Device for holding workpieces
09636864 ยท 2017-05-02
Assignee
Inventors
Cpc classification
B29C2049/4889
PERFORMING OPERATIONS; TRANSPORTING
B29C49/4205
PERFORMING OPERATIONS; TRANSPORTING
B65G47/847
PERFORMING OPERATIONS; TRANSPORTING
B25J15/0028
PERFORMING OPERATIONS; TRANSPORTING
B25J15/0038
PERFORMING OPERATIONS; TRANSPORTING
B29C2949/0715
PERFORMING OPERATIONS; TRANSPORTING
International classification
B29C49/42
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The device used to hold workpieces is designed in a manner of tongs and is provided with two tong arms (45, 46). The tong arms are held by a tong base (47) and can be arranged at least in an open position and in a closed position. The tong base is held by a base element (48). The tong base is arranged on a transfer wheel, an opening movement of the tong arms being carried out by means of a movement component transverse to a radial direction of the transfer wheel. The first tong arm (45) extends on both sides of a central line of the tong base at least in some regions, said central line being oriented in a radial direction of the transfer wheel. A workpiece holding recess, which is spanned by the tong arms at least in some regions, is delimited by the second tong arm (46) only in a holding recess (68) region arranged on the outside in a radial direction of the transfer wheel relative to a holding recess transverse central line that runs transverse to the central line of the tong base.
Claims
1. A device for holding a workpiece, said device comprising tongs that include only a first tong arm and a second tong arm, wherein the first tong arm and the second tong arm are held by a tong base such that the first tong arm and the second tong arm are arrangeable with respect to each other at least in an open position and in a closed position, wherein the tong base is arranged on a transfer wheel, wherein an opening movement between the first tong arm and the second tong arm is carried out by movement of at least one of the first tong arm and the second tong arm transverse to a radial direction of the transfer wheel, wherein the first tong arm extends on both sides of a central line at least in some regions, said central line passing through the tong base in the radial direction of the transfer wheel, wherein a workpiece holding recess, which is delimited by the first tong arm and the second tong arm at least in some regions, is delimited only by the second tong arm in a holding recess region located outside, in the radial direction of the transfer wheel, of a holding recess transverse central line that runs transverse to the central line, and wherein the tong base can swivel out from a base element against the force of at least one spring.
2. The device according to claim 1, wherein the first tong arm delimits a troughlike workpiece holding recess.
3. The device according to claim 1, wherein the first tong arm extends beyond the transverse central line in a direction facing away from the tong base at least on one side in relation to the central line.
4. The device according to claim 1, wherein the first tong arm extends beyond the transverse central line in a direction facing away from the tong base on both sides in relation to the central line.
5. The device according to claim 1, wherein the second tong arm has at least one guide surface for interacting with a workpiece.
6. The device according to claim 1, wherein the first tong arm and the second tong arm are spring loaded relative to each other.
7. The device according to claim 1, wherein at least one of the first tong arm and the second tong arm can be positioned by cam control.
Description
(1) Sample embodiments of the invention are shown schematically in the drawings. There are shown:
(2)
(3)
(4)
(5)
(6)
(7)
(8)
(9)
(10)
(11) The basic layout of a device for the shaping of preforms (1) into containers (2) is represented in
(12) The device for the molding of the container (2) essentially consists of a blowing station (3), which is provided with a blowing mold (4) in which a preform (1) can be inserted. The preform (1) can be an injection molded part of polyethylene terephthalate. To enable the inserting of the preform (1) into the blow mold (4) and to enable a removal of the finished container (2), the blow mold (4) consists of mold halves (5, 6) and a bottom part (7), which can be positioned by a lifting device (8). The preform (1) can be held by a transport mandrel (9) in the region of the blowing station (3), which together with the preform (1) moves through a plurality of processing stations within the device. But it is also possible to insert the preform (1) directly into the blow mold (4), for example, by means of tongs or some other handling means.
(13) To enable a supply of pressurized air, underneath the transport mandrel (9) is arranged a connection piston (10), which supplies pressurized air to the preform (1) and at the same time provides a sealing relative to the transport mandrel (9). In a modified design, however, it is essentially conceivable to also use fixed pressurized air supply lines.
