Custom Molded Rubber Parts

Quadruped Robot SBR Rubber Foot Pads

Size / Dimensions 64.03 × 68.42 × 33.15 mm
Material Black SBR rubber, 70 ±5 Shore A hardness

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Product Overview

Reliable custom rubber parts for industrial applications

Quick Answer

Quadruped robot rubber foot pads are black SBR rubber components for robot leg-end contact, impact cushioning, anti-slip support and mechanical interface protection. The specified hardness is 70 ±5 Shore A, with a reference size of approximately 64.03 × 68.42 × 33.15 mm. Contact surface, mounting interface, tolerance and packaging are available upon request.

Quadruped robot rubber foot pads are black SBR rubber components designed for robot leg-end ground contact, impact cushioning, anti-slip support and mechanical interface protection. The provided material is SBR rubber with 70 ±5 Shore A hardness. The available reference size is approximately 64.03 × 68.42 × 33.15 mm.

Quadruped Robot Rubber Foot Pads for Robotic Ground Contact and Cushioning

Quadruped Robot Rubber Foot Pads are molded rubber ground-contact components engineered for four-legged robotic leg assemblies, sized at approximately 64.03 x 68.42 x 33.15 mm and produced from black SBR rubber at 70 ± 5 Shore A hardness. This firm hardness grade delivers a durable, load-supportive traction surface designed to withstand repeated ground impact across walking, trotting, and running gaits on varied terrain.

Key Specifications

ParameterSpecification
Recommended Product NameBP SBR Rubber Foot Pad
Reference CodeBP-ST-2-012
Overall Envelope DimensionsApprox. 64.03 x 68.42 x 33.15 mm
MaterialSBR (Styrene Butadiene Rubber)
Hardness70 ± 5 Shore A
ColorBlack
FunctionGround-contact traction and load-bearing pad for robotic leg foot ends

What Are Quadruped Robot Rubber Foot Pads?

Quadruped robot rubber foot pads are the ground-contact components fitted to the end of each leg on a four-legged robotic platform, forming the primary interface between the robot and the surface it walks on. This foot pad measures approximately 64.03mm in width, 68.42mm in length, and 33.15mm in height, molded from black SBR rubber at a firm 70 ± 5 Shore A hardness. The compact, defined envelope allows the pad to integrate directly with the leg’s foot-end bracket, while the firm hardness grade supports consistent load-bearing performance under the robot’s operating weight throughout its full gait cycle.

Dimensional Profile

FeatureReference Value
Width64.03 mm
Length68.42 mm
Height33.15 mm
Hardness70 ± 5 Shore A
ColorBlack
MaterialSBR

This 64.03 x 68.42 x 33.15 mm footprint keeps the foot pad compact enough for direct mounting on standard robotic leg brackets while providing enough surface area and volume to distribute ground-contact load evenly across each step.

Material Properties: SBR Rubber (70 ± 5 Shore A)

SBR (styrene butadiene rubber) is a widely used synthetic rubber compound selected for foot pad and wear-component applications requiring firm, load-bearing durability under repeated mechanical stress.

  • Firm Load-Bearing Hardness: At 70 ± 5 Shore A, this compound provides a firmer, more structurally supportive ground-contact surface than softer rubber alternatives, suited to heavier robot platforms or higher-impact gait patterns.
  • Strong Abrasion Resistance: SBR is well regarded for resisting surface wear under repeated ground contact and sliding friction encountered during walking and running.
  • Impact Durability: The compound’s density and hardness allow it to absorb repeated impact loading without rapid deformation or surface breakdown.
  • Dimensional Stability: The defined 64.03 x 68.42 x 33.15 mm envelope ensures a consistent, repeatable fit within the leg’s foot-end bracket across production batches.
  • Consistent Black Finish: Manufactured in black for uniform appearance and easier visual inspection of wear over the component’s service life.

Key Features

  • Compact, precisely defined footprint of approximately 64.03 x 68.42 x 33.15 mm for direct leg bracket integration.
  • Firm 70 ± 5 Shore A SBR hardness balances load-bearing support with ground traction.
  • Black rubber finish for consistent appearance and easy wear inspection.
  • SBR compound selected for cost-effective abrasion and impact resistance under repeated loading cycles.
  • Designed as a replaceable wear component to extend the operational service life of the robot’s leg assembly.

Common Applications

  • Quadruped robotic platforms requiring firm, load-bearing foot pad support.
  • Industrial inspection, rescue, or heavier-duty robotic mobility systems.
  • Field-deployed robots operating on varied terrain requiring durable ground contact points.
  • Replacement and maintenance parts programs for legged robotic systems.
  • Robotic leg assemblies where higher hardness foot pads are preferred over softer traction pads.

