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SHRINKAGE RATE PREDICTION DEVICE, SHRINKAGE RATE PREDICTION SYSTEM, METHOD FOR CONTROLLING SHRINKAGE RATE PREDICTION DEVICE, AND METHOD FOR PRODUCING CERAMIC PRODUCT
To predict accurately a shrinkage rate by simple processing.SOLUTION: A shrinkage rate prediction device (20) has a shrinkage rate calculation unit (23) that calculates a predicted shrinkage rate of a ceramic molding due to firing by inputting raw material information of the ceramic molding before firing, into a prediction model (22) that indicates the relation between the raw material information regarding a raw material used for ceramic molding, and the shrinkage rates, created on the basis of history data.SELECTED DRAWING: Figure 1
【課題】容易な処理で正確な収縮率を予測する。【解決手段】収縮率予測装置(20)は、履歴データに基づいて作成した、セラミックスの成形に用いる原料に関する原料情報と収縮率との関係を示す予測モデル(22)に、焼成前のセラミックス成形体の前記原料情報を入力することにより、前記セラミックス成形体の焼成による予測収縮率を算出する収縮率算出部(23)を備える。【選択図】図1
SHRINKAGE RATE PREDICTION DEVICE, SHRINKAGE RATE PREDICTION SYSTEM, METHOD FOR CONTROLLING SHRINKAGE RATE PREDICTION DEVICE, AND METHOD FOR PRODUCING CERAMIC PRODUCT
To predict accurately a shrinkage rate by simple processing.SOLUTION: A shrinkage rate prediction device (20) has a shrinkage rate calculation unit (23) that calculates a predicted shrinkage rate of a ceramic molding due to firing by inputting raw material information of the ceramic molding before firing, into a prediction model (22) that indicates the relation between the raw material information regarding a raw material used for ceramic molding, and the shrinkage rates, created on the basis of history data.SELECTED DRAWING: Figure 1
【課題】容易な処理で正確な収縮率を予測する。【解決手段】収縮率予測装置(20)は、履歴データに基づいて作成した、セラミックスの成形に用いる原料に関する原料情報と収縮率との関係を示す予測モデル(22)に、焼成前のセラミックス成形体の前記原料情報を入力することにより、前記セラミックス成形体の焼成による予測収縮率を算出する収縮率算出部(23)を備える。【選択図】図1
SHRINKAGE RATE PREDICTION DEVICE, SHRINKAGE RATE PREDICTION SYSTEM, METHOD FOR CONTROLLING SHRINKAGE RATE PREDICTION DEVICE, AND METHOD FOR PRODUCING CERAMIC PRODUCT
収縮率予測装置、収縮率予測システム、収縮率予測装置の制御方法、セラミックス製品の製造方法
MAEDA TAKASHI (Autor:in) / TAKAHIRA KENTA (Autor:in) / MORI HIROSUKE (Autor:in)
29.07.2021
Patent
Elektronische Ressource
Japanisch
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