Sheet steel component for a working device of a work machine and method for producing such a sheet steel component
The steel sheet component with a drawn collar receptacle addresses the need for additional reinforcing sheets by providing a larger connecting surface, simplifying production and reducing material and logistical costs while enhancing wear resistance.
Patent Information
- Application Number
- DE102024101192
- Authority / Receiving Office
- DE · DE
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-01-16
- Publication Date
- 2025-07-17
AI Technical Summary
Existing steel sheet components for working machines require additional reinforcing sheets to provide a sufficiently large connecting surface for bearing elements, which complicates production and increases material and logistical costs.
The steel sheet component features a receptacle formed by a sheet metal section with a drawn collar that surrounds a breakthrough, allowing for a larger connecting surface without additional parts, produced through collar drawing or combined collar and ironing, using a specific steel composition and forming method below the austenitizing temperature.
This approach eliminates the need for additional reinforcing sheets, reduces production complexity, minimizes weight and logistical efforts, and enhances wear resistance while ensuring a robust connection for bearing elements.
Smart Images

Figure 00000000_0000_ABST
Abstract
Description
[0001] The invention is based on a sheet steel component for a working device of a work machine, which has at least one receptacle for a bearing element, in particular a receptacle for a bolt.
[0002] The invention further relates to a device unit of a working device of a work machine with at least one sheet steel component and a corresponding method for producing a sheet steel component for a working device of a work machine, wherein this sheet steel component has at least one receptacle for a bearing element, in particular a receptacle for a bolt.
[0003] Countless types of work machines are used in construction, forestry, and agriculture. In the construction industry, for example, there are cranes, excavators, wheel loaders, etc. These each have a work tool consisting of several units. These units include, for example, an attachment / tool (e.g., a shovel), an arm, a hydraulic cylinder, etc. Some of the units are pivotably mounted to one another. The units have bearing elements that together form a corresponding bearing for the pivoting movement.
[0004] Document DE 11 2022 000 499 T5 describes a work machine in the form of a hydraulic excavator, which, in addition to the work machine base with travel and rotating unit, also comprises a work device. This work device, in turn, has a boom, an arm, a bucket, an arm cylinder, and a bucket cylinder as device units. The arm comprises, among other things, an arm cylinder mount with corresponding sheet steel components and a bucket cylinder mount with corresponding sheet steel components, each of which has a receptacle for a bolt for pivotally supporting one end of the arm cylinder and a bolt for pivotally supporting one end of the bucket cylinder, respectively. To ensure that the mount has a sufficiently large connection surface for the connection to the bolt, the base plates of the sheet steel components are each "doubled up" with a reinforcement plate, which, however, presents some challenges.
[0005] The object of the invention is to provide a sheet steel component for a working device of a work machine with a holder for a bearing element, a device unit of a working device with at least one such sheet steel component and a method for producing such a sheet steel component, in which reinforcement of the starting sheet by an additional part can be dispensed with.
[0006] According to the invention, the object is achieved by the features of the independent claims. Preferred embodiments of the invention are specified in the subclaims, each of which, individually or in combination, may represent an aspect of the invention.
[0007] In the sheet steel component according to the invention for a working device of a work machine, which has at least one receptacle for a bearing element, in particular a receptacle for a bolt, it is provided that the at least one receptacle is formed as a region of the sheet steel component that circumferentially surrounds an opening, wherein this region has a sheet metal section with a sheet thickness d and a drawn collar that adjoins the sheet metal section and extends in the axial direction of the opening. In this way, it can be ensured that the receptacle for the bearing element has a sufficiently large connection surface for the connection to the bearing element, which is of great importance in particular for a connection via surface pressure.
[0008] The sheet steel component is manufactured from a sheet steel blank, usually made from hot-rolled steel. The steel used in this sheet steel is often a structural steel as standardized in EN 10025.
[0009] According to a preferred embodiment of the invention, the sheet thickness d is in the range 20 mm ≤ d ≤ 40 mm. Such a sheet thickness is quite typical for sheet steel components in the working equipment of work machines. Examples of such work machines include excavators and wheel loaders.
