Mixing element for a biomass mixer with wear protection elements
The mixing element with stud-bolt secured wear protection elements addresses production and wear issues, enhancing efficiency and safety by ensuring a smooth surface and easy replacement, thus improving mixing performance.
Patent Information
- Application Number
- DE102023136240
- Authority / Receiving Office
- DE · DE
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2023-12-21
- Publication Date
- 2025-06-26
AI Technical Summary
Existing mixing elements for biomass mixers face complications in production complexity, surface smoothness, and increased wear leading to screw breakage and difficulty in dismantling, with wear protection elements often becoming detached and causing malfunctions or animal harm.
A mixing element with removable wear protection elements and cutting blades, secured by stud bolts, ensuring a smooth surface and preventing screw exposure to wear, facilitated by markings for precise attachment and easy replacement.
Enhances production efficiency, reduces wear, simplifies assembly and dismantling, and minimizes material resistance, thereby improving mixing performance and safety.
Smart Images

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Abstract
Description
[0001] The invention relates to a mixing element for use in a biomass mixer according to the preamble of claim 1, as well as to a biomass mixer having such a mixing element. The invention further relates to a wear protection element for a mixing element of a biomass mixer, as well as to a method for producing such a wear protection element.
[0002] Mixing elements for biomass mixers are available in various designs, for example, in the form of mixing screws or mixing reels arranged horizontally or vertically in a mixing tank. Biomass mixers can also be available in various designs, for example, in the form of stationary systems for feeding biogas plants or in the form of towed or self-propelled feed mixer wagons.
[0003] What all systems have in common is that a biomass mixer has at least one mixing device for mixing organic raw materials, in particular animal feed.
[0004] WO 2022 / 158973 A1 discloses a mixing element of this type for a feed mixer wagon. The mixing element comprises an upwardly tapered screw flight, on the outer edge of which wear protection elements are attached. These wear protection elements are sometimes also provided with a cutting edge and thus also function as cutting blades. To attach the wear protection elements to the screw flight, the wear protection elements and the screw flights have coincident bores. The bores are surrounded by an annular embossed structure dimensioned to accommodate the head of a countersunk screw. The result is a largely smooth contour on the surface of a mixing screw equipped with the aforementioned wear protection elements and / or cutting blades, along which the feed to be mixed can slide with little resistance.A disadvantage of this mixing element is that it is relatively complex to manufacture and the surface is only largely but not completely smooth. Another problem is that the screws used to attach the wear elements, or rather their heads, are located on the surface subject to wear (conveying side) and are therefore subject to particularly high levels of wear. This significantly weakens the screws on one side and there is an increased risk of the connection breaking. In addition, the contours of the screws, for example a hexagon socket contour provided in the screw head, can wear to such an extent that simple disassembly is often not possible. This is particularly because the screws generally have no anti-twist device. Broken fastening elements and the wear elements that have consequently become detached from the mixing screw often have sharp edges.If such foreign bodies get into the feed ration to be mixed, they can cause malfunctions and subsequent damage to feed mixers or injure the animals being fed.
[0005] The object of the invention is to eliminate the described disadvantages and to propose a mixing element with wear protection elements in which the above-described disadvantages are eliminated or reduced. In particular, the invention is intended to reduce the power required to drive the mixing element and to enable a cost-effective and easy-to-assemble production of a mixing element.
[0006] This object is achieved by a mixing device having the features of claim 1. Definitions:
[0007] A mixing device is understood to be a component arranged in a container which can be set in rotation about an axis of rotation by means of a drive and which, during operation, mixes together any components introduced into the container.
[0008] A mixing element can, for example, be designed in the form of a horizontal or vertical mixing screw or in the form of a mixing reel.
[0009] A biomass mixer is a device for mixing biomass in a container. The biomass can be, in particular, animal feed and feed additives, or solids for a biogas plant. A biomass mixer has at least one mixing element arranged in the container.
