00110 Hydraulic Ferrule

00110 Hydraulic Ferrule

00110 hydraulic ferrule This hydraulic ferrule suits for SAE 100R1AT hydraulic high pressure hose. Product name: 100R1AT hose ferrule Code No.: 00110 Material: steel Q235 Surface treatment: white galvanization WHY ARE THERE SO MANY DIFFERENT TYPES OF HYDRAULIC FITTINGS? While there might be...
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Product Introduction


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This hydraulic ferrule suits for SAE 100R1AT hydraulic high pressure hose. The material of the ferrule is carbon steel Q235, the surface treatment of 00110 hydraulic ferrule is Cr6free zinc plating.


When we crimp the hose with fittings, the middle necessary part is hydraulic ferrules, so we have to take some notes about suitalbe crimpings between them:


1. When the user is crimping high-pressure hose, we have to find suitable pressure for it, if it is too small, the pressure between the fitting and the hose is too loose. If the fittings presses too tightly, it is easy to cause local damage to the inner layer of the hose, resulting in cracks, and the hydraulic oil will directly enter the steel wire layer from the rupture, and then exude out along the gap between the steel wires to the end of the ferrule, or keep channeling along the steel wire layer, it builds up somewhere, causing the outer layer of rubber to bulge or even crack.


2. When crimping, the crimping speed should not be too fast, because if the speed is too fast, it will easily cause damage to the inner rubber and rupture of the steel wire layer, and then cause the hose to be damaged prematurely in use. In actual work, when replacing the high-pressure hose, the length of the hose, the number of steel wire layers, the shape and size of fittings should be reasonable, and the bending degree of the hose should be minimized. Most of the damage to the high-pressure hose is caused by improper production.


Our regular packaing for 00110 hydraulic ferrule is mass packaging, plastic bag+box+pallet, which is reliable for sea delivery.

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WHY ARE THERE SO MANY DIFFERENT TYPES OF HYDRAULIC FITTINGS?

While there might be hundreds if not thousands of hydraulic fittings and connectors, they all boil down to three basic types. These three types are either metal seal, soft seal, or tapered thread connectors. No matter which of these types of fittings yours belongs to, it will be required to satisfy two conditions: it must seal and it must hold.

In some cases, the same mechanism can fulfill both functions, and in other cases, two different parts of the same mechanism will handle the necessary functions. Tapered pipe connectors are cut on a taper with a pipe’s diameter, and it changes along the entire threaded portion of a pipe, in order to make the connection tighter. These types of fittings require a sealer, so you can be sure there will be no leakage around the fitting, and this is usually accomplished with a chemical sealant or a tape sealant.

While it might be difficult to orient the tapered pipe threads correctly, it’s very important to do so, because a poor seal might result in leakage when pressure is applied. If there is a disadvantage to tapered pipe connections, it’s that they must be either soldered or welded to tubes when making a connection.

Metal seal connectors were invented largely to provide an alternative to tapered pipe thread varieties. This type uses a tapered thread combined with a machined face, to provide a seal capable of handling the typical high pressure associated with hydraulics. The thread helps to accomplish the holding power, while the sealing is managed by the machined face.

These kinds are easier to orient than a tapered connector, and they generally provide a better seal, without the need for any kind of additional sealant. However, they do still require welding or soldering to the tube. Soft seal are probably the most popular type used today, and these have an elastomeric seal that prevents leakage even under high-pressure situations.

One of the big advantages to using soft seal connectors is that they can be installed very quickly, and this is highly advantageous in industrial applications. They are also capable of resisting heavy vibrations which many systems are subject to, so they don’t break down nearly as frequently.


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