これは、炭素繊維複合材料が機械的特性と耐熱性の優れた組み合わせを提供できるためです。 長炭素繊維強化 PLA は、強度が高く、軽量で、優れた層結合性と低い反りを備えた優れた素材です。層の密着性に優れ、反りも少ないです。長炭素繊維 PLA は、他の 3D プリント素材よりも強力です。 長いカーボンファイバーフィラメントは他の 3D 素材ほど強くはありませんが、より丈夫です。カーボンファイバーの剛性が高まると、構造的なサポートが強化されますが、全体的な柔軟性が低下します。通常の PLA よりもわずかに脆いです。印刷すると、素材は濃い光沢のある色になり、直射光の下でわずかに輝きます。 特徴 破壊ひずみが中程度(8~10%)であるため、シルクは脆くないが、靭性が強い 非常に高い溶融強度と粘度 良好な寸法精度と安定性 多くのプラットフォームでの取り扱いが容易 魅力的なマットブラックの表面 優れた 耐衝撃性と軽量 長炭素繊維充填 PLA 材料の適用 長炭素繊維充填 PLA は、フレーム、ブレース、シェル、プロペラ、工具、器具などに理想的な材料です。曲げはほとんど発生しません。ドローンメーカーやRC愛好家に特に好まれています。最大限の剛性と強度を必要とする用途に最適です。 テクノロジー パッケージ 国際商標および特許 関連製品 PP-LCF PA6-LCFもっと見る
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航空宇宙分野向けナイロン66高性能PA66長炭素繊維複合材料What is PA66 plastic? Polyadipyladipylenediamine, commonly known as nylon -66, is a thermoplastic resin, generally made from adiponic acid and hexadipamine condensation. Insoluble in general solvents, only soluble in m-cresol, etc. High mechanical strength and hardness, rigidity. It can be used as engineering plastics, mechanical accessories such as gears, lubricating bearings, instead of non-ferrous metal materials to make machine shells, automotive engine blades, and can also be used to make synthetic fibers. PA66 plastic raw material is translucent or opaque opalescent crystalline polymer, with plasticity. Density 1.15g/cm3. Melting point 252℃. Embrittlement temperature -30℃. Thermal decomposition temperature is greater than 350℃. Continuous heat resistance 80-120℃, balanced water absorption rate of 2.5%. Resistant to acid, alkali, most aqueous inorganic salts, alkyl halides, hydrocarbons, esters, ketones and other corrosion, but easy to phenol, formic acid and other polar solvents. It has excellent wear resistance, self lubricity and high mechanical strength. But the water absorption is larger, so the dimensional stability is poor. What is Long Carbon Fiber? In the modified engineering plastics industry, long fiber reinforced composite material refers to long carbon fiber, long glass fiber, aramid fiber or basalt fiber and polymer matrix, through a series of special modification methods to produce composite materials. The biggest characteristic of long fiber composites is that they have superior properties that the original materials do not have. If they are classified according to the length of the added reinforcement materials, they can be divided into long fiber, short fiber and continuous fiber composites. As mentioned in the beginning, long carbon fiber composite material is a kind of long fiber reinforced composite material, which is a new fiber material with high strength and high modulus fiber. LCF carbon fiber composite exhibits high strength along the fiber axis, and has the characteristics of high strength and light weight. It has the comprehensive mechanical properties such as density, specific strength and specific modulus that are incomparable to other materials. It is a new material with excellent mechanical properties and many special functions. What are the properties of Long Carbon fiber? Corrosion resistance: LCF carbon fiber composite material has good corrosion resistance, can adapt to harsh working environment; Uv resistance: strong ability to resist UV, products by UV damage problem is small; Wear resistance and impact resistance: compared with the general material advantage is more obvious; Low density: lower than the density of many metal materials, can achieve the purpose of lightweight; Other properties: such as reducing warpage, improving rigidity, impact modification, increasing toughness, electrical conductivity and so on. Compared with glass fiber, LCF carbon fiber composite has higher strength, higher rigidity, lower weight, and excellent electrical conductivity. What is the application fileds of PA66-LCF? 1. Military industry LFT long carbon fiber composite has very high specific strength and stiffness, and has the characteristics of corrosion resistance, fatigue resistance, high temperature resistance and low thermal expansion coefficient, etc. LCF carbon fiber composite is widely used in rocket, missile, military aircraft, personal protection and other military fields at home and abroad. Compared with conventional materials, long carbon fiber composites allow for continuous improvements in the performance of military equipment, such as reducing the weight of warships by 20 to 40 percent. 