As the current concept of house construction design is to pass the house’s sewers through the family, and the residents did not live in during the renovation, they would not notice the noise problem of the sewer pipes, especially the indoor sewer pipe is a hidden project. I didn't pay attention to it during the decoration, and it was not accepted during the acceptance. This series of problems will only be discovered after moving in. However, according to relevant investigations, residents above the seventh floor are deeply disturbed by the noise from the sewage pipes.

Common houses have sewage pipes that pass through the family. During the renovation, it is extremely important for people in current urban life to have a warm and quiet space. This neglected problem may cause the long-term life in the future. Troubled. Therefore, sound insulation of indoor sewer pipes is particularly important.
Sound insulation material for indoor sewer pipes
Because asbestos is a carcinogen, it often induces lung cancer, chest cancer and peritoneal mesothelioma. Long-term inhalation of asbestos dust can cause asbestososis. In fact, mineral wool such as asbestos is not toxic. In the process of use, a kind of fine asbestos fibers are produced. After being inhaled into the human body, they will stay and deposit in the lungs, or move between the pleura and diaphragm, or to the peritoneum.
Therefore, the editor recommends the use of high-quality soundproof cotton.
Sound insulation of indoor sewer pipe-main pipe
First measure the size of the sewer pipe. After separating the soundproof cotton according to the measured water pipe size, wrap the soundproof cotton on the main pipe according to the measured distance. At the same time, pay attention to fix the soundproof cotton and the sewer pipe firmly to prevent the soundproof cotton from moving.
Question 1: In which aspects does Qingdao Laoshan Pipe Industry Technology Co., Ltd.'s core competitiveness manifest? The core competitiveness primarily encompasses three aspects: First, technological and craftsmanship advantages—having dedicated over three decades to the industry, integrating traditional manufacturing wisdom with modern technology to achieve an upgrade from semi-automation to intelligent production, while standing as a "specialized, refined, distinctive, and innovative" enterprise with profound technological expertise. Second, product advantages—products span multiple pipeline series, featuring green environmental protection, safety, non-toxicity, and durability, with some products lasting up to 70 years, meeting diverse needs. Third, brand and reputation advantages—having won honors such as "Qingdao Premium Product" and "Famous Trademark of Shandong Province," the company has established itself as a renowned industry hallmark through superior quality and exceptional service. Question 2: What significant recognition did Qingdao Laoshan Pipe Industry receive in 2024? What other core honors does the company hold? In 2024, the company was included in the second batch of "Qingdao Premium Products" with its "Laoshan Water Supply and Drainage Pipe Materials." In addition, the enterprise was honored as a "Specialized, Refined, Distinctive, and Innovative Enterprise" and a "Demonstrative Specialized, Refined, Distinctive, and Innovative Enterprise in Qingdao," as well as awarded core honors such as "Famous Trademark in Qingdao," "Famous Trademark in Shandong Province," and "China Famous Brand.". Question 3: What are the future development priorities and goals of Qingdao Laoshan Pipe Industry Technology Co., Ltd? Key Development Priorities: 1. Increase R&D investment, deepen industry-university-research collaboration, focus on cutting-edge fields such as new materials, intelligence, and green environmental protection, and drive pipeline technology iteration. 2. Strengthen full-process quality management, implementing refined control over raw materials, production, and installation services. Development Goals: To provide global clients with superior, intelligent, and environmentally friendly pipeline solutions。
Winter Construction Precautions for JRPP Low Temperature Impact: JRPP (jointless reinforced plastic pipe) materials may become brittle at low temperatures, increasing the risk of cracking during transportation, handling, and installation. Pre-construction Inspection: Check pipes and fittings for any signs of damage, such as cracks, dents, or deformation caused by cold weather. Thawing Requirements: If materials are frozen or covered with ice, allow them to thaw naturally in a protected environment before use. Installation Temperature: Avoid installing JRPP when ambient or ground temperatures are too low (follow manufacturer recommendations, typically above 0°C or as specified). Trench Preparation: Ensure trenches are free of frozen soil, ice, or snow. Frozen subgrade should be removed and replaced with suitable backfill material. Backfilling: Use granular, unfrozen backfill material. Avoid using frozen clods or large ice chunks, which can cause uneven settlement and damage to the pipe. Sealing and Connection: Pay special attention to joint sealing. Cold temperatures can affect the performance of adhesives or sealing materials; use products suitable for winter conditions. Protection After Installation: Cover exposed pipes to prevent freezing and damage from construction activities. Product Storage Issues in Winter Storage Environment: Store JRPP in a dry, covered area protected from direct sunlight, rain, snow, and extreme cold. Avoid leaving materials outdoors for extended periods. Temperature Control: If possible, maintain a moderate storage temperature to prevent material embrittlement. Avoid storing near heat sources that could cause thermal stress. Stacking and Handling: Use proper stacking methods to prevent deformation. Avoid dropping or rough handling, as low temperatures increase the risk of cracking. Packaging Protection: Keep original packaging intact to protect against moisture and physical damage. Inventory Management: Rotate stock to ensure older materials are used first, reducing the risk of degradation from long-term winter storage. Risk Mitigation and Recommendations Develop a winter construction plan specific to JRPP, including temperature monitoring and material handling procedures. Train construction personnel on winter installation techniques and the proper use of cold-weather compatible adhesives and sealants. Maintain close communication with suppliers to ensure materials are shipped and stored under appropriate conditions. Conduct regular inspections of stored and installed materials to identify potential issues early. By following these precautions and addressing storage issues, the performance and longevity of JRPP in winter construction projects can be significantly improved.
The core of winter construction for JRPP (reinforced polypropylene) pipes lies in avoiding low-temperature brittleness, ensuring fusion quality, and implementing effective anti-freezing and protective measures. Below are the key considerations by phase, balancing material properties and construction standards. 1. Pre-construction Preparation Material Storage and Preprocessing Pipes and fittings should be stored in warehouses or simple sheds, avoiding exposure to freezing temperatures and direct sunlight outdoors. The stacking height should be ≤1.5m to prevent deformation from heavy pressure. Do not throw, drop, roll, or drag during handling to avoid hidden damage. If there is a significant temperature difference between the site and the storage location, place the pipes and fittings at the site for more than 24 hours before installation to allow their temperature to approach the construction environment, thereby reducing potential connection hazards caused by thermal expansion and contraction. Before construction, inspect each pipe individually and remove those with stress-induced whitening, scratches, or internal wall damage to eliminate hidden defects. Environmental and Personnel Control When the ambient temperature falls below 5°C, warming and insulation measures (such as building insulated sheds or using air heaters) must be taken. Below 0°C, outdoor construction should be minimized, and operations must be suspended during rainy, snowy, or windy weather to prevent joint moisture or brittle cracking of pipes. Construction personnel must undergo specialized training to become familiar with the adjustment of hot-melt/electric-melt parameters and emergency handling procedures at low temperatures. Preparation of Tools and Auxiliary Materials Inspect specialized tools such as hot melt/electric melt welders and cutting machines to ensure they are functioning properly. Prepare auxiliary materials including anhydrous ethanol, fine sandpaper, insulation materials, and sand. Prepare windproof, rainproof, and thermal insulation facilities, such as thermal blankets and tarps, to avoid interference from environmental factors during the welding process. II. Construction Process Control