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What are the requirements for production and processing of Copper Cable Gland?

Promulgator : DIHAO Date : 2018-11-21

Copper Cable Gland has been integrated into every corner of life, its diversified design, so that the scope of application becomes wider. So what are the basic safety precautions for such metal joints during production and processing?

Firstly, production and processing enterprises must formulate safe operation procedures. In recent years, it can be found that the demand for joints is increasing gradually. Never rush for quick successes and quick profits to catch up with quantity but not quality. At this time, production line equipment and production tasks must be operated in a busy but orderly manner.

Secondly, in the face of each Copper Cable Gland order, the relevant departments must formulate a sound safety operation rules for the operation of equipment, and every technician should undergo systematic training and strict assessment before working. For unsafe situations and hidden dangers, we can respond quickly.

In addition, there may be some differences in the specifications of metal joints sold by each merchant. Before each start-up, it is necessary to determine the design plan, size and output with the purchaser.

In the process of production and processing of metal joints, it is necessary to have a clear division of labor. In the process of operation of the equipment, the staff can not leave the equipment, and the equipment needs to install overload protection and related protection system. Only in this way can abnormal phenomena occur in the process of production and processing of metal joints be taken at the first time. Effective measures.

The equipment of Copper Cable Gland production line must be checked and maintained regularly, so as to ensure that the performance of the equipment can better meet the remaining operation.

In addition to the above related points, operators must also be familiar with the performance of the equipment, to know that there are some differences in the operation steps of different production line models. Every staff member should strictly abide by the safety operation rules formulated by relevant departments to avoid accidents.

The use of stainless steel as raw material for metal PG Cable Gland can be said to have great advantages in all aspects of manufacture, application or treatment. Therefore, although the cost of using stainless steel as raw material for cable waterproofing joint is relatively high and the life cycle is relatively short, it still belongs to the solution of cable waterproofing joint. A more economical one.

First, the magnetic properties of stainless steel Cable Gland.

If stainless steel is used as the primary raw material for cable waterproof joint, we should also understand the magnetic problem of stainless steel itself. Stainless steel is generally considered to be non-magnetic, but in fact, the austenite series data may show certain magnetism after certain processing technology, but it is also inaccurate to think that magnetism is the criterion for judging the quality of stainless steel cable waterproof joint.

When choosing waterproof PG Cable Gland, whether the stainless steel material is magnetic or not can not explain its quality of bump and concave. In fact, some chrome-manganese stainless steel is just non-magnetic stainless steel. Chromium-manganese stainless steel in metal cable waterproof joint can not replace 300 series stainless steel, especially in high medium corrosive working environment.

Second, the use of nickel in waterproof PG Cable Gland.

In the process of using stainless steel as raw material, the cable waterproof joint used to rely on the use of nickel element, but in the case of rising global price of nickel element, the price of cable waterproof joint has also been greatly affected. In order to alleviate the cost pressure and improve the competitiveness of cable waterproof joints, the producers of cable waterproof joints specially look for alternative materials and produce low-nickel metal cable waterproof joints.