Views: 0 Author: Site Editor Publish Time: 2025-07-03 Origin: Site
In modern industrial equipment, H type water rotary joints are widely used in machine tool cooling systems, plastic machinery, printing equipment, food processing and other fields because of their compact structure, excellent sealing performance and strong adaptability. However, with a wide variety of products on the market, how to select a truly "easy-to-use, durable, and fit-for-purpose" H type water rotary joint is the focus of many engineers and procurement personnel.
1. Clarify application requirements: the first step in model selection
Before choosing an H-joint, it is important to know what conditions it will be used in:
The type of transmission medium
Is it water, coolant, hydraulic fluid, or compressed air? Different media have different requirements for sealing materials and housing materials.
Operating temperature range
High-temperature environments (e.g., above 150°C) require high-temperature seals; The frost resistance of the material should be considered at low temperatures.
Maximum operating pressure
The hydraulic system may need to withstand a pressure of up to 2.5MPa, while the pneumatic system is usually between 0.6~1.0MPa.
Rotation speed (RPM)
High-speed rotation (e.g. spindle speed over 5000 rpm) places higher demands on joint seals and bearings.
Installation space limitations
Although the H-joint is compact, it is still necessary to confirm that the equipment reservation space meets the installation size requirements.
2. Pay attention to core performance indicators: ensure long-term stable operation
Sealing performance
Seals are one of the most critical components of a rotary joint. High-quality products usually use carbon graphite paired with stainless steel face seal structure, which has good self-lubrication and wear resistance.For corrosive media (e.g. acids and alkalis), PTFE or ceramic-coated seals should be used.
Pressure-bearing capacity
Check the maximum pressure tolerance of your product to ensure that it can meet the pressure needs of your system and avoid leakage or damage due to overpressure.
Friction torque and bearing system
Built-in rolling or plain bearings can effectively reduce rotational resistance, improve running stability and extend service life.
The bearing should have good fatigue resistance, especially suitable for high-speed rotation applications.
Number of channels and size of passages
According to the type of transmission medium and the flow rate, select the appropriate number of channels (single or multi-channel) and the size of the diameter.
3. Material selection determines durability
Housing material
Common materials include cast iron, carbon steel, stainless steel, and copper alloys.
Stainless steel is suitable for highly corrosive environments, while copper alloys are suitable for lightweight and high-heat dissipation scenarios.
Sealing material
Carbon graphite, ceramics, PTFE, tungsten carbide and other materials have their own advantages and disadvantages, which should be matched according to the specific medium characteristics.
Shaft treatment process
Case-hardening treatments (e.g. nitriding, chrome plating) significantly improve the wear and corrosion resistance of shafts.
4. The interface form and installation method should be matched
Connection
Common interfaces include G threads, NPT threads, flanges, push-in clamps, etc., which should be consistent with the field pipeline system.
Mounting direction
Whether it supports vertical installation, horizontal installation or installation at any angle depends on the actual equipment layout.
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