同時に、LCF炭素繊維複合材料は、金属材料が腐食しやすく、疲労しやすいなどの欠点を克服し、軍事製品の耐久性を向上および強化します。現在、LCF 炭素繊維複合材料の 40% 以上が一部の先進的な軍用ヘリコプターに使用されており、無人航空機ではさらに多く使用されています。航空機に加えて、海兵隊の軍艦にも長い炭素繊維複合材料が使用されています。これは、長い炭素繊維複合材料が海水やさまざまな化学不純物の腐食に耐えることができ、耐用年数が長く、鋼鉄軍艦よりも耐久性があり、メンテナンスコストが低いためです。 、現代の防衛軍事兵器および装備の開発にとって重要な戦略物資となっています。 2. 家電分野 LCF炭素繊維複合材料は、低密度、優れた耐薬品性、優れた性能などの特性を備えており、徐々に家電業界で好まれる改質エンジニアリングプラスチックとなり、その使用量は約30%を占め、増加傾向にあります。さらに、家電製品はますますインテリジェント化およびパーソナライズされており、材料の改良された性能要件はより高くなります。したがって、長炭素繊維複合材が家電業界に選ばれるのも不思議ではありません。 1、グリーンおよび環境保護:従来の材料と比較して、製造プロセスは比較的シンプルですが、より環境保護、より経済的であり、高光沢、形成が容易、耐傷性、リサイクル可能な特性を備えています。 2、安全性と高い安定性:サイズの安定性が良好で、低温および高温の使用環境に適応でき、変形の問題が小さく、安全に使用できます。 3、高い耐疲労性:長期間使用でき、クリープが小さく、総合的な機械的特性が優れています。 4.軽量:密度が低いため、完成品の重量が軽くなり、毎日の使用に便利です。 3. 風力タービンブレード 風力タービンの重要なコンポーネントの 1 つはブレードです。風力タービンブレードの製造では、空気力学的影響、技術プロセス、複合材料の構造を考慮する必要があり、ブレードの長さは風力タービンの出力に比例します。ブレードの全体の質量は大きくありませんが、ファンの中で 15% ~ 20% を占める最もコストの高い部品であるため、ブレードを作成するための材料の選択は非常に重要です。 ファンブレードは表面の汚染物質や粗さの影響を受けにくく、構造的に可能な限り厚いブレード形状を使用する必要があります。風に耐えられる疲労回復回数が多ければ多いほど良い。ブレードの長さが長くなると、強化材の強度と剛性に対して新たな要件が求められます。大型複合ブレードの製造におけるガラス繊維の性能は明らかに不十分です。LFT 長炭素繊維複合材料を使用することは、ブレードの質量要件を軽減し、強度と剛性の要件を満たす最良の方法です。 より強力な風力発電設備とより長いローターブレードの開発では、より優れた性能を備えた LCF 炭素繊維複合材料が使用されるのが一般的な傾向です。さらに、一定のサポートがあれば、長いカーボンファイバーブレードはグラスファイバーブレードよりも安価であり、材料の消費、労働力、輸送、設置コストが削減さ...もっと見る
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自動車部品用高性能 PA6 ポリアミド 6 長炭素繊維 オリジナルカラーポリアミド(PA)は通常ナイロンと呼ばれ、主鎖にアミド基(-NHCo -)を含むヘテロ鎖ポリマーです。脂肪族と芳香族に分けることができます。これは最も初期に開発され、最も使用されている熱可塑性エンジニアリング材料です。もっと見る
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PLA ポリ乳酸充填 長炭素繊維 LCF 再生可能高性能人民解放軍の情報 PLAはポリラクチドとも呼ばれ、通常はでんぷんを原料とした再生可能な植物資源(トウモロコシ、キャッサバなど)を主原料として乳酸を重合させて得られるポリエステルポリマーを指します。新しいタイプの再生可能な生分解性素材です。 PLA素材の特徴 原材料は再生可能であり、3D プリント材料として使用する場合でも比較的簡単に入手でき、大規模生産に使用できます。 PLA は優れた熱安定性と耐溶剤性を備えています。PLAの加工温度は170℃~230℃であり、完成品の耐熱性は良好です。 良好な透過性と透明性の光沢があり、押出、紡糸、二軸延伸、射出ブロー成形などの方法で加工でき、引張弾性率と曲げ弾性率は従来のプラスチック樹脂と同等です。 高い生体適合性。PLA のモノマー素材である L-乳酸は、人体の内因性活性物質です。したがって、3D プリント材料 PLA でプリントされた完成品は人体に無害であり、人体に吸収されます。 分解性が良好です。他の 3D プリント材料の分解方法とは異なり、PLA は土壌に埋め込まれ、特定の条件下で自然界の微生物によって完全に分解され、二酸化炭素と水が生成されます。発生した二酸化炭素は大気中に排出されず、土壌有機物に直接入ったり、植物に吸収されたりするため、環境に優しい素材として認められています。 PLA素材の応用 PLA材料の機械的および物理的特性が優れているため、PLA材料はさまざまな食品容器、加工食品、ファーストフードの弁当箱などを含めて広く使用されています。 同時に、PLAは適合性と分解性の利点により、医療分野でも大きな役割を果たし、医療組織の骨格材料や人体用の医療担体として製造することができます。PLAは、優れた引張強度と伸長性に加え、溶融押出成形、射出成形、ブローフィルム成形、発泡成形、真空成形などの一般的なさまざまな加工方法で製造できます。 私たちに関してはもっと見る
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産業用新素材 PPA 複合長炭素繊維 高性能 低価格PPAとは何ですか? PPA (Polyphthalamide) is polyphthalamide. PPA is a kind of thermoplastic functional nylon with both semi-crystalline structure and non-crystalline structure. It is prepared by polycondensation of phthalic acid and phthalenediamine. It has excellent thermal, electrical, physical and chemical resistance and other comprehensive properties. It still has excellent mechanical properties, including high rigidity, high strength, high dimensional accuracy, low warping and stability, fatigue resistance and creep resistance, under the harsh working environment of continuous high temperature, humidity, oil pollution and chemical corrosion at 200℃. The main application is non-crystalline PPA. PPA has high hardness, excellent mechanical strength such as bending, tensile and impact at high temperature, and can resist tensile creep for a long time. Its rigidity and strength even exceed