BELT DRIVE UNIT FOR A MOLDING MACHINE OR BORED FINS, IN PARTICULAR FOR HEAT EXCHANGERS, WITH CONTROLLED ADAPTABILITY TO BORES OF DIFFERENT DIAMETERS
20210086252 ยท 2021-03-25
Assignee
Inventors
Cpc classification
B65H20/22
PERFORMING OPERATIONS; TRANSPORTING
B21D43/06
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A drive unit (4) of the belt (3) for a molding machine (1) of bored fins comprises a fixed front part (12) and a movable rear part (13) driven longitudinally with a forward and backward movement to and from the fixed front part (12). Both parts (12, 13) of the drive unit (4) include support plates (16, 31) on the upper surfaces thereof for vertical teeth (20, 35) with oblique top (22, 37) which protrude upwards under elastic thrust (24, 39) and are suitable for being inserted into corresponding bored collars (52) of the belt (3) downstream of a boring unit (2). The upper surfaces of each of the two parts (12, 13) of the drive unit (4) support at least a further support plate (17, 32) for vertical teeth (21, 36) of greater diameter, which is liftable and lowerable by a control panel (50).
Claims
1. A drive unit of a belt for a molding machine for bored fins, for heat exchangers, comprising a fixed front part and a movable rear part driven longitudinally with a forward and backward movement to and from the fixed front part, wherein both parts of the drive unit include, on upper surfaces thereof, support plates for movable vertical teeth with oblique top which protrude upwards under elastic thrust and are suitable for being inserted into corresponding bored collars of the belt downstream of a boring unit of the molding machine, wherein the vertical teeth of a movable rear part drive the belt forward during the forward movement of the movable rear part and then lower below the plane of the belt to leave the belt in the position reached during a next backward movement of the movable rear part, while the vertical teeth of the fixed front part keep the belt in the position reached, which is suitable for a next cutting operation, during the step of moving the movable rear part backward, the improvement comprising that the upper surfaces of each of two movable and fixed parts of the drive unit support at least a further support plate for movable further vertical teeth with an oblique top of greater diameter, which are liftable and lowerable by a control panel and the vertical teeth of smaller diameter are replaced with the further vertical teeth.
2. The drive unit according to claim 1, wherein the further support plate for the further vertical teeth of greater diameter is supported by an intermediate plate elastically retained in a lowered position and movable to a lifted position by the control panel.
3. The drive unit according to claim 2, wherein the intermediate plate is movable to a raised position by introducing pressurized fluid into a compartment underlying the intermediate plate.
4. The drive unit according to claim 3, wherein the intermediate plate can be returned to the lowered position by unloading the pressurized fluid from the compartment underlying the intermediate plate.
Description
DESCRIPTION OF THE DRAWINGS
[0010] The features and advantages of the present invention will become apparent from the following detailed description of a possible embodiment thereof, shown by way of non-limiting example in the accompanying drawings, in which:
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DETAILED DESCRIPTION OF THE INVENTION
[0025] With reference to
[0026] The molding machine includes, at the exit thereof, a drive unit 4 for the belt 3 and a cutting unit 5 which, by means of a cutter 6, divides the belt 3 into a plurality of single bored fins intended for the formation of heat exchangers or other.
[0027] The drive unit 4, which forms the object of the present invention, can be of various shapes and sizes but essentially comprises a fixed base 8, in turn fixed to the general base 9 of the molding machine, and an openable cover 10, as shown in
[0028] Exemplary forms of the base 8 of the drive unit 4 are shown in
[0029] As shown in
[0030] In a completely similar manner, the upper surface of the movable rear part 13 includes plates 31 and 32 side by side with respect to the forward direction of the belt 3, which support respective cylindrical vertical teeth 35 and 36 with oblique tops 37 and 38, identical to the teeth 20 and 21 of the fixed front part 12, which teeth 35 and 36 are slidably housed in respective cylindrical vertical bores 33 and 34 of the support plates 31 and 32. The teeth 35 are pushed upwards by respective reactant springs 39 inside cavities 40 of the movable rear part 13, while the teeth 36 are pushed upwards by reactant springs 41 inside cavities 42 of an intermediate plate 43 integral with the upper plate 17 and movable upwards therewith, against the action of a retaining spring 44, by introducing fluid into an underlying compartment 45.
[0031] The teeth 20 and 21 also pass through respective circular bores 46 and 47 of the upper flat plate 11, while the teeth 35 and 36 are housed in a longitudinally sliding manner inside elongated slots 48 which extend in the longitudinal direction defined by the forward direction F of the belt 3.
[0032] Longitudinal channels 49 are provided in the lower surface of the cover 10 to accommodate and delimit the vertical lifting of the teeth 21, 22, 35, 36 during the driving and positioning operation.
[0033] Finally, a remote control system is associated with the drive unit 4, the main diagram of which is shown in
[0034] The structure described above gives rise to the following operating method of the drive unit 4 and more generally of the molding machine which comprises it.
[0035] A metal belt 3 exits the boring unit 2 provided with bored collars 52 which are arranged according to the positioning diagram of the teeth 21, 22, 35, 36 of the drive unit 4 and have a diameter which can be varied between two predetermined values (referred to here as smaller diameter and greater diameter) by conveniently acting, in a known manner, on the boring unit 2 and possibly on the drawing unit which precedes it. As the aforesaid diameter varies, it is necessary to act on the drive unit 4 in a corresponding manner The control system in
[0036] If the belt 3 has been bored with smaller diameter bores, the smaller teeth 35 of the movable rear part 13 of the drive unit carry out the dragging of the belt, which are inserted into the bored collars 52 of the belt when in a backward position as in
[0037] During this operation, carried out repeatedly to move forward the belt 3 step by step and bring subsequent portions of the belt itself to the cutting unit for the subdivision into single bored fins, the operator of the machine kept the control panel 50 in condition such as to remove the operating fluid from the compartments 30 and 45 and allow the springs 29 and 44 in
[0038] If the machine is switched so as to bore the belt with larger diameter bores, the operator can easily switch the drive unit 4 accordingly, by acting on the control panel 50 so as to command the control unit 51 to introduce pressurized fluid into the compartments 30 and 45 to bring the intermediate plates 28 and 43 into the lifted position and therewith the teeth 22 and 36 of greater diameter, which can thus be inserted into the bores of the belt to cause the repeated forward movement of the belt step by step in the same manner as already described for the case of smaller diameter bores.
[0039] In a similar manner, by unloading the pressurized fluid from the compartments 30 and 45 by a command given by the operator to the control panel 50, it is possible to return the drive unit to the operating condition for the belt with smaller diameter bores.
[0040] The operator only has to act conveniently on the control panel 50 without carrying out operations of assembling or disassembling parts of the