[0010] According to a further preferred embodiment of the invention, the collar projects beyond the sheet metal section by at least half the sheet metal thickness d. This combination of the sheet metal section of sheet metal thickness d and the adjoining drawn collar can completely form the receptacle for the bearing element at said sheet metal thickness d, in particular at 25 mm ≤ d ≤ 40 mm.
[0011] According to yet another preferred embodiment of the invention, the steel of the sheet steel component has the following composition (in weight %): at least 0.05% to a maximum of 0.25% carbon (C), at least 0.10% to a maximum of 0.45% silicon (Si), at least 0.80% to a maximum of 2.00% manganese (Mn), up to a maximum of 0.60% copper (Cu), up to a maximum of 0.60% nickel (Ni), up to a maximum of 0.45% chromium (Cr), up to a maximum of 0.25% vanadium (V), up to a maximum of 0.25% molybdenum (Mo) and up to a maximum of 0.25% aluminum (AI), The remainder is iron and common impurities associated with the steel melting process. Such steel possesses sufficient strength, is sufficiently formable and machinable, and has proven itself as a material for such sheet steel components.
[0012] Furthermore, it is preferably provided that the collar has a circular-cylindrical contour. This is particularly intended for receiving a bolt.
[0013] The invention further relates to a device unit for a working device of a work machine with at least one aforementioned sheet steel component, which has at least one receptacle for a bearing element. By means of this device unit, the corresponding working device for a work machine forms an assembly which comprises this device unit and a further unit of the work machine mounted on this device unit via at least one bearing, wherein the bearing element is part of the bearing. The device unit with the sheet steel component is in particular an attachment or tool, an arm, a lever mechanism or a boom. The further unit is in particular a further device unit of the working device.
[0014] In the method according to the invention for producing a sheet steel component for a working device of a work machine, in particular a sheet steel component mentioned above, which has at least one receptacle for a bearing element, the following steps are provided: (i) Providing a steel sheet blank with a sheet thickness d, (ii) Creating at least one opening through the steel sheet blank and (iii) forming the sheet steel blank into the sheet steel component, wherein the at least one receptacle is produced by collar drawing or combined collar and ironing at the opening.
[0015] The invention thus provides a forming process that makes it possible to completely or partially dispense with additional sheets or pipe sections to provide a sufficient length, since collar drawing can increase the surface area, which, depending on the application, can completely or partially eliminate the need for additional sheets or pipes. The collar can often be extended to twice the sheet thickness (and sometimes slightly more). Depending on the application, structural steels are predominantly used for this purpose, which are also ideally suited due to their forming properties. With increasing strength, the collar height decreases.
[0016] The following additional advantages arise: Collars can be produced with minimal effort, eliminating welding operations and the associated quality assurance. This prevents distortion and also eliminates the need for a heat-affected zone, which forms a metallurgical notch. Less logistics effort and master data maintenance are required due to the elimination of an additional part. Workhardening during forming can potentially improve the wear behavior of the holder. Weight savings and the associated CO2 savings are also notable advantages.
[0017] It is preferably provided that the sheet thickness d is in the range 20 mm ≤ d ≤ 40 mm.
[0018] According to a preferred embodiment of the method according to the invention, it is provided that the receptacle is produced in one operation using a drawing punch and a drawing ring, wherein the drawing gap between the drawing punch and the drawing ring in the alternative with the ironing is narrower than the initial sheet thickness of the steel sheet blank, so that when the steel sheet material of the steel sheet blank is drawn into the drawing ring, the steel sheet material is ironed.
[0019] In particular, it is provided that the drawing punch used has a truncated cone-shaped punch head.
[0020] Advantageously, the steel of the steel sheet blank has the following composition (in weight%): at least 0.05% to a maximum of 0.25% carbon (C), at least 0.10% to a maximum of 0.45% silicon (Si), at least 0.80% to a maximum of 2.00% manganese (Mn), up to a maximum of 0.60% copper (Cu), up to a maximum of 0.60% nickel (Ni), up to a maximum of 0.45% chromium (Cr), up to a maximum of 0.25% vanadium (V), up to a maximum of 0.25% molybdenum (Mo) and up to a maximum of 0.25% aluminum (AI), Rest iron and usual steel-related impurities caused by melting.
