Debate: Korean Workers Fear Unemployment, While Musk Envisions a Society 'Without Work'?

marsbit发布于2026-08-03更新于2026-08-03

文章摘要

While South Korean auto workers fear job losses from robotics, Elon Musk envisions a future where AI and robots render most work optional. This article explores the growing tension between immediate anxieties over automation and long-term visions of a post-work society. The piece begins with recent strikes at Hyundai's Korean plants, where unions, amid standard wage negotiations, also sought job guarantees against advancing robotics—specifically mentioning Boston Dynamics' Atlas. This reflects how anxiety about technological displacement is emerging even before robots are fully capable of replacing skilled labor on assembly lines. The author argues that while current robotics still struggle with the nuanced, experiential knowledge of veteran workers, the *perception* of imminent replacement is fueling social conflict prematurely. This modern "Luddite" sentiment is compared to the 19th-century English textile workers who smashed machines. Historically, Luddites weren't simply anti-technology; they were protesting the rapid devaluation of their skills and the unequal distribution of productivity gains. Similarly, today's workers ask who will bear the cost of transition and share in the new wealth created by machines. In contrast, figures like Elon Musk propose an optimistic endpoint: with AI and robotics driving extreme abundance, the link between work and survival could break. He suggests concepts like "Universal High Income" could allow society to share the technological b...

Over 200 years ago, British textile workers took up hammers to smash machines. More than two centuries later, similar sentiments have emerged in a South Korean automobile factory.

In July of this year, the union at Hyundai Motor's South Korean operations launched a series of partial strikes. On the surface, this appears to be a familiar labor-management negotiation: wage increases, performance bonuses, and retirement age were all among the union's demands. However, this year, an issue with a distinctly contemporary feel was added—job security in the age of AI and robotics. As early as the strike vote stage in June, the Hyundai Motor union proposed seeking employment guarantees concerning advanced robotics technology. Korean media subsequently linked this demand to Hyundai Motor Group's planned introduction of Boston Dynamics' Atlas humanoid robots. Ultimately, over 86% of the approximately 40,000 union members voted in favor of striking.

Therefore, simply summarizing this incident as "Hyundai workers protesting robots taking their jobs" is not entirely accurate. The actual strikes in July were primarily triggered by the breakdown of negotiations over wages and other labor-management issues; robots were not the sole or even the most direct catalyst for this round of strikes. However, another fact is equally noteworthy: robots have officially entered the union's negotiation purview. Even before they have been deployed on a large scale on Hyundai's production lines, they have already prompted tens of thousands of industrial workers to start contemplating a question that once seemed quite distant—what happens to people?

This scene easily evokes the "Luddite movement" during the British Industrial Revolution two centuries ago. But what is truly worth discussing today may no longer be "whether humans are about to start smashing machines again," but rather a more subtle misalignment: robots may still be a long way from truly replacing large numbers of skilled industrial workers, yet social conflicts surrounding robot replacement have already emerged prematurely.

And just as this anxiety appears early, a recent interview with Elon Musk coincidentally presents an almost diametrically opposite vision of the future. In a latest interview published by The Economist, Musk once again discussed the long-term outcome of AI and robotics: digital AI will take on an increasing amount of cognitive labor, while robots become the physical-world execution end for AI. Following this trajectory, eventually, almost all necessary work could potentially be performed by machines.

While Hyundai Motor workers worry about Atlas taking away some jobs on the production line, Musk imagines a day when the vast majority of work no longer requires human completion.

The real point of divergence thus becomes clear: the issue may not only be whether robots will replace labor, but also how humanity understands "losing work." Today's society is still built on a solid chain—work generates income, income supports consumption and life, therefore losing work inherently means losing economic security.

What Musk describes is a different scenario: when AI and robots push the productive capacity for goods and services to a sufficiently high level, society enters a state of "extreme abundance," where the cost of supplying food, housing, transportation, healthcare, and a multitude of services continuously declines. People no longer necessarily have to sell their labor to obtain means of subsistence, and work gradually transforms from a means of survival into a personal choice.

