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Hydraulic telescopic shock absorber of the suspension of the vehicle |
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IPC classes for russian patent Hydraulic telescopic shock absorber of the suspension of the vehicle (RU 2053893):
Damper / 2047019
The invention relates to actuators reciprocating motion, including shut-off shut-off devices with diaphragm actuator on technological pipelines
Hydraulic shock absorber / 2042063
The invention relates to the damping of mechanical vibrations and can be used in the suspensions of vehicles
Hydraulic double acting shock absorber / 2023912
The invention relates to the field of engineering and relates to suspensions of vehicles
Hydraulic shock absorber / 2020310
Pneumatic damper / 2019436
The invention relates to rail transport, and is intended for damping vertical and horizontal oscillations of bogie frames and bodies locomotives
Shock absorber / 2313014
Shock absorber contains two supports and mechanical transmission, which transforms alternating motion to rotary motion, having a case, connected to one support, a shaft with a gear and toothed board which interacts with gear and connects to other support, friction sleeve. One disk of sleeve is rigidly connected to shaft. Second disk is mounted on shaft grooves moveably in axial direction and compressed by compression spring. On the shaft with possible rotation and axial movement an additional gear is mounted which interacts with gears of balance wheels, mounted in the case, and containing two friction washers, positioned between additional gear and first disk, and also between first and second disks of friction sleeve. Compression spring, installed in the case, interacts with second friction disk through the washer made of material with low friction coefficient and is mounted on the screw of screw mechanism, having common axis with the shaft. The screw is installed in the case with possible axial movement along the shaft axis and limited angular movement relatively to the shaft.
Actuator for vehicle body stabilisation system / 2523540
Device of vehicle body stabilisation system is made as linear electromechanical transducer (LEMT) and has magnetised integral cylindrical core, magnetised hollow cylinder, at least two electromagnetic coils and linear servo. The cylindrical core is made of constant magnet, connected with unsprung masses, located inside coils to interact with their internal field and has axial magnetisation. The hollow cylinder is made of constant magnet, connected with unsprung masses, located outside coils to interact with their external field and has axial magnetisation. The electromagnetic coils are located in series along actuator operation axis, connected with sprung masses and winded so that when current flows over them their magnetic poles are oriented axially - along device operation axis. Linear servo is performed with stepped motor resistant to axial loads, located in series with LEMT and intended for processing system low frequency signals and changing vehicle clearance.
Hydraulic damper / 2247269
Hydraulic damper comprises piston provided with axial passages and working cylinder filled with fluid. The piston is connected with the rod. The inner side of the cylinder and outer side of the cylinder, which is in a contact with the piston side, are provided with thread. The piston is mounted on the rod for permitting rotation around the rod. The piston is provided with radial passages whose longitudinal axes intersect with the longitudinal axes of the axial passages of the piston. The diameters of the axial passages decrease from the longitudinal axis of symmetry of the piston to its periphery. The radial passages receive movable spring-loaded slide valves whose diameters exceed these of axial passages of the piston.
Viscous-friction type shock absorber / 2249734
Viscous friction damper includes housing, partition with openings and rod passing through central opening of partition. Two similar corrugations of elastic material are fastened in housing; central partition is clamped between said corrugations. The last define two different-volume and variable-dimension cavities filled with shock absorbing liquid. Rod has two sites for fluid-tight securing of it to said two corrugations. Openings of partition through which shock-absorbing liquid is pressed are covered by means of flexible membrane providing possibility for controlling their number and size.
Shock-absorbing apparatus / 2249735
Shock absorbing apparatus includes housing, rod, piston, secured to rod end and cylinder arranged between housing and piston. There are flow-through valves in cylinder; said valves are in the form of two openings mutually communicated by means of trough. Piston may move along the whole height of cylinder for operation of several flow-through valves. Change of summed diameters of said openings provides variable rigidity factor of shock-absorbing apparatus.
Hydraulic vibration insulation support / 2253059
Hydraulic vibration insulation support comprises flexible pressure-tight chamber which is filled with damping fluid and separated into spaces interconnected through throttling ports. The pressure-tight chamber is made of a central disk-shaped space provided with an area for setting an object to be insulated and peripheral ring spaces oriented concentrically with respect to the central space and connected with it through the radial passage from one side of the central space. The throttling ports are made in pair from the opposite sides of the radial passage at the site of its intersection with each ring space. The throttling ports are provided with valves which allow the fluid to flow in opposite directions from the side of the radial passage for each of the pair of the throttling ports.
Single-tube shock absorber / 2253574
Proposed single-tube shock absorber contains housing with hydraulic space filled with working fluid, guide bushing, rod and piston stationary installed on rod and dividing hydraulic space into upper and lower parts. Hollow compensator made of elastic material is installed in lower part of hydraulic space. Constant head of compensator is realized owing to elasticity of compensator, or its constant force action onto working fluid in hydraulic space are preset in process of assembling of shock absorber. Volume of compensator is reduced by value equal to increase of volume of part of rod located in hydraulic space of shock absorber.
Single-tube shock absorber / 2253575
Proposed single-tube shock absorber has housing with hydraulic space filled with working fluid, guide bushing, rod and piston fixed on rod and dividing hydraulic space into upper and power parts. Flexible compensator made of microcellular material is installed in lower part of hydraulic space. Constant head of compensator realized owing to elasticity of compensator or its constant power action onto working fluid in hydraulic space are set in process of assembling of shock absorber. Volume of compensator is reduced by value equal to increase of volume of part of rod in hydraulic space of shock absorber.
