Clamping Device
20170259406 · 2017-09-14
Inventors
Cpc classification
B25B5/064
PERFORMING OPERATIONS; TRANSPORTING
B25B5/087
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A clamping device has, comprising a drive (1) with a linearly movable actuator (2). A position monitoring device (3) detects the position of the actuator (2). A pivot member (4) is operatively connected to the actuator (2) and is rotatably mounted about an axis of rotation (8). The axis of rotation (8) is stationary with respect to the drive (1). The position monitoring device (3), for detecting the position of the actuator (2), is designed to cooperate with the pivot member (4).
Claims
1. A clamping device comprising: a drive having a linearly movable actuator; a position monitoring device for detecting the position of the actuator; a pivot member is operatively connected to the actuator; the pivot member is rotatably mounted about a rotation axis that is stationary with respect to the drive; and the position monitoring device, for detecting the position of the actuator, is designed to cooperate with the pivot member.
2. The clamping device according to claim 1, wherein the actuator and the pivot member are operatively connected with one another, via a cam guide.
3. The clamping device according to claim 2, wherein the cam guide includes at least two guide sections that are angled with respect to one another.
4. The clamping device according to claim 3, wherein the guide sections are constructed to pass continuously into one another.
5. The clamping device according to claim 3, wherein a particular displacement of the actuator in cooperation with the first guide section generates a smaller rotary movement of the pivot member than a comparable displacement of the actuator in cooperation with the second guide section which generate a greater rotary movement of the pivot member.
6. The clamping device according to claim 3, wherein cooperation of the actuator with the first guide section of the cam guide is associated with a region of an open position of a clamping element and a cooperation of the actuator with the second guide section of the cam guide is associated with a region of a closed position of the clamping element.
7. The clamping device according to claim 1, wherein the pivot member has a position indicator cooperating with the position monitoring device.
8. The clamping device according to claim 7, wherein the position monitoring device has a detection region with two sensor elements that detect different positions of the position indicator.
9. The clamping device according to claim 8, wherein the detection region has four sub-regions, in two sub-regions a respective sensor element is arranged, and between the two sensor elements a further sub-region is arranged.
10. The clamping device according to claim 1, wherein the position monitoring device is connected to an electronic evaluation system, the electronic evaluation system storing a chronological sequence of positions of the pivot member.
Description
DRAWINGS
[0013] The drawings described herein are for illustrative purposes only of selected embodiments and not all possible implementations, and are not intended to limit the scope of the present disclosure.
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DETAILED DESCRIPTION
[0028] Hereafter, embodiments of the present disclosure will be specifically described with reference to the attached drawings.
[0029] The clamping device illustrated in the figures includes a drive 1 with a linearly movable actuator 2 and an operating position monitoring device 3. Preferably, the monitoring device 3 is electrically operated (in particular inductively, but also it may be pneumatically or electromechanically operated). The operating position monitoring device 3 detects the position of the actuator 2. A pivot member 4 is operatively connected with the actuator 2 and is rotatably mounted with respect to the drive 1. As already mentioned, the drive 1 includes a piston, movably mounted in a cylinder, and the actuator 2, constructed as a piston rod fastened to the piston. In addition, the pivot member 4 is rotatably mounted about a rotation axis 8. The rotation axis 8 is stationary with respect to the drive 1. This means that the position of the rotation axis 8 with respect to the drive 1 is the same at every instant in time.
[0030] With regard to features of the mechanism of the embodiment according to
[0031] With regard to features of the mechanism of the embodiment according to
[0032] It is now essential for all embodiments of the clamping device, according to the disclosure, that the position monitoring device 3, which detects the position of the actuator 2, is designed to cooperate with the pivot member 4.
[0033] Preferably, the actuator 2 and the pivot member 4 are operatively connected with one another via a cam guide 5. This cam guide 5 is formed from a guideway and from a guide element 5.3. The guide element 5.3 engages the guideway in a form-fitting manner. Preferably, the guideway is arranged on the pivot member 4 and the guide element 5.3 is arranged on the actuator 2. In addition, the cam guide 5 or respectively its guideway, as can be seen from the figures, has at least two guide sections 5.1, 5.2. The two guide sections 5.1, 5.2 are angled with respect to one another. The two guide sections 5.1, 5.2 are preferably constructed so as to pass continuously into one another.
[0034] The two guide sections 5.1, 5.2 provide a particular displacement of the actuator 2. When the guide element 5.3, coupled with the actuator 2, cooperates with the first guide section 5.1, a larger movement of the actuator 2 equates to a smaller movement of the pivot member 4. This is compared to a small displacement of the actuator 2, when cooperating with the second guide section 5.2, where a greater rotary movement of the pivot member 4 occurs.
[0035] The term “comparable” expresses that ultimately, with an identical adjustment travel length of the actuator 2 but at a different actuation position, a rotary movement of the pivot member 4 occurs with different extent results.
[0036] Furthermore, the cooperation of the actuator 2 with the first guide section 5.1 of the cam guide 5 is associated with an opened range or opened position of the clamping element 6. Cooperation of the actuator 2 with the second guide section 5.2 of the cam guide 5 is associated with a closed range or a closed position of the clamping element 6.
[0037] As can be seen, only an indirect connection exists between the pivot member 4 and the clamping element 6. The movement translation between the pivot member 4 and the clamping element 6 has quite deliberately no constant proportionality.
[0038] Preferably, the pivot member 4, which could also be designated as a pointer or the like, has a position indicator 7 that cooperates with the position monitoring device 3. The position indicator 7 is optionally constructed as a separate component on the pivot member 4 or as an integral component of the pivot member 4. In addition, the position monitoring device 3 has a detection region with two sensor elements 3.1, 3.2. Preferably, the sensor elements 3.1, 3.2 are constructed so as to be adjustable within the detection region to detect different positions of the position indicator 7 (see also
[0039] Furthermore, the position monitoring device 3 is connected with an electronic evaluating system that stores a chronological sequence of positions of the pivot member 4. By means of this, as will also be explained more precisely, it is possible to draw conclusions concerning the actual position of the actuator 2 and therefore ultimately concerning the clamping position.
[0040] With regard to the embodiment according to
[0041] In accordance with
[0042] Starting from the open position in
[0043] If the actuator member 2 is moved still further toward the left, by mean of the drive 1, this leads (see
[0044]
[0045] Now comparing
[0046] In
[0047] It can be seen from the aforementioned explanations that it is possible with the aforementioned electronic evaluation system, to determine very precisely the respective position of the actuator 2 or, respectively, of the clamping element. Thus, even so precisely, the electronic evaluation system can differentiate, without difficulty, between a single sheet (see the position of the position indicator 7 in
[0048] With regard to the embodiment according to
[0049] Thus, in accordance with
[0050] The clamping device, according to this embodiment, functions in an identical manner. The actuator 2, moved by the drive (not illustrated extra), brings about a pivoting of the pivot member 4 about axis 8. Also in this case, the cam guide 5, with a first and a second guide section 5.1 and 5.2, brings about rotation of the pivot member 4 at different extents in different movement sections of the actuator 2. Also, here a particularly sensitive detection of the position of the clamping element or, respectively, clamping hook is possible in the particularly relevant region shortly before the closed position.
[0051] The present disclosure has been described with reference to the preferred embodiments. Obviously, modifications and alternations will occur to those of ordinary skill in the art upon reading and understanding the preceding detailed description. It is intended that the present disclosure be construed to include all such alternations and modifications insofar as they come within the scope of the appended claims or their equivalents.