BCJ evaluation acquisition Vertical self-weight support wire method_ All threaded to wire!
The transportation, cutting, processing, and assembly work of fully threaded materials will be overwhelmingly reduced.
Replace vertical self-weight support with fully threaded bolts, allowing for construction with wires. With overwhelming workability and weight reduction, the efficiency of the entire process is improved, enhancing productivity.
Traditionally, it is common to use fully threaded rods for vertical dead weight support materials. However, in this method, by selecting an appropriate wire diameter according to the weight of the supported material, wires can be used as vertical dead weight support materials instead of fully threaded rods. This method has obtained general evaluation from the Building Center of Japan (hereinafter referred to as "BCJ") as the "Gripple Wire System - Vertical Load Support Method" (BCJ Evaluation - SS0062-1). Additionally, if seismic support is required, conventional seismic support construction must be carried out in accordance with the guidelines for seismic design and construction of building equipment.
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basic information
Recently, there has been a decrease in the construction labor force, leading to an increased demand for labor-saving and efficiency-enhancing methods in building equipment construction. On the other hand, in relation to the SDGs, the construction industry is also being called upon to implement environmentally conscious practices. An innovative construction method that contributes to solving these challenges is Gripple's vertical self-weight support wire method. 1. Lightweight components: When comparing the weight of the all-thread (M10) used in conventional methods with Gripple wire (2 mm diameter) of the same length, the weight of Gripple wire is about 3% of that of the all-thread. This reduction in component weight not only enhances the efficiency and safety of work in building equipment construction, which primarily involves high-altitude tasks, but also significantly reduces the costs associated with transporting and storing materials on site. 2. Contribution to CO2 emission reduction: By replacing all-thread with wire, the amount of iron used is significantly reduced. Consequently, the CO2 emissions during the manufacturing of each component are also reduced to about 3% of that of the all-thread. Additionally, due to the lightweight nature, the frequency of transportation to the site is decreased, allowing for a reduction in CO2 emissions from vehicles. 3. Reduced construction work: All components are provided as kits, allowing for immediate construction on site. No prior preparation such as component processing is required, and there is no need for waste disposal. The construction process is simple, making it easy for anyone to carry out the installation.
Price range
Delivery Time
P3
Applications/Examples of results
Can be used for raceways, cable racks, corner ducts, spiral ducts, flexible ducts, chambers, and refrigerant pipes. *If seismic bracing is required, please ensure that construction is carried out in accordance with the 2014 Guidelines for Seismic Design and Construction of Building Equipment.
Detailed information
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Vertical self-weight support wire method - cable rack
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Vertical self-weight support wire method _ raceway
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Vertical self-weight support wire method_angular duct
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Vertical self-weight support wire method _ spiral duct
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Vertical self-weight support wire method _ flexible duct
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Vertical Self-Weight Support Wire Method - Chamber Box
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Vertical self-weight support wire method _ refrigerant pipe
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Headquarters: United Kingdom: Sheffield Expansion: 90 countries and regions worldwide Japanese Corporation: Gripple Japan Co., Ltd. (established in 2018) Our company is the Japanese subsidiary of Gripple, a pioneering manufacturer of wire joint fittings, established in the UK in 1988, and has been selling products globally as a top-class player in the industry. Since 1998, we have developed a unique construction method using Gripple and wire ropes, entering the construction industry. Our methods for fall prevention and trip prevention in electrical and air conditioning work have received high praise in various countries, including the UK, the USA, and Germany. In Japan, we primarily sell products that are registered with the Japan Building Center's general evaluation and the Ministry of Land, Infrastructure, Transport and Tourism's NETIS.