机器人外壳用改性PP怎么选:增韧阻燃与清洁剂耐受两道坎

应用领域 发布时间: 2026-09-15 2009 阅读

The robot casing uses modified PP, and the structural parts of the vacuum cleaner use modified PP. What usually gets you stuck is not 'how strong it is,' but 'how many types of cleaning agents it can interact with without cracking.' This article thoroughly explains the main line of ESC (environmental stress cracking): why assembly snaps and screw posts crack first, how to test immersion in stressed media, why toughening affects appearance under tension, and why the verification sequence must start with media immersion.

The material wasn't changed, the mold wasn't moved, and three months after it was installed, a crack appeared next to the screw post.

A technician who works on commercial cleaning robots told me this. The first batch passed inspection, but six months later, a batch of parts gradually needed repairs. The starting point of the crack was not on the screw post itself, but at the sharp corner transition next to it. The fracture is very clean, with no obvious deformation—it wasn't broken by impact, it cracked slowly.

"It's the same with the robot vacuums," he said. "Some of them fell off the steps and cracked, while others never fell at all and were just wiped daily with wet wipes."

One was dragged and overturned, and the other was wiped repeatedly. It sounds like two problems, but in fact, it's two sides of the same issue: the material problem of indoor service equipment, not about 'how strong it is,' but 'how many chemicals it can deal with without cracking'.

Household vacuum cleaners, window cleaning machines, commercial cleaning robots, and food delivery and inspection service robots are not the same type of things as industrial equipment—their primary operating conditions are entirely different.

1. The six-dimensional working conditions of the floor cleaning machine and robot shell: It's the dimension of cleaning agents that truly serves as the dividing line for indoor service equipment.

Conclusion first: In six dimensions, temperature and load are conventional factors, while the medium is the dividing line — the cleaning agents used daily on indoor service equipment happen to be a typical cause of environmental stress cracking.

DimensionActual operating conditionsRequirements for the materials
TemperatureMainly room temperature indoors; higher near the battery compartment and charging dock; during winter transport and in cold storage can reach −20°C, Grade 1Not brittle at low temperatures; there are additional temperature requirements near the battery
LoadCollision (hitting walls, being dragged, tipping over) Fall (steps, table surface) Assembly stress (self-tapping screw pre-tightening, interference fit of clips)Rely on toughness to withstand collisions, rely on stress resistance to prevent cracking during assembly and with media
MediumAlcohol, chlorine-containing disinfectants, surfactant cleaning agents, essential oil-based care products; recurring with daily wipingChemical resistant, with a focus on environmental stress cracking resistance
LifespanHome machines are commonly designed for 3-5 years, commercial machines for 5-8 years; wipe 1-3 times a dayThe material does not crack after long-term combined action of medium and stress
AppearanceLight colors and white highlight parts are the main focus; color differences, flow marks, tiger stripes, and shrinkage marks are all noticed by customers; for scratch-resistant coatings, scratches are generally within dL < 1.5 caliber (VW PV3952)The appearance system and the toughening system must be balanced
ComplianceDevices with built-in batteries often require UL94 V-0 (including thickness); halogen-free quantification; 850℃ glow-wire contact for 30 seconds without ignition; see indoor parts for odor separately.Flame retardant, halogen-free, low odor

Text version conclusion: Temperature is not the most difficult factor; the medium is. Industrial equipment is sensitive to oil, coolant, and cutting fluid; service equipment is sensitive to cleaners—whose compositions are more complex, contact is more frequent, and they are often 'not wiped dry after wiping.' The first question in selection should not be 'how strong does it need to be,' but 'which cleaners will this part come into contact with, and how many times will it be wiped?'

An insider detail: Cracking in this type of part rarely occurs on flat surfaces; it almost always starts from assembly clips, self-tapping screw posts, or corners with abrupt changes in wall thickness. These three locations are areas of stress concentration, and in the two conditions of ESC, the 'stress' part is provided by the structure, not by the material.

2. Comparison of material routes: toughened flame-retardant PP, toughened PP with mineral filler, ABS series, PC series, each pipe in one section

Conclusion first: These four routes are not alternatives, but complementary in their roles—toughened flame-retardant PP excels in being lightweight, insulating, flame-retardant, and having molding freedom, but it falls short in surface quality and load-bearing capacity.

