Tesla patent points to battery cell improvements with clever deformation detection process

A recent patent published late August has revealed that Tesla is working on a monitoring system and apparatus that will allow the electric car maker to detect deformations in battery cells in a more effective manner. 

Tesla’s patent application, titled “Apparatus and Method for Detection of Deformation in Battery Cells,” notes that battery cycle life is among the most crucial parameters to ensure optimal performance in machines such as electric vehicles and energy storage devices. Over the course of their lifetime, battery cells will be subjected to multiple charge and discharge cycles, at times in vastly varying conditions and environments.  

As noted by the company in its patent application, there are instances when cells operate in an environment where the ambient temperature may intermittently surge to levels above the stable thermal temperature for normal operations. Cells could also be subjected to high charge and discharge rates and large periodic loads, which could result in significant heating, among other reactions. 

Subjected to these factors, battery cells could experience several effects, one of which is the expansion of materials, such as the thickening of electrodes or the volume expansion of electrochemically active materials within the cell itself. These expansions could ultimately result in cells experiencing deformation, which could, in turn, result in both reversible and irreversible mechanical strain, as well as the potential degradation of the battery’s electrode material. 

An illustration depicting Tesla’s apparatus and method for detecting deformations in battery cells. (Credit: US Patent Office)

These battery cell deformations are traditionally monitored using strain gauges or optical gauges that exclusively detect and evaluate deformations at single points in a cell. Tesla noted that this system has space for improvements, since optical evaluations might not provide the correct status of deformation across the entire surface of a battery. This could result in strain and deformation measurements that are inaccurate. 

With these factors in mind, Tesla has come up with a deformation detection apparatus that enables the contactless detection of deformations and/or swelling of the battery across the entire surface of the cell itself. Tesla describes the deformation detection apparatus as follows. 

“A deformation detection apparatus includes a cell movement-control assembly to handle a linear motion and a rotational motion of a battery cell, a body that supports the cell movement-control assembly, a digital micrometer, and control circuitry. The control circuitry controls a displacement of the battery cell between a first position and a second position along a longitudinal axis through a scanning region of the digital micrometer and a plurality of rotational positions of the battery cell at a plurality of charge states and a plurality of discharge states. The control circuitry measures a plurality of outer diameter values of the battery cell for a plurality of linear positions and a plurality of rotational positions along the longitudinal axis of the battery cell and determines a change in a geometrical shape (deformation and/or strain) of the battery cell for the plurality of linear positions and the plurality of rotational positions.”

An illustration depicting Tesla’s apparatus and method for detecting deformations in battery cells. (Credit: US Patent Office)

According to the electric car maker, the battery cell deformation monitoring process outlined in its patent will provide advantages over traditional monitoring methods. 

“The disclosed apparatus, such as the apparatus 100 and method of determination of deformations in the battery cell 112 advantageously provides a contactless solution for deformation detection in the battery cells, as compared to conventional contact-based solutions. Further, instead of measuring the plurality of outer diameter values/strain values at a specific point in time, the disclosed apparatus 100 advantageously facilitates measurement of the plurality of outer diameter values/strain values at a plurality of points on the battery cell 112. The apparatus 100 enables detection of localized/non-localized deformation regions on the battery cell 112, which may exhibit signs of deformation at different charge/discharge states at different points in time.”

Tesla’s recently published patent application for its new battery cell deformation detection apparatus could be accessed in full here

The implications of Tesla’s recent patent are notable. By adopting its deformation detection system, the company would be able to more effectively evaluate the quality of its cells and their operating limits. This could open the doors to potential improvements to the company’s battery cell design, which could, in turn, potentially result in even more range and performance for Tesla’s electric vehicles. 

Tesla holds a notable lead among automakers in terms of battery technology, as exhibited by the company’s electric vehicles’ vastly superior range compared to the competition. This is represented by Tesla’s recent “Raven” update to the 100 kWh Model X, which allowed the SUV to travel 325 miles in one charge. This is notably impressive, considering that the Audii e-tron, a smaller, lighter vehicle equipped with a 95 kWh battery pack (5% smaller than the Model X), is only EPA-rated for 204 miles per charge (38% less range than Tesla’s larger, heavier vehicle). A report from German business newspaper Wirtschaftswoche has also determined that Tesla’s batteries for the Model 3 have over four times less cobalt compared to the batteries utilized by Volkswagen today.

Tesla patent points to battery cell improvements with clever deformation detection process

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Tesla’s Elon Musk meets with China officials as Gigafactory 3 opens new job listings

Tesla CEO Elon Musk’s recent trip to China was eventful. From his appearance at the 2019 World Artificial Intelligence Conference to a series of meetings with high-ranking officials, Musk’s trip seemed to have secured even more support for Tesla from the local Chinese government. 

In true Elon Musk fashion, the CEO’s schedule for his China trip proved incredibly busy. After his appearance at the 2019 WAIC and his visit to Gigafactory 3 in Shanghai, Musk met with Li Qiang, the secretary of the Shanghai Municipal Party Committee for a conversation about the city’s upcoming tech projects. 

