Three-Plate Pressure Die Casting Mold Having Improved Sprue Separation, and Method for Pressure Die Casting (II)
20230330746 ยท 2023-10-19
Inventors
- Olaf HENTSCHEL (Kumhausen, DE)
- Andre SCHAEFER (Rottenburg a.d.Laaber, DE)
- Manfred TREMMEL (Niederaichbach, DE)
Cpc classification
B22D17/2236
PERFORMING OPERATIONS; TRANSPORTING
B22D17/2076
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A three-plate pressure die casting mold for producing at least one metallic die casting part by die casting a metal melt, includes first, second and third mold parts and at least one mold cavity as well as a sprue system. In the third mold part there is at least one spring-loaded pressure element which, when opening the die casting mold, presses the sprue produced in the sprue system against the first mold part, whereby the sprue is retained and tears off from the die casting part in a defined manner. A method for pressure die casting using the three-plate pressure die casting mold is disclosed.
Claims
1.-10. (canceled)
11. A three-plate die casting mold for producing at least one metal die-cast part by die casting a metal melt, comprising: a first, a second, and a third mold part, with the third mold part being arranged between the first and the second mold parts; at least one die cavity; a sprue system, through which the metal melt is fed to the die cavity; and at least one spring-pretensioned pressing element arranged in the third mold part, wherein: when the die casting mold is being opened, a sprue created in the sprue system is torn off from the die-cast part created in the die cavity and the die-cast part is removable by way of a first mold parting plane between the second mold part and the third mold part, and the sprue is removable by way of a second mold parting plane between the first mold part and the third mold part, and when the die casting mold is being opened in the second mold parting plane, the least one spring-pretensioned pressing element in the third mold part presses the sprue against the first mold part, whereby the sprue is retained and tears off from the die-cast part in a defined manner.
12. The three-plate die casting mold according to claim 11, wherein the third mold part is formed with a pocket, in which the spring-pretensioned pressing element is arranged.
13. The three-plate die casting mold according to claim 11, wherein the spring-pretensioned pressing element is a movable punch, wherein a punch guide for the movable punch and a spring device, which pretensions the movable punch toward the first mold part, are provided.
14. The three-plate die casting mold according to claim 13, wherein the punch guide has a guide bolt, on which the punch is longitudinally movably mounted.
15. The three-plate die casting mold according to claim 13, wherein the spring device is a disk spring set.
16. The three-plate die casting mold according to claim 13, wherein a stop, which delimits a travel of the punch toward the first mold part, is provided.
17. The three-plate die casting mold according to claim 13, wherein the punch has a portion which comes into contact with the first mold part when the die casting mold is being closed and via which a restoring force is applied.
18. The three-plate die casting mold according to claim 11, wherein the sprue system has multiple feed channels, which are arranged in the third mold part, lead into the die cavity, and, at their die-cavity-side ends, are each formed with a tapering which locally reduces a channel cross section and which creates a predetermined breaking point during the die casting operation at which the sprue tears off from the die-cast part.
19. A method for producing at least one metal die-cast part, comprising: providing a three-plate die casting mold comprising; a first, a second, and a third mold part, with the third mold part being arranged between the first and the second mold parts; at least one die cavity; a sprue system, through which the metal melt is fed to the die cavity; and at least one spring-pretensioned pressing element arranged in the third mold part, wherein a first mold parting plane is between the second mold part and the third mold part, and a second mold parting plane is between the first mold part and the third mold part; closing the die casting mold and carrying out a die casting operation, with metal melt being pressed into the die cavity through the sprue system; opening the die casting mold after the metal melt has solidified, with a sprue created in the sprue system being pressed against the first mold part by the spring-pretensioned pressing element in the second mold parting plane and tearing off from the die-cast part.
