APPARATUS AND METHOD FOR FORMING BRISTLE BUNDLES, BRUSH MANUFACTURING MACHINE, USE OF AN APPARATUS FOR FORMING BRISTLE BUNDLES, BRUSH, COMPUTER PROGRAM AND COMPUTER-READABLE MEDIUM
20210337962 · 2021-11-04
Assignee
Inventors
Cpc classification
A46B9/025
HUMAN NECESSITIES
A46D1/0253
HUMAN NECESSITIES
A46D3/045
HUMAN NECESSITIES
A46D3/04
HUMAN NECESSITIES
A46B2200/1066
HUMAN NECESSITIES
International classification
A46D3/04
HUMAN NECESSITIES
A46B9/02
HUMAN NECESSITIES
Abstract
An apparatus (1) for forming bristle bundles (2) is provided. The apparatus (1) includes at least one bundle pocket (3), intended to receive a bristle bundle (2) to be formed. The bundle pocket (3) has at least one piercing (6) in the side. A displacement device (7) on the apparatus (1) can be introduced into the bundle pocket (3) through this piercing (6) to create a clearance (29) inside a bristle bundle (2) to be formed. The bundle pocket (3) and the bristle bundle (2) located therein are heated by the heating device (4) in the apparatus (1) to fix the shape of the bristle bundle (2) defined by the bundle pocket (3) and the displacement device (7).
Claims
1. An apparatus (1) for forming bristle bundles (2), the apparatus (1) comprising: at least one bundle pocket (3) for receiving at least one bristle bundle (2), a heating apparatus (4) for heating the at least one bundle pocket (3), the bundle pocket (3) has at least one introduction opening (5) and at least one lateral cutout (6) therein, a displacement pin (7) configured for profiling a bristle bundle (2) that has been introduced into the bundle pocket (3) is configured to be inserted through the at least one lateral cutout into the bundle pocket (3) transversely or orthogonally to an introduction direction of a bristle bundle (2), such that a bristle bundle (2) that has been introduced into the bundle pocket (3) is adapted to be formed from a non-deformed initial shape to a desired target shape under an effect of heat from the heating apparatus (4) that is adapted to be dissipated to the bundle pocket (3).
2. The apparatus (1) as claimed in claim 1, wherein at least one of a) the bundle pocket (3) has two mutually opposite ones of the lateral cutouts (6), or b) the apparatus (1) comprises at least one closure pin (8) for temporarily closing the at least one lateral cutout (6) of the at least one bundle pocket (3).
3. The apparatus (1) as claimed in claim 1, wherein the apparatus is configured for forming bristle bundles (2) of a bristle complement (39) of a brush (32) that comprises at least two of the bristle bundles (2), wherein the at least one bundle pocket (3) includes at least two bundle receptacles (40) configured therein and the heating apparatus (4) is configured for heating the at least one bundle pocket (3) and the bristle bundles (2) that have been incorporated into the bundle receptacles (40), the bundle receptacles (40) are bundle-forming and, under the effect of heat dissipated by the heating device (4) on the bundle pocket (3) and thus on the bristle bundles (2) situated therein, are configured to form the bristle bundles (2) that have been incorporated into the bundle receptacles (40) in comparison to a shape of said bristle bundles (2) prior to being introduced into the bundle receptacles (40) to set the shape of the bristle bundles (2) to the shape predefined by the bundle receptacles (40).
4. The apparatus (1) as claimed in claim 3, wherein the bundle receptacles (40) are combined in at least one group (41), wherein at least one of a) the group (41) comprises a number of bundle receptacles (40) that corresponds to a number of bristle bundles (2) of the bristle complement (39) to be formed by the apparatus (1), or b) the bundle receptacles (40) within the group (41) are disposed like the bristle bundles (2) in the bristle complement (39).
5. The apparatus (1) as claimed in claim 3, wherein the at least one bundle receptacle (40) of the bundle pocket (3) has at least two cross sections (42, 43) which are axially spaced apart from one another in terms of a longitudinal axis of the bundle receptacle, and which differ from one another in terms of at least one of a shape or size.
