MANUFACTURING COST ESTIMATOR
Computer-based methods and systems are provided for improved recognition and presentation of parts, such as machine parts, as well as methods and systems for modeling and predicting the cost of such parts.
1 . A system for determining a draw direction for a physical component to be made by one of molding and casting, the system comprising:
a draw direction analysis module, operating on a data structure within a computer representation of the physical component, the draw direction analysis module stored in a non-transitory physical storage medium and using a microprocessor adapted to:
identify a plurality of possible sequences of draw directions;
for each of the plurality of possible sequences of draw directions, assign a value for each feature of the plurality of features of the physical component that are involved in one or more of the possible sequences of draw directions;
calculate a value based on aggregation of the features for at least one sequence; and
determine an optimized draw direction based on comparing the calculated values for a plurality of sequences.
2 . A system of claim 1 , wherein the plurality of features is selected from the group consisting of: a volume of undercuts along a possible draw direction; a number of holes aligned with the possible draw direction; a number of grilles aligned with the possible draw direction; a number of holes not aligned with the possible draw direction; a number of grilles not aligned with the possible draw direction; an area of surfaces aligned with the possible draw direction; an area of surfaces not aligned with the possible draw direction; a number of mounting holes aligned with the possible draw direction; a part height along the possible draw direction; a vertical height of a parting line along the possible draw direction; and a flatness of a parting line along the possible draw direction for a tool to be used to make the component.
3 . The system of claim 1 , wherein the possible sequences of draw directions are selected from the group consisting of cardinal directions and directions aligned with one or more of large surface areas of the component.
4 . The system of claim 1 , wherein the value of each feature is normalized to a normalized value between zero and one, inclusive.
5 . The system of claim 4 , wherein the microprocessor is further adapted to adjust the normalizing values for the features based on empirical results.
6 . The system of claim 2 , wherein a hole aligned with the possible draw direction has a higher value than a hole not aligned with the possible draw direction.
7 . The system of claim 2 , where a flat parting line along the possible draw direction has a higher value than a parting line that is not flat.
8 . The system of claim 2 , wherein a height of a parting line in one possible draw direction has a higher value than a height of a parting line in another possible draw direction.
9 . The system of claim 2 , wherein the possible draw direction comprises a plurality of possible draw directions, and wherein the microprocessor is further adapted to calculate, for each draw direction of the plurality of possible draw directions, a volume of each of the undercuts along the possible draw direction.
10 . The system of claim 9 , wherein an undercut with a smaller volume has a higher value than an undercut with a larger volume.
11 . The system of claim 2 , further comprising assigning a higher value to the area of surfaces of the component aligned with one possible draw direction than with another possible draw direction.