[0010] A wear protection element is a component that can be attached to or on a mixing element and protects the mixing element from wear by coming into contact with the mix instead of the mixing element. Wear caused by the mix occurs in the area where the mixing element is fitted with a wear protection element, thus not on the mixing element but on the wear protection element. Since the wear protection element is preferably designed to be removable, it can be replaced if necessary, thus extending the service life of the mixing element. If a wear protection element mounted on the mixing element is fitted with a cutting edge on its outward-facing contour, it also functions as a cutting blade.
[0011] The mixing element according to the invention has at least one wear protection element and / or a cutting blade. The wear protection element or the cutting blade comprises a wear protection element plate or a cutting blade plate and at least one stud bolt attached to the plate with a non-detachable connection, preferably a welded connection. In order to be able to detachably attach the wear protection element or the cutting blade to the mixing element, at least one bore or recess is provided on the mixing element to accommodate the stud bolt. The wear protection element and / or the cutting blade is detachably attached to the mixing element by means of its stud bolt and a fastening means compatible with the stud bolt. The detachable fastening can preferably be a nut that is screwed onto the end of the stud bolt.
[0012] As an alternative to a stud bolt, a nut could also be attached to the plate of the wear protection element. Accordingly, a hole large enough to accommodate the nut would then be provided in the mixing element. Attachment to the mixing element could be achieved with a suitable screw, with a washer provided if necessary to ensure that the screw head, with the washer underneath, secures the wear protection element to the mixing element.
[0013] Preferably, a wear protection element has not just one but several stud bolts that can be inserted into corresponding holes on the screw thread.
[0014] When using a wear protection element with several stud bolts, the wear protection element mounted on the screw thread is fixed in a predefined position and also secured against twisting.
[0015] The removable attachment of wear protection elements and / or cutting blades to mixing elements is a technology that has been known for decades. However, all solutions known as state of the art feature coincident through-holes in the wear protection element and the mixing element. As a result, the surface of these wear protection elements has an interruption caused by the hole, from which a screw head protrudes to a greater or lesser extent, depending on the type of screw used. Although this protrusion can be avoided by countersunk holes in the wear protection elements, even with such designs, the interruption in the surface caused by the countersunk hole remains. In addition, the countersunk head screws used in this case have a slot or hexagon socket in their head area to enable disassembly of the screw connection.Under the harsh operating conditions to which the mixing element is exposed during use, these contact points for tools easily become clogged, damaged, or subject to wear similar to the rest of the wear protection element's surface. This makes disassembly of the countersunk head screws difficult or even impossible.
[0016] These problems do not occur when using the wear protection elements or cutting blades according to the invention with permanently attached, particularly welded, stud bolts. Firstly, the stud bolts are located on the side of the wear protection elements facing the mixing element, so that the side of the wear protection elements facing the mix material is not impaired or interrupted. This optimizes the material flow and completely eliminates frictional resistance caused by a surface interruption.
[0017] Second, the stud bolts are fixed to the wear protection element. Unlike a through-bolt, the bolt head does not need to be held in any way, such as with a suitable tool, when loosening the nut. Instead, it is sufficient to unscrew the nut from the fixed stud bolt. This makes disassembly much easier.
[0018] In a preferred embodiment, the mixing element is a mixing screw with a central tube and at least one screw flight. Depending on whether the axis of rotation of the mixing screw is arranged horizontally or vertically, such mixing screws are referred to as horizontal or vertical screws. Regardless of the conveying direction, the mixed material is conveyed by the screw flights, which results in increased wear, particularly on the outer edges of the screw flights. To increase the service life of such a mixing screw, it is therefore advantageous to equip the outer edge of the mixing screws with wear protection elements.