RouteGet whatCostSuitable for which section
Toughened flame-retardant modified PPToughness, flame retardant, lightweight, molding freedom, low cost orientationThe amount of flame retardant is usually around 25-30%, causing both mechanical strength and toughness to decrease.Non-load-bearing interior casing, robotic vacuum components
Toughened PP Mineral FilledIncreased rigidity results in more uniform shrinkage and more stable dimensions.Impact toughness decreases; appearance is more sensitive to flow marks and sink marksStructural parts with stable dimensions; Light-colored parts require additional surface systems
Flame-retardant ABS series (including PC-ABS)Good surface and appearance, high toughness, good performance without paintingDensity and cost go up; flame retardancy requires a separate systemEnclosures with high appearance requirements and relatively low structural load
PC and PC AlloyHigher level of rigidity, temperature resistance, and impact resistance, with good dimensional stabilityHigher cost and density; narrower processing windowLocal load-bearing components, high-temperature-resistant components, precision assembly components

Text version conclusion: PP series is characterized by 'lightweight, flame-retardant, easy molding, cost-effective'; ABS series is 'good surface appearance'; PC series offers 'higher-level rigidity and heat resistance.' On the same machine, it is normal for different materials to be used for different parts—collision buffers use PP, panels use ABS, roller brush motor housings use PC with inserts; none of them is a substitute for the others.

It is necessary to clarify the boundaries: toughened flame-retardant PP is naturally at odds with 'high-gloss no-spray appearance parts.' Toughening relies on elastomer dispersed phases, and filling relies on mineral particles; both make the surface harder to smooth. High-gloss parts, on the other hand, require precisely a fine surface. Trying to satisfy both often results in neither being done properly.

3. ★ Selection Criteria Table: The robot's non-load-bearing shell and the sweeper's structural components share one table, with each item accompanied by a verification method

Conclusion first: The value of this table lies in the fourth column — what usually holds you back is not 'which item to look at,' but 'what to measure with and how much counts as passing.'

IndicatorThreshold (typical)Verification Method · Standard NumberCommon FailuresCommon solution
Environmental Stress Cracking ESC (resistant to cleaners)Set by item: Stress-bearing specimens do not crack or develop crazing when immersed in the medium for the target durationBent strip method ASTM D1693 (bending immersed in 10% Igepal CO-630, 50±0.5℃, recorded as F₅₀); constant tensile stress method ISO 22088-3 (40℃ medium); constant strain method ISO 6252 (three-point/four-point bending, medium, 50-80℃, strain 1.0-2.0%)Clips, screw posts, and sharp corners crack firstReduce internal stress (mold, holding pressure, annealing) Modify structure (remove sharp corners, reduce interference fit) Solvent-resistant system
Notch Impact (23°C)Common caliber ≥5-6 kJ/m² (for piece level, determined per piece)GB/T 1043.1Collision, bumps and cracks during handlingToughening System Substrate Grade
Low-temperature shock (-20°C)Common specifications for similar parts: notch impact at −20℃ >3 kJ/m²; bending modulus commonly ≥1667 MPa, grade 1GB/T 1843 (equivalent to ISO 179 system) / GB/T 9341Winter transportation, cold storage brittle fracture; deformation at assembly pointsToughness enhancement and low-temperature toughness are adjusted together; filler amount base material grade
Flame retardantUL94 V-0, the thickness must also be indicatedGB/T 5169.16 / UL 94Rejected due to mismatch between gear position and wall thicknessHalogen-free flame retardant system
halogen-free quantificationBromine <900 ppm, Chlorine <900 ppm, Total of both <1500 ppmXRF / IC, in accordance with IEC 61249-2-21 caliberEnvironmental compliance not up to standardHalogen-free system, no halogen-containing synergists needed
Scorching threadGWIT 750/775℃, GWFI 850/960℃; 850℃ contact for 30 s does not igniteGB/T 5169.12 / .13V-0 passed, incandescent wire ignitesFlame retardant Fillers synergy
RTI≥105℃ Starting (Common specification for devices with built-in batteries)UL 746BBrittle and cracked after long-term serviceHeat-resistant substrate Filling
smellLevel ≤3 (common caliber for indoor components)VDA 270Excessive odor from the entire machine, customer complaintsLow-odor, low-VOC system, release agent control and material temperature
Weather-resistant (window cleaning robots, outdoor service robots)Xenon lamp aging ΔE ≤ 3.0GB/T 16422.2Discoloration, chalking, loss of glossWeather-resistant UV system

Text version conclusion: The thing that should be done first is the first line, but it is precisely the one most often put last—there are existing reports for stretching, impact, and flame retardancy, but for media immersion, you have to determine the medium, the stress, and the time yourself. If everything else passes but this media test does not, it amounts to the entire batch of plans being invalid.

