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化工儀器網(wǎng)>產(chǎn)品展廳>物理特性分析儀器>粒度儀>激光粒度儀> 電池正負(fù)極材料粒度測試儀特點(diǎn)

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真理光學(xué)儀器有限公司專注于Gao端顆粒表征儀器的研發(fā)和制造,產(chǎn)品涵蓋激光(衍射法)粒度分析儀、動(dòng)態(tài)光散射納米粒度及Zeta電位分析儀以及顆粒圖像分析儀,既有實(shí)驗(yàn)室儀器,又有在線檢測系統(tǒng)。真理光學(xué)秉持“科學(xué)態(tài)度,工匠精神”,為用戶提供世界Xian進(jìn)的Gao端產(chǎn)品和服務(wù)。

真理光學(xué)匯集了以張福根博士為代表的全國顆粒表征領(lǐng)域的頂尖人才。張福根博士現(xiàn)任本公司董事長兼首Xi科學(xué)家,還擔(dān)任全國顆粒表征及分檢與篩網(wǎng)標(biāo)準(zhǔn)化技術(shù)委員會(huì)副主任委員、天津大學(xué)兼職教授,曾擔(dān)任中國顆粒學(xué)會(huì)副理事長,同時(shí)也是“歐美克”字號(hào)公司的創(chuàng)始人。曾擔(dān)任英國某粒度儀器公司中國總經(jīng)理20余年的秦和義先生擔(dān)任本公司商務(wù)總經(jīng)理,中國顆粒學(xué)會(huì)青年理事潘林超博士、陳進(jìn)博士擔(dān)綱公司的研發(fā)主力。

激光(衍射法)粒度儀雖然已得到廣泛應(yīng)用,但它并不Wan美,不論是科學(xué)基礎(chǔ)方面,還是技術(shù)方案方面。真理光學(xué)的團(tuán)隊(duì)針對(duì)當(dāng)前市面上儀器存在的不足,展開了系統(tǒng)的理論研究和技術(shù)創(chuàng)新,發(fā)現(xiàn)了衍射光斑(愛里斑)的反常變化現(xiàn)象(ACAD),解釋了為什么不能測量3μm左右的聚苯乙烯微球,并給出了反常區(qū)(不能測量粒徑)的一般公式;研究了衍射儀器的測量上限和下限;研究了顆粒折射率偏差對(duì)測量結(jié)果的影響,發(fā)明了兩種根據(jù)散射光分布估算顆粒折射率的方法;提出了斜置梯形窗口技術(shù)方案(Zhuan利),解決了前向超大角測量盲區(qū)的問題,使衍射儀器的亞微米顆粒測量水平顯著提高;提出了統(tǒng)一的反演算法(專有技術(shù)),消除了不同計(jì)算模式給出不同結(jié)果的尷尬;設(shè)計(jì)出了高達(dá)20Kfps的超高速并行數(shù)據(jù)采樣電路,使干法測量的精度不亞于濕法測量,對(duì)高速噴霧場的測量(時(shí)間)分辨率也更高。

在納米粒度及Zeta電位儀方面,真理光學(xué)提出了比相位分析法(PALS)更先進(jìn)的余弦擬合相位分析法(CF-PALS),用光纖分束取代了傳統(tǒng)的平板分束鏡分束,用光纖內(nèi)光干涉取代了自由空間干涉,使Zeta電位的測量重復(fù)性大幅度提高。

Linkoptik Instruments specializes in the development and manufacture of high-end particle characterization instruments, including laser (diffraction) particle size analyzers, dynamic light scattering nano particle size and zeta potential analyzers, and particle image analyzers, both laboratory instruments and online inspection systems. Linkoptik Instruments upholds the "scientific attitude and craftsmanship" to provide customers with the world's advanced high-end products and services.

Linkoptik Instruments has gathered the top talents in the field of particle characterization in China, represented by Dr. Fugen Zhang. Dr. Zhang is the Chairman and Chief Scientist of our company, and is also the Vice Chairman of the National Technical Committee for Particle Characterization and Sieving and Sieve Standardization, a part-time professor of Tianjin University, and the Vice Chairman of the Chinese Particle Society. Mr. Qin He Yi, who was the general manager of a particle size instrument company in China for more than 20 years, is the commercial general manager of the company, and Dr. Pan Linchao and Dr. Chen Jin, the young directors of the Chinese Particle Society, are the main R&D team of the company.

Although laser (diffraction) particle size measurement has been widely used, it is not perfect, both in terms of scientific basis and technical solutions. The team at Truth Optics has conducted systematic theoretical research and technological innovation to address the shortcomings of the current instruments on the market, discovered the phenomenon of anomalous variation of diffraction spot (Airy spot) (ACAD), explained why polystyrene microspheres around 3 μm cannot be measured, and gave a general formula for the anomalous zone (not measuring particle size); studied the upper and lower measurement limits of diffraction instruments; studied the effect of particle The influence of refractive index deviation on the measurement results was studied, and two methods for estimating the refractive index of particles based on the scattered light distribution were invented; an oblique trapezoidal window technical solution (patented) was proposed, which solved the problem of the blind area of the forward oversized angle measurement and significantly improved the submicron particle measurement level of the diffraction instrument; a unified inversion algorithm (proprietary technology) was proposed, which eliminated the embarrassment of different calculation modes giving different results; the design of The ultra-high speed parallel data sampling circuit of up to 20Kfps has been designed, which makes the accuracy of dry measurement no less than that of wet measurement, and the measurement (time) resolution of high-speed spray field is also higher.