Air hydraulic shock absorber / 2261381
The air hydraulic shock absorber consists of a cylinder, rod, plunger, movable and fixed axle boxes, hydraulic seals, gas and hydraulic chambers and a profiled needle. The shock absorber is equipped with an optimizing hydraulic double-stage regulator consisting of an internal bush with holes that is attached to the wall separating two spaces in the hydraulic chamber and linked with the plunger of the air hydraulic shock absorber fitted onto which is an external bush with holes with possibility of movement relative to the internal bush. Both bushes are interconnected by a multistart thread with a helix angle exceeding the friction angle, they are also connected by a flexible component. The profiled needle connected to the rod of the air hydraulic shock absorber enters the hole in the external bush of the optimizing hydraulic hydraulic double-stage regulator.
Hydraulic vibration support / 2261382
The hydraulic vibration support has a body filled with fluid with foundations movable in axial direction, with a cylindrical damping member installed between them spring-loaded from two sides by shaped coil springs. The damping member is furnished with blades fastened on the side surface. Each shaped coil spring is made of tapered and cylindrical parts. The springs positioned on both sides from the damping member are coiled to opposite sides and rigidly fastened to the latter by their cylindrical components with the aid of screw stoppers screwed on the ends of the damping member.
Vibration insulation support / 2263834
Vibration insulation support comprises base and platform with stops and rubber members interposed between the base and platform with a spacing equal to that between the stops for permitting co-operation with their stops. Each rubber member is made of interconnected rubber segments to define a cylinder. The inner spaces of the rubber segments is filled with fluid.
Air-operated spring for railway vehicle / 2266443
Air-operated spring comprises cylinder that receives piston with rod. The cylinder is made of air-operated cylinder whose above-piston air space is in communication with the additional tank through the throttle passage which receives self-adjustable throttle member for permitting movements inside it. The self-adjustable throttle member is made of two trancated cones whose greater bases face each other. The spring is also provided with oil tank whose top air space is in communication with the additional tank through the tube with the reducing valve. The bottom oil space of the oil tank is connected with the connecting pipe on the bottom outer end of the rod through the flexible hose. The additional tank is provided with the electric heating member mounted inside the space and heat insulated from the ambient.
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(57) Abstract: The invention relates to mechanical engineering, in particular to the structures hydraulic telescopic shock absorbers designed for damping oscillations of a suspension of vehicles. Essence: hydraulic telescopic shock absorber includes a tank 1, which is a cylinder 2 with the guide rail 3 rod 4 connected to the piston 5 and the piston rod and the piston are the channels 10 and 12. The piston 5 on the rod mounted movably, and the valve end 7 on the upper end of the guide rod. 2 Il. The invention relates to mechanical engineering, in particular to the structures hydraulic telescopic shock absorbers designed for damping oscillations of a suspension of vehicles. Known hydraulic telescopic shock absorbers suspension of the vehicle containing the reservoir, which is a cylinder with guide rod, a rod fixedly connected with the piston having channels and located on the bypass valve stroke compression ratio and valve end of turn return. However, the known shock absorber has a complex structure of the piston with the valve system. Fixed fastening of the piston on the rod has a TeV simplifying the design of the piston is fixed in the absorber, in which the rod has a TV and a valve, but its disadvantage is also rigid fastening of the piston on the rod. The aim of the invention is to simplify the design of the absorber and increase reliability regardless of the degree of precision manufacturing. This goal is achieved by the fact that the connection of the piston with the rod is made movable, the valve end is located on the upper end of the guide rod. The presence of assurance gaps in the movable connecting rod-piston prevents jamming with insufficient precision. In Fig. 1 shows the proposed absorber with the relative position of the elements during the compression; Fig.2 the same, during the recoil. The shock absorber includes a tank 1, which is a cylinder 2 with the guide rail 3 rod 4 connected to the piston 5 slidably through the end of the nut 6. On the upper end of the guide 3 is made saddle and valve end 7 with the spring 8, clamped the seal system 9 of the rod 4. In stock there are 4 channels 10 and the orifice 11 for flowing liquid. The piston 5 has a channel 12 for flowing liquid and provided with a piston ring 13 to compensate for the gaps and create friction between the of ervoir 1. The shock absorber works as follows. When the movement of the rod 4 upward during the recoil piston 5 is stationary due to friction of the piston ring 13 in the cylinder 2 until it stops at the end of the nut 6. When this overlap channels 10 of the shaft 4 and opens the orifice 11. Then the piston 5 together with the rod 4 also starts to move upwards. At low speeds the movement of fluid from newportnews cavity absorber is extruded through the orifice 11. With a high speed of movement of the rod 4 with the piston 5, the pressure above the piston increases, and fluid under pressure opens the valve 7 and flows into the cavity of the reservoir 1, creating resistance to movement of the piston rod with the piston, and the lack of fluid beneath the piston 5 is filled from the reservoir 1 through the valve 15. During the compression rod 4 moves downwards by the hollow in the piston 5, the channels 10 of the shaft 4 are connected to channels 12 of the piston 5 and upon further movement of the piston 5 with the rod 4 downward fluid across the United channels 10 and 12 without resistance flows from podpornoy cavity in nadporshnevaya, and the excess fluid is displaced into the reservoir 1 through the valve 15. Technical and economic effect of the invention is to reduce the complexity alum SUSPENSION of the VEHICLE, comprising a housing with a reservoir, which is a cylinder with guide rod connected with the piston, and the piston rod and the piston are made with channels, characterized in that the piston is connected to a rod on the undercarriage landing can move along the axis of the rod by the amount of movement of the throttle openings between the hollow rod and a nut on the end of the rod.
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