pp料應(yīng)用介紹:
聚丙烯塑料的改性可分為化學(xué)改性和物理改性兩種方法。化學(xué)改性主要通過共聚、接枝、交聯(lián)等方式, 改變聚丙烯的分子結(jié)構(gòu)以達(dá)到改性的目的; 物理改性則在整個(gè)改性過程中不發(fā)生化學(xué)反應(yīng), 在PP基體中加入其他無機(jī)材料、有機(jī)材料、其他塑料、橡膠、熱塑性彈性體或有特殊功能的添加助劑等, 經(jīng)過共混、增強(qiáng)或填充等手段制得具有優(yōu)異性能的PP復(fù)合材料。
注塑工藝參數(shù)對(duì)pp料塑料熔體表觀黏度的影響:
聚丙烯( PP) 屬于結(jié)晶性高聚物,有著質(zhì)輕、無毒、價(jià)廉、耐高溫等優(yōu)點(diǎn),在醫(yī)藥、食品、汽車和化工等領(lǐng)域中有著廣泛的用途。PP 是典型的熱塑性塑料之一,自從米蘭理工大學(xué)的G. Natta 教授發(fā)現(xiàn)等規(guī)聚丙烯以來,全球的聚丙烯工業(yè)迅速發(fā)展,現(xiàn)今產(chǎn)量?jī)H次于聚乙烯。注塑成型能夠一次成型外形復(fù)雜、尺寸或帶有嵌件的塑料制品,是塑料加工的主要方法之一。塑料熔體的表觀黏度可以指導(dǎo)擬定注塑工藝,也能夠指導(dǎo)模具型腔設(shè)計(jì)和優(yōu)化流道澆注系統(tǒng)。
原裝進(jìn)口t03注塑級(jí)
Rheological Properties of Flame Retardent and Antistatic Polypropylene Material
WANG Shuai 1,2, WANG Kejian 1*, MA Yi 2*, ZHANG Yinling 2, LIANG Wenbin 2,WANG Xu 1,SHI Jiao 1,JIANG Zhuoyu 1
(1 College of Mechanical and Electrical Engineering, Beijing University of Chemical and Technology, Beijing 100029,China;2 National Institute of Clean and Low Carbon Energy,Beijing 102211,China)
Abstract: The effects of brominated flame retardant and carbon black-filling on the extrusion distortion of PP melt and dynamic rheological properties were investigated by capillary rheometer and rotational rheometer. It was shown that the more filled resin exhibited higher critical shear rate for extrusion distortion corresponding to wider processing b in low filler content range. In dynamic rheometry, the higher filled resins behavior in shear thinning with higher complex viscosity,storage modulus and loss modulus instead of lower loss factor. Quantitative analyses were conducted using entanglement model and Cross model. Filler can absorb polymer chains reducing wall adsorption dropping distortion and further resulting in higher critical shear rate. Particle filled network increases in the plateau modulus and entanglement density shortening relaxation time for quicker recovering according to smaller extrusion swell ratio. Carbon black more than 3.5wt% in composite bs percolation network being characterized by higher zero shear viscosity and longer relaxation time where liquid-solid-like transition occurs. Simultaneously, the surface resistivity decreased obviously. The viscoelastic percolation value consistent with the electrical percolation value approximaby.
Keywords: Rheology; polymer; particle; composites; extrusion distortion; percolation network。
原裝進(jìn)口t03注塑級(jí)
pp顆粒原料特點(diǎn):
特點(diǎn):無毒、無味,密度小,強(qiáng)度、剛度、硬度耐熱性均優(yōu)于低壓聚乙烯,可在100度左右使用.具有良好的電性能和高頻絕緣性不受濕度影響,但低溫時(shí)變脆、不耐磨、易老化.適于制作一般機(jī)械零件,耐腐蝕零件和絕緣零件 。常見的酸、堿有機(jī)溶劑對(duì)它幾乎不起作用,可用于食具。
車用pp顆粒改性介紹:
改性PP 的氣味組成及形成:改性PP 材料的氣味主要來源于材料的揮發(fā)性有機(jī)化合物(VOC),其組成可以通過氣相色譜– 有機(jī)質(zhì)譜聯(lián)用儀、頂空法等方法進(jìn)行分析。羅忠富通過氣相色譜–質(zhì)譜對(duì)車用PP 復(fù)合材料氣味進(jìn)行了分析研究。結(jié)果發(fā)現(xiàn),PP 材料的揮發(fā)性氣體組分有近20 種,主要由羰基化合物與烴類化合物組成,并且在這些組分中,羰基化合物如酮、醛與酯比烴類化合物能產(chǎn)生更明顯的氣味。
原裝進(jìn)口t03注塑級(jí)
Rosenkrantz和Louis-Rosenberg把這套理論進(jìn)一步發(fā)展了,加入了把設(shè)計(jì)折疊成它能夠達(dá)到的的空間結(jié)構(gòu)。打印的優(yōu)點(diǎn),一方面是能將形狀擠壓成它們的布局并3D打印出來,這樣將打印出來的產(chǎn)品將沒有冗余的東西;另外一方面是其打印的物體可以根據(jù)不同的需求進(jìn)行自我變化,這些是3D打印無法比擬的。而4D打印在時(shí)裝領(lǐng)域的應(yīng)用將改變當(dāng)前服裝的格局,比如未來的時(shí)裝店將不再展示時(shí)裝,也不再需要庫存,而是一臺(tái)人體3D掃描儀加一臺(tái)專業(yè)設(shè)計(jì)模板的計(jì)算機(jī)加一面虛擬現(xiàn)實(shí)的鏡子,用戶可以根據(jù)自己的風(fēng)格與偏好從計(jì)算機(jī)中選擇相應(yīng)的模板,而這一模板可以是任意的風(fēng)格,也可以是自己的照片,系統(tǒng)將自動(dòng)設(shè)計(jì)并生成相應(yīng)款式的時(shí)裝。