【正文】
的應(yīng)用。為適應(yīng)當(dāng)前工業(yè)的發(fā)展和需求,急需開發(fā)出一種新型的陶瓷模具,使其具有更優(yōu)異的性能,例如降低燒成溫度以節(jié)約能源,改善磨具的結(jié)構(gòu)與性能等。因此對燒結(jié)溫度的研究對砂輪的生產(chǎn)起著指導(dǎo)性作用,從而提升其綜合性能。陶瓷結(jié)合劑金剛石砂輪是當(dāng)前迅速發(fā)展起來的的一種超硬材料磨具,與傳統(tǒng)的樹脂磨具相比其性能穩(wěn)定,形變小,有較高的加工尺寸精度;與金屬結(jié)合劑磨具相比,陶瓷結(jié)合劑磨具制造的砂輪易于修整、 在進(jìn)行磨削時一般不發(fā)生堵塞并且也不容易燒傷工件[2]。 adding zinc oxide to increase the coefficient of thermal expansion of the ceramic binder, the view from the fracture surface at the same time, adding zinc oxide can improve the interface between the binder and abrasive bined with status of sex. In short, zinc oxide can significantly change the ceramic binder properties, the preparation of low temperature ceramic binder has a bright future.Keyword:Vitrified bond Zinc oxide Refractoriness Flexural strengthCoefficient of thermal expansion目 錄 1 緒論 陶瓷結(jié)合劑磨具概述陶瓷結(jié)合劑磨具有較高的強度,良好的耐熱性能,切削鋒利,磨削效率很高,并且在磨削過程中磨具不易發(fā)熱,不會發(fā)生堵塞,此外加工精度易人為控制,易修整。總之,氧化鋅能夠顯著改變陶瓷結(jié)合劑的性能,對低溫陶瓷結(jié)合劑的制備有著光明的前景。 此外,氧化鋅對陶瓷結(jié)合劑抗折強度、熱膨脹系數(shù)也有一定影響。摘 要本設(shè)計主要研究不同用量的氧化鋅對陶瓷結(jié)合劑性能的影響,以粘土長石硼玻璃基礎(chǔ)體系為結(jié)合劑,以碳化硅為磨粒,分別加入5%﹑10%、15%、20% 的氧化鋅,測出相對應(yīng)的耐火度、熱膨脹系數(shù)、抗折強度、硬度,然后進(jìn)行數(shù)據(jù)處理分析,對比不加氧化鋅的基礎(chǔ)結(jié)合劑,研究氧化鋅對其性能的影響。根據(jù)氧化鋅含量的不同,耐火度也不斷變化,同時助溶效果也大大不同。當(dāng)氧化鋅加入量約為10%時其抗折強度最大,小于10%時,隨氧化鋅含量的增高而提高,當(dāng)加入量大于10%時,隨著氧化鋅含量的增加而降低;氧化鋅的加入會增大陶瓷結(jié)合劑的熱膨脹系數(shù),同時從斷面形貌來看,氧化鋅的加入可以改善結(jié)合劑與磨粒的之間的界面結(jié)合狀況性。關(guān)鍵詞:陶瓷結(jié)合劑 氧化鋅 耐火度 抗折強度 熱膨脹系數(shù) Title Effect of ZnO content on properties of vitrified bond AbstractThis design different amount of zinc oxide ceramic bonding agent performance, clay feldspar borosilicate glass base system for the binder, silicon carbide abrasive ,respectively, 5%, 10%, 15%, 20% zinc oxide, measured by the refractoriness of the corresponding coefficient of thermal expansion, flexural strength, hardness, and data processing and analysis, the contrast without the zinc oxide on the basis of binding agents, the study of zinc oxide ceramic bonding agent performance. The experiments show that with zinc oxide to significantly reduce the refractoriness of the ceramic binder, and with the increase of the zinc oxide content, refractoriness to continuously reduce its solubilization effect is more pronounced. In addition, the zinc oxide ceramic binder flexural strength, the coefficient of thermal expansion. When the zinc oxide by adding about 10% of its flexural strength, less than 10%, with the zinc oxide content increased and improve