Device And Method For Positioning Connection Elements
20180154488 · 2018-06-07
Inventors
Cpc classification
B23P19/006
PERFORMING OPERATIONS; TRANSPORTING
B21J15/32
PERFORMING OPERATIONS; TRANSPORTING
B23P19/007
PERFORMING OPERATIONS; TRANSPORTING
International classification
B23P19/06
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The invention relates to an apparatus comprising an advancing device and a blocking device (4), having a lever (40) that is adjustable between a blocking position and a releasing position, and to a method for positioning connecting elements, wherein a connecting element (2) is transferable by means of the advancing device (3) from a receiving region (I) into a delivery region (II) for a joining device, wherein the at least one lever (40) prevents any movement of the connecting element (2) from the receiving region (I) into the delivery region (II) in the blocking position and enables same in the releasing position, and wherein, by means of an end stop, any movement of the lever (40) from the blocking position into the releasing position is preventable. The at least one lever (40) is designed as a two-sided lever (40) having a first arm (41) and a second arm (42), wherein a first arm (41) of the at least one lever (40) interacts with the at least one end stop in order to prevent any movement of the at least one lever (40) from the blocking position into the releasing position, and a second arm (42) of the at least one lever (40) acts, in the blocking position, as a retaining jaw for the connecting element (2). The invention also relates to an apparatus for setting connecting elements.
Claims
1. An apparatus for positioning connecting elements, having an advancing device and a blocking device, which has at least one lever that is pivotable between a blocking position and a releasing position, wherein a connecting element is transferable by means of the advancing device from a receiving region into a delivery region for a joining device, wherein the at least one lever is pivotable between a blocking position and a releasing position, and wherein the at least one lever prevents any movement of the connecting element from the receiving region into the delivery region in the blocking position, further wherein at least one end stop that is adjustable relative to the at least one lever is provided, wherein, by means of the at least one end stop, any movement of the at least one lever from the blocking position into the releasing position is preventable, wherein the at least one lever is designed as a two-sided lever having a first arm and a second arm, and wherein a first arm of the at least one lever interacts with the at least one end stop to prevent any movement of the at least one lever from the blocking position into the releasing position, and a second arm of the at least one lever acts, in the blocking position, as a retaining jaw for the connecting element.
2. The apparatus as claimed in claim 1, wherein the blocking device has two two-sided levers that are pivotable in opposite directions, wherein the first arms of the levers interact with the end stop to prevent any movement of the levers from the blocking position into the releasing position, and the second arms of the levers act as retaining jaws for the connecting element.
3. The apparatus as claimed in claim 1, wherein the at least one lever is assigned a force element, in particular a spring element, which forces the lever into the blocking position.
4. The apparatus as claimed in claim 1, wherein the connecting element is displaceable into the delivery region along the second arm of the at least one lever by means of the advancing device.
5. The apparatus as claimed in claim 1, wherein the advancing device (3) comprises a slider (30) that is displaceable linearly relative to the at least one lever (40), wherein a first portion of the slider (30) acts as an end stop.
6. The apparatus as claimed in claim 5, wherein the slider has a second portion that is spaced apart from the first portion in a longitudinal direction, wherein the second portion has a design such as to enable the at least one lever to pivot into the releasing position after an unlocking position has been crossed.
7. The apparatus as claimed in claim 6, wherein the first arm of the lever or levers has a protrusion that projects into the adjustment travel of the slider and interacts with the end stop, wherein, preferably, a wall, facing the protrusion, of the slider has a groove in the second portion.
8. The apparatus as claimed in claim 1, wherein a maximum adjusting movement of the advancing device in the direction of the delivery region is greater during an idle stroke than during a positioning stroke of a connecting element.
9. An apparatus for setting connecting elements, comprising a feed device for feeding connecting elements individually to a receiving region, having a setting die for setting a connecting element positioned in a delivery region, and an advancing device and a blocking device, by means of which a connecting element is transferable from the receiving region into the delivery region.
10. A method for positioning connecting elements, comprising transferring a connecting element (2) by means of an advancing device from a receiving region into a delivery region for a joining device, wherein a movement of the connecting element from the receiving region into the delivery region is prevented by means of at least one lever, arranged in a blocking position, of a blocking device, and wherein the at least one lever of the blocking device is transferred into a releasing position in order for the connecting element to move into the delivery region, characterized in that, when the connecting element is received in the receiving region, any movement of the at least one lever from the blocking position into the releasing position is prevented by means of an end stop, wherein the at least one lever is designed as a two-sided lever having a first arm and a second arm, wherein a first arm of the at least one lever interacts with the end stop when the connecting element is received in the receiving region, such that any movement of the lever from the blocking position into the releasing position is prevented, and wherein the movement of the connecting element from the receiving region into the delivery region is prevented by means of a second arm of the at least one two-sided lever, arranged in the blocking position, of the blocking device.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Further features, details and advantages of the invention can be gathered from the claims and the abstract, the wording of both of which is made part of the contents of the description by reference, from the following description of preferred embodiments of the invention and by way of the drawing. Features that are illustrated or described as part of an exemplary embodiment can also be used in another exemplary embodiment in order to obtain a further embodiment of the invention. In the drawing:
[0018]
[0019]
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
DETAILED DESCRIPTION OF THE EXEMPLARY EMBODIMENTS
[0026]
[0027] The connecting element 2 is in the form of a bolt with a head and a shank.
