Toyota jidosha kabushiki kaisha (20240162475). METHOD FOR PRODUCING POWER STORAGE DEVICE AND POWER STORAGE DEVICE simplified abstract

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METHOD FOR PRODUCING POWER STORAGE DEVICE AND POWER STORAGE DEVICE

Organization Name

toyota jidosha kabushiki kaisha

Inventor(s)

Yoshiro Obayashi of Toyota-shi (JP)

METHOD FOR PRODUCING POWER STORAGE DEVICE AND POWER STORAGE DEVICE - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240162475 titled 'METHOD FOR PRODUCING POWER STORAGE DEVICE AND POWER STORAGE DEVICE

Simplified Explanation

The present disclosure describes a method for producing a power storage device with reduced molding failures when molding a resin member. The method involves preparing a stacked member, placing a first mold, molding a nest, placing a second mold, and molding a resin member.

  • Explanation of the patent/innovation:

- The method involves a specific sequence of steps to ensure successful molding of a resin member in a power storage device. - By using predetermined molds and following a precise process, the method minimizes the occurrence of molding failures. - The innovation focuses on improving the manufacturing process of power storage devices by reducing defects during resin molding.

  • Potential applications of this technology:

- This method can be applied in the production of various power storage devices such as batteries and capacitors. - It can also be used in other industries that require precise resin molding processes to avoid failures.

  • Problems solved by this technology:

- Reducing molding failures in power storage devices leads to higher product quality and reliability. - The method helps manufacturers save time and resources by minimizing the need for rework due to molding defects.

  • Benefits of this technology:

- Improved efficiency in the manufacturing process of power storage devices. - Enhanced product performance and durability due to reduced molding failures. - Cost savings for manufacturers by decreasing waste and rework.

  • Potential commercial applications of this technology:

- Battery manufacturing industry: Implementing this method can improve the quality and reliability of batteries. - Electronics industry: Power storage devices used in electronic devices can benefit from the reduced molding failures.

  • Possible prior art:

- Prior methods of resin molding in power storage devices may have been less precise, leading to higher rates of molding failures.

Questions:

1. How does this method compare to traditional resin molding processes in terms of efficiency and success rate? 2. Are there any specific types of power storage devices that would benefit the most from this improved molding method?

Answer:

1. The method described in the patent aims to improve efficiency and success rates by following a specific sequence of steps that minimize molding failures. Traditional processes may be less precise and result in higher rates of defects. 2. Power storage devices with complex resin molding requirements, such as high-capacity batteries or specialized capacitors, would likely benefit the most from this improved molding method.


Original Abstract Submitted

a main object of the present disclosure is to provide a method for producing a power storage device wherein a molding failure hardly occurs when molding a resin member. the present disclosure achieves the object by providing a method for producing a power storage device, the method comprising: a preparing step of preparing a predetermined stacked member; a first placing step of placing a predetermined first mold; a first molding step of obtaining a predetermined nest b; a second placing step of placing a predetermined second mold; and a second molding step of molding a predetermined resin member.