Material Test
Polyurethane Test Report | ||||
NO. | TEST PROJECT | UNIT | TEST REPORT | TEST METHOD |
1 | Shore hardness | Shore A | 83 | GB/T 531.1-2008 |
2 | DIN abrasion | mm3 | 21 | GB/T 53516-1987 |
3 | Akron abrasion | cm3 | 0.0518 | GB/T 1689-1998 |
4 | 100% stress at definite elongation | MPa | 3.41 | GB/T 528-2009 |
5 | 300% stress at definite elongation | MPa | 5.74 | GB/T 528-2009 |
6 | Tensile strength | MPa | 51.2 | GB/T 528-2009 |
7 | Elongation at break | % | 1263 | GB/T 528-2009 |
8 | Tear strength (right angle) | kN/m | 77 | GB/T 529-2008 |
9 | Resilience rate | % | 34 | GB/T 1681-2009 |
Model Selection
Имя | Модель | Производительность | Технические параметры |
Гигроскопичная пенная свинья | LCQZ-RTH | 1. Он образуется путем однократного вспенивания полиэфирного полиуретанового материала. | Пусковое давление: 0,2-0,3 МПа |
2. Мягкая текстура и хорошая эластичность. | Density: 35 kg/m³~150 kg/m³ | ||
3. Он обладает сильными водопоглощающими характеристиками. А величина деформации может достигать 70%. | Выдерживаемое давление: 7 МПа | ||
4. Заметное влияние на обезвоживание, обезжиривание и сушку трубопроводов. | Коэффициент растяжения: 320% | ||
Степень сжатия: 60 | |||
Срок службы изгиба: 50 000 раз | |||
Коэффициент истирания: 4 мм/100 км | |||
Эксплуатационное расстояние: 50 км ~ 150 км | |||
Operating temperature: -30℃~100℃ | |||
Голая поролоновая свинья | LCQZ-RTN | 1. Мягкая текстура и хорошая гибкость. | Пусковое давление: 0,02 МПа |
2. При сильном водопоглощении величина деформации может достигать 60%. | Density: 35 kg/m³~220 kg/m³ | ||
3. Используется для обезвоживания, очистки и сушки трубопроводов. | Выдерживаемое давление: 7 МПа | ||
Коэффициент растяжения: 320% | |||
Степень сжатия: 60 | |||
Срок службы изгиба: 50 000 раз | |||
Коэффициент истирания: 4 мм/100 км | |||
Эксплуатационное расстояние: 50 км ~ 150 км | |||
Operating temperature: -30℃~100℃ | |||
Полли Пенная Свинья | LCQZ-RTR | 1. Its interior material is polyurethane. The surface is coated with a polyurethane elastomer coating. | Пусковое давление: 0,02 МПа |
2. Хорошая гибкость и определенная износостойкость. | Density: 35 kg/m³~220 kg/m³ | ||
3. The deformation amount can reach 50%. | Выдерживаемое давление: 7 МПа | ||
4. For scrubbing, descaling, and fluid isolation of pipes use. | Коэффициент растяжения: 320% | ||
Степень сжатия: 50 | |||
Срок службы изгиба: 50 000 раз | |||
Коэффициент утывания: 2 мм/100 км | |||
Эксплуатационное расстояние: 100 км ~ 300 км |
Спецификации
Имя | Customized Foam Pigging Pigs | ||||
Материал | Polyurethane | ||||
Light Density | 0.02-0.3g/m3 | ||||
Medium Density | 0.08-0.12g/m3 | ||||
Heavy Density | 0.13-0.16g/m3 | ||||
Особенность | 1. High wear resistance | ||||
2. Good cleaning performance | |||||
3. Low cost | |||||
Уплата | ТТ/ЛК | ||||
Преимущество | 1. They are lightweight and flexible. | ||||
2. Nice cleaning efficiency. | |||||
3. Accurate location tracking. |
Часто задаваемые вопросы (FAQ)
A. What are pigging pigs, and how do they work?
Pigging pigs, also known as piping pigs, are devices used in pipeline operations to perform various functions actively. They are inserted into the pipeline and propelled by the flowing product or external means. These devices effectively clean the pipeline, inspect its condition, and even separate different products in multi-product pipelines. They work by actively removing debris, sediment, and deposits from the pipeline walls, ensuring smooth flow and preventing blockages.
B. Why is pipeline inspection important for infrastructure integrity?
Pipeline inspection is crucial for maintaining infrastructure integrity. Regular inspections help detect potential issues and prevent costly failures. By proactively identifying and addressing problems, inspections ensure the pipeline’s integrity, preventing leaks, ruptures, and other hazardous incidents. They also help maintain optimal operational efficiency and extend the lifespan of the pipeline.
C. How often should pipeline pigging operations be conducted?
The frequency of pipeline-pigging operations depends on various factors, such as the pipeline’s characteristics, the operator should transport of the product, and regulatory requirements. Generally, operators should conduct pigging operations regularly to ensure ongoing maintenance and integrity. The operator should determine a specific schedule based on the pipeline’s condition and operational demands, following industry best practices and guidelines.
Benefits
Advanced inspection pigs offer numerous benefits as they employ cutting-edge technologies, including sensors, cameras, and data recording capabilities. By utilizing these advanced tools, they gather highly precise and detailed information about the pipeline’s condition, enabling operators to assess defects and potential risks more effectively. The timely identification of issues becomes possible, leading to prompt repairs and maintenance. This proactive approach actively prevents costly failures and guarantees the overall safety and efficiency of the pipeline system. By integrating advanced inspection pigs, operators can proactively protect their infrastructure, optimize operational performance, and ensure a secure and reliable pipeline network.
Safety precautions should be taken during pigging operations
Implementing safety precautions during pigging operations is of utmost importance. To guarantee a secure working environment, several key measures should be taken. First and foremost, personnel involved must undergo proper training to ensure they possess a comprehensive understanding of the equipment and procedures. Additionally, wearing adequate personal protective equipment, including gloves, safety glasses, and appropriate clothing, is essential. Before commencing pigging, it is crucial to meticulously isolate and depressurize the pipeline, mitigating the risk of unexpected releases or accidents. Furthermore, strict adherence to safety protocols, such as lockout/tagout procedures, is necessary to prevent unauthorized access or equipment activation during the operation. Regular risk assessments and the presence of emergency response plans are also vital components, enabling effective handling of any unforeseen circumstances. By implementing these safety measures, operators can maintain a secure working environment and minimize potential risks throughout the pigging process.
Заключение
In conclusion, pigging pigs play a crucial role in pipeline inspection by actively removing debris, ensuring smooth flow, and preventing blockages. Their use enhances efficiency, reduces downtime, and safeguards pipeline integrity. With advanced inspection pigs equipped with cutting-edge technologies, operators can accurately assess defects, identify risks, and promptly address issues, preventing costly failures. Implementing proper safety precautions during pigging operations is essential to protect personnel and maintain a secure working environment. By following industry guidelines and conducting regular inspections, pipeline operators can optimize performance, extend the lifespan of their infrastructure, and ensure the safe and efficient transportation of products. Transitioning from the benefits of advanced inspection pigs to the importance of safety precautions, it is evident that a comprehensive approach to pipeline maintenance is necessary for a successful and sustainable operation.
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