[0019] A wear protection element and / or cutting blade can have an outer contour that is adapted to an outer contour provided on the mixing element. For wear protection elements without a cutting function, the outer contours of the wear protection element and the mixing element can be provided to directly overlap each other when assembled. In contrast, for wear protection elements with a cutting function, i.e., cutting blades, the cutting blade edge protrudes beyond the mixing element. In both cases, however, the outer edge of the mixing element is protected from wear by the wear protection elements or cutting blades.
[0020] Preferably, the wear protection element and / or the cutting blade and the mixing element have contact surfaces that are adapted to each other. This avoids a gap between the components and prevents the mix from becoming trapped in such a gap, leading to disruptions or increased power requirements during mixing.
[0021] Furthermore, it can be provided that at least two wear protection elements and / or cutting blades are connected to one another without a gap when assembled. Preferably, all adjacent wear protection elements and / or cutting blades can be connected to one another without a gap, so that the entire outer edge of the mixing element is covered with wear protection elements and / or cutting blades. This protects the entire outer edge of the screw from wear, while also avoiding transitions and steps between the wear protection elements and / or cutting blades, thereby improving the flow of the mixed material and reducing the power required to drive the mixing element.
[0022] Typically, a specific direction of rotation of the mixing element is provided for mixing the materials fed into a biomass mixer. This direction of rotation of the mixing element, intended for mixing purposes, is referred to below as the mixing direction of rotation. In particular, such a mixing element with a preferred mixing direction of rotation for mixing purposes can be provided for: - a front wear protection element or cutting blade seen in the mixing direction of rotation has a rear edge, - the rear wear protection element or cutting blade, seen in the mixing direction of rotation, has a front edge and - the rear edge of the front wear protection element or cutting blade overlaps the front edge of the rear wear protection element or cutting blade.
[0023] Two wear protection elements and / or cutting blades are therefore not adjacent to each other without a gap, but overlap in a scale-like manner. As a result, when the mixing element rotates in the mixing direction, the mix material lying on the mixing element is transferred from the front wear protection element or cutting blade to the rear wear protection element or cutting blade with low resistance.
[0024] In a preferred embodiment, the contact surface of the wear protection element or the cutting blade can have a marking to indicate a predefined position for the attachment of the stud bolt. Such a marking facilitates the manufacture of the wear protection element and / or cutting blade, since the positioning does not have to be measured individually for each stud bolt. The marking can be applied in various ways, for example, using a suitable marking device. However, it is particularly preferred to apply the marking using a modern sheet metal processing machine, such as a laser or plasma cutting system.The manufacturing advantage arises particularly because such a machine is already suitable for cutting the wear protection element or cutting blade from a sheet metal plate, and therefore only minimal additional effort is required to apply the aforementioned marking when cutting the wear protection or cutting blade plates. Furthermore, the accuracy of the marking positioning is very high when using a preferably computer-controlled sheet metal processing machine, so that the stud bolts can also be positioned with very high precision, allowing for easy subsequent insertion of the stud bolts into the holes provided in the mixing element.
[0025] In a preferred embodiment, the marking provided for attaching the stud bolt extends beyond the diameter of the stud bolt. For example, a cross-shaped or X-shaped symbol can be provided as a marking, with the legs having a length that is, for example, 1 mm to 3 mm greater than the diameter of the stud bolt. This facilitates, in particular, manual alignment of the stud bolts to be welded, since, if the marking extends slightly beyond the stud bolt, the stud bolt can be very easily placed on the center of the marking and finely adjusted manually in all directions.
[0026] As an alternative to a cross- or X-shaped marking, a circle can be provided as a marking. The diameter of the circle corresponds to the diameter of the stud or is slightly larger, preferably 0.1 mm to 3 mm larger, than the stud. A circular marking further simplifies visual alignment of the stud within the aforementioned marking circle.
[0027] Furthermore, the wear protection element can be provided with one or more markings that allow conclusions to be drawn about the wear condition of the wear protection element. Said marking thus forms a visual indicator of the wear of the wear protection element. If the wear of the wear protection element reaches a predefined level during operation, a preventative replacement of the wear protection elements can be carried out before the wear becomes so severe that there is a risk of the wear protection element breaking.