4. Common Failures and Root Causes: Four phenomena, three root causes are not related to the material

Conclusion first: Among these four items, only one truly belongs to 'material is not good'; the other three are issues with structure, craftsmanship, and appearance system.

Failure 1: The assembly doesn't crack initially, but after some use, it splits from the clip or screw post. This is the main phenomenon discussed in this article: medium penetration combined with assembly stress and internal stress causes cracks to appear after several weeks to months. First, look at the starting point of the crack—if it repeatedly appears on the same assembly edge or at the same sharp corner, check the structure first, not the material replacement.

Failure 2: Drop cracks and broken clips. Drops are divided into two types: normal temperature drops test overall toughness, while low temperature drops (winter transportation, cold storage) test low-temperature impact. Most clip breaks are not due to insufficient toughness, but because the root fillet is too small and the interference fit is too tight. The criterion is written as 'no cracks after dropping, clips do not break,' not based on modulus.

Failure three: Flow marks, tiger stripes, and sink marks on light-colored highlights. This type is almost entirely related to toughening agents, fillers, and gate locations. With the same formulation, nothing is visible on dark-colored parts, but it is immediately apparent on white parts—the magnifying effect of white parts on surface defects is one of the most easily underestimated aspects in appearance part selection.

Failure Four (Daring to question a common practice): When problems arise, go find a 'higher chemical-resistant grade'.

This is mostly wrong when it comes to detergent cracking. ESC arises from the combination of two conditions: the medium and the stress. Materials only improve the 'medium' part, and the improvement is limited—a grade with better chemical resistance does not prevent a screw post with stress concentrated to the extreme from cracking.

The real first solution lies in stress and structure: increase the root fillet and transition radius, change the self-tapping screw posts to embedded copper nuts, reduce the interference fit to just enough, and make wall thickness changes gradual; on the molding side, adjust holding pressure and mold temperature to a window where internal stress is lower, and anneal if necessary. Only after doing all this should material replacement be considered.

5. How to test detergent tolerance and ESC: first distinguish whether there is 'stress', then discuss which medium to use for foaming

Conclusion first: The point most likely to be tested incorrectly in this case is soaking specimens without stress in the medium — unstressed specimens can be soaked for a long time without issue, while stressed ones will crack in a week; the conclusions are completely different.

The ingredients of the detergent are complex, so verification requires first making a mapping: which types of media this product actually comes into contact with, and which type of accelerated test corresponds to each.

Medium typeWhy is it a typical trigger for ESCCommon verification caliber
Alcohols (ethanol, isopropanol)Quick penetration, reduces surface energy, induces silver streaks in combination with assembly stressConstant strain method (ISO 6252 caliber) repeated wiping cycle
Chlorine disinfectantStrongly oxidative combined with polar media erodes the surface and interface of polyolefinsStress soaking Retest after aging
Surfactant CleanerSurfactants induce the expansion and cracking of silver streaks under stress synergy (similar mechanism to that inside the washing equipment drum)Mandrel test ASTM D1693: 10% Igepal CO-630, 50±0.5°C, record the time for 50% of specimens to crack F₅₀
Essential oil / solvent-based care productsAromatic hydrocarbons and terpenes have strong permeability to polyolefinsConstant tensile stress method ISO 22088-3: Measuring time to break or critical stress in a medium at 40°C

Text version of the conclusion: Among the four lines, only the third line has a ready-made standard aqueous solution caliber; the other three types need to be determined according to the actual medium on site. When determining the medium, at least ask about three things: brand and model, actual concentration, and wiping frequency. Using just the words 'cleaning agent' to report the test is equivalent to not reporting at all.