This is also the context for his repeated proposals in recent years for "Universal High Income." AI and robots create immense productivity, with the technological dividend ultimately translating into universal prosperity. Robots "taking jobs" might even become a prerequisite for humanity to break free from the necessity of "having to work to live."

Thus, Luddism sees the unemployment risk behind machines, while Musk sees the potential for freedom behind machines; Hyundai Motor workers hope to protect their jobs before robots enter the factory, while Musk anticipates robots ultimately eliminating the very necessity of "having to work." These two seemingly contradictory logics also sharpen the same question: as machines create increasing wealth, who ultimately shares in this wealth?

Robots Aren't Skilled Workers Yet, But Unemployment Anxiety Has Arrived First

The concerns of Hyundai Motor workers are not hard to understand. The Hyundai Motor Group has publicly displayed an aggressive robotics strategy, and Boston Dynamics' Atlas is also continuously progressing from lab demonstrations towards industrial operations. Against this industrial backdrop, an automobile worker seeing Atlas lifting, walking, and handling components, and then seeing companies continuously emphasize AI, smart manufacturing, and automation, will naturally ask: five years from now, will the person standing next to this production line still be me?

Social media has further compressed this anxiety into a highly transmissible logical chain: companies buy robots, robots enter factories, human workers are laid off. An advance in a robot's capability, a procurement plan, or an experimental video can quickly be combined into a story of "a certain profession's countdown." Long-term technological trends are folded into an imminent reality, so the imagination of robot replacement outpaces the robots themselves.

The problem is, real industrial production is far from that simple. Automobile manufacturing is already one of the most automated industries globally. Highly standardized processes like welding, painting, stamping, and material handling have been covered by industrial robots for decades. What humanoid robots today truly need to conquer are precisely the areas traditional automation has never fully resolved: flexible assembly, harness operation, cross-station mobility, temporary anomaly handling, and the vast array of subtle and complex variations between different parts and working conditions.

The most valuable aspect of a skilled industrial worker is far from merely having two arms. How to install a part when it has slight dimensional variation, what a change in feel during tightening signifies, where to check first when a machine makes a certain sound, how to compensate in the next step after a slight deviation in the previous process—these experiences formed over years constitute the immense tacit knowledge in industrial production. They are rarely fully written into SOPs, yet they determine whether a production line can truly operate stably.

This is precisely one of the hardest barriers for current robots to cross. Being able to pick up a part in a demo environment is a completely different engineering problem from being able to perform the same action stably thousands of times over eight consecutive hours; being able to complete an assembly once does not mean being able to meet the yield rate, cycle time, safety requirements, and costly downtime risks demanded by a real production line. For many robotics companies, the journey from "can do" to "can do stably long-term" remains a lengthy path to industrialization.

Therefore, from the perspective of current technological reality, the notion that "tens of thousands of automobile workers will immediately be replaced by humanoid robots" is clearly an oversimplification. A more realistic situation today might be this: the long-term possibilities of technology are being prematurely realized in public discourse, and people are beginning to feel uneasy about that future even before robots truly possess comprehensive replacement capabilities.

But this does not mean the anxieties of the Hyundai Motor workers in South Korea are meaningless. On the contrary, when a technology has the potential to redefine production relations, the fermentation of social sentiment often precedes the technology's large-scale maturity. This prematurely emerging anxiety may not be accurately predicting tomorrow, but it likely already poses a question that will eventually need to be answered seriously.

Re-understanding Luddism: What They Feared Was Never Just a Machine

"Luddism" is often used as a slightly pejorative term today. People who reject new technology are labeled Luddites; those who express concerns about AI or robots are also easily categorized as conservative or anti-technology. Over time, Luddism has almost become synonymous with "technological backlash."

But the historical Luddite movement was far more complex than this label suggests. During the rapid mechanization of the British textile industry in the early 19th century, many participants in the Luddite movement were themselves skilled artisans with years of training. Machines did not bring only higher production efficiency; they simultaneously disrupted existing skill systems, wage structures, and labor relations. Once-scarce craftsmanship could rapidly depreciate, low-skilled laborers could enter production with the help of machines, the bargaining power of skilled workers declined, and the livelihoods of some were directly impacted. Machines ultimately became the most tangible object of their anger.