[0028] The aforementioned marking could be applied mechanically or thermally, for example, during prefabrication or cutting of the wear protection elements. A plasma torch, preferably controllable in terms of intensity and penetration depth, or a laser is particularly suitable for thermal application.
[0029] Furthermore, it can be provided that both a cutting blade and a wear protection element are attached to the mixing element using the same stud bolt. In this case, either the cutting blade has the stud bolt and the wear protection element has a hole for the stud bolt, or conversely, the wear protection element has the stud bolt and the cutting blade has a hole for the stud bolt. The stud bolt attached to one component is thus inserted not only through the hole provided in the mixing element, but also through the hole provided in the other component. This results in three sandwich-like layers of wear protection element, cutting blade, and mixing element arranged one above the other.For example, in the case of a vertical mixing screw, the entire edge on the upper side of the screw flight may be equipped with wear protection elements and, depending on requirements, some cutting knives may also be attached to the underside of the screw flight, the holes of which coincide with the holes provided in the mixing element and which are held by the stud bolts attached to the wear protection elements.
[0030] The object of the invention is also achieved by a biomass mixer, for example a feed mixer wagon, comprising - a mixing container with a filling opening and a dispensing opening, - at least one mixing element arranged in the mixing container and rotatable about a rotation axis according to one of claims 1 to 10 and - a drive device for driving the mixing element.
[0031] Furthermore, the object of the invention is achieved by a wear protection element or cutting blade for a mixing element of a biomass mixer, in which the wear protection element comprises a wear protection element plate and at least one stud bolt permanently attached to the wear protection element plate or - the cutting blade has a cutting blade plate and at least one stud bolt permanently attached to the cutting blade plate.
[0032] Such wear protection elements or cutting blades equipped with one, preferably several, stud bolts can be manufactured cost-effectively, protect the cutting element from wear and can be easily replaced if necessary.
[0033] In addition, the object of the invention is achieved by a method for producing a wear protection element or a cutting blade for a mixing element of a biomass mixer, in which the following method steps are applied: - Providing a steel plate for producing a wear protection element plate or a cutting blade plate, - Cutting out the wear protection element plate or the cutting blade plate from the steel plate, - Marking a position intended for the subsequent attachment of a stud bolt on the wear protection element plate or on the cutting blade plate by applying a mark, - Positioning the stud bolt on the mark on the wear protection plate or the cutting blade plate, - Welding the stud bolt to the wear protection element plate or to the cutting blade plate to form a welded assembly.
[0034] The method according to the invention is preferably implemented using a computer-controlled cutting machine. This can be, for example, a laser or plasma cutting machine. Such machines generally have control programs and / or tools that enable the application of a marking on the steel plate to be cut or to be cut. Thus, a wear protection element or cutting blade plate provided with a marking can be produced in a single setup. Of course, depending on the size of the steel plate, a plurality of wear protection element and / or cutting blade plates can also be produced, and holes and / or markings can be introduced at any desired location.
[0035] Further measures improving the invention are presented in more detail below with the description of preferred embodiments of the invention with reference to the figures.
[0036] The figures show: Fig. 1 shows a feed mixer with two vertical augers in a perspective side view; Fig. 2 shows one of the vertical augers of the feed mixer according to Fig. 1; Fig. 3 shows a section of Fig. 2; Fig. 4 shows the lower part of a vertical screw; Fig. 5 shows a first embodiment of a wear protection element in a perspective view obliquely from above; Fig. 6 shows the wear protection element according to Fig. 5 in a perspective view obliquely from below; Fig. 7 shows a second embodiment of a wear protection element in a perspective view obliquely from above; Fig. 8 shows the wear protection element according to Fig. 7 in a perspective view from below.
