◈琉璃耳杯的製程介紹:
一. 陶瓷部分是1280℃雙掛釉還原燒成,色彩極富變化,絕無相同之產品。
二. 琉璃部分為脫蠟鑄造:
- 將玻璃原料以1400℃高溫鎔鑄成塊狀原料備用。
- 用陶土塑造原型。
- 以矽膠塗布,製成軟模。
- 將溶蠟注入模中,製出蠟模原型。
- 將蠟型做成石膏模。
- 用蒸氣將蠟脫出,形成模具備用。
- 將玻璃原料放入模具內,以850℃燒成。
三. 用低溫釉加樹脂,調成結合料,將陶瓷與琉璃結合,250℃低溫燒成。
本結合劑經有關單位測試:
- 硬度 85
- 吸水率 0.6%
- 剪切強度 13
- 剝離強度 40
- 耐溫 180℃
2003陶瓷年度評鑑良品美器「陶最造型獎」-琉璃耳杯合歡系列
佳人有約系列----琉璃耳杯(2000台灣手工業評選最優獎)
陶瓷與琉璃配搭,展現一種多媒材的面貌,琉璃的剔透與陶瓷的樸拙,如何結合,自然且無鑿斧之痕,考驗著創作者的功力,設計一高一矮杯形,互相依偎,相輔相成,又各具特色,象徵兩性間的微妙關係。
Ceramics and glass combination, showing the face of a multi-media, glass ceramics and exquisitely carved calligraphy, how naturally and no chisel hammer marks, test the author's skill
Design a pair of short Cup, snuggle with each other, complement each other, and different characteristics, symbolizing the delicate relationship between the sexes
◈科學與藝術--存仁堂的創意
異質界面材料接合技術,是藝術創作新領域的挑戰方向之一,存仁堂以結合科學與藝術的創新研發,開創一般不同媒材的介面結合,來嚐試新產品的設計與開發。多年來我們嚐試努力在陶瓷與玻璃結合研究,由於異質界面材料產生的應力問題,常導致產品應用的不穩定性,主要原因在於結合材在應力拉扯中產生裂紋,經長時間暴露在空氣中,由於水分子及粉塵的侵入,造成結合物脫落的現象。近年來台灣積極推動奈米國家型科技計畫,本公司亦結合相關技術,並在技術援助下,以奈米級的多孔軟性材料,順利的解決消除應力的問題。同時由於奈米材料本身具有的自潔特性,及阻隔水分入侵帶來異質界面接著的影響,目前已能成功的將陶瓷與玻璃之接合技術克服。
我們也將奈米技術應用在陶瓷器的食具中,例如杯、盤的內部改質,將陶瓷器在燒製的過程中加入了奈米級粉末及具有遠紅外線特性的材料,使得食器具有了抗菌,自潔及除異味的功能,而由於遠紅外線的磁波共振效應,更使得酒或水具有更香醇的作用。
奈米技術除了應用在高科技的領域外,在傳統製造產業上亦有很大的發揮空間,我們可以利用奈米尺寸特性的材料功能,製作出先人在工藝製作上所無法突破障礙的藝術品,所以奈米科技未來在傳統產業的應用上,將可發揮無限的潛力。
Save Jen Hall of science and art creativity
Hetero-interface materials joining technologies, is one of the new challenges in the field of artistic creation, save rentang combines science and art of innovative research and development, and create a general interface integration of different media, to try to design and development of new products. For years we try to study on combination of efforts in ceramics and glass, stress problems because of hetero-interface materials often lead to application instability, mainly because of binding material in crack stress pulls, upon prolonged exposure to air, due to water molecules and dust intrusion, resulting in a combination shedding phenomenon. In recent years Taiwan actively promote nanotechnology national science and technology plan, the company has combined with related technologies, and under technical assistance, in a nano-porous soft material, smooth solution to eliminate stress problem. At the same time because the self-cleaning characteristics inherent in nanomaterials, and barrier water heterogeneous interface then impact on the invasion, has been able to junction of ceramics and glass technology to overcome.