6. The apparatus (1) as claimed in claim 3, wherein at least one of a) the at least one bundle receptacle (40) of the bundle pocket (3) has an introduction duct which opens into at least two ducts of the bundle receptacle that are downstream of the introduction duct, or b) the bundle pocket (3) has a bristle carrier receptacle (44) which is delimited by an encircling periphery (45).
7. The apparatus (1) as claimed in claim 3, wherein the at least one bundle receptacle (40) of the bundle pocket (3) has a bundle receptacle portion (46) which is defined by envelope faces of two cones or truncated cones, with at least one of longitudinal central axes thereof being congruent or said two cones or truncated cones having different radii.
8. The apparatus (1) as claimed in claim 3, wherein the at least one bundle receptacle (40) of the bundle pocket (3) fans out or spreads open to be at least one of chalice-shaped or conical.
9. The apparatus (1) as claimed in claim 1, wherein at least one of a) the bundle pocket (3) has at least two bundle receptacles (40) which open into a common bundle receptacle portion (50), or b) the bundle pocket (3) has at least one bundle receptacle (40) which is configured to receive at least two of the bristle bundles (2) and comprises a common bundle receptacle portion (50) for the at least two bristle bundles (2).
10. The apparatus (1) as claimed in claim 9, wherein the at least one bundle pocket (3) at least one of a) has at least one heat exchanger element (9) that facilitates a heat exchange, or b) is provided with a surface structure that facilitates a heat exchange.
11. The apparatus (1) as claimed in claim 1, further comprising at least one of bundle gripper (10) or a bundle pocket gripper (11) that is movable between an initial position and a machining position.
12. The apparatus (1) as claimed in claim 11, wherein at least one of the at least one bundle pocket (3), the at least one bundle pocket gripper (11), or the bundle gripper (10), is assigned a vibrator (12).
13. The apparatus (1) as claimed in claim 1, wherein at least one of a) the at least one bundle pocket (3) has a wall (13) having a constant wall thickness, or b) an inner contour of the bundle pocket (3) is adapted to an outer contour of the bundle pocket (3).
14. The apparatus (1) as claimed in claim 1, wherein at least one of a) an introduction opening (5) is provided with an introduction funnel (14) for the bundle pocket (3), or b the bundle pocket (3) is or forms a monolithic unit which is materially homogenous and 3D-printed.
15. The apparatus (1) as claimed in claim 1, wherein the at least one bundle pocket (3) has an exit opening (15) which is disposed in or on a side of the bundle pocket (3) that is opposite from an introduction opening (5) of the bundle pocket (3).
16. The apparatus (1) as claimed in claim 1, further comprising at least one of a cutter or a grinder configured to machine the a bristle bundle (2).
17. The apparatus (1) as claimed in claim 1, further comprising at least one of a) a cooling apparatus (17) configured to cool the at least one bundle pocket (3), or b) a data interface (55) by which the apparatus (1) is configured to establish a data connection to a computer-readable medium (51).
18. The apparatus (1) as claimed in claim 1, wherein at least one of a) the heating apparatus (4) extends across a region which covers an annular segment with an angular range between 180° and 270° of the at least one bundle pocket (3), or the apparatus (1) further comprises a cooling apparatus (17) that extends across a region which covers an annular segment with an angular range between 180° and 90°.
19. A method for forming bristle bundles (2) using the apparatus (1) as claimed in claim 1, the method comprising forming the at least one bristle bundle (2), proceeding from the non-deformed initial shape, to the desired target shape, displacing bristle filaments of the bristle bundle (2) for generating a clearance (29) in the bristle bundle (2) using the displacement pin (7), and then heating the bristle bundle (2) to set the target shape of the bristle bundle (2) and thus the clearance (29) generated in the bristle bundle (2).
20. The method as claimed in claim 19, wherein at least one of a) the clearance (29) is disposed between a first closed bundle portion (35) that is adjacent to a free end (37) of the bristle bundle (2), and a second closed bundle portion (36) of the bristle bundle (2) that is adjacent to an end (38) of the bristle bundle (2) that is proximal to a bristle carrier, or the clearance (29) has a closed cross section defined by the bristle filaments of the bristle bundle (2).
