DEVICE FOR COOLING A SHRINK-FIT CHUCK
20190054546 ยท 2019-02-21
Assignee
Inventors
Cpc classification
International classification
Abstract
A device for cooling a shrink-fit chuck with a cooling head, which contains a cooling attachment that can be mounted on the shrink-fit chuck and an intake tube connected to the cooling attachment for the drawing of air at an input of a passage opening in the cooling attachment. In order to make possible a limited noise emission, the cooling head includes a cooling air feed at least partially insulated by a sound insulation device to supply air to the input of the passage opening on the cooling attachment.
Claims
1. A device for cooling a shrink-fit chuck, the device comprising a cooling head having a cooling attachment mountable on the shrink-fit chuck and an intake tube connected to the cooling attachment for intake of air at an input of a passage opening in the cooling attachment, wherein the cooling head contains a cooling air feed at least partially damped by a sound insulation device for supply of air to the input of the passage opening on the cooling attachment.
2. The device of claim 1, wherein the cooling attachment and the intake tube are enclosed by a housing and the cooling air feed includes a feed line arranged between the housing and the intake tube, as well as an additional feed line connected to the first feed line arranged between the housing and the cooling attachment.
3. The device of claim 2, wherein the sound insulation device contains a grid tube concentrically arranged within the housing around the intake tube, in which the feed line arranged between the intake tube and the housing runs.
4. The device of claim 3, wherein the grid tube is secured in the housing spaced apart from the intake tube by an upper and lower spacer.
5. The device of claim 3, wherein the sound insulation device contains an insulating element arranged between the grid tube and the housing.
6. The device of claim 2, wherein at least one of an inwardly protruding radial collar and a sealing element with an inwardly protruding sealing lip is provided at an opening in a bottom of the housing spaced apart from the end face of the cooling attachment opposite the round input of the passage opening on the cooling attachment.
7. The device of claim 1, wherein a device for supplying liquid or gaseous coolant to the passage opening of the cooling attachment is arranged on the cooling attachment.
8. The device of claim 7, wherein the device for supplying liquid or gaseous coolant contains a feed line arranged in the cooling attachment and feed holes discharging into the passage opening, branching off from the feed line.
9. The device of claim 8, wherein the feed holes run obliquely downwards in the direction of the input of the passage opening on the bottom of the cooling attachment.
10. The device of claim 1, wherein a plurality of blast air openings to supply blast air are arranged in the cooling attachment.
11. The device of claim 10, wherein the blast air openings are directed obliquely upwards.
12. The device of claim 1, wherein the cooling attachment includes an inner sleeve and an outer sleeve.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Additional details and advantages of the invention are apparent from the following description of a preferred embodiment example with reference to the drawings. In the drawings:
[0014]
[0015]
[0016]
[0017]
DETAILED DESCRIPTION
[0018] The device for cooling of a shrink-fit chuck depicted only partly in
[0019] The cooling attachment 3 and the intake tube 4 are arranged within a housing, composed here of a lower housing part 8 and upper housing part 9. A suction part 10 open to the rear is arranged on the top of the upper housing part 9, through which the air is drawn in from the surroundings and can be guided via a cooling air feed arranged within the housing to the input 7 of the passage opening 6 of the cooling attachment 3.
[0020] As follows in particular from
[0021] As is also apparent from
[0022] To achieve particularly effective and rapid cooling, a device to supply a liquid or gaseous coolant to the passage opening 6 can be arranged on the cooling attachment 3. Water or another liquid or gaseous coolant can be sprayed into the gap between the cooling attachment 3 and the outside of the part of the shrink-fit chuck being cooled via this device. The amount of sprayed coolant is metered, so that the entire coolant is entrained by the air stream. This point is particularly significant. The outer surface of the part of the shrink-fit chuck being cooled should not be drenched but rather the coolant dissolved in the air stream should spread over the surface. No costly collecting devices for the coolant are therefore necessary beneath the shrink-fit chuck, especially in liquid coolants. In a particularly preferred embodiment a device not further shown here is connected on the suction tube in order to separate the employed coolant from the air stream again and supply it for reuse.
[0023] As follows from
[0024] A feed line 27, which can be seen in
[0025] For simpler production, the cooling attachment 3 can be assembled from an inner sleeve 30 and an outer sleeve 31. The cooling attachment 3, however, can also be designed in one piece.
[0026] The functional principle of the device just described is explained below.
[0027] The cooling attachment 3 is mounted on the shrink-fit chuck being cooled, so that the cooling attachment 3 sits with its bottom 20 on the shrink-fit chuck or on a holding device for the shrink-fit chuck. Uncontrolled suction of outside air and noise development connected therewith can thereby be avoided. This sealed arrangement is supported by the additional sealing element 22. Air is then drawn in via the suction unit to the intake part 10 and guided by the feed line 11 between the intake tube 4 and the upper housing part 8 as well as the additional feed line 12 between the cooling attachment 3 and the lower housing part 9 downward to the input 7 on the passage opening 6 of the cooling attachment 3. From there the cooling air is then guided upwardly through the gap between the passage opening 6 of the cooling attachment 3 and the outside of the shrink-fit chuck, as well as the intake tube 4. The coolant additionally supplied via feed holes 25 is entrained by the upwardly directed air stream
[0028] After conclusion of the cooling process, the supply of coolant is switched off in order to dry the shrink-fit chuck, especially when a liquid coolant is used, with the remaining air stream. Additional blast air can be introduced via the blast air openings 28 in order to blow off any liquid coolant still present.
[0029] A temperature sensor can be provided on the cooling attachment 3 to determine the temperature of the shrink-fit chuck. It can thereby be determined whether the shrink-fit chuck is still too hot. The determined value can be displayed via a light system on the cooling attachment 3 (red=too hot to be touched; green=sufficiently cooled). As an alternative or in addition to the visual display, the cooling attachment 3 can also be interlocked at high temperature, so that premature raising of the cooling attachment 3 is impossible. The temperature sensor preferably measures the temperature of the outflowing air stream after the cooling area. However, alternatively, it is also possible to directly measure the temperature of the shrink-fit chuck, for example, in contactless fashion by infrared measurement of heat radiation or by a contact sensor.
[0030] The cooling device can theoretically be operated as a separate element but is preferably part of the full shrinkage device depicted schematically in
LIST OF REFERENCES NUMBERS
[0031] 1 Stand
[0032] 2 Cooling head
[0033] 3 Cooling attachment
[0034] 4 Intake tube
[0035] 5 Intake line
[0036] 6 Passage opening
[0037] 7 Input
[0038] 8 Lower housing part
[0039] 9 Upper housing part
[0040] 10 Intake part
[0041] 11 Feed line
[0042] 12 Additional feed line
[0043] 13 Passage
[0044] 14 Grid tube
[0045] 15 Lower spacer
[0046] 16 Upper spacer
[0047] 17 Annular space
[0048] 18 Insulating element
[0049] 19 Opening
[0050] 20 Bottom
[0051] 21 Radial collar
[0052] 22 Sealing element
[0053] 23 Sealing lip
[0054] 24 Feed line
[0055] 25 Feed hole
[0056] 26 Connection
[0057] 27 Feed line
[0058] 28 Blast air opening
[0059] 29 Connection
[0060] 30 Inner sleeve
[0061] 31 Outer sleeve
[0062] 32 Shrinkage device