[0028] The apparatus 1 comprises an advancing device 3 and a blocking device 4. The illustrated apparatus 1 furthermore comprises a bearing plate 10, with the aid of which the apparatus 1 can be mounted on an installation (not illustrated). The bearing plate 10 has a guide slope 100 such that a connecting element 2 fed by a feed device 6 (cf.
[0029] A connecting element 2 is transferable by means of the advancing device 3 from the receiving region into the delivery region II. The illustrated advancing device 3 comprises an adjustable slider 30 which acts on a shank of the connecting element 2 in order to displace the connecting element 2, as illustrated in
[0030] By means of the blocking device 4, any movement of a connecting element 2 from the receiving region into the delivery region II is preventable. To this end, the blocking device 4 has at least one lever 40, wherein any movement of the connecting element from the receiving region I into the delivery region II is prevented by means of the lever 40 arranged in a blocking position, and wherein the lever 40 is transferred into a releasing position in order for the connecting element to move into the delivery region.
[0031] In the exemplary embodiment illustrated, the blocking device 4 comprises two two-sided levers 40 that are pivotable in opposite directions. The levers 40 each have a first arm 41 and a second arm 42 and are pivotable between a blocking position and a releasing position about an axis located between the first and the second arm by means of pins 43. On the first arms 41, the levers 40 each have a protrusion 44, the function of which is described further below. A spring element 45 acts on each of the levers 40, said spring element 45 forcing the levers 40 into the blocking position, wherein only one spring element 45 is illustrated in
[0032] The illustrated levers 40 have a dual function, since, additionally, a face facing the head of the connecting element 2 also serves as a guide face for the connecting elements 2 during the movement from the receiving region I into the delivery region II by means of the slider 30. The shank of the connecting elements is arranged between the levers 40. In other configurations, the connecting element 2 is pushed along a guide rail arranged separately from the levers 40.
[0033] As can be seen in
[0034] The levers 40 are pivotable from the blocking position illustrated in
[0035] According to the invention, by means of an end stop, any movement of the levers 40 from the blocking position into the releasing position is preventable, wherein, in the exemplary embodiment illustrated, a first portion of the slider 30 acts as an end stop.
[0036] In the state illustrated in
[0037] In the exemplary embodiment illustrated, the levers 40 each have a protrusion 44 which projects into the adjustment travel of the slider 30 and interacts with a side wall of the slider 30 in order to secure the levers 40 in the blocking position.
[0038] In order to transfer the connecting element 2 into the delivery region II, the slider 30 is driven such that the slider 30 is moved toward the connecting element 2. The slider 30 is displaced relative to the levers 40. As can be seen in
[0039] As can be seen in
[0040] When the slider 30 is pulled back from the position illustrated in
[0041]
[0042] Attached to the bearing plate 10 are a housing 60 for attaching the feed device 6 and a housing 72 for the setting die 7. The housing 60 for attaching the feed device 6 has a channel section 62 which opens approximately tangentially into the receiving region of the apparatus 1 for positioning the connecting elements 2. The connecting elements 2 are conveyed through the channel section 62 with the aid of compressed air. The connecting elements 2 are positioned in the receiving region in the exemplary embodiment illustrated such that the shank extends substantially vertically and the head is arranged above the shank.
[0043] In the exemplary embodiment illustrated, the setting die 7 is displaceable in a vertical direction counter to the force of a restoring spring 74 by means of a drive (not illustrated). Provided in the axial extension of the setting die 7 is the guide element 70, which guides the movement of the setting die 7. For setting, in particular for pressing in a connecting element, the setting die 7 is movable along the guide element 70 in the direction of a component or assembly. In other configurations, no guide element is provided, wherein the setting die 7 is guided by its housing 72.
[0044] The advancing device 3 comprises, as described, a slider 30, wherein the slider 30 is mechanically coupled to a pneumatic cylinder 34 which forms a drive.
[0045] The slider 30 is driven such that its free end is moved in the direction of the delivery region II (cf.
[0046] By contrast, as soon as the sensor device has sensed that a connecting element 2 has been transferred into the delivery region II, the slider 30 can be pulled back and the setting die 7 can be driven to set the connecting element 2. For delivering the connecting element 2 to the setting die 7, in one configuration, the setting die 7 has clamps at its front end, which retain the connecting element 2 on the setting die 7.
[0047] The orientation, illustrated in
[0048]