21. A method for forming bristle bundles (2) of a bristle complement (39) of a brush (32) that comprises at least two bristle bundles (2), the method comprising at least one of: forming at least one of the bristle bundles (2) such that said bristle bundle (2) has two bundle cross sections (47, 48) which are axially spaced apart from one another in terms of a longitudinal axis of the bristle bundle and which differ from one another in terms of at least one of a shape or size, unifying at least two of the bristle bundles (2) in a common bundle portion (49), or imparting at least one of the bristle bundles (2) with at least one of a helical, conical, frustoconical,.sub.— chalice-shaped, or spread open shape.
22. A brush manufacturing machine (18) having at least one apparatus (1) for forming bristle bundles (2) as claimed in claim 1.
23. The brush manufacturing machine (18) as claimed in claim 22, wherein the brush manufacturing machine (18) further comprises a rotary indexing table (19) configured to receive and transport the bundle pockets (3) that are populated with the bristle bundles (2), the rotary indexing table (19) comprises four arms which are in each case disposed so as to be mutually offset by 90°, and at least one of an input station (22) or a bundle profiling station (23), at least one of a bundle fusing station (24) or a retrieving station (25), and a further processing station (26) which are disposed on or so as to be distributed about the rotary indexing table (19).
24. The brush manufacturing machine (18) as claimed in claim 22, further comprising a data interface (55) by which the brush manufacturing machine (18) is configured to establish a data connection to a computer-readable medium (51).
25. The method of claim 19, wherein the apparatus (1) is used to manufacture brushes (32).
26. A brush (32), comprising: at least one bristle bundle (2) that at least one clearance (29), the clearance (29) in the at least one bristle bundle (2) is disposed between a first closed bundle portion (35) and a second closed bundle portion (36) of the bristle bundle (2), the first closed bundle portion (35) is adjacent to a free end (37) of the bristle bundle (2), and the second closed bundle portion (36) is adjacent to an end (38) of the bristle bundle (2) that is proximal to a bristle carrier or handle.
27. The brush (32) as claimed in claim 26, wherein the clearance (29) has a closed cross section defined by bristle filaments of the bristle bundle (2).
28. The brush (32) as claimed in claim 27, wherein a length of at least one of the first closed bundle portion (35) or the second closed bundle portion (36) is at least 5% of an overall length of the bristle bundle (2) when measured in a direction of longitudinal extent of the bristle bundle (2).
29. The brush (32) as claimed in claim 26, wherein the at least one bristle bundle (2) is formed by an apparatus (1) comprising: at least one bundle pocket (3) for receiving at least one bristle bundle (2), a heating apparatus (4) for heating the at least one bundle pocket (3), the bundle pocket (3) has at least one introduction opening (5) and at least one lateral cutout (6) therein, a displacement pin (7) configured for profiling the bristle bundle (2) that has been introduced into the bundle pocket (3) is configured to be inserted through the at least one lateral cutout into the bundle pocket (3) transversely or orthogonally to an introduction direction of a bristle bundle (2), such that a bristle bundle (2) that has been introduced into the bundle pocket (3) is adapted to be formed from a non-deformed initial shape to a desired target shape under an effect of heat from the heating apparatus (4) that is adapted to be dissipated to the bundle pocket (3).
30. A brush (32) as claimed in claim 26, further comprising a bristle complement (39) that comprises at least two of the bristle bundles (2), wherein the at least two bristle bundles (2) are unified in a common bundle portion (49).
31. The brush (32) as claimed in claim 30, wherein at least one of a) at least one of the bristle bundles (2) has two bundle cross sections (47, 48) which are axially spaced apart from one another in terms of a longitudinal axis of the bristle bundle and which differ from one another in terms of at least one of a shape or size, or b) the bristle complement (39) has at least one of a helical, conical, frustoconical or chalice-shaped bristle bundle (2).
