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Architects, specifiers, contractors, and manufacturers in the waterproof industry cover the basics (including cathodic protection terminology, systems, and history), problem-solving in the field and in the lab, and perceived problem areas and proposed solutions. From the symposium of the same name h
Basic concepts of building deck waterproofing stem from the need for economic use of limited land resources, from the advantage of thermal efficiency inherent with underground structures, and from esthetic considerations in architectural design. Plaza or terrace construction is simply a roof uniquely designed to accommodate other uses--pedestrian promenades, recreational and entertainment functions, and exhibition or parking areas--over occupied space. The most frequent problem in these types of construction is the failure to meet the fundamental need to keep water from leaking into the space below.
Plaza waterproofing is precarious because of the severe service conditions imposed on the system and the inaccessibility of the waterproofing membrane for repairs. Most systems are covered by a wearing surface that often impedes the drainage of water at the membrane level. The "buried" position of the membrane makes trouble shooting and repair difficult and prohibitively expensive.
This paper reviews the construction and failure modes of two field-fabricated, traffic-bearing plaza deck waterproofing systems over various substrates. The study involved field review of the two installations, analysis of the inherent shortcomings and defects in each, and the replacement systems design process. Observed defects and component deterioration for each installation are analyzed and separated into the categories of design deficiency, material performance, improper installation or workmanship, and lack of or improper maintenance.
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ASTM is to be commended for the work it has done establishing performance standards for certain generic materials used in waterproofing applications. These standards are represented in: Specification for High Solids Content, Cold Liquid-Applied Elastomeric Waterproofing Membrane for Use with Separate Wearing Course (C 836), Guide for Use of High Solids Content, Cold Liquid-Applied Elastomeric Waterproofing Membrane with Separate Wearing Course (C 898), Specifications for High-Solids Content, Cold Liquid-Applied Elastomeric Waterproofing Membrane with Integral Wearing Surface (C 957), and Guide for Design of Built-Up Bituminous Membrane Waterproofing Systems for Building Decks (C 981). They detail physical properties desired in the various materials and their application techniques for waterproofing building decks over habitable space.
Author : Cecil J. Van Til Publisher : Transportation Research Board National Research Page : 84 pages File Size : 45,77 MB Release : 1976 Category : Technology & Engineering ISBN :
This report documents and presents the results of a comprehensive assessment of the protective capabilities of all bridge deck waterproofing membranes known to be available when the project started (1970). An extensive program of laboratory testing supplemented by a limited program of field study led to the selection from an original group of 147 systems, five that appeared most promising for more intensive field evaluation. Materials and construction specifications were prepared for the five systems, in addition to an experimental plan for the field evaluation. The new work is being under taken as a second phase of the study.
The introduction of new materials, the innovative use of various construction methods, and the popularity of vegetative (green) roofs make it timely to update and expand the 1990 article, "Principles of Design and Installation of Building Deck Waterproofing" [Ruggiero, S. S. and Rutila, D. A., "Principles of Design and Installation of Building Deck Waterproofing," Building Deck Waterproofing, ASTM STP 1084, L.E. Gish, Ed., ASTM International, West Conshohocken, PA, 1990, p. 5. We review the state of the art for materials and practices, and apply the lessons learned over the past 20 years of below-ground and building deck waterproofing. Of particular importance are the following: Performance and durability advancements in fluid-applied systems have resulted in increased use. New chemical formulations as well as recognition of settled technologies that work allow some fluid-applied membranes to demonstrate proven durability equal to sheet membrane systems. Sodium bentonite-polymer composite systems resolve many past performance questions and often provide advantages over other options. Blind-side and other foundation waterproofing systems are increasingly driven by foundation forming and concrete placement, and support of excavation designs. Vegetative (green) roofing has created challenges not completely addressed by "plaza waterproofing" designs, but key principles of deck waterproofing must still be applied to vegetative roofing.