We also will nano technology application in ceramic Manager of tableware in the, such as Cup, and disc of internal modified mass, will ceramic Manager in burn of process in the joined has at Cornell m level powder and the has far infrared characteristics of material, makes food apparatus has has antibacterial, since clean and the except smell of features, and due to far infrared of magnetic wave resonance effect, more makes wine or water has more mellow of role.
Apart from applications in the field of high-tech, nano-technology, in the traditional manufacturing industries also have much room to play, we can take advantage of Nano size features of material functions, produced ancestors unable to break through the barriers of the works of art in the production process, so on the application of nanotechnology in the traditional industries in the future, will be able to play unlimited potential.
多媒材結合一直是存仁堂開創藝術創作新領域的方向,而不同媒材的結合,介面處理問題是最大的障礙。
多年來存仁堂努力嚐試在新設計產品上,將陶瓷與玻璃結合,卻一直找不到理想的結合方式,由於應力的作用,在產品結合上屢屢出現挫敗,原因在於結合材在應力拉扯中產生裂紋,然後長時間暴露在空氣中,水分子及粉塵的侵入,造成結合物脫落的現象。後來經國科會奈米計畫研究所指導,並提供技術援助,以奈米級的多孔軟性結合材料,順利的解決了消除應力的問題,並由於奈米的部分`自潔性,阻隔了水分及灰塵的入侵,成功的將本產品的陶瓷與玻璃部分結合。
存仁堂也將奈米技術應用在陶瓷器的食具中,例如杯、盤的內部,將陶瓷器在燒製的過程中加入了奈米級的銀及遠紅外線材料,使得食具有了抗菌,自潔及除臭的功能,而遠紅外線的磁波共振效應,更有使酒類醇化的作用。
奈米技術除了應用在高科技的領域,存仁堂則在傳統製造產業上利用奈米的功能,製作出先人所無法突破障礙的藝術品,所以奈米科技在傳統產業的發揮上,是有無限的潛力。
◈琉璃耳杯的製程介紹:
一. 陶瓷部分是1280℃雙掛釉還原燒成,色彩極富變化,絕無相同之產品。
二. 琉璃部分為脫蠟鑄造:
- 將玻璃原料以1400℃高溫鎔鑄成塊狀原料備用。
- 用陶土塑造原型。
- 以矽膠塗布,製成軟模。
- 將溶蠟注入模中,製出蠟模原型。
- 將蠟型做成石膏模。
- 用蒸氣將蠟脫出,形成模具備用。
- 將玻璃原料放入模具內,以850℃燒成。
三. 用低溫釉加樹脂,調成結合料,將陶瓷與琉璃結合,250℃低溫燒成。
本結合劑經有關單位測試:
- 硬度 85
- 吸水率 0.6%
- 剪切強度 13
- 剝離強度 40
- 耐溫 180℃
2003陶瓷年度評鑑良品美器「陶最造型獎」-琉璃耳杯合歡系列
佳人有約系列----琉璃耳杯(2000台灣手工業評選最優獎)
陶瓷與琉璃配搭,展現一種多媒材的面貌,琉璃的剔透與陶瓷的樸拙,如何結合,自然且無鑿斧之痕,考驗著創作者的功力,設計一高一矮杯形,互相依偎,相輔相成,又各具特色,象徵兩性間的微妙關係。
Ceramics and glass combination, showing the face of a multi-media, glass ceramics and exquisitely carved calligraphy, how naturally and no chisel hammer marks, test the author's skill
Design a pair of short Cup, snuggle with each other, complement each other, and different characteristics, symbolizing the delicate relationship between the sexes
◈科學與藝術--存仁堂的創意
異質界面材料接合技術,是藝術創作新領域的挑戰方向之一,存仁堂以結合科學與藝術的創新研發,開創一般不同媒材的介面結合,來嚐試新產品的設計與開發。多年來我們嚐試努力在陶瓷與玻璃結合研究,由於異質界面材料產生的應力問題,常導致產品應用的不穩定性,主要原因在於結合材在應力拉扯中產生裂紋,經長時間暴露在空氣中,由於水分子及粉塵的侵入,造成結合物脫落的現象。近年來台灣積極推動奈米國家型科技計畫,本公司亦結合相關技術,並在技術援助下,以奈米級的多孔軟性材料,順利的解決消除應力的問題。同時由於奈米材料本身具有的自潔特性,及阻隔水分入侵帶來異質界面接著的影響,目前已能成功的將陶瓷與玻璃之接合技術克服。
我們也將奈米技術應用在陶瓷器的食具中,例如杯、盤的內部改質,將陶瓷器在燒製的過程中加入了奈米級粉末及具有遠紅外線特性的材料,使得食器具有了抗菌,自潔及除異味的功能,而由於遠紅外線的磁波共振效應,更使得酒或水具有更香醇的作用。