32. A computer program fixed in a tangible medium comprising commands for directing a controller (54) of the apparatus (1) to carry out the method as claimed in claim 19.
33. (canceled)
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0072] The invention will now be described in more detail by an exemplary embodiment but is not limited to this exemplary embodiment. Further exemplary embodiments are derived by combining the features of individual or a plurality of claims with one another and/or in combination with individual or a plurality of features of the exemplary embodiment. In the figures, to some extent in a highly schematic illustration:
[0073]
[0074]
[0075]
[0076]
[0077]
[0078]
[0079]
[0080]
[0081]
DETAILED DESCRIPTION
[0082] In the description of the Figures hereunder, functionally identical or equivalent elements are provided with the same reference signs even in the case of variations in terms of the design or the shaping.
[0083]
[0084] A bristle bundle 2 can be introduced into the bundle pocket 3 through an introduction opening 5 of the bundle pocket 3. The bundle pocket 3 of the apparatus 1 illustrated in
[0085] The apparatus 1, under the effect of heat which by the heating apparatus 4 is dissipated to the bundle pocket 2 and the bristle bundle 2 disposed therein, by way of the bundle pocket 3 is specified for forming a bristle bundle 2 that has been introduced into the bundle pocket 3, proceeding from a non-deformed initial shape to a deformed, desired target shape, which can be seen in
[0086] The two piercings 6 of the bundle pocket 3 lie opposite one another such that the displacement means 7 for generating a clearance 29 within the bristle bundle 2 can be pushed through the bundle pocket 3 (see
[0087] In order to prevent bristle filaments from exiting the bristle bundle 2 from the initially still open piercings 6 when the bristle bundle 2 is introduced into the bundle pocket 3, the apparatus 1 has two closure means 8. The two lateral piercings 6 of the bundle pocket 3 can be temporarily closed with the aid of the two closure means 8.
[0088]
[0089] As soon as the two closure means 8 have assumed the closing position thereof, the bristle bundle 2 that has been kept ready can be introduced through the introduction opening 5 into the bundle pocket 3. This is illustrated in
[0090] The bundle pocket 3 illustrated in the Figures is with a plurality of heat exchanger elements 9. The heat exchanger elements 9 facilitate a take-up of heat during the heating phase and a dissipation of heat during a cooling phase. The heat exchanger elements 9 are configured as cooling/heating ribs.
[0091] The apparatus 1 moreover has a bundle gripper 10 and a bundle pocket gripper 11. The bundle gripper 10 as well as the bundle pocket gripper 11 are movable between an initial position and a machining position. The bundle gripper 10 serves for moving a bristle bundle 2, proceeding from the initial position (cf.
[0092] The bundle pocket gripper 11 can be used for holding the bundle pocket 3 and for transferring the latter when required. The bundle gripper 10 as well as the bundle pocket gripper 11 is in each case assigned a vibrator 12. The vibrators 12 are used for setting in vibration the bundle pocket 3, on the one hand, and a bristle bundle 2, on the other hand, when the bristle bundle 2 is being introduced into the bundle pocket 3. This facilitates the bristle bundle 2 sliding into the bundle pocket 3.
[0093]
[0094] The sectional illustration of the bundle pocket 3 according to
[0095] The bundle pocket 3 of the apparatus 1 shown in the Figures is present as a materially homogenous, monolithic unit which is 3D-printed. Bundle pockets 3 having comparatively complex pocket geometries can be generated with the aid of a 3D-printing method.
[0096] The embodiment of a bundle pocket 3 shown in
[0097] For the machining of the bristle filaments of a bristle bundle 2 situated in the bundle pocket 3, the apparatus 1 is equipped with at least one machining means 16. The machining means 16 which is illustrated in a highly schematic manner in
[0098] The pictogram shown in
[0099] The apparatus 1 furthermore has a plurality of guides 30 which predefine adjustment paths for the displacement means 7, the closure means 8, the bundle body 10, and the machining means 16. In the exemplary embodiment of the apparatus 1 shown in the Figures, the guides 30 are illustrated in a highly simplified manner as guide slots 30.
