SLICING MACHINE
20170157789 ยท 2017-06-08
Assignee
Inventors
Cpc classification
B26D2210/02
PERFORMING OPERATIONS; TRANSPORTING
B26D7/0616
PERFORMING OPERATIONS; TRANSPORTING
B26D5/00
PERFORMING OPERATIONS; TRANSPORTING
International classification
B26D7/22
PERFORMING OPERATIONS; TRANSPORTING
B26D7/08
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A slicing machine may include a carriage that can be swiveled out with a supporting plate for supporting product to be sliced, wherein a locking device locks the supporting plate releasably in the slicing position. In order to make simple operation of the slicing machine possible accompanied by a high level of operating safety, the locking device has an electrically or electromagnetically operable actuator for releasing the carriage pivot bearing.
Claims
1. Slicing machine for cutting off slices in particular of elongated product to be sliced, the machine comprising: a machine housing which has a drive motor and a slicing blade driven in a rotating manner by the latter in a slicing plane and a carriage, which can be moved linearly parallel to the slicing plane, with a supporting plate for supporting product to be sliced and a carriage foot that connects the supporting plate to the machine housing, and carriage pivot bearing, which has a pivot axle running parallel to the slicing plane, in order to pivot the supporting plate between a slicing position orientated essentially orthogonal to the slicing plane and a cleaning position, wherein a locking device locks the carriage pivot bearing releasably in the slicing position, wherein the locking device has an electrically or electromagnetically operable actuator for releasing a locking system.
2. Slicing machine according to claim 1, wherein the carriage has a carriage foot that connects the supporting plate to the machine housing and the carriage pivot bearing is arranged on the carriage foot, in that the carriage foot has a first carriage foot part and a second carriage foot part mounted pivotably on the latter and the locking device connects the two carriage foot parts to each other releasably.
3. Slicing machine according to claim 1, further comprising: a safety switching system co-operating with the locking device is connected to a speed sensor for detecting a rotational speed of the slicing blade and to a slice thickness sensor for detecting a set slice thickness, wherein the safety switching system only makes it possible or undertakes to activate the actuator to release the carriage pivot bearing when at least one of (i) the speed sensor detects that the slicing blade has stopped or has fallen below a limit speed or (ii) the slice thickness sensor detects a slice thickness setting of less than or equal to zero.
4. Slicing machine according to claim 1, wherein, for locking the carriage pivot bearing, the locking device either has a catch that is arranged on a carriage part and is operable by the actuator and, in the slicing position, engages behind a projection arranged on the other carriage part, or has a pin that is arranged on a carriage part and is operable by the actuator and, in the slicing position, engages in a recess arranged on the other carriage part.
5. Slicing machine according to claim 4, wherein on pivoting into the slicing position, the locking device automatically locks the supporting plate, in that the catch or the pin is acted upon by a spring into the locking position, and it is preferably provided that the catch or the pin has a lead-in chamfer or co-operates with a lead-in chamfer.
6. Slicing machine according to claim 4, wherein for releasing the locking system, the actuator moves the catch or the pin against the force of the spring.
7. Slicing machine according to claim 1, wherein the locking device has a safety switch which, when the locking system is released, interrupts at least one of a power supply to the drive motor of the slicing blade or a power supply to a servomotor of the stop plate, or co-operates with a safety switching system such that, when the safety switch is operated, the safety switching system prevents at least one of the drive motor of the slicing blade from being switched on or the stop plate from being adjusted.
8. Slicing machine according to claim 7, wherein the actuator has a linearly movable push rod, one end of which is connected to the slide plate and the other end of which operates the safety switch.
9. Slicing machine according to claim 17, wherein the slide plate has a guide mechanism in which a fixed stud is guided in such a way that the stud holds the slide plate in a position that releases the locking system while the supporting plate is being swiveled out.
10. Slicing machine according to claim 1, wherein the actuator is configured as an electromagnet, which unlocks the carriage pivot bearing when current is supplied.
11. Slicing machine according to claim 8, the push rod has a threaded section and the actuator is configured as a spindle motor which drives a spindle nut co-operating with the threaded section.
12. Slicing machine according to claim 1, wherein the locking device is arranged completely within at least one of the carriage foot or the supporting plate.