The criteria are written as three elements: soaking temperature, soaking duration, result. Do not write 'pass' for the result; write 'cracked / not cracked, appearance changes.' In the same system, the time to not crack in 10% Igepal at 50°C can reach hundreds of hours; this is just a reference point, not a threshold. The threshold should be deduced based on the actual wiping frequency and service life.

Two reminders. First, the results of stress-free and stressed specimens must be reported separately. Second, medium immersion should be retested after aging — thermal aging makes the material brittle, and UV changes the surface system, so the performance of the material after aging in the medium reflects its behavior at the end of service.

6. Verification sequence: First perform soaking with the stress medium, and only then proceed to full machine operation.

Conclusion First: The verification order for this part has only one principle—put the most likely veto, and the easiest to miss, at the very front.

'

(1) Soak in stressed medium: Map the medium according to the on-site cleaning agent; Sample with stress; Record "cracked/not cracked + appearance changes"

↓ However, no further steps are needed; Return to internal stress and structure, then discuss material replacement

(2) Drop and snap impact: normal temperature + −20°C low temperature + machine drop after assembly; Clips and screw posts with local impact

↓ cracked or snapped, return toughening and increased amount, rounded corners and interference weight

(3) Appearance and color difference: color palette comparison, color difference, flow marks/tiger skin pattern/shrink mark + continuous production consistency

↓ However, return to surface system, filling amount, and gate position

↓ (4) Flame retardant UL94 V-0 (including thickness), halogen-free three items, hot wire contact at 850°C for 30 seconds, GWIT/GWFI

↓ However, return to flame-retardant system

(5) Retest after aging: Thermal aging + UV redoing medium soaking and impact, check retention rate

↓ If not up to standard, return to substrate level and stabilization system

(6) Full machine operation verification: Cleaning agent wiping cycle + machine collision and drag + continuous operation

'

Text version Conclusion: (1) and (5) are the most prone to leakage and also the most expensive. Skipping (1) means leaving the crack for three months after installation; Skipping (5) means using the performance of the new part to represent performance three years later. The most common mistakes are (1) not doing it, going straight to (2)—using a trial mold to perform a drop, and the measured numbers are not representative.

7. Reverse honesty: In these three situations, this part should not be modified PP

Conclusion First: As long as there is "two requirements in opposite directions requiring simultaneous demand," it means the part should not be rigidly supported with modified PP.

Situations OccurringWhy Is Modified PP Unsuitable ?Where Should It Go ?
Requires Long-Term High-Intensity Collisions (Heavy Load on the Robot Shell, Repeated Impacts)Toughening and Flame Retardant Additives Set an Upper Limit on Toughness, and Under Repeated High-Energy Impacts, Crack Expansion Easily OccursFiberglass/Long Fiberglass Reinforced Engineering Plastic Housings, or 'Metal Frame + Plastic Skin' Split Structure
Requires High-Gloss Spray-Free + Long-Term Cleaning with Solvent-based CleanersSpray-Resistant: High-gloss and minimal filler; Long-term wiping can remove the surface structure and trigger stress marks. The two directions are pulled togetherto separate the appearance parts from the wiped surface; Or the entire piece can be changed to ABS/PC-ABS system
requiring load-bearing structural parts (joints, arms, reducer mounting positions)to bear loads depending on rigidity, fatigue, and creep. These three are not the main domain for modified PPReturning to the structural solution: metal parts, long fiberglass PP structural parts, or PA/PBT load-bearing components
require the same piece to simultaneously meet four requirements: V-0 + high gloss and spray-free coating + high impact resistance + long-term rub-resistant solvent, but the formula does not have room to accommodate them all at onceto assign the requirements to different parts; Or the whole piece material replacement system

Consistency: It's not that modified PP can't do one thing, but that 'two items in opposite directions are fully matched at the same time.' In such cases, we first clarify this point, then discuss whether there is a compromise structure—for the next order, all will be returned through rework and claims.

Eighth, Material Change Risk Checklist: Seven Things to Confirm Before Replacing Toughened Flame-Retardant PP

Conclusion: First: The customer's real concern is often not performance, but 'Should I change my current mold and process'—this chart is recommended to be reviewed before deciding on the sample.