Musk then flew to Beijing the following day, where he discussed, among other things, mass transportation concepts featuring The Boring Company’s technologies to several local heavyweights such as Xiao Yaqing, the head of China’s State Administration for Market Regulation. Musk also met with Vice Minister of Industry and Informatization Xin Guobin before his departure from the country.

China’s Transport Minister Li Xiaopeng also met with the CEO on Friday. Interestingly, the meeting was eventually followed by the Chinese government’s announcement that it was exempting Tesla’s electric cars from a 10% purchase tax, a gesture that is usually reserved for domestic companies, as noted in a Bloomberg report. 

In what could very well be another sign that Tesla’s China push is accelerating, the company posted an updated list of open positions at Gigafactory 3. As of Monday, job listings from Tesla China’s Careers page suggested that the electric car maker has started recruitment efforts for Gigafactory 3’s Engineering Team.

Among the new jobs listed include Body/Closures Engineers, Exterior/Lighting Engineers, Chassis Engineers, Interior Engineers, Vehicle Test Drive Engineers, Distribution Engineers, and Thermals Engineers, to name a few. 

These new job listings tease are the most recent hint yet that the massive electric car production complex in Shanghai is about to start its full operations soon. Footage taken from Gigafactory 3’s interior have revealed that the facility’s production lines are already under construction, and pictures taken of the site revealed that initial Model 3 units are being assembled.  

Gigafactory 3’s impending activation could be seen in the way the site looked during its most recent drone flyover. As could be seen in footage from Tesla enthusiast and drone operator Jason Yang, Gigafactory 3’s general assembly building is nearing completion, and its surrounding areas are also starting to be finished. Local reports have hinted that the Model 3 production facility could be activated as early as this month, barring unexpected delays. 

Watch Gigafactory 3’s recent flyover in the video below. 

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Tesla’s Elon Musk meets with China officials as Gigafactory 3 opens new job listings

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Tesla’s competitors aren’t perfect, but they could help usher in a new EV crowd

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Taking Tesla head-on as a car maker these days certainly appears to be a formidable task, but perhaps it’s not sacrilege to applaud the various efforts along the way. Elon Musk has mentioned how the California brand can’t achieve its sustainability mission alone on several occasions, as most Tesla fans are aware, but the big picture is not just about pure numbers of electric vehicle (EV) players. It’s also about consumer taste and finances.

For one, big cars are pretty popular in Tesla’s home market, the United States. Sure, Tesla has the Model X for anyone looking for an SUV. But in some parts of the US, it’s on par with the price of a home mortgage and out of financial reach for many (most?) larger families. I actually tried promoting the idea of a Tesla to my best friend who happens to be a lawyer and whose partner has a well-paying IT job; they sounded like the ideal income bracket for the brand’s larger offering to me. Her immediate response was, “Ha! We could never afford a Tesla!” We spoke about the Model 3 and upcoming Model Y, but with 3 kids in day care (and all with large car seats), she couldn’t take on ‘another mortgage’ just to drive them from place to place regardless of the other advantages.

By the way, I’m sure Tesla will address this consumer gap eventually, but for now I’m making a point about their competitors finding a market niche that could be a boon for Tesla in the long run.

Audi could potentially have another all-electric option for someone like my friend in the e-tron. The $70,000+ price tag doesn’t quite compare to the $30,000 or so she paid for her Honda Pilot, but if you lined up gas and maintenance costs AND presented the e-tron 50, my bargain-loving bestie might bite. Audi recently launched this 71 kWh, shorter-range version of the larger e-tron SUV in Norway, and it runs about $55,000 with somewhere around 150 miles of range. As her kids get older (and car seats become smaller boosters), she might get used to the whole ‘just plug your car in at night’ perk and be open to something a little more entertaining a la Tesla.

Then there’s the Jaguar I-PACE. Despite its troubles with range estimates and charge point access, this all-electric luxury brand crossover does have one advantage over Tesla to some consumers: It’s not a Tesla. Now, I don’t mean that in a derogatory way. I’m more so saying that there are plenty of consumers that are used to admiring the style of certain brands and grew up dreaming of owning one some day. My co-worker’s husband comes to mind, actually.

While he thinks Tesla has some amazing performance stats, he’s a ‘hot hatch’ kind of guy. He simply likes the style of the I-PACE a bit more than a Tesla right now, and would also prefer his first EV to come from a brand whose other models have caught his attention for decades. If he were to take up his old pastime of hobby racing using the I-PACE though, which would certainly be tempting after experiencing the immediate torque and horsepower from an EV, he’d probably see the light surrounding Tesla ownership after being smoked by a few Model 3 Performances.

Finally, there are the budget buyers (myself included) who see the $35,000-ish Model 3, but then also see the $15,000 used Nissan LEAF. Since I have a few kids, this purchase would be purely an ‘errand runner’ as my main car needs to be larger and not cost more than my future land and farmhouse combined. If the price of a used Tesla comes down to that sort of bargain, which is unlikely given the Tesla Network plans for the Model 3, I would certainly bite. But the LEAF does something useful: It gets people like me into an electric car that I can afford, which is part of the big picture isn’t it? And kids do grow up and buy their own cars eventually, meaning I can one day trade in my mini van for something a little more…Tesla.

Tesla’s competitors aren’t perfect, but they could help usher in a new EV crowd

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