[0100]
[0101] The pictogram shown in
[0102] As soon as the bristle bundle 2 has been heated for a sufficient time, the heating apparatus 4 can be deactivated and the cooling apparatus 17 of the apparatus 1 can be switched on so as to actively cool the bundle pocket 3 and the bristle bundle 2 situated therein (see
[0103] The displacement means 7 is subsequently retracted from the bundle pocket 3, and the deformed bristle bundle 2 is removed from the bundle pocket 3. To this end, the bundle body 10 is moved back along the guide 30 thereof to the initial position thereof (see
[0104] The apparatus 1 is thus specified for forming the bristle bundle 2, proceeding from a non-deformed initial shape which can be seen in
[0105]
[0106]
[0107] The first closed bundle portion 35 and the second closed bundle portion 36 of the bristle bundle 2 have in each case a length which corresponds to at least 5% of an overall length of the bristle bundle 2. The overall length of the bristle bundle 2 can be the length of the bristle bundle 2 that can be measured between the bristle carrier 33 and the free end 37 of the bristle bundle 2. The clearance 29 thus forms a cutout or a window within the bristle bundle 2 that is laterally surrounded and thus delimited by a ring or a frame from bristle filaments of the bristle bundle 2.
[0108]
[0109] These bundle pockets 3 have a plurality of bundle receptacles 40 into which the bristle bundles 2 of the bristle complement 39 of the brush 32 are introduced so as to form the bristle bundles 2 in order for the brush 32 to be individualized.
[0110] The apparatus 1 with which the bundle pockets 3 shown in
[0111] The bundle receptacles 40 of these bundle pockets 3 are configured so as to be bundle-forming and, under the effect of heat dissipated by the heating device 4, specified for forming the bristle bundles 2 of the bristle complement 39 that have been incorporated into the bundle receptacles 40 in comparison to the shape of said bristle bundles prior to being introduced into the bundle receptacles 40. The latter with the objective of setting the shaping of the bristle bundles 2 that have been incorporated into the bundle receptacles 40 as predefined by the bundle receptacles 40.
[0112] The bundle pocket 3 which is in each case shown in
[0113] At least two of the bundle receptacles 40 of the bundle pockets 3 in terms of a longitudinal axis of the respective bundle receptacles 40 have in each case two cross sections 42 and 43 which are axially spaced apart from one another and differ from one another in terms of shape and/or size.
[0114] The bundle pocket 3 shown in
[0115] According to
[0116] The bundle pocket 3 shown in
[0117] The brush 32 shown in
[0118] In the bundle pocket 3 depicted in
[0119] In the use of the bundle pocket 3 shown in
[0120] In the use of the bundle pocket 3 shown in
[0121] The bundle receptacles 40 of the bundle pocket 3 illustrated in
[0122] The sectional illustration of the bundle pocket 3 according to
[0123] The apparatuses 1 for forming bristle bundles 2, the former shown at least in component parts in
[0124] Each of the arms 20 is specified for receiving a plurality of cassettes 21 which in turn can receive a plurality of bundle pockets 3. The arms 20 are moved in a cycled manner from one station to another station of the brush manufacturing machine 18. The cassettes 21 and/or individual bundle pockets 3 can be transported between the arms 21 and the individual stations of the brush manufacturing machine 18 with the aid of handling apparatuses which are not illustrated in more detail.
[0125] As has already been mentioned above, the brush manufacturing machine 18 has different stations at which bristle bundles 2 can be machined or handled. One of the stations of the brush manufacturing machine 18 is an input station 22. Bundle pockets 3 that are populated with bristle bundles 2 are supplied to the arms 20 of the rotary indexing table 19 with the aid of the input station 22. It is to be expressly stated that the bundle pockets 3 which are illustrated in
[0126] The brush manufacturing machine 18, in a manner offset by 90° in relation to the input station 22, has a bundle profiling station 23. The apparatus 1 for forming bristle bundles 2, shown in
[0127] The brush manufacturing machine 18, in a manner offset by 90° in relation to the bundle profiling station 23, has a bundle fusing station 24. The formed bristle bundles 2 are fused on one side in the bundle fusing station 24 so as to generate fastening nodes. The bristle bundles 2 can later be fastened to a bristle carrier of a brush with the aid of the fastening nodes.