[0021] Finally, it is advantageous that the forming of the sheet steel blank, at least the collaring or the combined collaring and ironing of the holder, takes place below the austenitizing temperature. This can be done either simply at room temperature (this is usually a temperature in the range of approximately 17°C to 25°C) or by semi-hot forming at a temperature in the range of 100°C to 600°C.
[0022] The invention will now be explained by way of example with reference to the accompanying drawings using a preferred embodiment, wherein the features presented below may represent an aspect of the invention both individually and in combination. They show: Fig. 1 a sheet steel component for a working device of a work machine according to a preferred embodiment of the invention with a receptacle for a bearing element in a side view and Fig. 2 a sectional view through the sheet steel component of the Fig. 1 along the section line A - A.
[0023] The Fig. 1 shows a sheet steel component 10 for a (not shown) working device of a work machine, more precisely for a device unit of such a working device. The sheet steel component 10 has, in addition to a sheet metal base 12, a receptacle 14 in the form of a bushing for a (not shown) bearing element in the form of a bolt. The sheet metal base 12 shown here is flat and can be connected to the rest of the corresponding device unit via one of its edges 16. The receptacle 14 is formed as a region of the sheet steel component 10 that circumferentially surrounds an opening 18. This region, which forms the receptacle, is composed of a (in Fig. 2) sheet metal section 20 of the sheet metal base 12 and a drawn collar 22.
[0024] The sheet metal section has a sheet thickness d, which—depending on the specific application—lies in the range 20 mm ≤ d ≤ 40 mm. The drawn collar 22 adjoins the sheet metal section 20 on one side and extends in the axial direction 24 of the opening 18. The collar 22 has a circular-cylindrical contour. The sheet metal thickness of the sheet metal section 20 essentially corresponds to the (initial) sheet metal thickness d of a sheet steel blank from which the sheet steel component 10 is manufactured. It should be noted at this point that the illustrations in the figures are not to be understood strictly to scale.
[0025] The corresponding work machine can be a work machine from the construction, forestry, and / or agricultural sectors. An example of this would be a wheel loader or farm loader. This has a work tool consisting of several units. In a wheel loader, these are: a bucket as an attachment / tool, an arm, a lever mechanism arranged between the arm and bucket, and one or more hydraulic cylinders (e.g., lifting and tilting cylinders). Some of these units are pivotally mounted to one another. The units have bearing elements that together form a corresponding bearing for the pivoting movement.
[0026] The Fig. 2 shows a sectional view through the sheet steel component of the Fig.1 along the axis A - A. In this illustration, it is particularly clear that the opening 18 extends from one side 24 to the other side 26 of the steel component 10 completely through the latter. Furthermore, it is clearly visible that the collar 22 projects beyond the sheet metal section 20 of the sheet metal base 12 by the full sheet thickness d or slightly more than this. The receptacle 14 in the form of a bushing thus has a receptacle length L along the axial direction 24 of the opening 18, which is generally up to twice as large as the sheet metal thickness d itself. The collar 22 has a wall thickness w that is significantly less than the sheet metal thickness d.
[0027] The following process steps are provided for the production of this sheet steel component 10 for a working device of a work machine: (i) Providing a steel sheet blank (not shown) with a sheet thickness d, (ii) Creating at least one opening 18 through the steel sheet blank as a kind of pilot hole and (iii) Forming the sheet steel blank into the sheet steel component 10, wherein the at least one receptacle 14 is produced by collar drawing or combined collar and ironing at the opening 18. The corresponding tool comprises a drawing punch and a drawing ring.
[0028] To produce a sheet steel component 10 in which the wall thickness w of the drawn collar 22 is approximately the same as the sheet thickness d of the steel blank, collar drawing is suitable, and to produce a sheet steel component 10 in which the wall thickness w of the drawn collar 22 is significantly smaller than the sheet thickness d of the steel blank, combined collar drawing and ironing at the opening 18 is suitable.
[0029] In this case, the holder 14 is produced in one operation using the drawing punch and the drawing ring, whereby during collar and ironing drawing a drawing gap between the drawing punch and the drawing ring is selected which is narrower than the initial sheet thickness d of the steel sheet blank, so that when the steel sheet material of the steel sheet blank is drawn into the drawing ring, the steel sheet material is ironed.