[0037] Identical or similar elements may be provided with identical or similar reference numerals in the following figures. Furthermore, the figures of the drawing, their description and the claims contain numerous features in combination. A person skilled in the art will appreciate that these features can also be considered individually or combined to form further combinations not described in detail here. The invention expressly also extends to embodiments that are not provided by combinations of features from explicit references to the claims, whereby the disclosed features of the invention can be combined with one another in any way, as long as this is technically expedient. The exemplary embodiments illustrated in the figures are therefore merely descriptive and are not intended to limit the invention in any way.
[0038] The terms “upper”, “top”, “lower”, “left” or “right” used below refer to the arrangement of a feed mixer wagon and its components in operating mode as shown in the drawing.
[0039] Fig. 1 shows a biomass mixer 200 in the form of a feed mixer wagon 201 with a mixing container 10 and two mixing elements 100 arranged therein in the form of vertical mixing screws 15. The feed mixer wagon 201 is thus an exemplary embodiment of a biomass mixer 200, just as the mixing screws 15 are to be understood as exemplary embodiments of mixing elements 100.
[0040] The feed mixer wagon 201 has a chassis 17 and can be coupled to a tractor, for example, a tractor (not shown), using a towing device 12. The mixing container 10 comprises a base 13 and a wall 14. The mixing container 10 is open at the top, forming a filling opening 11. Feed components to be mixed can thus be filled into the mixing container 10 from above through the filling opening 11. Feed components introduced into the mixing container 10 are mixed by the mixing augers 15 to form a homogeneous feed mass and can then be discharged through a discharge opening (not shown).
[0041] The wall 14 of the mixing container 10 is shown interrupted so that the mixing screws 15, which are identically configured in the illustrated embodiment, can be clearly seen. Both mixing screws 15 have a central tube 37 and a screw thread 16 attached thereto. In the illustrated embodiment, the mixing screws 15 also comprise a clearing arm 38. The mixing screws 15 are driven by a drive device (in Fig. 1 not visible). During operation, the mixing screws 15 rotate in the mixing direction R1 around rotation axes 30 and mix the feed components filled into the mixing container 10.
[0042] The mixing screws 15 have an outer edge 48, which in the illustrated embodiment is completely equipped with wear protection elements 20. In addition, several cutting blades 35 are attached to the screw thread 16, which serve to crush the feed components filled into the mixing container 10.
[0043] Fig. 2 shows one of the Fig. 1 in a perspective view obliquely from above. In the illustrated embodiment, the screw thread 16 is composed of folded screw thread sections 40 (cf. Fig. 3). The folded and welded screw flight sections 40 together form the screw flight 16 of the vertical mixing screw 15, which tapers conically upwards.
[0044] The screw flight 16 has a lower end 47 to which a clearing plate 42 is attached. As already mentioned, the outer edge 48 of the screw flight 16 is completely equipped with wear protection elements 20. A first wear protection element 20, which is in the Fig. 5 and Fig. 6 is shown in detail, is attached to the screw thread 16 in such a way that it engages under the clearing plate 42 with its front edge 28 (cf. Fig. 4). The first wear protection element 20 is wider at its leading edge 28 than the subsequent wear protection elements 20 in order to counteract the increased wear on the screw flight 16 in this area, which experience has shown to be increased. Since the illustrated embodiment involves a mixing screw 15 tapering conically upwards and the wear protection elements 20 are adapted to the contour of the mixing screw 15, the use of identical and interchangeable wear protection elements 20 is not possible in this embodiment. Rather, the wear protection elements 20 are adapted in terms of their radii and outer contour to the area of the outer edge 48 to which they are mounted.
[0045] The wear protection elements 20 comprise a wear protection element plate 21 and stud bolts 22 attached thereto, which in the illustrated embodiment are provided with a welded connection 23. For fastening the wear protection elements 20 to the screw thread 16, bores 24 are provided in the screw thread 16, which bores correspond to the stud bolts 22 and define a desired mounting position for the wear protection elements 20.
