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Textile Engineer Jobs in Austin, TX (NOW HIRING)

Senior Project Engineer

Round Rock, TX ยท On-site

$92K - $120K/yr

Work directly with engineers and textile experts to design, prototype, and refine products across the full development cycle. Integrating systems and textile components across designated projects ...

Senior Project Engineer

Round Rock, TX ยท On-site

$92K - $120K/yr

Work directly with engineers and textile experts to design, prototype, and refine products across the full development cycle. Integrating systems and textile components across designated projects ...

Senior Project Engineer

Round Rock, TX ยท On-site

$92K - $120K/yr

Work directly with engineers and textile experts to design, prototype, and refine products across the full development cycle. Integrating systems and textile components across designated projects ...

Soft Goods Technician

Blanco, TX ยท On-site

$30 - $40/hr

Interpret engineering drawings, technical specifications, and work instructions to produce high-quality textile products. * Operate industrial sewing machines, sergers, and other specialized ...

Soft Goods Technician

Blanco, TX ยท On-site

$30 - $40/hr

Interpret engineering drawings, technical specifications, and work instructions to produce high-quality textile products. * Operate industrial sewing machines, sergers, and other specialized ...

Soft Goods Technician

Cedar Park, TX ยท On-site

$30 - $40/hr

Interpret engineering drawings, technical specifications, and work instructions to produce high-quality textile products. * Operate industrial sewing machines, sergers, and other specialized ...

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Showing results 1-20

Textile Engineer information

See Austin, TX salary details

$82.9K

$114.2K

$144.3K

How much do textile engineer jobs pay per year?

As of Aug 26, 2026, the average yearly pay for textile engineer in Austin, TX is $114,233.00, according to ZipRecruiter salary data. Most workers in this role earn between $99,000.00 and $124,800.00 per year, depending on experience, location, and employer.

What is a textile engineer?

Textile Engineers are professionals who apply engineering principles to the design, development, and production of fabrics, fibers, and textiles. They work on improving textile manufacturing processes, developing new materials, and ensuring quality control in textile products. Their expertise is crucial in industries such as apparel, automotive, healthcare, and home furnishings, where textiles play a significant role. Textile Engineers may also be involved in research and innovation to create sustainable and high-performance textiles.

What does a textile engineer do?

As a textile engineer, your job is to help design and create fabric, including the equipment and materials needed for fabrication. You may determine the best way to develop a type of fiber, help process raw materials, determine the best way to add graphic designs to completed textiles, and otherwise ensure smooth production during each project. Textile engineering is a specific form of mechanical engineering that emphasizes creating different products for different needs. For example, heat-resistant fabrics may be used for oven gloves, while breathable fabric may be used for summer clothing. In some cases, a textile engineer also supports marketing and sales efforts, researches new materials, and ensures all final products meet the expected safety and quality standards.

What are the key skills and qualifications needed to thrive as a textile engineer, and why are they important?

To thrive as a Textile Engineer, you need a strong background in textile science, materials engineering, and manufacturing processes, usually backed by a degree in textile engineering or a related field. Familiarity with computer-aided design (CAD) software, textile testing equipment, and knowledge of industry standards such as ASTM or ISO are typically required. Problem-solving, attention to detail, and effective communication are essential soft skills that help drive innovation and collaboration. These competencies are crucial for developing high-quality textile products, ensuring efficient production, and maintaining competitiveness in the textile industry.

What are some common challenges textile engineers face when working on new fabric development projects?

Textile Engineers often encounter challenges such as balancing the desired fabric properties (like durability, cost, and appearance) with manufacturing limitations and sustainability requirements. They must also stay current with rapidly advancing technologies and evolving consumer demands, which can require continuous learning and adaptation. Collaboration with designers, production teams, and suppliers is essential to ensure prototypes meet specifications and can be scaled for mass production, making communication and problem-solving skills vital in this role.

What is the difference between Textile Engineer vs Textile Technologist?

