Device for producing cast parts, such as aluminum castings, in a pressure method or low-pressure method
10766067 ยท 2020-09-08
Assignee
Inventors
Cpc classification
B22C9/06
PERFORMING OPERATIONS; TRANSPORTING
B22D18/04
PERFORMING OPERATIONS; TRANSPORTING
B22D17/22
PERFORMING OPERATIONS; TRANSPORTING
International classification
B22C9/06
PERFORMING OPERATIONS; TRANSPORTING
B22D17/22
PERFORMING OPERATIONS; TRANSPORTING
B22D18/04
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The invention relates to a device for producing cast parts, in a pressure method using a casting tool (20) which includes movably arranged lateral parts (4) with a base (1) that receives a lower part or a lower mold part (3) and a plate that has an upper part (7) or an upper mold part (5). At least the upper part (7) together with a removal plate (10) and the upper mold part (5) can be moved in the vertical direction (Z) relative to the standing surface of the casting tool (20) using at least one adjusting device (17), and the lateral parts (4) can likewise be moved in the horizontal direction (X) using the adjusting device and/or additional adjusting devices.
Claims
1. A device for producing a cast part (9) in a pressure method or a low-pressure method by means of a casting tool (20) which comprises movably arranged side parts (4), a base (1) receiving a lower part or a lower mold part (3), and an upper part (7) or a plate having an upper mold part (5), wherein at least the upper part (7), together with a demoulding plate (10) and the upper mold part (5), is adjustable in a vertical direction (Z) relative to a supporting surface of the casting tool (20) by means of at least one adjusting device (17), and the side parts (4) are also adjustable in a horizontal direction (X) by means of at least one adjusting device and/or an additional adjusting device; wherein, at least one of the at least one adjusting device (17) is configured to interact directly or indirectly with the demoulding plate (10) to demould the cast part (9), and during the vertical adjustment, the upper mold part (5) is adjustable in the vertical direction (Z), and then the side parts (4) are adjustable in the horizontal direction (X) at least via the at least one adjusting device (17), the at least one adjusting device (17) is configured to interact with positive control elements, which cause a continuous or uniform movement of the side parts (4) in an inclined direction relative to the supporting surface of the casting tool, the positive control elements are constructed as sliding surfaces (19a, 19b, 50a, 50b, 60a, 60b, 70a, 70b), the casting tool (20) is configured with a plurality of sliding surface pairs, characterized by that a first sliding surface pair (60a, 60b) extending horizontally is consisted of a horizontal first sliding surface (60a) arranged on the demoulding plate (10) and a second sliding surface (60b) horizontally arranged on a first sliding element (8); a second sliding surface pair (50a, 50b) extending in an inclined direction is consisted of a third sliding surface (50a) arranged on the first sliding element (8) and a fourth sliding surface (50b) arranged on the demoulding plate (10); a third sliding surface pair (19a, 19b) extending in an inclined direction is consisted of a fifth sliding surface (19a) arranged on the first sliding element (8) and a sixth sliding surface (19b) arranged on a second sliding element (11); wherein, a fourth sliding surface pair (70a, 70b) extending horizontally is consisted of a seventh sliding surface (70a) arranged on the first sliding element (8) and an eighth sliding surface (70b) arranged on the upper part (7).
2. The device according to claim 1, wherein, the casting tool (20) is further configured with a fifth sliding surface pair (18a, 18b) extending at an angle of 45 is consisted of a ninth sliding surface (18a) arranged on the first sliding element (8) and a tenth sliding surface (18b) arranged on the upper part (7).
3. The device according to claim 2, wherein, the plate or the upper part (7) and the second sliding element (11) are firmly connected to each other and connected to the casting tool (20), wherein when the demoulding plate (10) is directly or indirectly pressed against the first sliding element (8), with the interaction between the fifth and the sixth sliding surfaces (19a, 19b) of the second sliding element (11) and the first sliding element (8), between the third and the fourth sliding surfaces (50a, 50b), and between the ninth and the tenth sliding surfaces (18a, 18b) as well as between other horizontally-extending sliding surfaces (70a, 70b), the first sliding element (8) is moved outward, such that the third and the fourth sliding surfaces (50a, 50b) of the first sliding element (8) and the demoulding plate (10) abut against each other, and when the adjusting device (17) further moves downward in the vertical direction (Z), the side parts (4) are forced and guided to move downward and outward on an inclined plane (X, Z).