[0128] A retrieving station 25 of the brush manufacturing machine 18, in a manner offset by 90° is disposed in relation to the bundle fusing station 24. With the aid of the retrieving station 25, machined bristle bundles 2 can be supplied to a further processing station 26 of the brush manufacturing machine that is disposed downstream of the retrieving station 25.
[0129]
[0130] The brush manufacturing machine 18 as well as the apparatus 1 for forming bristle bundles 2 are used for manufacturing brushes 32.
[0131]
[0132] The computer-readable medium 51 in the shown exemplary embodiment according to
[0133] The invention relates to improvements in the technical field of the manufacture and design of brushes. An apparatus 1 for forming bristle bundles 2 is inter alia proposed as an improvement. The apparatus 1 comprises at least one bundle pocket 3 which is specified for receiving a bristle bundle 2 to be formed. The bundle pocket 3 has at least one lateral piercing 6. A displacement means 7 of the apparatus 1 can be introduced through this piercing 6 into the bundle pocket 3 so as to generate a clearance 29 within a bristle bundle 2 to be formed. The bundle pocket 3 and the bristle bundle 2 situated therein are heated by the heating apparatus 4 so as to set the shaping of the bristle bundle 2 that is predefined by the bundle pocket 3 and the displacement means 7.
LIST OF REFERENCE SIGNS
[0134] 1 Apparatus for forming bristle bundles
[0135] 2 Bristle bundle
[0136] 2a Frustoconical bristle bundle
[0137] 2b Helical bristle bundle
[0138] 2c Chalice-shaped bristle bundle
[0139] 3 Bundle pocket
[0140] 4 Heating apparatus
[0141] 5 Introduction opening
[0142] 6 Lateral piercing in 3
[0143] 7 Displacement means
[0144] 8 Closure means
[0145] 8a End faces of 8
[0146] 9 Heat exchanger element
[0147] 10 Bundle gripper
[0148] 11 Bundle pocket gripper
[0149] 12 Vibrator
[0150] 13 Wall of 3
[0151] 14 Introduction funnel
[0152] 15 Exit opening
[0153] 16 Machining means/cutter
[0154] 17 Cooling apparatus
[0155] 18 Brush manufacturing machine
[0156] 19 Rotary indexing table
[0157] 20 Arm of 19
[0158] 21 Cassette
[0159] 22 Input station
[0160] 23 Bundle profiling station
[0161] 24 Bundle fusing station
[0162] 25 Retrieving station
[0163] 26 Further processing station
[0164] 27 Heating plate
[0165] 28 Cooling plate
[0166] 29 Clearance in 2
[0167] 30 Guide for 7, 8, 10, 16
[0168] 31 Free ends of bristle filaments
[0169] 32 Brush
[0170] 33 Bristle carrier
[0171] 34 Handle
[0172] 35 First closed bundle portion
[0173] 36 Second closed bundle portion
[0174] 37 Free end of 2
[0175] 38 End of 2 proximal to the bristle carrier
[0176] 39 Bristle complement
[0177] 40 Bundle receptacle
[0178] 40a Frustoconical bundle receptacle
[0179] 40b Helical bundle receptacle
[0180] 40c Chalice-shaped bundle receptacle
[0181] 41 Group of 40
[0182] 42 First cross section of 40
[0183] 43 Second cross section of 40
[0184] 44 Bristle carrier receptacle
[0185] 45 Periphery of 44
[0186] 46 Bundle receptacle portion
[0187] 47 Bundle cross section
[0188] 48 Bundle cross section
[0189] 49 Common bundle portion
[0190] 50 Common bundle receptacle portion
[0191] 51 Computer-readable medium
[0192] 52 Data storage
[0193] 53 Cloud
[0194] 54 Controller
[0195] 55 Data interface