AspectTextile EngineerTextile Technologist
EducationBachelor's degree in Textile Engineering or related fieldBachelor's degree in Textile Technology or related field
Work EnvironmentDesign, develop, and improve textile processes and machineryOperate and optimize textile production processes and quality control
ResponsibilitiesResearch and develop new textiles, troubleshoot engineering issuesImplement production techniques, monitor quality, and ensure efficiency
Industry UsageManufacturers, R&D labs, engineering firmsTextile mills, production facilities, quality assurance departments

While both roles require a background in textiles, Textile Engineers focus on designing and improving textile processes and machinery, often working in research and development. Textile Technologists typically handle the operational aspects of textile production, ensuring quality and efficiency on the manufacturing floor. Both roles are essential in the textile industry and often collaborate to innovate and optimize textile products and processes.

Are textile engineers in demand?

Textile engineers are in demand in industries such as apparel, automotive, and technical textiles, especially as companies seek innovative materials and sustainable solutions. Employment opportunities often require knowledge of manufacturing processes, quality control, and proficiency with CAD and testing tools.

Is being a textile engineer hard?

Being a textile engineer involves understanding complex materials, manufacturing processes, and quality control, which can require strong technical skills and problem-solving abilities. The job often demands attention to detail, knowledge of industry standards, and proficiency with design and testing tools, making it a challenging but rewarding profession for those interested in textiles and engineering. The difficulty level varies based on individual background and experience.

What is the average salary of a textile engineer in the US?

The average salary of a textile engineer in the US is approximately $70,000 to $85,000 per year, depending on experience, education, and location. Professionals in this field often work with specialized software and manufacturing processes, and certifications can enhance earning potential.

What are the most commonly searched types of Textile Engineer jobs in Austin, TX?

The most popular types of Textile Engineer jobs in Austin, TX are:

What cities near Austin, TX are hiring for Textile Engineer jobs?

Cities near Austin, TX with the most Textile Engineer job openings:

Infographic showing various Textile Engineer job openings in Austin, TX as of August 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution, with an average salary of $116,117 per year, or $55.8 per hour.

Senior Mechanical Engineer - Soft Good/Gloves/Grip

Apptronik

Austin, TX โ€ข On-site

$103K - $136K/yr

Full-time

Posted yesterday

New


Job description

JOB SUMMARY

Apptronik is seeking a Senior Mechanical Engineer - Soft Goods / Gloves / Grip to lead the mechanical design and development of soft goods, robotic gloves, grip surfaces, and flexible protective interfaces for our humanoid robot, Apollo. This role is responsible for delivering robust, manufacturable, serviceable, and high-performance soft mechanical systems that enable dexterous manipulation, human-robot interaction, protection, sensing, and reliable operation in demanding real-world environments.

You will work across mechanical, electrical, controls, materials, manufacturing, systems engineering, and suppliers to develop innovative flexible and elastomeric components from concept through production. The ideal candidate combines strong mechanical engineering fundamentals with hands-on expertise in textiles, flexible materials, elastomers, grip technologies, sensor integration, and manufacturing processes.