4. The device according to claim 2, wherein, the first sliding element (8) is constructed as a T-shaped rod which comprises a horizontal part (22) and a vertically-arranged connecting piece (21) in which an opening (53) is arranged to receive a fixing element, wherein the fixing element is connected to one of the side parts (4) by means of the opening.
5. The device according to claim 4, wherein, the second sliding element (11) and the upper part (7) are firmly connected to each other via a fixing element and are connected to the casting tool (20) in a vertically adjustable manner, wherein the connecting piece (21) arranged on the first sliding element (8) is received in an elongated opening (51) arranged on the upper part (7), to allow for lateral adjustment of the side parts (4).
6. The device according to claim 4, wherein, the T-shaped rod has a ninth sliding surface and a third sliding surface (18a, 50a) arranged reversely at an angle of 45, the ninth sliding surface and the third sliding surface are arranged in one end region of the horizontal part (22), wherein a recess (24) with the fifth sliding surface (19a) is arranged on a lower side (23) of the first sliding element (8), and the second sliding element (11) is received in the recess to allow for lateral adjustment of the first sliding element (8) in one of the side parts (4), so that the third and the fourth sliding surfaces (50a, 50b) abut against each other, and the side parts (4) are adjustable downward in the vertical direction (Z) and adjustable outward in the horizontal direction (X).
7. The device according to claim 2, wherein, the demoulding plate (10) has on its outer circumference a plurality of the fourth sliding surfaces (50b) which abut against the third sliding surface (50a) of the first sliding element (8).
8. The device according to claim 2, wherein, the sliding surface (19a, 19b) of the second sliding element (11) and the first sliding element (8) abut against each other and extend inclinedly, and the seventh and the eighth sliding surfaces (70a, 70b) on the first sliding element (8) and the upper part (7) are horizontally arranged, so that sliding surfaces upon the adjustment of the demoulding plate (10) in the vertical direction (Z), enable the first sliding element or the T-shaped rod (8) to move outward in the horizontal direction (X).
9. The device according to claim 1, wherein, the side parts (4) are consisted of at least two or more side part segments, and the side part segments are consecutively moved toward a center or a vertical longitudinal axis via inclined and cooperative sliding rods or moving rods (6, 13) to close the casting tool (20).
10. The device according to claim 1, wherein, the side parts (4) each are provided with one first sliding element (8) on each of opposite sides.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Other advantages and details of the invention will be illustrated in the claims and embodiments of the invention and be shown in the drawings:
(2) Wherein:
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DETAILED DESCRIPTION
(21) In
(22) The casting tool 20 includes a plurality of movably arranged side parts 4 together with a base 1 receiving a lower part or a lower mold part 3, and an upper part 7 or a plate having an upper mold part 5. At least the upper part 7 is connected to a cover plate 15 of the device via a spacing column 14. A demoulding plate 10 is connected to the upper mold part 5 of the device and adjusted in the vertical direction Z relative to a supporting surface of the casting tool 20 by means of at least one adjusting device 17, and the side part 4 can likewise be adjusted in the horizontal direction X by means of the adjusting device and/or another adjusting device.
(23) To demould the cast part 9, at least one adjusting device 17 directly or indirectly interacts with the demoulding plate 10. During the vertical adjustment of the adjusting device 17, the upper mold part 5 is adjusted in the vertical direction Z, and then the side part 4 is adjusted likewise in the horizontal direction X at least via one adjusting device 17.
(24) The adjusting device 17 interacts with positive control elements, and the positive control elements make the side parts or the side sliders 4 move continuously or uniformly in the vertical and horizontal directions relative to the supporting surface of the casting tool.