[0030] The sheet steel component according to the invention can be used for all areas of so-called yellow goods, i.e. work machines or transport machines with work equipment, in which bolts or other bearing elements must not exceed a certain surface pressure, which is not achieved by the sheet thickness d of the sheet steel component 10 alone. Reference symbol 10 sheet steel component 12 sheet metal base 14 recording 16 edge 18 Breakthrough 20 sheet metal sections 22 pulled collar 24 axial direction (collar) 26 one side (sheet steel component) 28 other side (sheet steel component) d sheet thickness L Recording length w wall thickness of the collar 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] DE 11 2022 000 499 T5
[0004]
Claims
[1] Sheet steel component (10) for a working device of a work machine, which has at least one receptacle (14) for a bearing element, in particular a receptacle (14) for a bolt, characterized by in that the at least one receptacle (14) is formed as a region of the sheet steel component (10) which circumferentially surrounds an opening (18), this region having a sheet metal section (20) with a sheet thickness d and a drawn collar (22) which adjoins the sheet metal section (20) and extends in the axial direction (24) of the opening (18). [2] Sheet steel component according to claim 1, characterized by that the sheet thickness d is in the range 20 mm ≤ d ≤ 40 mm. [3] Sheet steel component according to claim 1 or 2, characterized by that the collar (22) projects beyond the sheet section (20) by at least half the sheet thickness d. [4] Sheet steel component according to one of claims 1 to 3, characterized bythat the steel of the sheet steel component (10) has the following composition (in weight %): at least 0.05% to a maximum of 0.25% carbon (C), at least 0.10% to a maximum of 0.45% silicon (Si), at least 0.80% to a maximum of 2.00% manganese (Mn), up to a maximum of 0.60% copper (Cu), up to a maximum of 0.60% nickel (Ni), up to a maximum of 0.45% chromium (Cr), up to a maximum of 0.25% vanadium (V), up to a maximum of 0.25% molybdenum (Mo) and up to a maximum of 0.25% aluminum (AI), Rest iron and usual steel-related impurities caused by melting. [5] Sheet steel component according to one of claims 1 to 4, characterized by that the collar (22) has a circular cylindrical contour. [6] Device unit for a working device of a work machine, with at least one sheet steel component (10) according to one of claims 1 to 5, which has at least one receptacle (14) for a bearing element. [7] Method for producing a sheet steel component (10) for a working device of a work machine, in particular a sheet steel component (10) according to one of claims 1 to 5, which has at least one receptacle (14) for a bearing element, in particular a receptacle for a bolt, comprising the steps: - Providing a steel sheet blank with a sheet thickness d, - Creating at least one opening (18) through the steel sheet blank and - forming the sheet steel blank into the sheet steel component (10), wherein the at least one receptacle (14) is produced by collar drawing or combined collar and ironing at the opening (18). [8] Method according to claim 6, characterized bythat the sheet thickness d is in the range 20 mm ≤ d ≤ 40 mm. [9] Method according to claim 7 or 8, characterized by that the receptacle (14) is produced in one operation by means of a drawing punch and a drawing ring, wherein the drawing gap between the drawing punch and the drawing ring in the alternative with ironing is narrower than the sheet thickness d of the steel sheet blank, so that when the steel sheet material of the steel sheet blank is drawn into the drawing ring, the steel sheet material is ironed. [10] Method according to one of claims 7 to 9, characterized by that the forming of the steel sheet blank, at least the collar drawing or the combined collar and ironing drawing to form the receptacle (14), takes place below the austenitizing temperature, preferably below 600 °C, particularly preferably at room temperature.
Citation Information
Patent Citations
Method and apparatus for producing a collar on a workpiece
DE102017102356B3
Method for manufacturing a chassis component designed as a sheet metal forming part with at least one bearing receptacle and chassis component manufactured therein
DE102019212376A1
Working machine arm, working tool and working machine
DE112022000499T5
Method for manufacturing a bearing for a pull-thorough bearing for e.g. a shaft or bolt and apparatus for performing the method
DE19833763A1
Step for escalator or plate for travelator, and escalator or travelator and method for production
US20100206692A1