[0046] The wear protection elements 20 provided in the illustrated embodiment do not protrude beyond the screw thread 16 and do not have a cutting edge. However, it is also possible in principle to equip the wear protection elements 20 with a cutting edge that points outward when installed and to mount them in such a way that the cutting edge area protrudes beyond the screw thread 16.
[0047] In the illustrated embodiment, cutting blades 35 are provided on the mixing element 100 in addition to the wear protection elements 20. A V-shaped hole pattern 50 can be provided to enable the cutting blades 35 to be mounted selectively in different pivoting positions on the screw thread 16. The holes of the V-shaped hole pattern 50 penetrate both the wear protection elements 20 mounted on the upper side of the screw thread 16 and the screw thread 16, so that a cutting blade 35 provided with a row of holes 39, three holes 39 in the illustrated case, can be mounted in two different pivoting positions on the screw thread 16.
[0048] In the illustrated embodiment, all cutting blades 35 are attached to the underside of the screw thread 16 with a screw-nut connection 51. The screw-nut connection 51 is formed by countersunk screws 41, which are inserted through coincident bores 33, 24, and 39 of the wear protection element 20, the screw thread 16, and the cutting blade 35 and are held in place by a nut underneath. Instead of the aforementioned screw-nut connection 51, however, the attachment of stud bolts 22 to the underside of the corresponding wear protection elements 20 could also be provided. In this case, the wear protection elements 20 with the stud bolts 22 would be inserted through the bores 24 and 39 provided in the screw thread 16 and the cutting blade 35 and fixed with a nut.
[0049] Fig. 3 shows a section A from Fig. 2 in an enlarged view. In the illustrated embodiment, the screw thread sections 40 are plate-shaped sections, each with a bevel and two flat sections. The screw thread sections 40 are arranged one behind the other and together form the screw thread 16. Instead of a screw thread 16 composed of a plurality of flat surfaces, a rolled or pressed screw thread or a completely different mixing element, for example a reel, could also be provided. However, what all embodiments according to the invention have in common is that areas of the mixing element 100 subject to severe wear are provided with at least one wear protection element, which is fastened to the mixing element 100 by stud bolts 22 provided on the wear protection element 20.
[0050] Fig. 4 shows the lower end 47 of a vertical mixing screw 15 in an enlarged view. It can be seen that the wear protection elements 20, arranged one behind the other in the direction of rotation R1, engage under one another in a scale-like manner. The foremost wear protection element 20 engages under the clearing plate 42 with its front edge 28. The wear protection element 20 adjoining the foremost wear protection element 20 engages under the rear edge 29 of the wear protection element 20 in front of it with its front edge 28. Analogous to the screw flight sections 40, the wear protection elements 20 also have flat surfaces. In the illustrated embodiment, with the exception of the foremost wear protection element 20, all subsequent wear protection elements 20 have two flat surfaces and a bevel 46 located between them.
[0051] In Fig. 4 also shows the stud bolts 22 provided on the wear protection element 20 and the nuts 43 provided for fixing the wear protection element 20. In the assembled state, the stud bolts 22 are inserted through the bores 24 provided in the mixing element 100 and fixed to the mixing element 100 with fastening means 25. In the illustrated embodiment, the fastening means 25 are nuts 43, which together with the stud bolts 22 form a screw connection 36. In contrast to fastenings known from the prior art, the wear protection element 20 thus has no interruption on its upper side 45 caused by introduced bores.
