An engine lathe is a type of machinery, shaped horizontally, and it is often used to cut metal. The metal is turned, and the machine uses special cutting tools to create the desired shape. Because of the lathe, it can create various specific forms and is commonly used to spin sheet metal. Cut pieces are involved in automobile engines, machine engines, or any other engine for a motorized vehicle.
An engine lathe is also known as a reproductive machine because it has many production capabilities. Primary features of an engine lathe are gears, a stepped pulley to operate spindle speeds, tailstock, and a carriage. The gears work to power the transport, which cushions the cutting tools. A tailstock will support hole-drilling within the spindle. Shaping tools can be manually operated or driven with gears. A conventional engine lathe will also include a compound rest and cross-slide for angular and cross cutting.
Engine lathes are capable of many different machining operations. Turning cylindrical surfaces, facing flat surfaces, cutting threads, drilling, and boring are some of the typical operations that are done on the engine lathe. The size of the lathe is determined by the swing and by the length of the bed.
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l Strong overload capability: 200%/S;
l Four-way analog input, two of which are electrically isolated inputs to improve anti-interference ability;
l The special function of the injection molding machine makes the injection molding machine run in the best condition, meets the process requirements and saves energy;
l Built-in frequency conversion / power frequency conversion switch, flexible conversion, convenient for users to switch between power frequency and frequency conversion;
l Convenient operation, no need to adjust the power saver during production, automatic tracking control throughout the process;
l Reduce noise, reduce noise after equipment, and improve working environment;
l Extend the life of the whole machine, the standard speed of the inverter energy-saving device is stable, soft start (no grid impact), and reduce the vibration of the open-lock mode;
l Avoid equipment impact, reduce oil temperature, extend the life of seals, and extend the life of the machine;
l High-performance components such as high-speed DSP digital processors and international brands ensure high quality and high stability when the machine is running;
l Cabinet structure with roller for easy installation and movement;
The product has a wide range of design and can be applied to injection molding machines of various brands and specifications. Its control system is stable in operation, easy to operate, and has a high power saving rate of 30 to 65%, and can be perfectly combined with the injection molding machine process. The preferred brand for energy-saving retrofits.
In the increasingly competitive injection molding industry, how to reduce production costs has become the primary issue for enterprise development. In the actual production cost, the energy consumption of the injection molding machine accounts for a considerable proportion, and the frequency converter with remarkable energy-saving effect has become synonymous with the energy-saving device of the injection molding machine. As a leading brand in the inverter industry, Senlan has been paying close attention to the frequency conversion requirements of the injection molding machine industry. Recently, it has introduced a special inverter for injection molding machines that integrates frequency conversion technology—Senlan SB61Z series vector inverter. Its product features are as follows: