The present invention relates to a vertically movable slide unit for an operating machine, of the type including a support structure, a slide slidably mounted along a vertical direction on the support structure, drive means of the vertical movement of the slide, carried by the support structure, and a safety device for preventing an accidental fall of the slide, operatively interposed between the slide and the support structure.
Vertical slide devices of the above type are used in a great variety of machines in the industry. A specific application of the present invention has been developed, for example by the Applicant, for an automatic assembly machine of the type which has formed the subject of the preceding European patent applications EP 06 425499 and EP 06 425500 of the Applicant (still secret at the filing date of this application). In machines of this type, the vertical slide is driven for example by an electric motor, through a screw and lead screw transmission, or still by a fluid actuator. In one case or the other, a safety main brake, directly associated to the motor or actuator, is foreseen for preventing an undesired movement of the slide, for example when operators have to carry out maintenance works in the operating area of the machine, below the movable structure carried by the vertical slide. In addition to such main brake, also an auxiliary anti-fall blocking device is foreseen, suitable for preventing any accidental falls of the structure carried by the slide.
The object of the present invention is to carry out a device of this type which has an extremely simple, reliable and functional structure, which ensures a high safety degree against the accidental falls and which further has a reduced encumbrance and a simple maintenance.
In view of the obtainment of this aim, the object of the present invention is a device having all the features shown at the beginning of the present description and is further characterized in that the aforesaid anti-fall device is description and is further characterized in that the aforesaid anti-fall device is integrated within the slide.
In a preferred embodiment, the slide presents a body having a general plate-like conformation, with a front vertical face and a back vertical face. The support structure of the slide defines a guide vertical plane of the slide to which the back face of the slide is faced. According to the invention, the aforesaid anti-fall device is placed amongst opposite surfaces of the above guide plane carried by the support structure and the back vertical face of the slide.
Preferably, the anti-fall device includes a vertical rack and an engagement element of the rack, respectively carried by the fixed guide plane of the slide and the back face of the slide or, vice versa, by the back face of the slide and the guide plane of the slide.
In case of the aforesaid preferred embodiment, the guide plane of the slide defined by the support structure has a width corresponding with the width of the slide and the aforesaid anti-fall device is interposed amongst opposite side portions of the fixed guide plane and the back face of the slide. In such embodiment, the rack is carried by the guide plane and the engagement element of the rack is carried by the slide.
Always in case of the aforesaid preferred embodiment, the aforesaid slide guide plane includes a main portion, carrying guide means engaged by the slide, and a vertical side portion, protruding with respect to the main portion of the guide plane, on which said rack is arranged. The back face of the slide includes a main portion, carrying engagement means of the aforesaid guide means and a side vertical portion, protruding with respect to the main portion of the back face of the slide, on which the aforesaid engagement means is foreseen.
According to another feature, the aforesaid opposite side portions of the back face of the slide and the guide plane carried by the support structure are substantially situated in a same plane parallel to the guide plane of the slide and substantially passing through an action axis of said drive means of the slide movement.
Thanks to the above features, the device according to the invention presents evident advantages from the structure simplicity, operation reliability, reduced encumbrance and maintenance easiness points of view.
Still in case of the preferred embodiment of the invention, the engagement element of the rack is an element slidably mounted between an advanced engagement position of the rack and a down retracted position. Springy means, aiming to push such element towards its advanced position and actuator means for maintaining the engagement element within its retracted position against the action of the springy means are foreseen. During the normal functioning of the machine, actuator means are energized for maintaining the engagement element in the retracted condition, so as to exclude the functioning possibility of the anti-fall device. A sensor device is associated with the slide for detecting when the engagement element is in its retracted position and for signaling such condition to electronic control means, which allow the normal functioning of the machine only when the retracted position of the engagement element of the rack is confirmed.
In case of breakdown or need to carry out maintenance works in the operating area of the machine, actuators means are automatically deactivated, whereby the aforesaid springy means push the above mentioned engagement element in its advanced condition in engagement within the space between two adjacent tooth of the rack. In such condition, the slide is thus prevented from moving downwards with respect to the rack, whereby the maintenance works can be carried out with the required safety.
As it results apparent, all the anti-fall device is integrated within the slide structure, and does not present parts protruding outside the encumbrance of the slide, which allows the obtainment of a machine structure with a reduced encumbrance.
Further features and advantages of the invention will result apparent from the following description with reference to the enclosed drawings, given by mere way of not limiting example, in which:
In
As it is clearly visible in
The plate-like body of the slide 7 shows two protruding side vertical portions with respect to the plane of the back face 7b, so as to define two back side surfaces (only one of which is visible in
As it is visible in the drawings, along a side portion of the support structure 6 a vertical rack 15, having the profile visible in
The annular cavity 19 is supplied with pressurized air through a fitting 21 for maintaining the engagement element 16 in a retracted condition, not engaged by the rack 15 (see
The body of the slide 7 has a series of holes for the engagement of fixing screws of a structure intended for being carried by the slide and being vertically movable with the same.
The functioning of the machine above described is the following.
During the normal functioning of the machine, the engagement element 16 is in its retracted position, thanks to the activation of the compressed air feeding to the chamber 19 associated therewith. Such condition is detected by the sensor 25, which provides for sending a corresponding signal to the electronic control unit of the machine, so as to allow the normal functioning of the machines. In the case of any breakdown, the feeding of compressed air to the chamber 19 is automatically interrupted. Likewise, such feeding is voluntarily interrupted if one desires to carry out maintenance works in the operating zone of the machine. The deactivation of the compressed air feeding to the annular chamber 19 causes the displacement of the engagement element 16 in its engaged position on the rack 15, due to the spring 18. In such a condition, therefore, the device ensures that the slide 7 cannot displace downwards, with respect to the support structure, for a stroke higher than the pitch of the teeth of the rack 15. As it can be seen, such result is obtained without modifying the encumbrance of the body of the slide 7 since the anti-fall device is integrated within the slide and is obtained within the opposite side portions of the back face of the slide and the guide plane of the slide defined by the support structure.
Naturally, further without prejudice to the principle of the invention, construction details and embodiments could widely vary with respect to what has been described and shown by mere way of example, without leaving for this reason the ambit of the present invention.
Number | Date | Country | Kind |
---|---|---|---|
07425394.9 | Jun 2007 | EP | regional |