Looking back more than 200 years later, we of course know that machines did not destroy human society. The Industrial Revolution ultimately created an economic scale far larger than the handicraft era and gave rise to many professions that did not exist before. Therefore, judging the Luddites from today's perspective seems easy: they overestimated the threat posed by machines and underestimated the capacity of technological progress to create new opportunities.

Yet this "hindsight correctness" overlooks a very important issue. Standing before a worker in 1811, he did not know how much the global economy would grow in 100 or even 200 years, nor did he know when new occupations would emerge. What he could feel was that his wages were falling, his skills were depreciating, and his next job was uncertain. The overall benefits brought by technological progress typically take a long time to diffuse, but the costs incurred by technological substitution can be concentrated on a specific group of people in a very short time.

Today's Hyundai Motor workers facing Atlas are essentially in a similar position. Robotics companies might tell them automation can improve efficiency, economists might explain that new technologies ultimately create new jobs, tech companies might depict a future where humans are freed from repetitive labor—these assertions may all hold true. But the questions workers truly care about are more concrete: when will my position disappear? How much will the skills I've accumulated over 20 years be worth in five years? Will part of the productivity gains the company achieves through robots become benefits for employees? If industrial transformation indeed incurs costs, why should those costs first fall upon those being replaced?

Therefore, understanding the re-emergence of Luddite sentiment in the robotics era as some people fearing new technology again is an overly simplistic and labeled view. Textile workers 200 years ago and automobile workers today are essentially asking the same question: after machines create greater efficiency, who ultimately shares in that efficiency?

The Hardest Part Is Never the Endgame, But How to Get There

What Musk describes is a society where "work becomes optional." According to his estimation, by around 2036, the productivity brought by AI and robots may already be so high that "money" itself becomes less important than it is today, and people will no longer necessarily have to work for survival; labor will become more of a choice.

Such an endgame is certainly attractive enough, but it carries an extremely important implicit condition: the immense productivity created by robots and the resulting material abundance it brings must ultimately be shareable by the entire society.

Some do not believe in this viewpoint. As the renowned scholar Zhang Xiaoyu states in "Technology and Civilization: Our Era and Future," "If slave laborers benefited from technological progress, it was only because the development of productivity brought about by technological progress turned past luxuries into today's mass consumer goods."

If machines belong to a few companies, computing power is concentrated in a few enterprises, data and capital are likewise concentrated in a few entities, and the goods and services created by robots are still distributed entirely dependent on the existing income system, then continuously increasing production efficiency will not automatically grant each individual more wealth.

After all, during the last wave of the internet boom, the term "techno-elite" had already become a label for Silicon Valley entrepreneurs.

This is also why Musk ultimately had to propose "Universal High Income." In a sense, he appears to stand at the other extreme of Luddism, yet still needs to answer the question posed by the Luddite movement two centuries ago—how should the wealth created by machines be distributed.

What is truly complex may not be the distant endgame Musk depicts. If one day robots can indeed perform the vast majority of necessary labor, society might already have formed new income systems, security frameworks, and social contracts matching that reality. The stage most prone to conflict is actually the intermediate phase leading to that future—the "painful transition period" many foresee—which is happening today.

Robots won't suddenly jump from replacing 0% of jobs to replacing 100% in a single day. A more likely scenario is that they first replace 5%, then 10%; some highly standardized positions diminish first, certain skills begin to depreciate, some people become direct beneficiaries of the productivity红利 (dividend) through AI and robots, while others bear the costs of transition first. The worst-case scenario is that companies achieve higher profits, but retraining systems for workers are not yet mature; new jobs are emerging, but not necessarily in the places where people lost their old jobs.