奈米技術除了應用在高科技的領域外,在傳統製造產業上亦有很大的發揮空間,我們可以利用奈米尺寸特性的材料功能,製作出先人在工藝製作上所無法突破障礙的藝術品,所以奈米科技未來在傳統產業的應用上,將可發揮無限的潛力。
Save Jen Hall of science and art creativity
Hetero-interface materials joining technologies, is one of the new challenges in the field of artistic creation, save rentang combines science and art of innovative research and development, and create a general interface integration of different media, to try to design and development of new products. For years we try to study on combination of efforts in ceramics and glass, stress problems because of hetero-interface materials often lead to application instability, mainly because of binding material in crack stress pulls, upon prolonged exposure to air, due to water molecules and dust intrusion, resulting in a combination shedding phenomenon. In recent years Taiwan actively promote nanotechnology national science and technology plan, the company has combined with related technologies, and under technical assistance, in a nano-porous soft material, smooth solution to eliminate stress problem. At the same time because the self-cleaning characteristics inherent in nanomaterials, and barrier water heterogeneous interface then impact on the invasion, has been able to junction of ceramics and glass technology to overcome.
We also will nano technology application in ceramic Manager of tableware in the, such as Cup, and disc of internal modified mass, will ceramic Manager in burn of process in the joined has at Cornell m level powder and the has far infrared characteristics of material, makes food apparatus has has antibacterial, since clean and the except smell of features, and due to far infrared of magnetic wave resonance effect, more makes wine or water has more mellow of role.
Apart from applications in the field of high-tech, nano-technology, in the traditional manufacturing industries also have much room to play, we can take advantage of Nano size features of material functions, produced ancestors unable to break through the barriers of the works of art in the production process, so on the application of nanotechnology in the traditional industries in the future, will be able to play unlimited potential.
多媒材結合一直是存仁堂開創藝術創作新領域的方向,而不同媒材的結合,介面處理問題是最大的障礙。
多年來存仁堂努力嚐試在新設計產品上,將陶瓷與玻璃結合,卻一直找不到理想的結合方式,由於應力的作用,在產品結合上屢屢出現挫敗,原因在於結合材在應力拉扯中產生裂紋,然後長時間暴露在空氣中,水分子及粉塵的侵入,造成結合物脫落的現象。後來經國科會奈米計畫研究所指導,並提供技術援助,以奈米級的多孔軟性結合材料,順利的解決了消除應力的問題,並由於奈米的部分`自潔性,阻隔了水分及灰塵的入侵,成功的將本產品的陶瓷與玻璃部分結合。
存仁堂也將奈米技術應用在陶瓷器的食具中,例如杯、盤的內部,將陶瓷器在燒製的過程中加入了奈米級的銀及遠紅外線材料,使得食具有了抗菌,自潔及除臭的功能,而遠紅外線的磁波共振效應,更有使酒類醇化的作用。
奈米技術除了應用在高科技的領域,存仁堂則在傳統製造產業上利用奈米的功能,製作出先人所無法突破障礙的藝術品,所以奈米科技在傳統產業的發揮上,是有無限的潛力。