The invention consists of a method of connecting construction parts such as plates, bolts, nut, etc. with a plate by using a press joint connection of a type based on the primary claim or a tool based on the title of secondary claim 4.
In one recognized method based on the same type (DE-05 35 32 900), the material that is displaced from the plate into the lower die opening flows outward in a radial motion to the walls of lower die opening because of the base of the lower die, whereby the displaced material grips the rim of the opening produced by the die and therefore creates a solid connection between the construction element and the plate. This method of connection is normally called a press joint connection. It can be used for connecting two or more stacked plates or for connecting bolts etc. to one or more plates whereby the so-called lost die that is used is either made of soft formable material which is hard enough to perform one press through the plate or to make the corresponding radial cavity within which the displaced plate material can be formed.
The disadvantage of this extremely quick and precise press joint connection with a lower die having inflexible restricting walls is that it leads to connection points having a limited elasticity.
The method based on the invention with the characterizing features of the primary claim and the tool based on the invention with its characterizing features from claim 4 have the advantage that at a high degree of functionality security, a higher elasticity connection is made in manufacturing the connection point between equal segments so that the final technical shear and head traction values are higher than for the connection points mentioned above. The elasticity that is achieved is advantageous in that the ability to work using the method and the tool are retained.
Along with the tool, there is also the advantage that the flexible radial segments that flow outward always land back in their original positions after the operating cycle. There are tools that are recognized which have the radial restricting walls of the lower die made of flexible sections (DE-OS 44 35 460 and DE-GM 297 00 868) but these have the disadvantage that all sections are positioned flexibly so that remnants of the processed material can get caught in between the individual sections in such a way that the sections can no longer return to their original positions, thus decreasing the ability to produce the required connection quality.
Based on an advantageous version of the method based on the invention, the distribution of the radial resistance in reference to the circumference of the lower die opening is centrally symmetrical. This achieves even strength on the connection points.
Another advantageous version of the invention supplements the press joint connection with adhesive elements.
Another advantageous version of the invention as a tool according to secondary claim 4, the segment height matches the depth of the sack opening which ensures that the base of the sack opening remains at its own level even with the enlarged sack opening caused by the flexed segmentation.
In another version of the invention the volume of the material to be displaced in the initial position (before the assembly procedure) is a bit more than the volume of the sack opening minus the intrusion volume of the form die. The extra volume causes radial movement of the segments.
In another version of the invention, the segments can move against a tension force. The tension can be created in different ways but the main thing is that the segments return to their original positions after the work procedure and the return of the die or the removal of the connection point from the lower die opening.
In another version of the invention, the segments are fed into cavities which run into the same level as the base of the sack opening and have guide bands on the sides which run in the radial movement direction of the segments. Any remaining material is pushed back and discarded with this method without any danger of it being pushed into a gap or reducing the functionality.
Based on another version of the invention, the opposing guide walls of the segments run parallel to inflexible wall segments.
Another version of the invention has leaf or bar springs for tension on the die. Besides this type of spring being easy to implement and secure in their functionality, they take up a minimum amount of space.
In another version of the invention the segments are run in grooves of the die which results in the ability to decrease the radial dimensions.
In a further version of the invention the springs on the far end of the segments are connected together as one piece over a connecting section whereby there is an offset of the same in the junction section between the connecting section and the springs, in the direction of the casing parts. This allows the segments to connect together better and the spring system is extremely economical to manufacture. There is also a very significant reduction in the danger of breakage's occurring or other kinds of breakdown.
In a further relevant advantageous version of the invention the connecting section is located in a jointing section of the lower die which runs transverse to the direction of the drive and which allows the connecting section to be permanently integrated into the lower die.
In a further version of the invention this connecting section is made in a cross or star form depending on how many springs must be connected together.
In a further version of the invention there are grooves made in a longitudinal direction and/or on the face side in the mould parting section to receive the springs and/or the connecting section. This allows one to obtain an assembly as a lower die which is self-contained and therefore more easily installed and removed. Another advantage not even mentioned yet is reduction of damage due to external interventions.
Further advantages and advantageous versions of the invention can be taken from the following description, drawing and claims.
One embodiment of the invention in a variety of versions is shown in the drawing and will be described in more detail below. This shows:
As shown in
This movement causes segments 7 to be moved according to the displacement stroke IV. The press joint connection is achieved in that the plates 2 are laid on the die 6, the corresponding parts of the surface pressed deeply into the blind opening 3 down to the bottom of the opening 12 by the punch 1 and then squashed together, so that the material is pushed radially outwards to the fixed sections 5 as well as segments 7 which form the radial wall of the blind opening 3. While the displaced material is held back by the fixed sections 5 of the die 4, the material in-between is displaced against the movable segments which give 5o that the material can flow after them. This, as described at the beginning, is how a differing structure of the connecting point is created.
While the object shown in
All of the embodiments described in the following claims and drawing can be used on their own or in any desired combination with each other in a novel fashion.
Number | Date | Country | Kind |
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100 16 780.2 | Apr 2000 | DE | national |
Number | Date | Country | |
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Parent | 10257041 | Feb 2003 | US |
Child | 12214369 | US |