人形机器人外壳包胶用什么弹性体?外壳要软,内核要稳

应用领域 发布时间: 2026-09-15 2090 阅读

The robot's shell feels hard and rigid, and it bumps into people whenever touched. The shell needs to be soft while the core stable; softness and hardness must first be separated.

It hits people as soon as it's touched; either the design is rigid or it hasn't been softened.

The humanoid robot's shell coating is 'software and hardware': soft shell, hard core, coating. The material needs a combination of softness and hardness — here’s the conclusion first: the shell should be soft, the core should be stable — softness and hardness are the division of labor in coating.

The biggest pitfall in robot casing overmolding: not being able to distinguish between soft and hard parts, and even if the overmolding sticks, it comes off — soft and hard are the first hurdle in overmolding.

Robot parts are experience parts: touch and durability are issues. Only by choosing the right materials can the experience be stable—don’t skimp on the formula for robot parts.

Soft exterior, hard core: Why TPE overmolding is suitable

Reasons for using TPE for robot outer shell coating: can make soft shells, can make hard cores, can do coating—combining all three, it is suitable for robots.

The soft shell is an experience: it feels soft and elastic. The tactile test is written into the acceptance—if it's hard, it's a problem.

Hardcore is support: the core is stable and doesn’t wobble. Hardness tests are written into acceptance—if it’s too soft, it’s a problem.

Touch, coating, durability—what should be looked at in each of the three aspects?

Tactile condition: soft to the touch. The tactile data needs to be checked—if it's on the hard side, that's a problem.

Rubber coating working condition: a combination of soft and hard. Peeling data must be checked—delamination is the problem.

Durable working condition: repeated use. Wear resistance data must be tested—scratches are a problem.

Robot coating materials, a table makes it clearly comparable

Body partMaterialHardness
ShellTPEsoft
KernelPC/ABShard
jointTPUmiddle
Sole of the footTPEChinaSoft

Table reading method: divide by material for each part, follow the hardness accordingly, and set the contact area and support area separately.

Choose according to the part, the softness or hardness is right.

Touch to check softness and resilience over time, test these four items during inspection

ProjectRequirementJudgment
hand feelBlind testMeet the standard
Peel offTestMeet the standard
Wear-resistantTestMeet the standard
BatchLockMeet the standard

Table reading: Each item of encapsulation is checked, the experience is visible, and the peel strength is tested separately.

Soft and hard refer to the division of labor in rubber coating.

No distinction between soft and hard, all the same material; chipping and delamination happen together

Pitfall 1: Confusing soft and hard. Areas that should be soft are hard, and areas that should be hard are soft. The hand immediately reveals the flaw — distinguish between soft and hard first.

Pitfall 2: Missed detection of delamination. Delamination — peeling must be tested.

Pitfall 3: Ignoring the feel. Too hard or too soft—blind testing is a must.

Hardness, peeling, scratch resistance—ask before making the case

Three questions: which part, what hardness, what peel strength. One test: actual usage measurement — three questions and one test, the supplier's details are clear.

Soft and hard verification must come first: first fix the Shore A of the contact area and the Shore D of the support area, then discuss the overmolding process — softness and hardness are the first hurdle in overmolding.

Making sample retention a habit: retain samples for each batch and re-test the feel and peel by batch. When changing materials for a batch, compare first before scaling up—the more stable the batch, the fewer the customer complaints.

Delamination, Stickiness, Wear: A Fault Comparison Table

PhenomenonReasonCountermeasure
DelaminationThe base material is not cleanClean the substrate
Somewhat hardHigh hardnessFormulate a prescription
frostedPoor wear resistanceReplace wear-resistant material
CrackingStress concentrationRedesign
Batch bleachingFormula fluctuationLock window

The outer shell coating is too soft, and the robot leaves marks after a bump; if it's too hard, it feels like plastic—the soft shell and hard core need to be balanced. If the softness and hardness are unbalanced, neither the experience nor the protection is satisfactory.

Don't blame the glue first when the coating peels off; if the substrates' polarity doesn't match, no matter how much glue you use, it won't stick well. For hard shells with TPE, the peel strength should be chosen according to the system, don't just rely on glue to make it work.

The mainstream shell Shore A is 60-75, roughly equivalent to the feel of a toothbrush handle; too soft provides no support, too hard feels rough on the hands. The softness and hardness are divided by parts: soft shell, hard core, not made entirely from one material.

Encapsulation is 'soft skin covering hard bones,' and peel strength is the adhesive force between the skin and the bone. The peel strength acceptance card is set at 1.0-2.0 kN/m; if it is below 0.5, do not mass-produce, as it will start delaminating after two weeks.

The peel strength reached 1.8 kN/m, and after 5000 bending cycles there was no delamination. The touch feel of the coated housing scored 4.8 in a blind test. Peel strength is tested first, then the touch feel is tested blindly; both steps must pass before release.

The peel strength of the robot casing overmold should be accepted at 1.0-2.0 kN/m; if it is below 0.5, do not mass-produce. Hard-shell ABS or PC paired with TPE soft rubber will not achieve sufficient peel strength if the polarity of the substrate is mismatched, even if retested. Compatibilizers and pretreatment must be included in the process card.

The hardness of the robot's outer shell is divided according to different parts, rather than making the entire piece from a single material. The palm and collision protection areas use Shore A 60-70 for a soft touch, while the joints and skeleton use Shore D 40-55 for hard elasticity. For parts with multiple materials and cavities, the melt flow index needs to be matched.

Peel strength acceptance card is 1.0-2.0 kN/m; if it's below 0.5, mass production will start peeling within two weeks. For hard shells with TPE, select the peel strength according to the system; don't just rely on glue to force it. Use separate materials for hard and soft parts to make the whole piece.

Experiencing an imbalance between soft and hard ends up being unappealing to both protection and feel. When pairing a hard shell with TPE, select the delamination force according to the system instead of just forcing it with glue. Separate soft and hard parts according to their positions: a soft outer shell and a hard core, rather than making the whole piece from one material.

The adhesion force of the robot shell overmold is stuck at 1.0-2.0 kN/m, and production should not proceed if it is below 0.5. Hard ABS or PC shells paired with TPE soft rubber substrates have mismatched polarity, and the adhesion force will not increase even after retesting. Compatibilizers and pretreatment should be documented in the process sheet.

Divide the soft and hard parts by area and use one material to make the entire outer shell with a soft interior core and a hard exterior. Accept the peel strength at 1.0-2.0 kN/m, and do not mass-produce if it is below 0.5. For a hard shell with TPE, do not rely solely on glue; record the compatibilizer and pretreatment in the process sheet.

Cologne Customer Case: Tight delivery schedule and mismatched performance, sample data used to supplement certification

A robot parts factory in Quanzhou has tight delivery schedules, and the performance of the available grades does not match. Cologne cooperates by providing samples and physical property data from the same batch, aligning performance, having third-party testing done, and completing the certifications. Samples plus data make the delivery issue clear at once—if the performance does not match, first check the sample data.

Summary

Selection of robot shell coating: first distinguish between soft and hard, then test peel strength. The shell should be soft while the core must be stable; softness and hardness are a matter of division of labor.

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