13. Slicing machine according to claim 1, the locking device additionally has a manually releasable locking element.
14. Method for controlling a slicing machine with a slicing blade driven in a rotating manner by a drive motor in a slicing plane and an adjustable stop plate for setting a slice thickness and a carriage which can be displaced linearly parallel to the slicing plane and which, in a cleaning mode, is pivoted about a pivot axle running parallel to the slicing plane from a slicing position running orthogonal to the slicing plane into a cleaning position, wherein the carriage is locked in the slicing position by a releasable locking device, the method comprising: in the cleaning mode, first the stop plate is moved in front of the slicing edge of the slicing blade and the drive motor of the slicing blade is stopped, before the locking device is released in an electrically controlled manner.
15. Method for controlling a slicing machine according to claim 14, wherein for switching on the cleaning mode, first an operation of a switch or of a button is evaluated and, as a result of the operation, the stop plate is moved in front of the slicing edge of the slicing blade in a motorized manner and the drive motor of the slicing blade is stopped, before the locking device is activated to release.
16. Method for controlling a slicing machine according to claim 14, wherein after the drive motor of the slicing blade has been stopped, a particular time is waited before the locking device is activated to release.
17. The slicing machine of claim 6, wherein the catch or the pin is connected to a slide plate, and wherein, for releasing the locking system, the actuator strikes the slide plate in order to operate the catch or the pin.
18. The slicing machine of claim 10, wherein the actuator is configured as a solenoid.
19. The slicing machine of claim 12, wherein the locking device is completely within an installation space, which is enclosed on at least three sides by the carriage foot.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0036] Further embodiment examples of the invention are shown in the figures and described below in the associated description.
[0037] There are shown in,
[0038]
[0039]
[0040]
[0041]
[0042]
[0043] The slicing blade 2 is arranged in a vertically orientated slicing plane and configured as a circular blade. The slicing blade 2 is covered, in the area of its slicing edge, by an essentially C-shaped blade guard ring 22, in order to prevent unintentional contact with the slicing edge of the slicing blade 2. The flat front side of the slicing blade 2 is covered with a blade cover 23 in order to prevent accidental contact with the flat side of the rotating slicing blade 2 during the slicing operation.
[0044] The slicing area of the rotating slicing blade 2 is defined by an area left free by the blade guard ring 22. In front of this slicing area, a stop plate 12 running parallel to the slicing blade 2 and transversely displaceable is mounted on the machine housing 11. Via a handle 13, a desired slice thickness can be set by moving the stop plate 12 transversely with respect to the slicing plane. In an alternative embodiment, which is not shown in the figures, the handle can also be omitted and the stop plate is adjusted purely in a motorized manner via an electric servomotor.
[0045] A carriage 3 which can be displaced linearly parallel to the slicing plane is arranged in an area in front of the slicing blade 2. The carriage 3 has a carriage foot 34 and a supporting plate 31 for supporting product to be sliced. The supporting plate 31 is connected on its underside to the carriage foot 34. The carriage 3 is mounted displaceably on a linear guide 17 of the machine housing 11 via the carriage foot 34.
[0046] The carriage 3 comprises a hand guard 32 as well as a holder for product to be sliced 33. Both the holder for product to be sliced 33 and the hand guard 32 are formed partially transparent in order to provide an operator with a view onto the carriage 3 or onto the slicing area. Product to be sliced is placed on the surface of the supporting plate 31 and held by the holding device for product to be sliced 33. During the slicing procedure, the product to be sliced is conveyed to the slicing blade 2 by means of the holding device for product to be sliced. By moving the carriage 3 back and forth, individual slices are cut from the product to be sliced using the slicing blade 2.
[0047] The slices cut off by the slicing blade 2 are received behind the slicing blade 2 by a chain frame 14 and conveyed transversely to the slicing plane. Via a pivotable flick ejector 14a, the slices are removed from the chain frame 14 and deposited in a depositing area 16.