[0052] The Fig. 5 and Fig. 6 show a first embodiment of a wear protection element 20 in a perspective view obliquely from below and obliquely from above. This first embodiment of the wear protection element 20 is used in the Fig. 1 to 4 visible mixing elements 100 as the frontmost wear protection element 20 adjacent to the clearing plate 42. In the view from below ( Fig. 5) Markings 31 can be seen on the wear protection element plate 21. These markings 31 were first introduced into the blank of the wear protection element plate 21. In a prefabrication step, they facilitate the alignment of a stud bolt 22 in a predefined position P on the wear protection element plate 21 and thus the production of a welded assembly comprising the wear protection element plate 21 and the stud bolt 22.
[0053] The Fig. 7 and Fig.8 show a second embodiment of a wear protection element 20 in a perspective view obliquely from below and obliquely from above. In addition to the stud bolts 22, the V-shaped hole pattern 50 formed by bores 33 can be seen. As already mentioned above, stud bolts 22 could also be provided instead of the bores 33 for attaching a cutting blade 35. However, since the wear protection element 20 is fixed in a position on the screw thread 16 that protects the outer edge 48 and is not intended to be pivotable, a V-shaped hole pattern 50 could be provided on the cutting blade 35 in such a case in order to be able to attach the cutting blade 35 in different pivot positions relative to the screw thread 16 when the wear protection element 20 is fixed. List of reference symbols 10 mixing containers 11 Filling opening 12 Tow bar 13 floors (out of 10) 14 Wall (of 10) 15 mixing screw 16 screw threads 17 Chassis 18 contact surfaces (out of 20) 19 Outer contour (of 20) 20 Wear protection element 21 Wear protection element plate 22 studs 23 Welded joint 24 holes (in 100) 25 fasteners 26 outer contours (out of 100) 27 contact area (out of 100) 28 front edge (of 20) 29 rear edge (of 20) 30 rotation axes (out of 100) 31 Marking 32 Circle 33 holes (in 20) 34 - 35 cutting blades 36 screw connection 37 central tubes (out of 100) 38 clearing arm 39 holes (in 16 and 20) 40 screw winding section 41 countersunk head screw 42 clearing plate 43 Mother 44 subpages (of 20) 45 top (of 20) 46 chamfer 47 lower end (of 16) 48 outer edges (of 16) 49 - 50 hole pattern (V-shaped) 51 Screw-nut connection 100 mixing organ 200 biomass mixers 201 feed mixer wagons A View D1 diameter (of 22) D2 diameter (of 31) FR direction of travel P Position R1 Mixing direction (out of 100) QUOTES CONTAINED IN THE DESCRIPTION
[0000] This list of documents submitted by the applicant was generated automatically and is included solely for the convenience of the reader. This list is not part of the German patent or utility model application. The DPMA assumes no liability for any errors or omissions. Cited patent literature
[0000] WO 2022 / 158973 A1
[0004]
Claims
[1] Mixing element (100) for use in a biomass mixer (200), with at least one wear protection element (20) and / or cutting blade (35) attached thereto, characterized by , that - the wear protection element (20) and / or the cutting blade (35) comprises a wear protection element plate (21) and a stud bolt (22) or a nut attached to the wear protection element plate (21) by a non-detachable connection, preferably a welded connection (23), - the mixing element (100) comprises a bore (24) or recess for receiving the stud bolt (22) or the nut and - the wear protection element (20) and / or cutting blade (35) • by means of its stud bolt (22) and a fastening means (25) compatible with the stud bolt (22) or · is detachably attached to the mixing element (100) by means of its nut and a fastening means compatible with the nut. [2] Mixing device (100) according to claim 1, characterized by that the mixing element (100) is a mixing screw (15) with a central tube (37) and at least one screw turn (16). [3] Mixing device (100) according to claim 1 or 2, characterized by that the wear protection element (20) and / or cutting blade (35) has an outer contour (19) and the mixing element (100) has an outer contour (26) and the outer contours (19, 26) of the wear protection element (20) and the mixing element (100) are adapted to one another. [4] Mixing device (100) according to one of claims 1 to 3, characterized by that the wear protection element (20) and / or the cutting blade (35) has a contact surface (18) and the mixing element (100) has a contact surface (27) and the contact surfaces (18, 27) of