In nanometer particle size and zeta potential measurement, Linkoptik Instruments has proposed a more advanced cosine fitted phase analysis method (CF-PALS) than PALS, replacing the traditional flat beam splitter mirror beam splitting with fiber optic beam splitting, and replacing free space interference with optical interference inside the fiber, which has greatly improved the repeatability of zeta potential measurement.




專注于顆粒(包含粉體顆粒、乳膠顆粒和液體霧滴)測試技術(shù)的研發(fā)和儀器的生產(chǎn)銷售

鋰電池的正極材料主要有鈷酸鋰、錳酸鋰、鎳錳鈷三元材料及磷酸鐵鋰等。其中,磷酸鐵鋰由于具有另外幾種材料所不具備的循環(huán)壽命、安全和材料成本方面的潛在優(yōu)勢,而被業(yè)界看作理想的正極材料。鋰電池負(fù)極材料大體分為以下幾種: *種是碳負(fù)極材料: 目前已經(jīng)實(shí)際用于鋰離子電池的負(fù)極材料基本上都是碳素材料,如人工石墨、天然石墨、中間相碳微球、石油焦、碳纖維、熱解樹脂碳等。 第二種是錫基負(fù)極材料: 錫基負(fù)極材料可分為錫的氧化物和錫基復(fù)合氧化物兩種。氧化物是指各種價(jià)態(tài)金屬錫的氧化物。目前沒有商業(yè)化產(chǎn)品。 第三種是含鋰過渡金屬氮化物負(fù)極材料,目前也沒有商業(yè)化產(chǎn)品。 第四種是合金類負(fù)極材料: 包括錫基合金、硅基合金、鍺基合金、鋁基合金、銻基合金、鎂基合金和其它合金,目前也沒有商業(yè)化產(chǎn)品。 第五種是納米級(jí)負(fù)極材料:納米碳管、納米合金材料。 第六種納米材料是納米氧化物材料。  

電池正負(fù)極材料粒度測試儀適用于電池正負(fù)極材料的粒度表征分析。鋰離子電池正極材料的電性能及加工性能受其物理性能的影響。尤其是粒度分布的大小對(duì)電池的安全性能和極片的壓實(shí)密度有較大影響。電池正負(fù)極材料粒度測試儀是真理光學(xué)技術(shù)團(tuán)隊(duì)基于二十多年粒度表征和應(yīng)用經(jīng)驗(yàn)開發(fā)的新一代粒度分析系統(tǒng),該系統(tǒng)加持多項(xiàng)創(chuàng)新技術(shù)和,測量速度高達(dá)每秒20000次,而且Hydrolink分散進(jìn)樣器更是采用了雙電機(jī)驅(qū)動(dòng),內(nèi)置高效率超聲,強(qiáng)力攪拌和離心循環(huán)泵分開獨(dú)立控制,適用于各種類型的復(fù)雜樣品,對(duì)于密度大和分布寬的金屬粉末和硬質(zhì)合金等樣品,也能輕松分散和進(jìn)樣并獲得可靠的高重現(xiàn)性結(jié)果。

LT3600加持了以下多項(xiàng)創(chuàng)新和技術(shù):

    1、偏振濾波技術(shù)

    2、衍射愛里斑反常變化(ACAD)的補(bǔ)償修正技術(shù)

    3、斜置梯形測量窗口

    4、格柵式超大角檢測技術(shù)

    5、粒度分析模式優(yōu)化及自適應(yīng)技術(shù)

    6、雙驅(qū)動(dòng)進(jìn)樣分散集成技術(shù)

 

技術(shù)指標(biāo)

項(xiàng)目

指標(biāo)

測量原理

激光衍射

光學(xué)模型

全量程米氏理論及夫朗霍夫理論可選

粒徑范圍

0.02μm -3600μm,無需更換透鏡,不依賴標(biāo)樣校準(zhǔn)

檢測系統(tǒng)

包含格柵式超大角度,非均勻交叉面積補(bǔ)償檢測器陣列,全測量角度范圍無盲區(qū)

光源

集成恒溫系統(tǒng)的638nm, 20mW固體激光器

空間濾波方式

偏振濾波技術(shù)

光學(xué)對(duì)中系統(tǒng)

智能全自動(dòng)

測量時(shí)間

典型值小于10秒

測量速度

20000次/秒

Dv50優(yōu)于±0.6% (NIST可溯源乳膠標(biāo)樣)

重復(fù)性

Dv50優(yōu)于±0.5% (NIST可溯源乳膠標(biāo)樣)

激光安全

1類激光產(chǎn)品

計(jì)算機(jī)配置

In i5處理器,4GB內(nèi)存,250GB硬盤,鼠標(biāo),鍵盤和寬屏顯示器

計(jì)算機(jī)接口

USB2.0

軟件運(yùn)行平臺(tái)

Windows 7版或以上版

操作環(huán)境溫度

5℃ - 40℃

操作環(huán)境濕度

10% - 85%相對(duì)濕度(無結(jié)凝)

電源要求

交流220V, 50Hz – 60Hz, 標(biāo)準(zhǔn)接地

光學(xué)系統(tǒng)重量

26kg

光學(xué)系統(tǒng)尺寸

636mm x275mm x320mm

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