Безальцовка без масла -- введение продукта
Также известный как самосмазывающиеся подшипники, нефтеносные подшипники — это новые смазывающие подшипники, сочетающие в себе характеристики металлических подшипников и нефтеносных подшипников. Он состоит из металлического субстрата, несущего груз, и твердого смазочного материала со специальным составом, который функционирует в качестве смазочного материала. Этот бюстгальтер может похвастаться высокой несущей способностью, ударостойкостью, высокой термостойкостью и высокой способностью к самосмазке. Он особенно подходит для тяжелых грузов, низких скоростей, поршневых или качающихся движений, а также для других трудносматываемых и масляных фильмообразующих приложений. Он также устойчив к смыву воды, эрозии и чистке других кислотных жидкостей. В настоящее время эти изделия широко используются в металлургических машинах непрерывного литья, стальном прокатном оборудовании, горной технике, формовочных машинах, подъемных машинах, текстильных машинах, ветроэнергетике, кораблях, паровых турбинах, водных турбинах, литьевых машинах и производственных линиях.
Installation Considerations
①Before assembly, ensure that the surface of the bushing and the seat hole are free of foreign objects. The surface of the seat hole should be as smooth as possible to prevent scratching during assembly.
② During assembly, lubricant can be applied to the outer surface of the bushing to assist in its easier installation, but not too much to prevent the bushing from dislodging during heavy loads or reciprocating motion.
③ Use a mandrel to slowly press the bushing into place during assembly (hydraulic press recommended). Direct hammering of the bushing is prohibited to prevent deformation.
④ If the seat hole design involves the use of easily deformable materials such as aluminum alloy or if the wall thickness of the seat hole is relatively thin, please provide clarification to prevent deformation during press-fitting.
⑤ To simplify assembly and avoid damaging the wear-resistant layer, the end face of the shaft must have a chamfered and smoothly transitioned edge. It is recommended that the shaft material be bearing steel with a quenched surface treatment of HRC45, a surface roughness of Rz2-3, and the surface can also be hard chromium plated.
Selection Steps for Oil-free Bushings
Determine Operating Conditions → Preliminarily Select Specification → Verify Basic Safety → Complete Selection
Determine the operating environment, general usage, heat resistance, chemical resistance, load capacity, frequency of use, and the need for lubrication.
Select the appropriate type such as straight pillar or shoulder-type. Pre-select the specification and size based on the design conditions.
Maximum Allowable Load: Please confirm that the load is within the maximum allowable load limit.
Maximum Allowable Speed: Please verify that the moving speed is within the maximum allowable speed limit.
Lifespan (Wear Calculation): Calculate the approximate wear amount and confirm that the necessary lifespan can be ensured.
Fixation Methods for Oil-free Bushings
Press-fitting
When press-fitting an oil-free bushing, it is recommended to use a vise or press for ease of insertion. Chamfering the end of the inner diameter of the fixing seat and applying a small amount of lubricating oil to both the inner diameter of the fixing seat and the outer diameter of the bushing are advisable.
Anti-rotation Screws/Adhesive Bonding
When emphasizing the prevention of falling off and anti-rotation of the oil-free bushing, the following methods are recommended based on the usage conditions and environment. ※2
Press-fitting Fixture, Bushing, Chamfering, Anti-rotation Screws, Adhesive, Apply adhesive to the outer cylinder
In high-load and high-temperature applications, it is recommended to use anti-rotation screws.
Strengths of Oil-free Bushings
Material Characteristics and Allowable Properties
Copper Alloy Type, Bronze Type, Dry Type, High-Precision Type
Resin Type (Polyacetal Resin), Polytetrafluoroethylene Resin, Casting Type
Material Characteristics
A composite product based on high-strength brass, embedded with solid lubricants
Specifications of Bronze Castings with Impregnated Lubricant
Three-layer composite product consisting of steel metal substrate, bronze sintered layer, and PTFE resin layer with filler
Specifications of High-strength Aluminum Alloy
Material composed of polyacetal resin containing lubricant and special filler
Material based on PTFE resin with added abrasion-resistant filler and solid lubricant
Specification based on FC250 with embedded spiral molybdenum disulfide