This patent application makes reference to, claims priority to, and claims benefit from German Patent Application No. 10 2015 114 582.0, filed on Sep. 1, 2015. The above-identified application is hereby incorporated by reference herein in its entirety.
Some embodiments of the present disclosure relate to an interior grasper that grasps the interior contour of a tool, a work piece, or the like. Some embodiments of the present disclosure provide that interior graspers are used in handling technology which is used with and/or is part of, for example, positioning systems and so-called pick-and-place applications. Some embodiments of the present disclosure provide that interior graspers can be used with robots.
Limitations and disadvantages of conventional and traditional approaches will become apparent to one of skill in the art, through comparison of such systems with the present disclosure as set forth in the remainder of the present application with reference to the drawings.
Systems, devices, and methods that provide an interior grasper are provided, substantially as illustrated by and/or described in connection with at least one of the figures, as set forth more completely in the claims.
Internal graspers can be costly since they are formed from a plurality of individual components. The production of large quantities of such graspers can also be disadvantageously subject to long processing periods.
Some embodiments of the present disclosure provide a simplified interior grasper.
Some embodiments of the present disclosure provide an interior grasper that includes an actuator which can be adjusted at least between a clamped position and a released position, where an axially adjustable clamping cone is allocated to the actuator. This clamping cone engages a clamping element, which can interact with a tool and/or a work piece and which is formed in one piece with a holding plate. Therefore, the actuator serves to adjust the interior grasper, which can be realized particularly as a cylinder operated as a pressure mechanism. Because the holding plate is formed in one piece with the clamping element, it can be produced in a single production step in order to subsequently be connected to the actuator.
It has proven beneficial in some embodiments of the present disclosure that the holding plate is produced with the clamping element using a generative production (e.g., additive manufacturing) process. In some embodiments, a powder-bed method is used, such as selective laser melting (SLM) or selective laser sintering (SLS). Furthermore, the holding plate can also be produced with the clamping element in a free-room method, such as fused deposition modeling (molten layering) or laminated object manufacturing (LOM), or also produced by cold gas injection or by electron beam melting. Furthermore, liquid material methods may be used for the production of the holding plate with the clamping element, e.g., by stereo-lithography (SLA), digital light processing (DLP), or liquid composite molding (LCM).
In some embodiments of the present disclosure, it has proven advantageous to couple the actuator to the holding plate such that the clamping element is radially spread in the clamping configuration by the clamping cone. Thus, a clamping cone is provided to radially expand the clamping element interacting with the tool or the work piece to clamp an interior contour. Due to the generative production (e.g., additive manufacturing) method, it is possible to produce any complex contour and to precisely adapt the clamping element to the work piece or tool to be grasped.
Some embodiments of the present disclosure provide that the clamping element is formed in one piece from a coupling section connected to the holding plate; a conical section formed with an interior cone; and an end section tapering at the exterior circumference. The coupling section connects the holding plate to the clamping element. The conical section can be the section of the clamping element that interacts with the clamping cone of the actuator. A tapering end section facilitates the insertion of the clamping element into an interior contour of a tool and/or work piece to be grasped. It is at the tapering end section that an automatic alignment of the tool and/or work piece can occur.
Furthermore, it has proven advantageous for some embodiments of the clamping element according to the present disclosure to be provided at its exterior circumference with a groove, in which a radially acting return element is inserted or arranged. In the clamped position, the clamping cone is positioned such that it radially expands the clamping element. When the actuator is adjusted back into the released position, the clamping element is converted into the released configuration, which is additionally assisted by the radially acting return element. Thus, a return force is provided based on the material or structure of the clamping element and is further supported or amplified by the additional return force of the radially acting return element, thereby achieving an even more defined adjustment of the clamping element.
Some embodiments of the present disclosure provide that the return element is formed as an O-ring or an elastic string.
To increase the elasticity of the clamping element, some embodiments of the clamping element according to the present disclosure provide one or more radially oriented slots.
Because some embodiments of the present disclosure provide that the clamping element is integrally formed with the holding plate in a generative production (e.g., additive manufacturing) method, the holding plate can have a complex structure. For example, the holding plate can benefit from having at least one guide section. The guide section facilitates the positioning of the holding plate and thus the interior grasper, for example, at a robot arm or the like.
To allow for a secure connection between the holding plate and the actuator, some embodiments of the holding plate according to the present disclosure include at least one bore hole, into which is inserted into a fastener that is configured to connect the holding plate to the actuator.
Some embodiments of the present disclosure provide a holding plate 4 that is formed in one piece with a clamping element 5. The holding plate 4 provides a passage 17, through which the clamping cone 3 is guided. The clamping cone 3 abuts at an interior wall of the clamping element 5, particularly at an interior cone 19, and is designed to expand the clamping element 5. The holding plate 4 is coupled to the actuator 2 such that the clamping element 5 is expanded or spread radially in the clamped configuration by the clamping cone 3. For this purpose, the conical exterior contour of the clamping cone 3 is made to interact with an interior contour of the clamping element 5, also shown as conical in shape in an exemplary embodiment. Referring to
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Some embodiments of the present disclosure provide that the holding plate 4 provides guide sections 12 that allow the holding plate 4 to be easily fastened at the desired device (e.g., to a robot arm). Further, in order to connect the holding plate 4 to the actuator 2, the holding plate 4 can be configured or equipped with bore holes 13, in which a fastener 14 can be inserted.
In sum, some embodiments of the interior grasper 1 can be characterized by its compact design and the fact that its production is subject only to short processing periods because the holding plate 4 and the clamping element 5 are produced in one piece in a single processing step.
While the present disclosure has been described with reference to certain embodiments, it will be understood by those skilled in the art that various changes may be made and equivalents may be substituted without departing from the scope of the present disclosure. In addition, many modifications may be made to adapt a particular situation or material to the teachings of the present disclosure without departing from its scope. Therefore, it is intended that the present disclosure not be limited to the particular embodiment disclosed, but that the present disclosure will include all embodiments falling within the scope of the appended claims.
Number | Date | Country | Kind |
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10 2015 114 582.0 | Sep 2015 | DE | national |