PPS and PEEK at the high temperature of 120℃. Especially suitable to replace die casting alloy to reduce cost. PPA has higher thermal stability than PA46, better arc resistance and infrared reflow welding ability of CTI. PPA has excellent resistance to gasoline, diesel, oil, mineral oil, transformer oil and other oils, even at high temperature of 150℃. PPA is suitable for long-term outdoor use without reducing physical properties even in extreme climate conditions such as high UV radiation, high humidity and high temperature. PPA resin is stronger and harder than fatty polyamides such as nylon 66; Less sensitive to water; Better thermal performance; And much better creep, fatigue and chemical resistance. The vast majority of PPA resins are processed by traditional injection molding. What is Long carbon fiber? Long carbon fiber reinforced composites offer significant weight savings and provide optimum strength and stiffness properties in reinforced thermoplastics. The excellent mechanical properties of long carbon fiber reinforced company make it an ideal replacement for metals. Combined with the design and manufacturing advantages of injection molded thermoplastics, long carbon fiber composites simplify the re-imagining of components and equipment with demanding performance requirements. Its widespread use in aerospace and other advanced industries makes it a "high-tech" perception of consumers - you can use it to market products and create differentiation from competitors. What is the application of PPA-LCF? Suitable for high temperature, anti-static, high-strength components. Other products can also ask for our advice. We have 24h 1V1 service for you. Xiamen LFT composite plastic Co., ltd Xiamen LFT composite plastic Co., Ltd. is a brand-name company that focuses on LFT&LFRT. Long Glass Fiber Series (LGF) & Long Carbon Fiber Series (LCF). The company's thermoplastic LFT can be used for LFT-G injection molding and extrusion, and can also be used for LFT-D molding. It can be produced according to customer requirements: 5~25mm length. The company's long-fiber continuous infiltration reinforced thermoplastics have passed ISO9001&16949 system certification, and the products have obtained lots of national trademarks and patents. In particular, the carbon fiber LFT series produced by our company has broken the technical blockade of foreign countries. For domestic: automotive, military parts, firearms, aerospace, new energy, sports equipment and other fileds require high-performance thermoplastic special engineering plastics. And other new technology innovation industries provide product and technical support.もっと見る
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PA12 NA LCF黒色自動車部品用耐高温性Long carbon chain nylon is nylon with an amide group in the main chain repeating unit of nylon molecule, and the length of methylene between the two amide groups is greater than 10. We call it long carbon chain nylon, including nylon 11, nylon 12, etc. PA12 is nylon 12, also known as polydodecactam, polylauractam, is a long carbon chain nylon. The basic material for its polymerization is butadiene, a semi-crystalline - crystalline thermoplastic material. Nylon 12 is the most widely used long carbon chain nylon, in addition to most of the general properties of nylon, low water absorption, and has high dimensional stability, high temperature resistance, corrosion resistance, good toughness, easy processing and other advantages. Compared with PA11, another long carbon chain nylon material, the price of butadiene, the raw material of PA12, is only one third of the price of castor oil, the raw material of PA11. It can replace PA11 and be applied in most scenes, and has a wide range of applications in automobile fuel pipe, air brake hose, submarine cable, 3D printing and many other fields. In long chain nylon, compared with