(25) The positive control elements are formed as sliding surfaces 18a, 18b, 19a, 19b, 50a, 50b, 60a, 60b, 70a and 70b. To demould the cast part 9, every two or more of 18a, 18b, 19a, 19b, 50a, 50b, 60a, 60b, 70a and 70b interact with each other. The device or the casting tool 20 is configured with five sliding surface pairs.
(26) A fifth sliding surface pair 18a, 18b extending at an angle of 45 is consisted of a ninth sliding surface 18a arranged on a first sliding element or a T-shaped rod 8 and a tenth sliding surface 18b arranged on the upper part 7.
(27) A third sliding surface pair 19a, 19b extending at an angle of 45 is consisted of a fifth sliding surface 19a arranged on the first sliding element or the T-shaped rod 8 and a sixth sliding surface 19b arranged on a sliding element or a tilting rod 11.
(28) A second sliding surface pair 50a, 50b extending at an angle of 45 is consisted of a third sliding surface 50a arranged on the first sliding element 8 and a fourth sliding surface 50b arranged on the demoulding plate 10.
(29) A first sliding surface pair 60a, 60b extending horizontally is consisted of a first horizontal sliding surface 60a arranged on the demoulding plate 10 and a second sliding surface 60b horizontally arranged on the first sliding element or the T-shaped rod 8.
(30) A fourth sliding surface pair 70a, 70b extending horizontally is consisted of a seventh sliding surface 70a arranged on the first sliding element or the T-shaped rod 8 and an eighth sliding surface 70b arranged on the upper part 7.
(31) The upper part 7 and the second sliding element or the tilting rod 11 are firmly connected to each other via a fixing element and firmly connected to the casting tool 20, thus are unadjustable in the vertical direction. The casting tool 20 has an opening 25, in which the cast part is shaped (
(32) The first sliding element 8 according to
(33) Since the plate or the upper part 7 and the second sliding element or the tilting rod 11 are firmly connected to each other and are directly or indirectly connected to the casting tool 20, when the demoulding plate 10 directly or indirectly abuts against the first sliding element or the T-shaped rod 8 and thus indirectly acts on the side part 4, the T-shaped rod 8, together with the side part 4, moves outward in the direction X according to
(34) Since the first sliding element is formed as a T-shaped rod 8 and is consisted of a horizontal part and the vertically-arranged connecting piece 21, in which the opening 53 is provided for receiving the fixing element not shown in the drawings, an in the connecting piece, the connecting piece 21 and the horizontally extending part 22 and thus the sliding element 8 can be firmly connected to the side part 4. The T-shaped rod 8 and the side part 4 are therefore adjusted together in the direction Z and the direction X.
(35) The demoulding plate 10 has on the outer circumference a plurality of, in particular 8, sliding surfaces 50b which abut against the sliding surface 50a of the first sliding unit 8.
(36) According to
(37) The function of the sliding surface will be summarized below:
REFERENCE NUMBERS IN THE DRAWINGS
(38) 1 Base 2 Sprue Bush 3 Lower Part, Lower Mold Part 4 Side part, Side Slider 5 Upper Part, Upper Mold Part 6 Sliding Rod, Moving Rod 7 Plate, Upper Part 8 First Sliding Element, T-Shaped Rod 9 Cast Part 10 Plate, Demoulding Plate 11 Second Sliding Element, Tilting Rod 12 Guiding Column 13 Sliding Rod, Moving Rod 14 Spacing Column 15 Cover Plate 16 Corner Part 17 Adjusting Device, Hydraulic Cylinder 18a Ninth Sliding Surface On Part 8 18b Tenth Sliding Surface On Part 7 19a Fifth Sliding Surface On Part 8 19b Sixth Sliding Surface On Part 11 20 Casting Tool 21 Connecting Piece 22 Horizontal Part 23 Lower Side 24 Recess 25 First Opening 50a Third Sliding Surface On Part 8 50b Fourth Sliding Surface On Part 10 51 Elongated Opening 53 Second Opening, Hole 60a First Sliding Surface On Part 10 60b Second Sliding Surface On Part 8 70a Seventh Sliding Surface On Part 8 70b Eighth Sliding Surface On Part 7 X Horizontal Direction Z Vertical Direction