B30B1/06

Eccentric second connecting rod subassembly

A connection rod coupling assembly includes a settable shape mounting second component having a lateral, primary axis and a bearing assembly including a bearing assembly body. The bearing assembly body includes a substantially cylindrical outer surface and a center axis. The bearing assembly body is coupled to the settable shape mounting second component in a non-aligned configuration. That is, the bearing assembly body center axis is offset from the settable shape mounting second component primary axis. Thus, the position of the bearing assembly body center axis is adjustable by repositioning the settable shape mounting second component relative to a settable shape mounting first component on a swing lever. The adjustment of the bearing assembly body, in turn, adjusts the range of the ram assembly and the ram assembly body.

PRESS SYSTEM

A press system capable of achieving improvement in production rate is provided. A controller has a slide driven upward and downward based on a prescribed press motion. A position of the slide where a workpiece can be transported without interfering with an upper die is defined as a feed-allowable height. A stand-by height is higher than the feed-allowable height and located at a highest position in the press motion. The controller also has the work transported while the slide is moving between the feed-allowable height and the stand-by height.

DYNAMIC BALANCE DEVICE FOR PRESS MACHINE
20200031081 · 2020-01-30 · ·

A dynamic balance device for a press machine includes a plurality of cam portions which transmit a vertical motion of a slide to a balance weight to move the balance weight in a reverse direction of the vertical motion of the slide. The cam portions are each movable in a direction substantially orthogonal to a moving direction of the slide, and each include a first inclined surface and a second inclined surface. The first inclined surface has an inclination angle corresponding to an inclination angle of an inclined surface formed on a member which is provided integrally with the slide and vertically moves with the slide. The second inclined surface has an inclination angle corresponding to an inclination angle of an inclined surface formed on the balance weight.

AGRICULTURAL BALER WITH MECHANISMS FOR PRODUCING CROP BALES
20190387683 · 2019-12-26 ·

Agricultural harvesting machines and methods of operation thereof are disclosed herein. A harvesting machine includes a main frame, a drive mechanism, a plunger, and a linkage system. The drive mechanism is coupled to the main frame and has at least one crank arm that is rotatable about a crank arm axis. The plunger is movable along a longitudinal axis in a compression chamber between a de-stroked position and a stroked position that is located rearward of the de-stroked position along the longitudinal axis. The linkage system couples the plunger to the main frame.

Pressing method and method of manufacturing mechanical apparatus
11931983 · 2024-03-19 · ·

A method of performing pressing on a workpiece using a press machine. The pressing method includes: performing pressing on the workpiece between a lower die and an upper die by causing the upper die to approach the lower die by using the hydraulic cylinder in a state in which the workpiece is disposed between the lower die and the upper die, and performing the pressing on the workpiece between the lower die and the upper die, in a state in which a shape of each of the frame, the lower die and the upper die has a rotationally symmetric shape about the reference axis and in which the workpiece center axis coincides with the reference axis.

Pressing method and method of manufacturing mechanical apparatus
11931983 · 2024-03-19 · ·

A method of performing pressing on a workpiece using a press machine. The pressing method includes: performing pressing on the workpiece between a lower die and an upper die by causing the upper die to approach the lower die by using the hydraulic cylinder in a state in which the workpiece is disposed between the lower die and the upper die, and performing the pressing on the workpiece between the lower die and the upper die, in a state in which a shape of each of the frame, the lower die and the upper die has a rotationally symmetric shape about the reference axis and in which the workpiece center axis coincides with the reference axis.

Unitary body swing lever

A swing lever assembly includes a unitary body. By providing a unitary body for the swing lever assembly the number of elements is substantially reduced which solves the problems stated above. In an exemplary embodiment, the swing lever assembly includes a limited number of components. Further, the swing lever assembly includes a limited number of installation components.

ACTUATOR WITH VARIABLE SPEED SERVO MOTOR FOR REDRAW ASSEMBLY
20190168278 · 2019-06-06 · ·

An actuator assembly for a redraw sleeve that operates independently of the ram drive mechanism is provided. The actuator assembly utilizes a servomotor. The servomotor is structured to provide its output shaft with a variable rotation speed so as to accommodate the need for the redraw sleeve to be in selected locations at specific times.

ACTUATOR WITH VARIABLE SPEED SERVO MOTOR FOR REDRAW ASSEMBLY
20190168278 · 2019-06-06 · ·

An actuator assembly for a redraw sleeve that operates independently of the ram drive mechanism is provided. The actuator assembly utilizes a servomotor. The servomotor is structured to provide its output shaft with a variable rotation speed so as to accommodate the need for the redraw sleeve to be in selected locations at specific times.

OUTBOARD HYDROSTATIC BEARING ASSEMBLY FOR CAN BODYMAKER

A hydrostatic/hydrodynamic fluid bearing assembly for a can bodymaker is provided. The hydrostatic/hydrodynamic fluid bearing assembly is separate from the ram body. The outboard guide bearing assembly includes a carriage assembly and a number of elongated journals. The carriage assembly includes a ram coupling, a crank coupling, and body defining a number of journal passages. The ram body is coupled to a ram coupling. The crank coupling is structured to be coupled to a crank arm. Each journal extends through a carriage assembly body journal passage. In this configuration, the ram body may form a can body in a traditional manner, but fluid bearing assembly fluid is not applied to the ram body. Instead, the fluid bearing assembly fluid is applied to the journals.