(14) In this sample embodiment, a stretching of the preform (1) is accomplished by means of a stretching rod (11), which is positioned by a cylinder (12). According to another embodiment, a mechanical positioning of the stretching rod (11) is done by cam segments which are operated by pickup rollers. The use of cam segments is especially advisable when a plurality of blowing stations (3) are arranged on a single rotating blow wheel.
(15) In the embodiment represented in
(16) After a closing of the mold halves (5, 6) situated in the region of carriers (19, 20), there occurs a locking of the carriers (19, 20) relative to each other with the aid of a locking mechanism (20).
(17) In order to adapt to different shapes of a mouth segment (21) of the preform (1), the use of separate threaded inserts (22) in the region of the blow mold (4) is envisioned, according to
(18)
(19)
(20) In order to shape a preform (1) into a container (2) such that the container (2) has material properties which ensure a long shelf life of foods placed inside the container (2), especially beverages, special process steps have to be taken during the heating and orienting of the preforms (1). Furthermore, beneficial effects can be accomplished by obeying special dimensioning rules.
(21) As the thermoplastic material, various plastics can be used. For example, PET, PEN or PP are usable.
(22) The expansion of the preform (1) during the orienting process occurs by supply of pressurized air. The supply of pressurized air is divided into a preliminary blowing phase, in which gas such as pressurized air is supplied with a low pressure level, and a subsequent main blowing phase, in which gas is supplied with a higher pressure level. During the preliminary blowing phase, pressurized air with a pressure in the interval of 10 bar to 25 bar is typically used, and during the main blowing phase pressurized air with a pressure in the interval of 25 bar to 40 bar is supplied.
(23) One also notices from
(24) To enable the closest possible spacing of the transfer wheel (29) and the input wheel (35) relative to each other, the depicted arrangement proves to be particularly suitable, since three diversion wheels (34, 36) are positioned in the region of the corresponding extension of the heating section (24), and each time the smaller diversion wheels (36) are in the region of the transition to the linear runs of the heating section (24) and the larger diversion wheel (34) is in the immediate transfer region to the transfer wheel (29) and to the input wheel (35). Alternatively to the use of chainlike transport elements (33) it is also possible to use a rotating heating wheel, for example.
(25) After the blow molding of the container (2) is finished, it is taken out from the area of the blowing station (3) by a removal wheel (37) and transported via the transfer wheel (28) and an output wheel (38) to the output section (32).
(26) In the modified heating section (24) shown in
(27) The blowers (31) here introduce cold air into the region of cold air channels (39), each of them being situated opposite the corresponding radiant heaters (30) and putting out the cold air via outflow openings. The arrangement of the outflow openings realizes a flow direction of the cold air essentially transverse to a transport direction of the preforms (1). The cold air channels (39) can provide reflectors for the thermal radiation in the area of surfaces lying opposite the radiant heaters (30), and it is also possible to accomplish a cooling of the radiant heaters (30) by the cold air which is put out.
(28)
(29)
(30) The carrier arms (44) are telescopic and guided along the cam track (50) by means of a cam roller (55) in order to dictate a telescopic movement of the carrier arm (44). In the sample embodiment shown, the cam roller (55) is also guided along the cam track (50) on the inside. In a typical work sequence, the transfer wheel (41) rotates about its pivot axis (56).
(31)
(32) It is also recognizable from
(33) In an operating condition according to
(34)
(35)
(36) The first tong arm (45) and the second tong arm (46) jointly delimit a workpiece holding recess (68) at least in some regions, in which the neck segment of a preform (1) or container (2) is placed during a handling process. Typically, the workpiece holding recess (68) is open in a direction pointing away from the tong base (47).
(37) Being so characterized,
(38)
(39) The opening and closing movements of the tong arms (45, 46) can occur in various ways. First, it is conceivable to use a passive control system. No special activating elements are provided for the tong arms (45, 46), but instead the preform (1) or the container (2) is pushed into the workpiece holding recess (68) from the outside and the corresponding forces result in an opening of the tong arms (45, 46) and then a locking once again. A removal of the preform (1) or the container (2) occurs in the reverse direction by applying pulling forces that act on the workpiece in a radial direction. For an assisting of such operating sequences, the second tong arm (46) has suitable guide bevels in the region of its gripping end (58).