The purpose of this study is to investigate the effect of long - term deterioration factor of 12 months on 6 kinds of coating waterproofing materials (polyurethane 1, 2, acrylic rubber, polyurea, rubber asphalt, cement - As a part of the study to characterize the performance change in material aspect, the research was carried out on the tensile strength of the polyurea coating waterproofing material against the performance change in the long term exposure to the chemical erosion environment. As shown in the test results, it was mainly performed in an acidic environment, and it can be confirmed that polyurea is not resistant to acid. In the alkali and sodium chloride environment, the tensile strength after immersion for the last 12 months showed a decrease in strength within about 10% of the initial tensile strength, and it was confirmed that the resistance was excellent in an alkali environment.
비노출형 도막방수재 도포 후 누름콘크리트 타설 시기에 따른 도막방수재의 물리적 특성과 바탕면 조건, 도막두께 및 보강포 사용유무에 따른 내피로성을 검토하였는데, 누름콘크리트 타설 시기가 짧을수록 변색이 심하였고, 도막두께가 두꺼운 반면 인장성능이 낮았다. 내피로 성능은 3 mm의 도막두께에서는 파단되지 않았으나 1, 2 mm는 모두 파단 되었고 부직포로 보강한 경우의 내피로성능이 상대적으로 우수한 것으로 나타났다.
Waterproof layer to the waterproof constructionon the base surface was wet or swelling, problems such as cheered up occurs. In this study, we use the high elastic inorganic coating waterproof material, to evaluate the adhesion of a wet base surface.
Existing polyurethane occurred the environmental issues with the volatile organic solvent mixing tar. This study evaluates the basic properties of a rapid hardening polyurethane, available with spray construction, modified with polyamine mixing carbon black. As a result, stable basic property is measured even surpassed KS.
Several researches of durability are proceeded domestically and internationally based on this
circumstances and apply various integrity evaluation techniques and reinforcement methods of reinforced concrete structures to maintain the durability. Application of building coating materials on building external is effective as a popular material method to maintain durability of reinforced concrete structures as design.
Bridge Deck Waterproof has good constructability and economic efficiency, and it does not have any influence on following processes. But it is uncertain at concrete penetration performance. This paper were investigated pore characteristics in order to examine the performance of the domestic Bridge deck waterproof
본 연구는 콘크리트 지하구조물 외부에 적용하는 방수공법으로 120일 후 가황되도록 가황제, 가황조제 등을 첨가하여 배합제조된 합성고무시트 방수재로써 약 85일의 delay time과 약 35일의 curing time을 가지며, 이때 인장강도는 약 692%가 증가하고, 신장률은 약 10% 감소하여, 일반시트의 시공시 단점을 미가황상태로 시공되어 보완하고, 상온에서 가황하여 내구성능을 확보할 수 있는 것으로 나타났다. 또한 가황직후 및 가황 1년 후의 각종 열화요인에 대한 내구성능을 평가한 결과 관련 품질기준을 만족하며, 미가황 상태에서의 합성고무 시트에 보호모르타르를 시공하여 접착성능을 평가한 결과 첨가된 실리케이트에 의하여 보호모르타르와 수화반응에 의한 양호한 부착성능이 확보되는 것으로 나타났다.