PP flanged end ball valves are manufactured in compliance with industry standards and come in different specifications. Compared with solid polytetrafluoroethylene lined metal valves and PVDF ball valves, this valve is chemically resistant and economical. The type of valve is very light and is considered a better choice for G.I. evaluation. Or C. I. Valve.
The pp ball valve is especially used to adjust the flow of water, liquid and various other types of fluids in different industrial and domestic pipes and hose fittings. We use graded UPVC materials to strictly design these valves. In order to meet the needs of our valuable customers, after verifying various quality parameters, we have provided valves of various sizes, sizes, connections and specifications.
Sr.No. | Part | Qty. | Material |
1. | Body | 1 | Polypropylene |
2. | Ball | 1 | P.P.R. |
3. | Screw End | 2 | Polypropylene |
4. | Seat | 2 | PTEE(Teflon) |
5. | Stem | 1 | P.P. Reinforced with M.S. |
6. | Bearing | 1 | Teflon |
7. | Stud & Nut | 5 to 10 | M.S. Zinc plated / S.S. 304 / S.S.316 |
Construction | Multi Piece Body |
Design | Three Piece |
Size Range | 15mm. to 150mm. |
Max working temp. | 90ºC (Consistently) |
Gasket / Stem Seal | Neoprene |
Hydraulic Test Pressure | 15 kg upto 4″ |
Valve Size | Flange Diameter | Length Face to Face | Flange Thikness | Height Centre (H) |
15(1/2″) | 95 | 128 | 15 | 71.5 |
20(3/4″) | 100 | 148 | 17 | 77 |
25(1″) | 120 | 155 | 19 | 90 |
32(1.1/4″) | 140 | 180 | 19 | 110 |
40(1.1/2″) | 140 | 180 | 19 | 110 |
50(2″) | 165 | 205 | 21 | 117.5 |
65(2.1/2″) | 185 | 237 | 26 | 147.5 |
80(3″) | 200 | 250 | 26 | 162 |
100(4″) | 230 | 300 | 27 | 185 |
150(6″) | 305 | 430 | 35 | 247.5 |
1. Available in Flange Type in 15 mm to 150 mm and in Screw Type in 15 mm to 100 mm. |
2. Manufactured from Poly Propylene, a Chemically inert thermoplastic. |
3. Can be used upto 90ºC Temp. |
4. Hydraulically and Pneumatically tested for 15 Kg. upto 4″. |
5. Protective and Resistive from most of the corrosive Chemicals. |
6. Flange drilled as per customer’s specification. |
Title: PP Flange End Ball Valve and Drip Valves: Reliable Solutions for Fluid Control
Introduction:
PP Flange End Ball Valves and Drip Valves are essential components used in various industries for fluid control applications. These valves are designed to provide reliable and efficient performance, ensuring the smooth operation of pipelines and preventing leakage. In this article, we will explore the features, benefits, and applications of PP Flange End Ball Valves and Drip Valves.
I. PP Flange End Ball Valve:
PP Flange End Ball Valves are versatile valves widely used in industries such as chemical, pharmaceutical, water treatment, and agriculture. They offer excellent resistance to corrosion, chemicals, and high temperatures. The key features and benefits of PP Flange End Ball Valves include:
1. Construction and Design:
- PP (Polypropylene) material ensures durability and longevity.
- Flange end connections for easy installation and maintenance.
- Compact and lightweight design, suitable for space-constrained environments.
2. Full Bore Design:
- Unrestricted flow path minimizes pressure drop.
- Enables efficient fluid transportation and reduced energy consumption.
- Suitable for applications requiring high flow rates.
3. Ball Valve Operation:
- 90-degree rotational movement for quick and precise flow control.
- Positive shut-off, minimizing the risk of leakage.
- Lockable handle option for enhanced safety and tamper resistance.
4. Chemical Resistance:
- PP material provides excellent resistance to a wide range of chemicals.
- Suitable for handling corrosive fluids and aggressive media.
- Reduces the risk of valve degradation and maintenance requirements.
5. Temperature and Pressure Ratings:
- Withstand high temperatures and pressure conditions.
- Suitable for both hot and cold fluid applications.
- Ensures reliable performance in demanding environments.
6. Applications:
- Chemical processing plants.
- Water treatment facilities.
- Pharmaceutical industries.
- Agricultural irrigation systems.
- Industrial fluid transportation.
II. Drip Valves:
Drip Valves, also known as Irrigation Valves or Emitters, are specifically designed for precision irrigation systems. These valves regulate the flow of water or other fluids to individual plants or crops, ensuring optimal water distribution and minimizing wastage. The key features and benefits of Drip Valves include:
1. Adjustable Flow Control:
- Allows precise control over the amount of water delivered to plants.
- Minimizes water wastage and optimizes irrigation efficiency.
- Prevents overwatering and promotes healthy plant growth.
2. Self-Cleaning Mechanism:
- Built-in self-flushing design prevents clogging or blockage.
- Ensures continuous and consistent flow, reducing maintenance requirements.
- Ideal for irrigation systems operating in harsh or sediment-laden water conditions.
3. Durability and Resistance:
- Made from durable materials such as UV-resistant plastics or corrosion-resistant metals.
- Withstand outdoor elements, including UV radiation and environmental factors.
- Long lifespan, minimizing replacement costs.
4. Easy Installation and Maintenance:
- User-friendly design for quick and hassle-free installation.
- Easy disassembly and cleaning, reducing downtime during maintenance.
- Available in various sizes and configurations to suit different irrigation systems.
5. Applications:
- Agricultural irrigation systems (row crops, orchards, vineyards).
- Landscape and garden irrigation.
- Greenhouses and nurseries.
- Hydroponic systems.
Conclusion:
PP Flange End Ball Valves and Drip Valves offer reliable and efficient solutions for fluid control applications. The PP Flange End Ball Valves provide robust construction, chemical resistance, and versatile operation, making them suitable for various industries. On the other hand, Drip Valves ensure precise irrigation,
water conservation, and ease of installation, benefiting agricultural and horticultural practices. By incorporating these valves into your fluid control systems, you can enhance operational efficiency, reduce maintenance costs, and promote sustainable practices.
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