A conceptual design of an innovative test rig for endurance tests of ball screws is presented in this paper. The test rig layout is based on the power recirculating principle and it also allows to overtake the main critical issues of the ball screw endurance tests. Among these there are the high power required to make the test, the lengthy duration of the same and the high loads between the screw and the frame that holds it. The article describes the test rig designed scheme, the kinematic expedients to be adopted in order to obtain the required performance and functionality and the sizing procedure to choose the actuation system
AbstractIn this paper, the development of a methodology for reducing the energy demand and increasin...
The paper presents a design basis adopted for the construction of a test facility for the rig testin...
This paper describes the activities related to the design, manufacturing and commissioning of an inn...
A conceptual design of an innovative test rig for endurance tests of ball screws is presented in thi...
Ball screw mechanisms are commonly designed and adopted to work for a high number of cycles, so that...
Ball screw mechanisms are commonly designed and adopted to work for a high number of cycles, so that...
Ball screw mechanisms are commonly designed and adopted to work for a high number of cycles, so that...
Ball screw mechanisms are commonly designed and adopted to work for a high number of cycles, so that...
Ball screw mechanisms are commonly designed and adopted to work for a high number of cycles, so that...
Ball screw mechanisms are commonly designed and adopted to work for a high number of cycles, so that...
Ball screw mechanisms allow to transform a rotational movement into a linear one and vice versa. The...
Ball screw mechanisms allow to transform a rotational movement into a linear one and vice versa. The...
Ball screw mechanisms allow to transform a rotational movement into a linear one and vice versa. The...
Ball screw mechanisms allow to transform a rotational movement into a linear one and vice versa. The...
The project goal was to reassemble and create a test rig for an existing hydraulic load-sharing unit...
AbstractIn this paper, the development of a methodology for reducing the energy demand and increasin...
The paper presents a design basis adopted for the construction of a test facility for the rig testin...
This paper describes the activities related to the design, manufacturing and commissioning of an inn...
A conceptual design of an innovative test rig for endurance tests of ball screws is presented in thi...
Ball screw mechanisms are commonly designed and adopted to work for a high number of cycles, so that...
Ball screw mechanisms are commonly designed and adopted to work for a high number of cycles, so that...
Ball screw mechanisms are commonly designed and adopted to work for a high number of cycles, so that...
Ball screw mechanisms are commonly designed and adopted to work for a high number of cycles, so that...
Ball screw mechanisms are commonly designed and adopted to work for a high number of cycles, so that...
Ball screw mechanisms are commonly designed and adopted to work for a high number of cycles, so that...
Ball screw mechanisms allow to transform a rotational movement into a linear one and vice versa. The...
Ball screw mechanisms allow to transform a rotational movement into a linear one and vice versa. The...
Ball screw mechanisms allow to transform a rotational movement into a linear one and vice versa. The...
Ball screw mechanisms allow to transform a rotational movement into a linear one and vice versa. The...
The project goal was to reassemble and create a test rig for an existing hydraulic load-sharing unit...
AbstractIn this paper, the development of a methodology for reducing the energy demand and increasin...
The paper presents a design basis adopted for the construction of a test facility for the rig testin...
This paper describes the activities related to the design, manufacturing and commissioning of an inn...