the wear protection element (20) and the mixing element (100) are adapted to one another. [5] Mixing device (100) according to one of claims 1 to 4, characterized bythat at least two wear protection elements (20) and / or cutting blades (35) are provided and that adjacent wear protection elements (20) and / or cutting blades (35) adjoin one another without a gap in the assembled state. [6] Mixing device (100) according to one of claims 1 to 5, characterized by that the mixing element (100) has an axis of rotation (30) around which it rotates in a mixing direction of rotation (R1) during operation and: - the front wear protection element (20) or cutting blade (35) seen in the direction of rotation (R1) has a rear edge (29), - the rear wear protection element (20) or cutting blade (35) seen in the direction of rotation (R1) has a front edge (28) and - the rear edge (29) of the front wear protection element (20) or cutting blade (35) engages over the front edge (28) of the rear wear protection element (20) or cutting blade (35) so that when the mixing element (100) rotates in the mixing direction of rotation (R1), mixed material lying on the mixing element (100) is passed on with little resistance from the front wear protection element (20) or cutting blade (35) to the rear wear protection element (20) or cutting blade (35). [7] Mixing device (100) according to one of claims 1 to 6, characterized by that the contact surface (18) of the wear protection element (20) or of the cutting blade (35) has a marking (31) for identifying a position (P) predefined for the attachment of the stud bolt (22). [8] Mixing device (100) according to claim 7, characterized by that the stud bolt (22) has a diameter (D1) and the marking (31) provided for attaching the stud bolt (22) projects beyond the diameter (D1). [9] Mixing device (100) according to claim 7 or 8, characterized by that a circle (32) with a diameter (D2) which is equal to or larger than the diameter (D1) of the stud bolt (22) is provided as a marking (31). [10] Mixing device (100) according to one of claims 1 to 9, characterized by that the wear protection element (20) has one or more markings which indicate the wear condition of the wear protection element (20). [11] Mixing device (100) according to one of claims 1 to 10, characterized bythat both a cutting blade (35) and a wear protection element (20) are attached to the mixing element (100) by means of the same stud bolt (22), wherein either the cutting blade (35) has the stud bolt (22) and the wear protection element (20) has a bore (33) or conversely the cutting blade (35) has a bore (39) and the wear protection element (20) has the stud bolt (22), so that the three components cutting blade (35), wear protection element (20) and mixing element (100) are fixed by means of the same stud bolt (22). [12] Biomass mixer (200), for example feed mixer wagon (201), comprising - a mixing container (10) with a filling opening (11) and a dispensing opening, - at least one mixing element (100) according to one of claims 1 to 11 arranged in the mixing container (10) and rotatable about a rotation axis (30) and - a drive device for driving the mixing element (100). [13] Wear protection element (20) or cutting blade (35) for a mixing element (100) of a biomass mixer (200), for example a feed mixer (201), characterized by , that: - the wear protection element (20) has a wear protection element plate (21) and at least one stud bolt (22) permanently attached to the wear protection element plate (21) or - the cutting blade (35) has a cutting blade plate and at least one stud bolt (22) permanently attached to the cutting blade plate. [14] Method for producing a wear protection element (20) or a cutting blade (35) for a mixing element (100) of a biomass mixer (200) characterized by the following procedural steps: - Providing a steel plate for producing a wear protection element plate (21) or a cutting blade plate, - Cutting out the wear protection element plate (21) or the cutting blade plate from the steel plate, - Marking a position (P) intended for the subsequent attachment of a stud bolt (22) on the wear protection element plate (21) or on the cutting blade plate by means of a marking (31), - arranging the stud bolt (22) on the mark (31) on the wear protection element plate (21) or the cutting blade plate, - Welding the stud bolt (22) to the wear protection element plate (21) or the cutting blade plate to form a welded assembly.
Citation Information
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