G05B2219/35193

Battery information processing apparatus, battery manufacturing support apparatus, battery assembly, battery information processing method, and method of manufacturing battery assembly
11705574 · 2023-07-18 · ·

When a temperature Tedge of a cell at an end of a battery pack is higher than a temperature Tcen of a cell in a pack central portion, a management server generates rebuilding information for rebuilding a battery pack such that a cell less likely to deteriorate than a cell arranged in the pack central portion is arranged at a pack end. When temperature Tcen is higher than temperature Tedge, the management server generates rebuilding information such that a cell less likely to deteriorate than a cell arranged at the pack end is arranged in the pack central portion.

Planning and adapting projects based on a buildability analysis

Disclosed herein is a worksite automation process that involves: generating a first sequence of tasks to build the product according to a model. The process further involves causing one or more robotic devices to build the product by beginning to execute the first sequence of tasks. Further, during the execution of the first sequence of tasks, performing a buildability analysis to determine a feasibility of completing the product by executing the first sequence of tasks. Based on the analysis, determining that it is not feasible to complete the product by executing the first sequence of tasks, and in response, generating a second sequence of tasks to complete the product according to the model. Then, causing the one or more robotic devices to continue building the product by beginning to execute the second sequence of tasks.

MODIFYING ADDITIVELY MANUFACTURED PART DESIGNS USING TOPOLOGICAL ANALYSES
20220269247 · 2022-08-25 ·

Set differences between an as-designed and an as-manufactured model are computed. Topological deviations between the as-designed model and the as-manufactured model are determined based under-deposition and over-deposition features of the set differences. Based on the discrepancies, an input to a manufacturing instrument is changed to reduce topological differences between the as-manufactured model and the as-designed model.

Modifying additively manufactured part designs using topological analyses

Set differences between an as-designed and an as-manufactured model are computed. Discrepancies between the as-designed model and the as-manufactured model are determined based under-deposition and over-deposition features of the set differences. Based on the discrepancies, an input to a manufacturing instrument is changed to reduce topological differences between the as-manufactured model and the as-designed model.

BATTERY INFORMATION PROCESSING APPARATUS, BATTERY MANUFACTURING SUPPORT APPARATUS, BATTERY ASSEMBLY, BATTERY INFORMATION PROCESSING METHOD, AND METHOD OF MANUFACTURING BATTERY ASSEMBLY
20220123348 · 2022-04-21 · ·

When a temperature Tedge of a cell at an end of a battery pack is higher than a temperature Tcen of a cell in a pack central portion, a management server generates rebuilding information for rebuilding a battery pack such that a cell less likely to deteriorate than a cell arranged in the pack central portion is arranged at a pack end. When temperature Tcen is higher than temperature Tedge, the management server generates rebuilding information such that a cell less likely to deteriorate than a cell arranged at the pack end is arranged in the pack central portion.

Battery information processing apparatus, battery manufacturing support apparatus, battery assembly, battery information processing method, and method of manufacturing battery assembly
11705573 · 2023-07-18 · ·

When a temperature Tedge of a cell at an end of a battery pack is higher than a temperature Tcen of a cell in a pack central portion, a management server generates rebuilding information for rebuilding a battery pack such that a cell less likely to deteriorate than a cell arranged in the pack central portion is arranged at a pack end. When temperature Tcen is higher than temperature Tedge, the management server generates rebuilding information such that a cell less likely to deteriorate than a cell arranged at the pack end is arranged in the pack central portion.

DIGITAL MANUFACTURING PLATFORM
20200293024 · 2020-09-17 ·

An on-demand digital manufacturing platform receives digital design files for a product and analyzes producibility of the product by at least one digital manufacturing technology based on whether a set of attributes of the digital design files satisfies producibility requirements for the manufacturing technology. If the attributes do not satisfy the producibility requirements, the platform generates a modified digital design that satisfies the producibility requirements. A customer can place an order for the product from the platform. In response, the platform selects a target fabrication machine to manufacture the product. The target fabrication machine can be selected based at least in part on a determined match between specifications of the target fabrication machine and fabrication parameters that are associated with manufacturing of the product based on the modified digital design. The modified design can then be sent to the target fabrication machine to manufacture the product.

MODIFYING ADDITIVELY MANUFACTURED PART DESIGNS USING TOPOLOGICAL ANALYSES
20200209834 · 2020-07-02 ·

Set differences between an as-designed and an as-manufactured model are computed. Discrepancies between the as-designed model and the as-manufactured model are determined based under-deposition and over-deposition features of the set differences. Based on the discrepancies, an input to a manufacturing instrument is changed to reduce topological differences between the as-manufactured model and the as-designed model.

Planning and Adapting Projects Based on a Buildability Analysis

Disclosed herein is a worksite automation process that involves: generating a first sequence of tasks to build the product according to a model. The process further involves causing one or more robotic devices to build the product by beginning to execute the first sequence of tasks. Further, during the execution of the first sequence of tasks, performing a buildability analysis to determine a feasibility of completing the product by executing the first sequence of tasks. Based on the analysis, determining that it is not feasible to complete the product by executing the first sequence of tasks, and in response, generating a second sequence of tasks to complete the product according to the model. Then, causing the one or more robotic devices to continue building the product by beginning to execute the second sequence of tasks.

METHOD FOR IMPLEMENTING DESIGN-FOR-MANUFACTURABILITY CHECKS
20200004223 · 2020-01-02 ·

One variation of a method for implementing design-for-manufacturing checks during construction of a virtual model of a real part includes: in response to insertion of a virtual feature into the virtual model, estimating a minimum stock geometry for the real part based on the virtual feature; selecting a first material stock cross-section from a set of available material stock cross-sections of a material designated for the real part based on the minimum stock geometry; at a first time, prompting a user to adjust a dimension of the virtual feature to enable production of the real part with a second material stock cross-section in the set of material stock cross-sections, less than the first material stock cross-section; at a second time succeeding the first time, submitting, to a manufacturing facility and over a computer network, an order for production of a unit of the real part according to the virtual model.