Items to be movedWhat needs to be confirmedWhat happens if not done
Mold shrinkage rateDifferences between toughening and filling and original plan; Assembly gap parts are especially sensitiveSize deviations, assembly mismatches
Gate and ventingFlame-retardant filling system flow and gas production are different; Appearance parts are extremely sensitive to gate positionInsufficient filling, flow marks, weak welding lines
Material temperature and mold temperatureHalogen-free systems have narrow thermal stability windows, residence time must be controlled; Mold temperature affects surfacedecomposition, surface defects, flame retardancy fluctuations
dryingaccording to the specific system, cannot be directly copied from the original processsilver wire, bubbles
holding pressure and demoldingholding pressure determines internal stress, demolding determines whitening and strainexcessive internal stress, directly increasing ESC risk
color differencelight-colored and white parts must first set the color plate; Toughening and filling make color difference more difficult to controlbatch color difference dispute
verification sequencesoaking in stressed medium → drop and snap impact → appearance and color difference → flame retardant → post-aging retesting → whole machineall risks concentrated at the last step

text version conclusion: material change involves mold, process, and appearance. The most important thing to discuss is the verification sequence, followed by holding pressure. Holding pressure is the easiest to overlook—it is not written in the physical property table, but directly determines how much internal stress remains in the part, and internal stress is the seed for cracking later.

9. One-Page Report Comparison Table: Robot Enclosure / Vacuum Cleaner Structural Parts Divided into Two Columns

Conclusion First: There is only one way to judge whether this form is qualified—the customer can use it and determine the material directions for both parts together in a single meeting.

ScenarioRecommended RouteKey IndicatorsVerification StandardsConditions to Be Confirmed First
[Robot] Indoor Non-Load-bearing Enclosure (with Flame Retardancy)Toughened and Flame-Retardant Modified PPSoaked in stressed media; UL94 V-0 continuous thickness; −20°C ImpactASTM D1693 / ISO 22088-3; GB/T 5169.16; GB/T 1843Which types of cleaning agents to contact, wiping frequency
【Robot】Light-colored high-gloss appearance partsToughening PP + mineral filling, plus surface systemColor difference, flow marks, tiger skin texture, shrinkage marks; Shrinkage rateGB/T 17037.4; color swatch comparisoncolor swatch, spray-free
【Robot】heavy-duty casingPP for long-term high-intensity collisions Not preferred: glass fiber/long glass fiber reinforced engineering plastic, or metal frame + plastic skinno cracking after repeated impactby unit stand and machine diameterimpact energy, collision frequency
[Sweeping Robot] Structural Components, Collision Buffer ComponentsToughened modified PP (add halogen-free system when flame-retardant)−20℃ low-temperature drop; local impact on the buckle and screw postGB/T 1843; Overall Machine Drop CaliberTransport temperature, drop height, latch design
[Sweeping Robot] Load-bearing Position (such as the roller brush motor mount)PP not preferred: PC series or PA/PBT metal insertsRigidity, creep, assembly accuracyAccording to the part drawing and the overall machine caliberLoad, number of assemblies and disassemblies, accuracy requirements
[Sweeping Robot / Window Cleaning Robot] Requires outdoor or semi-outdoor environmentToughened weather-resistant modified PP (add halogen-free system when flame retardant is included)Xenon lamp aging ΔE ≤ 3.0GB/T 16422.2Duration of exposure to the sun, whether coastal

Text version of the conclusion: On the same machine, it is normal to have 'the casing made of PP, the panel made of ABS, and the load-bearing parts made of PC with inserts.' It does not rely on a higher grade; rather, each position meets its own primary constraint.

10. On the robot's casing and the structural parts of the vacuum cleaner, the parts that are most prone to problems are often not about 'how strong they are'.

There are two most common types of deviations in this industry for such parts. One is selecting the wrong verification entry: using stress-free samples to soak in a cleaner, or only performing tensile impact without doing media immersion—ESC is created by overlapping two conditions, testing only half is equivalent to not testing at all. The public accelerated test standards are clear: ASTM D1693, ISO 22088-3, and ISO 6252, which correspond to the bent strip method, the constant tensile stress method, and the constant strain method, respectively.

