F16N1/00

LUBRICATABLE CAB MOUNTING ASSEMBLY

A cab mounting assembly connecting a cab and a frame is configured so that grease is supplied to contact portions to prevent wear and noise. The cab mounting assembly hinge-connects a frame of a vehicle and a cab in which an occupant sits. A collar is disposed outside a fixing bolt hinge-connecting the frame and the cab. A hinge cushion is fitted around the collar to buffer vibration transmitted to the cab. At least one surface of an internal surface of the hinge cushion and an external surface of the collar is provided with a groove through which oil supplied into the hinge cushion flows to an end portion of the hinge cushion.

LUBRICATABLE CAB MOUNTING ASSEMBLY

A cab mounting assembly connecting a cab and a frame is configured so that grease is supplied to contact portions to prevent wear and noise. The cab mounting assembly hinge-connects a frame of a vehicle and a cab in which an occupant sits. A collar is disposed outside a fixing bolt hinge-connecting the frame and the cab. A hinge cushion is fitted around the collar to buffer vibration transmitted to the cab. At least one surface of an internal surface of the hinge cushion and an external surface of the collar is provided with a groove through which oil supplied into the hinge cushion flows to an end portion of the hinge cushion.

WHEEL FOR HOROLOGY MOVEMENT
20190302696 · 2019-10-03 · ·

Horology component intended to cooperate via a lubricated contact with at least one second horology component within a horology movement, said horology component comprising at least two distinct contact surfaces intended to cooperate with the same second horology component, characterized in that said two contact surfaces are offset with respect to one another, such that a first contact surface is adapted to displace a lubricant present on the second horology component towards a surface with which the second contact surface will subsequently come into contact.

WHEEL FOR HOROLOGY MOVEMENT
20190302696 · 2019-10-03 · ·

Horology component intended to cooperate via a lubricated contact with at least one second horology component within a horology movement, said horology component comprising at least two distinct contact surfaces intended to cooperate with the same second horology component, characterized in that said two contact surfaces are offset with respect to one another, such that a first contact surface is adapted to displace a lubricant present on the second horology component towards a surface with which the second contact surface will subsequently come into contact.

OIL SUPPLY STRUCTURE OF TRANSMISSION
20190284974 · 2019-09-19 · ·

An oil supply structure which supplies lubricating oil to a portion to be lubricated in a casing, the oil supply structure comprises an opening portion provided on a wall portion of the casing which corresponds to a shaft end portion of a rotary shaft supported by a bearing in the casing, and an oil passage configured to provide communication from the opening portion to at least the bearing.

OIL SUPPLY STRUCTURE OF TRANSMISSION
20190284974 · 2019-09-19 · ·

An oil supply structure which supplies lubricating oil to a portion to be lubricated in a casing, the oil supply structure comprises an opening portion provided on a wall portion of the casing which corresponds to a shaft end portion of a rotary shaft supported by a bearing in the casing, and an oil passage configured to provide communication from the opening portion to at least the bearing.

COUPLING MEMBER, MACHINE TOOL ADD-ON DEVICE, MACHINE TOOL, AND MEDIUM FEEDING METHOD
20190275623 · 2019-09-12 · ·

A coupling element for a machine tool attachment, having a coupling section for detachable mounting on a tool interface of a machine tool and having a connection for attaching a container for media that has an outlet and holds a medium. In addition, a machine tool attachment, a machine tool, and a method for delivering a medium to a part of a machine tool is provided.

PAD BEARING AND ROTARY MACHINE

A pad bearing includes a pad disposed on a radially outer side of a rotary shaft and supporting the rotary shaft so as to be rotatable around an axis, a block-shaped nozzle member disposed on an upstream side with respect to the pad on the radially outer side of the rotary shaft and including a discharge hole for discharging a lubricant toward an outer peripheral surface of the rotary shaft, and a compressed flow forming unit disposed in at least one of the pad and the nozzle member and configured to compress a flow of the lubricant flowing along the outer peripheral surface of the rotary shaft as the rotary shaft rotates.

PAD BEARING AND ROTARY MACHINE

A pad bearing includes a pad disposed on a radially outer side of a rotary shaft and supporting the rotary shaft so as to be rotatable around an axis, a block-shaped nozzle member disposed on an upstream side with respect to the pad on the radially outer side of the rotary shaft and including a discharge hole for discharging a lubricant toward an outer peripheral surface of the rotary shaft, and a compressed flow forming unit disposed in at least one of the pad and the nozzle member and configured to compress a flow of the lubricant flowing along the outer peripheral surface of the rotary shaft as the rotary shaft rotates.

LUBRICATION ATOMIZATION FOR A GAS CYLINDER ARRANGEMENT
20240167624 · 2024-05-23 ·

A manifold system that includes a cylinder assembly formed at least partially or fully of a manifold housing; a fluid reservoir; a gas cylinder assembly that is fluidly connected to the fluid reservoir by a fluid supply conduit fluidly; and wherein atomized non-solid lubricant that flows into a cylinder sleeve of the gas cylinder assembly is used to at least partially or fully lubricate an inner surface of an interior chamber of the cylinder sleeve during the operation of the gas cylinder assembly.