ESSENTIAL DUTIES AND RESPONSIBILITIES or KEY ACCOUNTABILITIES
  • Soft Goods & Glove Design: Lead the mechanical design and development of robotic gloves, flexible covers, soft goods, protective interfaces, and other compliant mechanical systems for Apollo.
  • Flexible Textile Engineering: Design and develop products using flexible textiles and textile-based structures, including knit and woven constructions, engineered fabrics, and stretch materials. Select appropriate materials and architectures based on stretch, durability, abrasion resistance, flexibility, breathability, and environmental requirements.
  • Advanced Materials: Develop and apply high-performance flexible materials such as UHMWPE, Kevlar/aramid fibers, nylon, polyester, elastomers, and other technical textiles. Evaluate material properties, constructions, and combinations to achieve required mechanical and environmental performance.
  • Coatings & Environmental Protection: Develop textile and flexible-material solutions incorporating water-resistant, protective, and functional coatings. Design for environmental exposure, ingress protection, abrasion, contamination, and long-term durability.
  • Grip Surface Development: Design elastomeric grip surfaces and compliant interfaces for robotic hands and manipulation systems. Select materials such as silicone and other elastomers and develop appropriate surface geometries, textures, durometers, and friction characteristics.
  • Elastomer Manufacturing: Develop components using elastomer manufacturing processes including molding, overmolding, bonding, casting, and coatings. Work with manufacturing partners to optimize tooling, process capability, tolerances, and production quality.
  • Sensor & Wiring Integration: Mechanically integrate tactile, pressure, force, and other sensors into gloves, grip surfaces, and soft goods. Develop robust strategies for routing, protecting, strain-relieving, and terminating wiring and flexible electrical interfaces within moving and compliant structures.
  • Mechanical Architecture: Define mechanical architectures for flexible assemblies, attachment systems, retention features, seams, closures, reinforcement structures, grip interfaces, and interfaces to rigid robotic components.
  • Protection & Performance Ratings: Design and validate products against applicable performance requirements, including cut resistance, ESD protection, thermal performance, water and environmental resistance, and ingress protection.
  • Design for Serviceability: Develop soft goods and glove assemblies that can be efficiently installed, removed, inspected, repaired, and replaced in the field. Establish service interfaces and modular architectures that minimize downtime and simplify maintenance.
  • CAD & Design Development: Create detailed mechanical designs, drawings, specifications, and prototypes using industry-standard CAD and engineering tools. Drive designs from early concepts through detailed design, prototyping, validation, and production.
  • Prototype Development & Validation: Build and evaluate prototypes through hands-on testing, laboratory evaluation, and robotic system testing. Develop test methods and use results to drive design improvements in durability, fit, grip performance, flexibility, and reliability.
  • DFM & Production Support: Partner closely with Manufacturing, Supply Chain, Quality, and suppliers to optimize designs for manufacturability, assembly, cost, quality, scalability, and repeatable production.
  • Supplier & Manufacturer Collaboration: Work directly with textile mills, soft-goods manufacturers, molding suppliers, contract manufacturers, and other partners to develop components, review manufacturing processes, resolve technical issues, and qualify production-ready designs.
  • Cross-Functional Integration: Collaborate closely with Electrical, Controls, Sensors, Systems, Firmware, Manufacturing, and Robotics teams to ensure seamless integration of mechanical, electrical, sensing, and functional requirements.
  • Reliability & Problem Solving: Investigate failures and field issues through root-cause analysis, develop corrective actions, and drive improvements in product reliability, durability, and performance.
  • Technical Leadership: Mentor junior engineers, establish best practices for soft goods and flexible mechanical design, and provide technical leadership across robotic glove, grip, and soft-interface development.
SKILLS AND REQUIREMENTS
  • Textiles & Materials: Strong expertise in technical textiles, knits/wovens, stretch behavior, seams, reinforcement, and high-performance fibers such as UHMWPE, Kevlar/aramid, nylon, and polyester.
  • Protective Materials: Experience with coatings, water/contamination resistance, abrasion, tear/cut resistance, durability, and environmental protection.
  • Elastomers & Grip: Experience with silicone/elastomers, grip surfaces, friction, durometer, texture, wear, molding, overmolding, bonding, and casting.
  • Mechanical Design: Advanced CAD experience (NX or similar) designing flexible/rigid assemblies, soft goods, elastomeric components, and rigid-to-flex interfaces.
  • Sensors & Electrical: Experience integrating sensors, wiring, connectors, and flexible electrical interfaces into moving or soft assemblies.
  • Testing & Compliance: Familiarity with ESD, thermal, water/IP, cut protection, tolerance analysis, material characterization, reliability, cycle testing, and design validation.
  • Manufacturing: Proven ability to take products from concept through prototype, validation, and production, including DFM, assembly, inspection, repair, and supplier/manufacturer collaboration.
  • Hands-On Engineering: Strong prototyping, fabrication, troubleshooting, and mechanical problem-solving skills.
  • Leadership & Communication: Excellent cross-functional communication; able to independently lead complex development programs, make engineering decisions, and mentor engineers.
EDUCATION and/or EXPERIENCE
  • Experience:ย 6+ years in mechanical product development, especially soft goods, textiles, elastomers, wearables, or flexible systems.
  • Education: Bachelor's/Master's in Mechanical, Materials, or related engineering field.
PHYSICAL REQUIREMENTS
  • Prolonged periods of sitting at a desk and working on a computer
  • Must be able to lift 15 pounds at times
  • Vision to read printed materials and a computer screen
  • Hearing and speech to communicate
  • Ability to work hands-on with prototypes, manufacturing equipment, materials, and robotic hardware