CONSTRUCTION MATERIAL MIXER
20200254402 ยท 2020-08-13
Inventors
Cpc classification
B01F27/11253
PERFORMING OPERATIONS; TRANSPORTING
B28C5/12
PERFORMING OPERATIONS; TRANSPORTING
B01F27/052
PERFORMING OPERATIONS; TRANSPORTING
B01F27/071
PERFORMING OPERATIONS; TRANSPORTING
B01F27/0726
PERFORMING OPERATIONS; TRANSPORTING
B01F35/412
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
The invention relates to a construction material mixer, in particular an asphalt or concrete mixer, consisting of a container (1) having at least one driven shaft (5) to which mixing arms (6) carrying blades (12) are fastened at intervals, the blades (12) being at a distance from the inner wall of the container (1), the mixing arms (6) being divided into an inner part (11), which is connected to the shaft (5), and an outer part (13), which carries the blades (12), and both parts being connectable to each other by means of an adjustable connection device (22). The invention is based on the fact that the connection device (22) is a snap connection device. A particular embodiment and a rapid blade replacement method are described.
Claims
1. A construction material mixer, comprising a container having at least one driven shaft to which mixing arms carrying blades are fastened at intervals, wherein the mixing arms comprise an inner part, which is connected to the shaft, and an outer part, which carries the blades, which parts are connectable with each other, wherein the inner part is connectable with the outer part by means of a plug-in, latching, snap-action and/or a bayonet joint connection.
2. The construction material mixer according to claim 1, wherein the mixing arms, which are detachably connectable with the shaft, are arranged perpendicularly to the shaft.
3. The construction material mixer according to claim 1, wherein a snap-action connection device having at least one trunnion provided with snap-in openings and spring shackles working together with snap-in openings in operational state.
4. The construction material mixer according to claim 3, wherein the trunnions are arranged at the front end of the inner part parallel to the mixing arm and at a distance of at least the diameter of bolts carrying the blade.
5. The construction material mixer according to claim 3, wherein formed components which are perforated and can be assembled to form a hollow body, one of which comprises spring shackle working together with snap-in openings of the trunnions and which are traversed by the bolt carrying the blade.
6. The construction material mixer according to claim 3, wherein the formed components in the operational state form a cage receiving the trunnions.
7. The construction material mixer according to claim 1, wherein the bolt carrying the blade runs perpendicular to the axle and is connected with the cage in a friction-locked manner.
8. The construction material mixer according to claim 4, wherein the free end of the bolt is provided with a clamping body, e.g. eccentric or nut, which is suitable to connect the parts of the cage in a friction-locked manner.
9. The construction material mixer according to claim 8, wherein the clamping body can be covered with a hollow body in a manner devoid of material.
10. The construction material mixer according to claim 9, wherein the hollow body is embodied in the manner of a can with cover.
11. The construction material mixer according to claim 1, wherein an inner part and an outer part which are connectable for operational work by means of plug-in or snap-in connections.
12. A method for conducting the replacement of blades at construction material mixers according to claim 1, wherein friction-locked connection between the clamping body and the bolt is released, thereafter the outer part with the worn out blade is removed and finally a new outer part with a blade is plugged on the inner part.
13. The construction material mixer according to claim 2, wherein a snap-action connection device having at least one trunnion provided with snap-in openings and spring shackles working together with snap-in openings in operational state.
14. The construction material mixer according to claim 4, wherein formed components which are perforated and can be assembled to form a hollow body, one of which comprises spring shackle working together with snap-in openings of the trunnions and which are traversed by the bolt carrying the blade.
15. The construction material mixer according to claim 4, wherein the formed components in the operational state form a cage receiving the trunnions.
16. The construction material mixer according to claim 5, wherein the formed components in the operational state form a cage receiving the trunnions.
17. The construction material mixer according to claim 2, wherein the bolt carrying the blade runs perpendicular to the axle and is connected with the cage in a friction-locked manner.
18. The construction material mixer according to claim 3, wherein the bolt carrying the blade runs perpendicular to the axle and is connected with the cage in a friction-locked manner.
19. The construction material mixer according to claim 4, wherein the bolt carrying the blade runs perpendicular to the axle and is connected with the cage in a friction-locked manner.
20. The construction material mixer according to claim 5, wherein the bolt carrying the blade runs perpendicular to the axle and is connected with the cage in a friction-locked manner.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0013] The invention will now further be explained by way of examples. It show:
[0014]
[0015]
[0016]
[0017]
DETAILED DESCRIPTION
[0018] The figures show a construction material mixer comprising a cylindrical container 1 having a driven central shaft 5 to which, perpendicularly to the shaft, mixing arms 6 carrying blades 12 are fastened at intervals. Generally it is possible that the axles of the mixing arms together with the axle of the shaft 5 form a different angle. The blades 12 are at a distance to the inner wall of the container 1. The mixing arms 6 are divided into an inner part 11, which is connected to the shaft 5, and an outer part 13, which carries the blade 12. Both parts are connectable with each other by means of an adjustable connection device 14. The connection device is generally embodied in such a manner that the ultimate operational connection between the two parts, thus between the inner part and the outer part, is established by plugging, latching and/or twisting. The advantage of these connections consists in that they can be established without tools, which is of particularly importance when a multitude of blades are exchanged.
[0019] In
[0020] The mixing arm 6 comprises an inner part 11, which is connected to the shaft 5, and an outer part 13, which carries the blade 12, wherein both parts are connectable with each other in a releasable manner by means of an adjustable connection device 14. The mixing arm 6 is depicted in the
[0021] The inner part 11 consists according to
[0022] The unit consisting of the parts 12, 28, 27, 29, 23, 24, 30, 31, 32 is pre-assembled in case of a replacement of the blade, wherein the nut 31 of the screw connection is tightened. This screw connection merely serves for holding together the above designated unit, but not for establishing a screw connection between the outer part 13 and the blade 12, respectively, and the inner part (arm) 11, as is the case in the conventional construction material mixers, in which the actual connection between the arm and the blade is established by means of a screw connection, which upon replacement of the blade must be released, namely with a specific tool.
[0023] The structure of the mixing arm thus is made in such a manner that, instead of using a conventional cutting torch or cutting grinder, one can in very short time remove the protection cover 32, release the nut 31, which holds together the unit, and remove the worn out blade from the snap-action connection device 22. The new unit can then equally quickly be mounted onto the trunnions 18, 19, wherein the snap-in spring shackles 25, 26 snap-in the snap-in openings 20, 21. In doing so, the distance of the blade edge to the inner wall of the container 1 can be adjusted by means of distance elements 23b, which are put over the trunnions 18, 19.
[0024] While the present disclosure has been illustrated and described with respect to a particular embodiment thereof, it should be appreciated by those of ordinary skill in the art that various modifications to this disclosure may be made without departing from the spirit and scope of the present disclosure.