DIN DVS 2205-5 Calculation of thermoplastic tanks and apparatus - Rectangular tanks
Данный раздел/документ содержится в продуктах:
- Техэксперт: Машиностроительный комплекс
- Картотека зарубежных и международных стандартов
- ASTM D1929 Standard Test Method for Determining Ignition Temperature of Plastics
- ASTM D635 Standard Test Method for Rate of Burning and/or Extent and Time of Burning of Plastics in a Horizontal Position
- DNV GL CP-0072 Thermoplastic piping systems - Non-metallic materials
- ISO 9854-1 Thermoplastics Pipes for the Transport of Fluids - Determination of Pendulum Impact Strength by the Charpy Method - Part 1: General Test Method First Edition - First Edition
- DNV GL CP-0072 Thermoplastic piping systems - Non-metallic materials
- ASTM D635 Standard Test Method for Rate of Burning and/or Extent and Time of Burning of Plastics in a Horizontal Position
- 13
- ASTM D1929 Standard Test Method for Determining Ignition Temperature of Plastics
- ASTM D635 Standard Test Method for Rate of Burning and/or Extent and Time of Burning of Plastics in a Horizontal Position
- DNV GL CP-0072 Thermoplastic piping systems - Non-metallic materials
- ISO 9854-1 Thermoplastics Pipes for the Transport of Fluids - Determination of Pendulum Impact Strength by the Charpy Method - Part 1: General Test Method First Edition - First Edition
- DNV GL CP-0072 Thermoplastic piping systems - Non-metallic materials
- ASTM D635 Standard Test Method for Rate of Burning and/or Extent and Time of Burning of Plastics in a Horizontal Position
- 13.220
- ASTM D1929 Standard Test Method for Determining Ignition Temperature of Plastics
- ASTM D635 Standard Test Method for Rate of Burning and/or Extent and Time of Burning of Plastics in a Horizontal Position
- DNV GL CP-0072 Thermoplastic piping systems - Non-metallic materials
- ISO 9854-1 Thermoplastics Pipes for the Transport of Fluids - Determination of Pendulum Impact Strength by the Charpy Method - Part 1: General Test Method First Edition - First Edition
- DNV GL CP-0072 Thermoplastic piping systems - Non-metallic materials
- ASTM D635 Standard Test Method for Rate of Burning and/or Extent and Time of Burning of Plastics in a Horizontal Position
- 13.220.40
- ASTM D1929 Standard Test Method for Determining Ignition Temperature of Plastics
- ASTM D635 Standard Test Method for Rate of Burning and/or Extent and Time of Burning of Plastics in a Horizontal Position
- DNV GL CP-0072 Thermoplastic piping systems - Non-metallic materials
- ISO 9854-1 Thermoplastics Pipes for the Transport of Fluids - Determination of Pendulum Impact Strength by the Charpy Method - Part 1: General Test Method First Edition - First Edition
- DNV GL CP-0072 Thermoplastic piping systems - Non-metallic materials
- ASTM D635 Standard Test Method for Rate of Burning and/or Extent and Time of Burning of Plastics in a Horizontal Position
- ASTM D1929 Standard Test Method for Determining Ignition Temperature of Plastics
- ASTM D1929 Standard Test Method for Determining Ignition Temperature of Plastics
- ASTM D1929 Standard Test Method for Determining Ignition Temperature of Plastics
- 83
- ASTM D1929 Standard Test Method for Determining Ignition Temperature of Plastics
- ASTM D635 Standard Test Method for Rate of Burning and/or Extent and Time of Burning of Plastics in a Horizontal Position
- DNV GL CP-0072 Thermoplastic piping systems - Non-metallic materials
- ISO 9854-1 Thermoplastics Pipes for the Transport of Fluids - Determination of Pendulum Impact Strength by the Charpy Method - Part 1: General Test Method First Edition - First Edition
- DNV GL CP-0072 Thermoplastic piping systems - Non-metallic materials
- ASTM D635 Standard Test Method for Rate of Burning and/or Extent and Time of Burning of Plastics in a Horizontal Position
- ASTM D1929 Standard Test Method for Determining Ignition Temperature of Plastics
- ASTM D635 Standard Test Method for Rate of Burning and/or Extent and Time of Burning of Plastics in a Horizontal Position
- DNV GL CP-0072 Thermoplastic piping systems - Non-metallic materials
- ISO 9854-1 Thermoplastics Pipes for the Transport of Fluids - Determination of Pendulum Impact Strength by the Charpy Method - Part 1: General Test Method First Edition - First Edition
- DNV GL CP-0072 Thermoplastic piping systems - Non-metallic materials
- DNV GL CP-0072 Thermoplastic piping systems - Non-metallic materials
- ISO 9854-1 Thermoplastics Pipes for the Transport of Fluids - Determination of Pendulum Impact Strength by the Charpy Method - Part 1: General Test Method First Edition - First Edition
- ISO 9854-1 Thermoplastics Pipes for the Transport of Fluids - Determination of Pendulum Impact Strength by the Charpy Method - Part 1: General Test Method First Edition - First Edition
- DIN 16875 Pipes and fittings of unplasticized poly(vinyl chloride) (PVC-U) for ducting - Dimensions and technical delivery conditions
- DIN 8061 Unplasticized polyvinyl chloride (PVC-U) pipes - General quality requirements and testing
- DIN DVS 2221 Qualification testing of plastics adhesive bonders - Pipe joints between PVC-U, PVC-C and ABS with solvent-based adhesives
- DIN DVS 2206-1 Non-destructive tests on tanks, apparatus and piping made of thermoplastics - Dimensional checking and visual inspection
- ASTM D1929 Standard Test Method for Determining Ignition Temperature of Plastics
- Картотека зарубежных и международных стандартов
Deutsches Institut fur Normung e. V.
Calculation of thermoplastic tanks and apparatus - Rectangular tanks
N DVS 2205-5
Annotation
The following rules for the design and calculation apply to rectangular tanks for the engineering of apparatus of thermoplastic materials, in particular
Polyvinyl chloride (PVC)
Polypropylene (PP)
High density polyethylene (PE-HD)
The tanks may be strengthened from the outside by means of ribs or frames made of the same or stiffer materials, such as glass-fibre reinforced plastics (GRP) or steel. With the exception of hydrostatic pressures, no appreciable pressures occur. For the calculation, in principle, the plate theory was used. Reference to the membrane theory will be found in subclauses 4.6.2 and 5.
Автоматический перевод:
Вычисление термопластических резервуаров и прибора - Прямоугольные резервуары
Следующие правила для дизайна и вычисления применяются к прямоугольным резервуарам для разработки прибора термопластических материалов в частности
Поливинилхлорид (PVC)
Полипропилен (PP)
Полиэтилен высокой плотности (PE-HD)
Резервуары могут быть усилены с внешней стороны посредством ребер или рам, сделанных из тех же или более жестких материалов, таких как стекловолокно укрепило пластмассу (GRP) или сталь. За исключением гидростатических давлений, не возникают никакие заметные давления. Для вычисления, в принципе, использовалась теория пластины. Ссылка на мембранную теорию будет найдена в подпунктах 4.6.2 и 5.