Technological capabilities usually improve along a continuous curve, but social institutions do not automatically upgrade in sync with technology. This is why Michael Burry, the investor原型 (prototype) for "The Big Short," in response to Musk's views on AI, robots, and Universal High Income, left that impactful statement: "Before that happens, there will be a revolution."

Whether this statement is overly pessimistic is certainly debatable, but it at least accurately points out the process most easily glossed over in Musk-style futurism: how exactly do we navigate the several decades from today's society, which relies on labor for income, to that future society where work is optional?

The anxiety of Hyundai Motor workers occurs precisely at the very beginning of this long transitional path.

Wood Straightened by the Ink Line: Technology Also Needs Its Own "Rules and Frameworks"

Therefore, the "Luddism" reappearing in the robotics era need not be simply mocked. Smashing machines certainly cannot halt the industrial revolution; history has long proven that when a technology can continuously improve production efficiency and reduce costs, it is ultimately difficult to exclude from society through resistance. The same holds for today's humanoid robots; as long as costs continue to fall, reliability improves, and return on investment gradually becomes viable, their entry into factories, warehouses, commercial services, and even household life will become a long-term industrial trend.

But acknowledging the irreversibility of the trend does not mean society can only sit back and let technology determine everything. The industrial civilization of the past two centuries has never consisted solely of advancements in engines, electricity, computers, and robots. The eight-hour workday, minimum wage, occupational safety, labor contracts, social insurance, product liability, and various industrial standards are also part of the institutional legacy created by the Industrial Revolution. Many rules were initially seen as restrictions on efficiency but ultimately formed the foundation upon which technology could enter society on a large scale.

The development measures, management measures, and industry guidelines increasingly emerging today around artificial intelligence, robotics, data, security, and ethics are precisely part of the process of rediscovering boundaries in this new round of technological revolution. As robots truly enter production and daily life, these rules will become increasingly concrete: what kind of labor-management consultation should precede robots entering production lines, how should productivity gains from automation be distributed, who bears the retraining costs for those displaced by technological substitution, how is liability determined after a robot causes a safety incident, which high-risk scenarios must retain human-in-the-loop—these questions will ultimately become part of robot industrialization.

They may not seem as exciting as robots running, doing backflips, or completing a complex operation, but they are likely to determine whether robots can truly pass through the final gate between technological demonstration and industrial application.

"Wood is straightened by the ink line; metal is sharpened on the whetstone." The ink line may seem to restrict the direction of the wood, yet it also allows it to ultimately become a pillar. Norms are similar for technology. Genuinely mature technological optimism does not require pretending that technology creates no problems. The more a society believes robots can ultimately create immense productivity, the more it should place discussions about benefit distribution, employment transition, safety liability, and human dignity on the table for early debate, before that productivity is released on a massive scale.

So perhaps the anxiety of the Hyundai Motor workers in South Korea has indeed arrived somewhat early. Today's humanoid robots are still a considerable engineering distance away from becoming a truly reliable automobile worker capable of long-term substitution for a skilled human worker. But discussions about how society should face them once they truly enter factories are not early at all.

They should perhaps start even earlier.

This article is from the WeChat public account "AI Wu Zao," author: Peng Kunfang

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相关问答

QWhat is the main conflict highlighted in the article between Korean auto workers and Elon Musk's vision?

AThe article highlights a fundamental conflict between immediate anxiety and long-term optimism regarding technological disruption. Korean auto workers at Hyundai are anxious about robots potentially taking their jobs in the near future, seeking employment guarantees. In contrast, Elon Musk envisions a distant future where AI and robots create such material abundance that work becomes optional, necessitating concepts like 'Universal High Income.'

QWhy does the article argue that comparing the Hyundai workers' concerns to 'Luddism' is an oversimplification?

AThe article argues it's an oversimplification because the original Luddites and modern workers are not merely 'anti-technology.' Their core concern is the same: who benefits from the increased productivity created by machines? They fear that the costs of technological transition (job loss, skill devaluation) will be borne by workers, while the profits and efficiency gains are captured by capital owners, without a fair redistribution mechanism.

QWhat key technical challenge does the article identify for humanoid robots like Boston Dynamics' Atlas to fully replace skilled auto workers?