Another category is misattribution: attributing all cracking to the material. The publicly stated mechanism is that detergents induce silver streak propagation and cracking under stress cooperation, which is precisely the common failure path of washing machine inner tubs; the other half of the cause is often assembly stress and residual stress. The threshold on the flame-retardant side is equally clear: UL94 V-0 across thickness, halogen-free in all three aspects, and no ignition when a 850℃ glowing wire is applied for 30 seconds.

There are two common solutions: structurally, make the stress concentration areas smooth (fillets, transitions, embedded brass nuts, controlled interference), and in forming, reduce internal stress (holding pressure, mold temperature, annealing if necessary).

Ningbo Kolon New Materials Co., Ltd. commonly supplies self-produced modified polypropylene (PP) granules for these two types of parts, focusing on toughening and halogen-free flame retardancy: the solvent resistance is based on the list of cleaners the parts come into contact with, the toughening additive amount is adjusted according to drop height and transport temperature, and the V-0 rating and halogen-free system are determined according to wall thickness. The key issues addressed are 'cracking at assembly edges,' 'drop cracks and clip breakage,' and 'difficulty in processing the surface of light-colored parts.' Formulations are adjusted according to the part's operating conditions, and small sample comparisons and medium soaking tests with customers can be provided. Parts-level clients with many varieties in small batches can also be accommodated.

In the inquiries we come across, seven or eight times out of ten, the first question is 'Does it need to be flame-retardant V-0?' Very few people ask 'Which cleaning agents is it compatible with?' as their first question. Yet the latter often determines earlier whether this material can be used.

Frequently Asked Questions

Question: The casing has cracked. If we switch to a material that is more chemically resistant, will that solve the problem?

Answer: Not necessarily, and often not. ESC is a combination of the medium and stress, and the material only improves the medium part. First, check whether the crack initiation point is on the buckle, screw post, or sharp corner; then check the pressure holding and internal stress; only then talk about changing the material.

Q: For detergent validation, is it okay to soak a stress-free spline for a while?

Answer: No. A stress-free sample may soak for a long time without cracking, while a sample under stress can crack in a week. The criterion should be based on the sample under stress.

Q: If we add a little more toughening agent, wouldn't it be safer against drops and collisions?

Answer: You need to calculate the exchange relationship. As the amount of toughening agent (such as POE, EPDM) increases, rigidity, dimensional stability, and surface quality will decrease, which is especially noticeable on light-colored high-gloss parts. The amount is determined together by the 'low-temperature impact lower limit, rigidity lower limit, and appearance upper limit.'

Operating conditionKey criterionSelf-produced regular supply
Interior non-load-bearing shell (including flame retardant)Soaked in a stressed medium; V-0 across thickness; −20°C impactToughening Halogen-Free Flame Retardant Modified PP Direction
Light-colored highlighted exterior partsColor difference, flow marks, tiger stripes, shrinkage marksToughened PP Mineral-filled Surface system orientation
Sweeping machine structural parts, cushioning partsLow-temperature drop; local impact on the clip and screw postDirection of toughened modified PP (including halogen-free flame retardant grade)
For outdoor or semi-outdoor useXenon lamp aging ΔE ≤ 3.0Toughened and weather-resistant (including halogen-free flame-retardant grade) modified PP direction

Lastly, say three sentences.

First, the primary working condition for this part is the cleaning agent, not strength. The first sentence should ask, 'Which cleaning agents does it come into contact with, and how many times is it wiped?'

Second, cracks first start from the clips, screw posts, and sharp corners. The first solution for ESC is to reduce internal stress and modify the structure; materials are only the second solution.

Third, the verification sequence is more expensive than the verification items: soak with stress medium → drop and snap-fit impact → appearance and color difference → flame retardant → retest after aging → whole device. ①② cannot be skipped.

About Us

There are three things we never guess: temperature tolerance, lifespan, and dosage.

If the operating temperature is not given, don’t guess; if the service life is not given, don’t guess; if the monthly usage is not mentioned, don’t guess either. Any plan guessed will eventually need to be reworked and returned for claims.

Ningbo Cologne New Materials Co., Ltd. produces modified polypropylene (PP) granules, covering homopolymer, random copolymer, and block copolymer base materials, as well as modifications including filled, glass fiber reinforced, toughened, flame-retardant, low odor and low VOC, weather-resistant, and scratch-resistant without coating; it also deals in PP resins from major petrochemical plants, off-spec materials, and bulk materials.

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