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專注從事橡塑發泡材料(liào)的生產與加工

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NBR/PVC泡棉(mián)是什麽材料?(What is NBR/PVC foam material?)

發(fā)布時間:2021-12-25    點擊次數:1242

NBR是(shì)橡膠,PVC是聚氯(lǜ)乙烯..NBR+PVC就屬於橡塑共混(hún)改性..其實(shí)NBR在裏麵的作用主要起增韌,回彈(dàn)和恢複性(xìng)..根據NBR的比(bǐ)例不同(tóng),軟硬度也會有區分,一般我們都屬稱為橡塑彈性體.主(zhǔ)要用在密封條或密封件上麵使用。

橡膠補(bǔ)強性能影響主(zhǔ)要真對拉伸強度和撕裂強度上,其一般規律是(shì):當粒徑相(xiàng)同時,高結構炭黑對非結晶橡膠的補強(qiáng)作用大,一般有較高的拉伸強度和撕裂強度。橡膠結構性(xìng)還是影響導電性能的最(zuì)重要因素,鏈枝狀結構易於在橡(xiàng)膠中形(xíng)成交織聯結的(de)導電通路,會使導電性能(néng)提高。

線型結構:未硫化橡(xiàng)膠的普遍結構。由(yóu)於分子量很大,無(wú)外力作用下,大分子鏈呈無規卷曲線團狀。當外力作用,撤除外力,線團的(de)糾纏度發生變化,分子鏈發(fā)生反彈(dàn),產生強烈的(de)複原傾向,這便是橡膠高彈性的(de)由來(lái)。

支鏈結(jié)構:橡膠大分子(zǐ)鏈的支(zhī)鏈的(de)聚集,形成凝膠。凝膠對橡(xiàng)膠的性能和加工都不利。在煉膠時,各種配合劑往(wǎng)往進不了凝膠區,形成局部空白,形成(chéng)不了補強和交聯,成為產品的薄弱部位。

交聯結構:線型分子通過一些原子或原子團(tuán)的(de)架橋而彼此連接起來,形成三維網狀結構。隨(suí)著(zhe)硫化曆程的進行,這種結構不斷加強。這樣,鏈段的自由活動能力(lì)下降(jiàng),可塑性和(hé)伸(shēn)長率下降,強(qiáng)度,彈性和硬度上升,壓縮永久變(biàn)形和溶脹度下降。


NBR is rubber, PVC is PVC: NBR+PVC belongs to the rubber and plastic blending modification: In fact, the role of NBR in it is mainly to strengthen toughness, rebound and recovery.According to the proportion of NBR, soft and hardness will also be differentiated, generally we are called rubber and plastic elastomers. It is mainly used on sealing strips or seals.

The general law of rubber reinforcing properties mainly affects the tensile strength and tear strength: when the particle size is the same, the reinforcing effect of high-structure carbon black on amorphous rubber is large, and generally has high tensile strength and tear strength.Rubber structure is also the most important factor affecting conductivity, and the chain dendritic structure is easy to form intertwined conductive paths in rubber, which will improve conductivity.

Linear structure: a common structure of unvulcanized rubber.Due to the large molecular weight, under the action of no external force, the macromolecular chain is in the shape of a random curve. When the external force acts, the external force is withdrawn, the entanglement degree of the wire mass changes, and the molecular chain rebounds, resulting in a strong tendency to recover, which is the origin of the high elasticity of rubber.

Branched chain structure: aggregation of branched chains of rubber macromolecular chains to form a gel. The gel is detrimental to both the properties and processing of the rubber.In the process of rubber refining, various compounding agents often cannot enter the gel area, form a local blank, form no reinforcement and cross-linking, and become the weak part of the product.

Cross-linked structure: linear molecules are connected to each other by the bridging of some atoms or atomic groups to form a three-dimensional network structure.This structure is continuously strengthened as the vulcanization process progresses. In this way, the free mobility of the chain segment decreases, plasticity and elongation decrease, strength, elasticity and hardness increase, compression set and swelling decrease.

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