AThe key challenge is mastering the vast amount of 'tacit knowledge' possessed by skilled workers. This includes handling part tolerances, interpreting sensory feedback (sound, touch) during assembly, compensating for variations, and managing unforeseen anomalies. Moving from a one-time demonstration to performing these complex, judgment-based tasks reliably for thousands of cycles under real production pressure and safety constraints remains a significant engineering hurdle.

QAccording to the article, what is the 'most difficult' part of reaching Elon Musk's vision of a post-work society?

AThe most difficult part is the transitional period or 'growing pains.' The article states that the hardest phase is not the distant endpoint where work is optional, but the decades-long middle stage where robots incrementally replace 5%, then 10% of jobs. Conflict may arise if social institutions (retraining, income support, new labor contracts) fail to evolve synchronously with technological capabilities, leaving displaced workers to bear the costs while benefits are concentrated.

QWhat historical parallel does the article draw to suggest that regulations and social frameworks are necessary for the robotics revolution?

AThe article draws a parallel to the Industrial Revolution, which produced not just engines and machines but also crucial social and institutional frameworks like the eight-hour workday, minimum wage, workplace safety standards, and social insurance. Similarly, for robots to be widely integrated, society needs to proactively establish rules for fair benefit sharing, retraining responsibilities, safety liability, and ethical deployment, forming the necessary 'guardrails' for sustainable technological adoption.