20. The method according to claim 19, wherein the die-cast part to be produced is a vehicle component.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0026]
[0027]
[0028]
[0029]
DETAILED DESCRIPTION OF THE DRAWINGS
[0030] The three-plate die casting mold 100 shown in
[0031] The three-plate die casting mold 100 advantageously makes it possible to feed the metal melt to the die cavity 140 laterally, and substantially perpendicularly with respect to an areal extent of the die-cast part to be produced. To that end, the sprue system 150 has multiple conical, and thus nozzle-shaped, feed channels 151 (also referred to as gates), which are arranged in the third mold part 130, or formed in the third mold part 130, and which lead, in particular substantially perpendicularly, into the die cavity 140. (In the figures, and nonlimitingly, only one of the feed channels 151 is illustrated, the explanations below referring to this one feed channel 151. A three-plate die casting mold 100 according to the invention may have multiple such feed channels 151 or only one such feed channel 151.)
[0032] There is a first mold parting plane T1 between the second mold part 120 and the third mold part 130, and a second mold parting plane T2 between the third mold part 130 and the first mold part 110. These mold parting planes T1, T2 are not planar surfaces in the mathematical sense, but complexly shaped mold parting points that are, however, referred to as mold parting planes. Moving, or displacing, the second mold part 120 and the third mold part 130, as depicted by the arrows B1, B2, makes it possible to open the die casting mold 100 at the mold parting planes T1, T2. Then, the die-cast part created in the die cavity 140 by the solidified metal melt can be removed from the die by way of the first mold parting plane T1, and the sprue created in the sprue system 150 by the solidified metal melt can be removed from the die by way of the second mold parting plane T2, as explained in more detail below with reference to
[0033]
[0034] After the metal melt has solidified, the die casting mold 100 is firstly opened in the second mold parting plane T2, as depicted in
[0035] The pressing element 161 is in the form of a movable punch and is a constituent part of a punch mechanism 160. The punch mechanism 160 comprises the movable punch 161, a guide bolt 164 acting as a punch guide, and a spring device 165, which pretensions the punch 161 toward the first mold part 110, or toward the sprue 300. The punch 161 is longitudinally movably mounted on the guide bolt 164, the movement axis being oriented parallel to the opening movement B1/B2, that is to say horizontally. The spring device 165 is in particular in the form of a disk spring set. The punch mechanism 160 is arranged in a pocket 132 of the third mold part 130. The pocket 132 may be produced by machining, for example by milling, with it being possible for the pocket 132 to be arranged in a main body of the third mold part 130 or in a sprue plate (see reference sign 131 in
[0036] The feed channel 151, formed in the third mold part 130, of the sprue system 150 has, at its die-cavity-side end, a tapering 153 that locally decreases the channel cross section. (The same applies in particular also for the other feed channels 151 in the third mold part 130 that lead into the die cavity 140.) In the opening cross section 152 to the die cavity 140, the tapering 153 is in the form of a bead or the like that runs around the periphery, in particular that is shaped in collar-like fashion (as can be seen in particular in
[0037] The travel, or movement travel, of the punch-like pressing element 161 toward the first mold part 110 is delimited by a mechanical stop (see
[0038] The punch 161 acting as pressing element has, on its end face (or at some other suitable location), a portion 162 which comes into touching contact with the first mold part 110 when the die casting mold 100 is being closed, with the result that a restoring force FR which pushes the punch 161 back into the pocket 132 is applied, the spring device 165 also being tensioned at the same time.
[0039]
[0040]
LIST OF REFERENCE SIGNS
[0041] 100 Three-plate die casting mold [0042] 110 First mold part (nozzle plate) [0043] 111 Sprue plate [0044] 120 Second mold part (closing plate) [0045] 130 Third mold part (intermediate plate) [0046] 131 Sprue plate [0047] 132 Pocket [0048] 140 Die cavity [0049] 150 Sprue system [0050] 151 Feed channel [0051] 152 Opening cross section [0052] 153 Local tapering [0053] 160 Punch mechanism [0054] 161 Punch (pressing element) [0055] 162 Portion [0056] 163 Portion [0057] 164 Guide bolt [0058] 165 Spring device [0059] 166 Stop [0060] 170 Ejector [0061] 200 Die-cast part [0062] 210 Tear-off point [0063] 300 Sprue [0064] 310 Sprue web [0065] 400 Casting piston [0066] A Region [0067] B1 Opening movement [0068] B2 Opening movement [0069] FR Restoring force [0070] T1 First mold parting plane [0071] T2 Second mold parting plane