other nylon materials, PA12 has great advantages, such as the lowest water absorption rate, the lowest density, low melting point, impact resistance, friction resistance, low temperature resistance, fuel resistance, good dimensional stability, good anti-noise effect. PA12 has the properties of PA6, PA66 and polyolefin (PE, PP) at the same time, achieving the combination of lightweight and physical and chemical properties, and has advantages in performance. There are a large number of non-polar methylene groups in nylon 12, which makes nylon 12 molecular chain more compliant. The amide group in nylon 12 is polar, and the cohesion energy is very large, it can form hydrogen bonds between the molecules, so that the molecular arrangement is regular. Therefore, nylon 12 has high crystallinity and high strength. Nylon 12 has low water absorption, good low temperature resistance, good air tightness, excellent alkali and oil resistance, medium resistance to alcohol, inorganic dilute acid and aromatic hydrocarbons, good mechanical and electrical properties, and is a self-flameout material. 1) Density The relative density of nylon 12 is only 1.01-1.03, which is the smallest among all engineering plastics, which has a certain effect on reducing the quality of vehicles and reducing fuel consumption. When compared by unit volume, nylon 12 has advantages in price and performance. 2) Melting point The melting point of nylon 12 is 172-178℃, slightly lower than nylon 11, can fully meet the requirements of automobile fuel pipe and brake pipe working environment temperature. 3) Water absorption As we all know, the biggest disadvantage of nylon products is large water absorption, dimensional stability is difficult to ensure. And PA12 has the lowest water absorption rate of nylon products, this is due to the methylene molecules in nylon 12 greatly reduce the hydrophilic groups, which makes nylon 12 has a great advantage. 4) Impact strength Impact strength is an important technical index, especially for nylon 12 pipe often exposed to air. Nylon 12 under -20℃ and -40℃ according to the standard test, no fracture phenomenon, fully meet the requirements of use. Nylon 12 has excellent impact resistance. 5) Low temperature performance Nylon 12 has the lowest brittleness temperature of -70 degrees Celsius, so it can be widely used in low-temperature resistant parts. 6) Flexibility The influence of plasticizer on the physical properties of nylon 12 is concentrated on the elastic modulus of resin. Nylon 12 has three basic types of resin, their main difference is due to the plasticizer content of different forms of flexibility. The elastic modulus of resin decreases with the increase of extractable component content of plasticizer. 7) Low wear and low friction performance Nylon 12 has excellent low abrasion and low friction properties and self lubricating properties, so the friction noise of nylon 12 products is very low. 8) Fuel resistance In automobiles, the mixture of oxygenated fuel, high aromatic fuel and alcohol currently used can cause the breakdown of many hose materials. After the test, only nylon 11, nylon 12 and fluorocarbon resin elastomers can be used in this environment. Almost other types of nylon melt under the action of automobile fuel, resulting in a change in size. 9) Resistance to zinc chloride solution Zinc chloride is found under the car. Under certain temperature and humidity, the salt on the road reacts with galvanized steel plate or zinc-containing primer to form the corrosive zinc chloride. In addition, ozone aging, ultraviolet radiation, temperature conditions and so on, will bring different degrees of damage to the parts, reduce the service life. Nylon 12 is very resistant to zinc chloride solution. Because there is no unsaturated double bond in nylon 12 which is susceptible to ozone attack, ozone ...もっと見る