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理解 Mantis ($M):跨链互操作性的新纪元 在不断发展的 Web3 和加密货币领域,新项目努力提供创新解决方案,旨在提升用户体验并扩展去中心化金融生态系统中的功能可能性。其中一个备受关注的项目是 Mantis ($M),这是一个基于跨链互操作性和基于意图的结算原则的开创性协议。本文深入探讨 Mantis 的基本方面,包括其核心功能、创建者、投资支持、创新特性和关键里程碑。 什么是 Mantis ($M)? Mantis 被描述为一个 多领域意图结算协议,简化跨链交互,使用户能够在各种区块链平台上无缝执行复杂的金融交易。该协议通过三个主要层次运作: 意图表达:用户可以使用自然语言表达他们的交易目标,借助 DISE LLM,一个先进的 AI 语言模型。例如,用户可能会表达希望以 1% 的特定滑点容忍度将以太坊 (ETH) 兑换为索拉纳 (SOL)。 执行:这一层利用一网络的求解者竞争以满足用户意图。交易通过需求一致性 (CoWs) 和订单流拍卖 (OFAs) 等机制执行,确保用户需求得到最佳满足。 结算:利用跨区块链通信 (IBC) 协议,Mantis 实现原子跨链交易,使用户能够在包括以太坊、索拉纳和 Cosmos 在内的各种支持链上操作。 Mantis 旨在为闲置资产引入 原生收益生成,利用密码学证明在整个过程中保持交易的完整性。 创建者与开发团队 Mantis 由 Composable Foundation 构思,该组织以其对区块链互操作性解决方案的重视而闻名。该基金会与包括哈佛大学和里斯本大学在内的知名学术机构合作,致力于广泛的研究和开发工作,以指导 Mantis 的架构和功能。 Composable Foundation 对于促进区块链领域创新的承诺,使 Mantis 成为满足多个区块链网络间互操作性日益增长需求的强大解决方案。 投资者与支持 虽然关于个别投资者的具体细节尚未公开披露,但 Mantis 得到了来自多个实体的 substantial 支持,包括: 来自 IBC 支持链的生态系统补助,支持协议在去中心化金融生态系统中的增长和整合。 与基础设施提供商的战略合作伙伴关系,增强 Mantis 的网络能力和部署策略。 通过 Composable Foundation 的财政支持,确保持续的财务支持以满足持续开发和运营成本。 这些合作努力反映了利益相关者对增强跨链功能和 Mantis 基础设施创新潜在效用的重要性达成共识。 关键创新 Mantis 通过几项开创性创新使其功能和效用得以提升: 链无关意图:用户可以从任何支持的链发起交易,同时在另一条链上结算。这种灵活性赋予用户权力,推动不同平台之间的互动增加。 AI 驱动界面:DISE LLM 的集成使用户能够使用自然语言进行复杂的 DeFi 操作,从而简化交互,使区块链技术对更广泛的受众可及。 跨域 MEV 捕获:Mantis 通过求解者之间的竞争创建了一个最大可提取价值 (MEV) 的内部市场。这种创新方法允许在复杂交易中实现更高的效率和价值提取。 模块化结算层:该协议支持多种验证方法,包括零知识证明和乐观汇总,提供一个可以适应新兴区块链技术的多功能框架。 历史时间线 Mantis 的发展标志着几个关键里程碑,描绘了其轨迹和增长: | 年份 | 里程碑 | |————|————————————————————————-| | 2022 | 在 Composable Foundation 的研究部门内进行初步概念开发。 | | 2024 年 Q3 | 启动具有索拉纳和以太坊之间桥接能力的测试网。 | | 2025 年 Q1 | 预计代币生成事件 (TGE) 与主网启动同时进行。 | | 2025 年 Q2 | 预计集成 DISE LLM 并扩展跨链能力。 | | 2025 年下半年 | 计划通过进一步的 IBC 升级支持超过 15 条链。 | 该时间线概述了 Mantis 的演变,从概念讨论到积极实施和未来增长阶段。 生态系统增长策略 Mantis 的生态系统增长策略包括几项旨在鼓励用户参与和开发者参与的举措: 积分系统:用户可以通过提供流动性和参与推荐计划获得协议积分。这些积分可在未来兑换奖励,促进一个强大的用户社区。 模块化软件开发工具包 (SDK):该工具包使开发者能够基于意图驱动模型创建应用程序,利用 Mantis 的基础设施,从而促进其生态系统内的创新。 治理模型:随着协议的成熟,$M 代币持有者将对协议治理拥有发言权,允许他们对提议的升级和变更进行投票,从而增强社区参与和去中心化。 Mantis 代表了跨链架构领域的重大进展。通过无缝集成先进的 AI 算法与强大的结算框架,Mantis 旨在解决多链生态系统中的碎片化问题。其创新方法优先考虑改善用户体验,同时遵循去中心化和安全性的基本原则,为区块链技术的未来互操作性设定了新标准。 随着 Mantis 继续其增长和实施之旅,它承诺成为 Web3 和去中心化金融竞争格局中值得密切关注的项目。凭借其跨越边界和提升用户参与的关注,Mantis 有望成为加密货币领域未来发展的重要组成部分。

390人学过发布于 2025.03.18更新于 2025.03.18

什么是 $M

如何购买M

欢迎来到HTX.com!我们已经让购买MemeCore(M)变得简单而便捷。跟随我们的逐步指南,放心开始您的加密货币之旅。第一步:创建您的HTX账户使用您的电子邮件、手机号码注册一个免费账户在HTX上。体验无忧的注册过程并解锁所有平台功能。立即注册第二步:前往买币页面,选择您的支付方式信用卡/借记卡购买:使用您的Visa或Mastercard即时购买MemeCore(M)。余额购买:使用您HTX账户余额中的资金进行无缝交易。第三方购买:探索诸如Google Pay或Apple Pay等流行支付方法以增加便利性。C2C购买:在HTX平台上直接与其他用户交易。HTX场外交易台(OTC)购买:为大量交易者提供个性化服务和竞争性汇率。第三步:存储您的MemeCore(M)购买完您的MemeCore(M)后,将其存储在您的HTX账户钱包中。您也可以通过区块链转账将其发送到其他地方或者用于交易其他加密货币。第四步:交易MemeCore(M)在HTX的现货市场轻松交易MemeCore(M)。访问您的账户,选择您的交易对,执行您的交易,并实时监控。HTX为初学者和经验丰富的交易者提供了友好的用户体验。

3.1k人学过发布于 2025.07.02更新于 2026.06.18

如何购买M

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