Brush head and method and tool for producing same
A brush head, particularly a toothbrush head, may have a plurality of cleaning elements, in particular bristle tufts, which are anchored by an end section in a brush carrier, wherein the cleaning elements may be cast with positive engagement in blind-hole shaped retaining recesses. For producing such a brush head different cleaning elements, such as bristle tufts may be fused by heat and may be placed in a mold cavity to be over-molded.
1. A method for producing a brush head in which at least two different cleaning elements selected from the group consisting of different types of cleaning elements, distinctive cleaning elements of the same type and a combination thereof, are embedded at one of their ends at least partially in a bristle carrier, wherein the ends are fused by infrared radiation before embedding, wherein different amounts of infrared radiation are supplied to each of the at least two different cleaning elements, wherein the different amounts of infrared radiation are supplied by a plurality of reflectors that are spatially adjustable relative to one another, and wherein the different amounts of infrared radiation are controlled by a frequency or intensity of the infrared radiation.
2. The method according claim 1 , wherein the ends of the cleaning elements to be embedded are fused by being subjected, either individually or in groups, to the radiation.
3. The method according to claim 2 , wherein the radiation that is directed towards the end of the cleaning elements is created using separate reflectors.
4. The method according to claim 1 , wherein the at least two different cleaning elements are held by a carrier part in a predefined arrangement according to their desired distribution on the brush head.
5. The method according to claim 1 , wherein the different amounts of heat that are supplied to each of the at least two different cleaning elements depend on at least one property in which the at least two different cleaning elements are distinguishable from each other.
6. The method according to claim 5 , wherein the at least one property in which the at least two different cleaning elements are distinguishable is at least one of the material, the colour, the thickness, the outer shape, the composition and the distance to the source of the heat.
7. The method according to claim 1 , wherein after the ends of the at least two different cleaning elements have been heated, a punching tool is moved against the softened ends for reshaping them.
8. The method according to claim 7 , wherein, the punching tool has a flat or a structured surface.