[0048] The carriage foot 34 is configured in two parts and has a pivot bearing 35 with a pivot axle 36 in order to pivot the carriage 3 or the supporting plate 31 from the slicing position shown in
[0049] In
[0050] Between the first carriage foot part 341 and the second carriage foot part 342, the pivot bearing 35 is arranged with a pivot axle 36 arranged parallel to the sliding axle 171. The second carriage foot part 342 is connected to the first carriage foot part 341 via the pivot axle 36. The second carriage foot part 342 is configured as a U-shaped profile which engages around the first carriage foot part 341 and has, inside it, an installation space 38 for receiving components.
[0051] Components of the locking device 4 are arranged in the installation space 38. The locking device 4 has a slide plate 43 which is connected in one piece to a catch 421 and is mounted displaceably on the second carriage foot part 342. At the lower part of the slide plate 43, a guide mechanism 431 is provided which co-operates with a stud 37 arranged fixed on the first carriage foot part 341. On the top of the slide plate 43, this guide mechanism is connected to a push rod 411 of an electric solenoid 41. When current is supplied, the slide plate 43 is displaced upwards by the electric solenoid into the unlocking position shown in
[0052] The installation space 38 is sealed against water spray. The push rod 411 also has an O-ring as seal with the result that water spray protection according to IPX5 is achieved.
[0053] The locked position is shown in
[0054] To release the locking device 4, first of all the mechanical locking system is released by unscrewing the handle 45. Then, as shown in
[0055] The electric solenoid 41 has an actuating cam 413, which co-operates with a safety switch 46, on the end of its push rod 412. The safety switch 46 serves to interrupt the power supply to the drive motor of the slicing blade 2 and/or of an electric servomotor for adjusting the stop plate 12. In the unlocking position shown in
[0056] To bring the carriage 3 into the cleaning position, the latter must be tilted or swivelled out. That is, starting from the slicing position shown in
[0057] Only when the guide stud 37 comes out of engagement with the holding section of the guide mechanism 431 shortly before reaching the slicing position, when the carriage 3 is pivoted back, can the slide plate 43 be moved downwards, acted upon by the spring 412, i.e. into the locking position shown in
[0058] In order to prevent catching when pivoting the carriage 3, it is provided that the catch 421 has a lead-in chamfer 423. As long as the lead-in chamfer 423 comes into contact with the first carriage foot part 341 or the recess 422 when the carriage is pivoted back into its slicing position, the slide plate 43 is pushed upwards as a result of the lead-in chamfer 423, with the result that the catch 421 can pass without interfering with the projection 422. Only once the catch 421 has completely passed the projection 422 is the catch pushed into the locking position, acted upon by the spring 412. In the locking position, the catch 421 engages with its locking section behind the projection 422 on the first carriage foot part 341.
[0059] Thereby, on the one hand, a problem-free and catch-free pivoting of the carriage 3 is ensured and, on the other hand, it is ensured that, on pivoting the carriage 3 into the slicing position, the latter is automatically locked. Even if an operator of the slicing machine forgets to fix the additional mechanical safeguard again by turning the handle 45, the carriage 3 is nevertheless locked securely in the slicing position via the catch 421 and secured against unintentional swivelling out.
LIST OF REFERENCE NUMBERS
[0060] 1 Slicing machine [0061] 11 Machine housing [0062] 12 Stop plate [0063] 13 Slice thickness setting [0064] 14 Chain frame [0065] 14a Flick ejector [0066] 15 Control and display device [0067] 16 Depositing area [0068] 17 Linear guide [0069] 171 Sliding axle [0070] 172 Torque support [0071] 2 Slicing blade [0072] 21 Blade cover [0073] 22 Blade guard ring [0074] 3 Carriage [0075] 31 Supporting plate [0076] 32 Hand guard [0077] 33 Holder for product to be sliced [0078] 34 Carriage foot [0079] 341 Carriage foot first part [0080] 342 Carriage foot second part [0081] 35 Carriage pivot bearing [0082] 36 Pivot axle [0083] 37 Stud [0084] 38 Installation space [0085] 4 Locking device [0086] 41 Actuator [0087] 411 Push rod [0088] 412 Spring [0089] 413 Actuating cam [0090] 421 Catch [0091] 422 Projection [0092] 423 Lead-in chamfer [0093] 43 Slide plate [0094] 431 Guide mechanism [0095] 44 Locking element [0096] 45 Handle [0097] 46 Safety switch