Why Choose SBR for This Foot Pad

SBR rubber offers a practical balance of cost-effectiveness, abrasion resistance, and mechanical durability, making it a common choice for load-bearing wear components subjected to repeated ground-impact cycles. The 70 ± 5 Shore A hardness selected for this foot pad provides firmer structural support at the ground-contact point than typical softer traction pads, which is particularly valuable for quadruped platforms carrying heavier payloads or operating with more forceful gait patterns where excessive foot pad compression could affect stability and balance.

Custom Manufacturing Options

  • Custom overall dimensions to match different leg bracket designs.
  • Custom Shore hardness grade for different load-bearing or traction balance requirements.
  • Custom color for component identification.
  • Custom surface tread pattern for enhanced traction on specific terrain types.
  • Custom compound selection (SBR, natural rubber, or other synthetic blends) for specialized performance needs.

FAQ

What are quadruped robot rubber foot pads used for?

Quadruped robot rubber foot pads are used at robot leg-end ground contact positions. They provide a rubber interface for impact cushioning, anti-slip support, vibration buffering and protection of rigid mechanical structures during repeated walking or standing operation.

What material and hardness are specified?

The specified material is black SBR rubber with 70 ±5 Shore A hardness. This hardness range provides a firm elastomer structure for robotic foot contact, support and cushioning under compatible operating conditions.

What are the provided dimensions?

The provided reference size is approximately 64.03 mm length, 68.42 mm width and 33.15 mm height. Contact surface profile, mounting interface and dimensional tolerance are available upon request and should be confirmed before sampling or production.

Can the foot pad profile be customized?

Yes. Outer profile, contact surface texture, mounting interface, size, material compound, hardness, color and dimensional tolerance can be customized according to the robot foot structure. Accurate interface information is important for stable installation and repeatable movement.

How should buyers evaluate the foot pad for robotic use?

Buyers should confirm the robot load, ground surface, movement frequency, installation method and expected wear condition. These factors affect rubber material selection, Shore A hardness, contact surface design, cushioning behavior and service suitability.

Are samples available before bulk production?

Samples are available upon request. Sample preparation depends on confirmed geometry, SBR compound, Shore A hardness, color, tooling status, inspection requirements and packaging method. A physical robot foot interface helps verify fit before batch production.

Request a Custom Quote

Send the confirmed specification, physical sample or robot foot interface information for review. Please include size, contact surface, mounting interface, black SBR requirement, 70 ±5 Shore A hardness, load condition, ground surface, quantity, annual demand and packaging method.

Technical Information

Product specifications

Final specifications depend on your drawing, sample, material selection, and working conditions.

Product Name Quadruped Robot SBR Rubber Foot Pads
Size / Dimensions 64.03 × 68.42 × 33.15 mm
Material Black SBR rubber, 70 ±5 Shore A hardness
Application / Use Case Suitable for quadruped robot foot ends, robot dog leg assemblies, mobile robotic platforms, inspection robots and robotic systems where ground contact, cushioning and mechanical interface protection are required.
Customization Available by drawing, sample, dimensions, application requirements, material requirements, and working conditions.

Manufacturing Support

From drawing review to export delivery

Julong Rubber supports custom rubber product projects from material selection and tooling to sampling, inspection, packaging, and international shipment.

Drawing or Sample Based

Production can be developed from 2D drawings, 3D files, physical samples, or application requirements.

Material Selection

We help compare rubber materials according to temperature, oil, weather, compression, load, and chemical exposure.

Tooling and Sampling

Tooling, first samples, adjustment, and pilot production can be arranged before mass production.

Quality Control

Dimensional inspection, hardness checks, visual inspection, packaging review, and batch control support.

FAQ

Common questions

These answers help purchasing teams and engineers confirm whether the product fits their project before sending an RFQ.

Can you manufacture this product based on my drawing or sample?

Yes. Julong Rubber supports OEM and ODM production based on 2D drawings, 3D files, physical samples, and real application requirements.

Can the size, material, hardness, and color be customized?

Yes. Size, material, hardness, color, structure, surface finish, and packaging can be customized according to your working conditions and order requirements.

What information should I send for quotation?

Please send drawings or sample photos, dimensions, material requirements, quantity, application, tolerance, working environment, and any compliance requirements.

Do you support sample production before mass order?

Yes. Sample production and pilot orders can be arranged after tooling or process confirmation, depending on the product structure and project requirements.

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