Raykung — engineering services for equipment and parts
Raykung industrial design, measurement and reverse modelling for components and manufactured products. Submit the project brief, drawings, photographs or sample details for technical review.
3D scanning of a physical part
Raykung uses laser or optical scanning to capture the geometry of an existing object. Multiple views, data alignment and noise removal support reverse engineering and dimensional inspection. State whether the project requires surface data, a reconstructed model or a comparison report.
- Laser or structured-light acquisition
- Several views of the component
- Alignment and removal of noise
- Deliverable defined for the project
Coordinate measurement
Raykung describes articulated-arm coordinate measurement for dimensional checks of parts and assemblies. A project begins with the drawing, inspection features and datum system. Measurements can then be analysed against the agreed requirements and presented in a report.
- Identify the features to inspect
- Provide the drawing and datums
- Describe access to each surface
- Report against agreed requirements
Reverse modelling for replacement parts
Raykung reconstructs three-dimensional CAD geometry from scanning or coordinate measurements. This supports projects involving an existing part and missing design data. Explain the intended use of the model so that measurement, reconstruction and validation form one defined work package.
- Physical sample as an input
- Scanning or coordinate acquisition
- Reconstruction of CAD geometry
- Validation against the project brief
Full dimensional inspection
Raykung offers full-dimensional inspection using coordinate or optical measurement. The process covers the inspection scope, sample measurement, comparison with the design and a visual report. Supply the drawing revision and acceptance criteria alongside the sample.
- Inspection scope agreed first
- Measurement of the submitted sample
- Comparison with the design data
- Visual report for review
Industrial appearance design
Raykung develops product appearance through requirements analysis, concepts, three-dimensional modelling and prototype validation. For an equipment enclosure, describe the users, installation space, service access and controls. These inputs connect appearance to product function.
- Product brief and intended users
- Concept and appearance development
- Three-dimensional model and rendering
- Prototype review before production
Structural product design
Raykung covers structural design from requirements to detailed 3D development and production support. Submit the interfaces, installation envelope, operating conditions and assembly requirements. The project needs these constraints as well as the intended product appearance.
- Requirements and functional constraints
- Detailed three-dimensional development
- Review of the proposed structure
- Support for production preparation
Custom tooling and fixtures
Custom fixture design is one of Raykung’s listed services. A useful brief identifies the workpiece, the operation and the machine or workstation interfaces. Explain how the part is located, held, loaded and checked so that the proposed fixture can be reviewed against the actual workflow.
- Workpiece and intended operation
- Locating and clamping requirements
- Machine or workstation interfaces
- A project-specific fixture brief
Prototype and small-batch manufacturing
Raykung offers supply-chain support for small batches, including 3D printing, machining and other suitable processes. Start with the material, quantity, geometry and finish requirements. A shape prototype and a functional replacement may need different manufacturing and inspection plans.
- Prototype or small production batch
- 3D printing and CNC machining
- Process selected for the part
- Inspection agreed with the work package
Raykung and the manufacturing project
Raykung is Shenyang Raykung Industrial Design Co., Ltd., an industrial design and independent metrology company in China. Its stated services connect physical measurement, digital reconstruction, product development and support for small-batch manufacturing.
A useful enquiry defines the outcome: capture an existing shape, reconstruct a component, inspect a sample, develop a fixture or prepare a prototype. Explain which equipment or production process the work supports, so the engineering brief follows the intended application.
Reconstructing a worn component
Before measuring a used part, distinguish preserved features from wear, deformation and earlier repair. Otherwise a digital reconstruction can reproduce the damaged shape instead of the geometry needed for the replacement.
Supply photographs of the working surfaces and mating components. An earlier drawing, a sound reference part and the required fits are useful inputs. Specify whether the deliverable should reproduce the submitted object or restore a proposed working shape for approval.
Choosing the digital deliverable
A point cloud records measured coordinates, a surface model describes shape, and a CAD model provides geometry for further engineering. A drawing adds the dimensional requirements used to manufacture and inspect a part.
Choose the deliverable for the next step: comparing samples, editing a design, producing documentation or preparing machining. Name your design system and the required file formats. Agree the complete set of data before work begins so the next engineering team can use the result.
Information for the first enquiry
Send an overall view, close-up photographs, approximate dimensions and quantity. Add the equipment or assembly identification, known material, available drawings and the purpose of the work.
If the object remains installed, show its surroundings and the available access. For a large object, describe its location and whether it can be removed. For supplied digital files, identify the current revision.
These inputs help establish the work sequence and the information still needed for a technical proposal.
Datums and mating features
Identify the surfaces and holes that locate the component in its assembly. A cosmetic surface and a precision fit may have very different roles even when they belong to the same part.
Mark datum planes, axes, fits, threads and relevant load directions. Include the assembly drawing when one exists. This connects the measurement plan to installation and the reconstructed model to the actual function of the component.
The drawing and agreed brief define which features must be controlled.
Defining dimensional inspection
Start the inspection plan from the acceptance requirements. Checking one fit and accepting a new batch involve different scopes, drawings and reporting needs. Identify the characteristics that determine the intended result.
Mark critical dimensions and surfaces. State whether you need comparison with a CAD model, a table of measured values or a visual deviation map. Include your report template if one is used. Link each controlled characteristic to its reference on the current drawing revision.
Materials and operating conditions
Geometry alone does not define a functional part. Manufacturing also requires material and processing information. Structural development benefits from an explanation of the loads, environment, temperature, movement and mass constraints.
Provide the known material grade and surface requirements. If the grade has not been established, say so in the input data and include the available documentation. Separate necessary properties from preferences.
This helps the project team discuss suitable manufacturing options against a clear technical brief.
A fixture brief built around the operation
A tooling project starts with the operation and the position of the workpiece. Supply the part drawing, locating concept, clamping requirements and the machine, assembly station or inspection workspace where the fixture will be used.
Add the range of part variants, loading sequence and operator access. Show areas that must remain unobstructed. For inspection fixtures, explain the measurement datums.
The resulting brief connects fixture design to a production workflow and provides specific criteria for reviewing the proposed solution.
Prototype and functional sample
State whether the first sample will check shape, mounting, appearance or operation under load. A layout mock-up and a functional component may share geometry while requiring different materials and manufacturing plans.
Explain the prototype acceptance criteria and how its results inform the next stage. An enclosure review may involve installing internal components and assessing service access. A fixture review may examine locating and loading.
A defined check makes the transition from digital design to a physical object easier to manage.
Preparing a small production batch
For a batch, supply the approved model or drawing, material, quantity and processing requirements. Where several parts form one kit, provide a complete list and explain which items need checking together.
Describe whether the batch is for development, replacement parts or a limited product release. Mark critical dimensions, identification requirements and required documents.
An agreed first-sample review helps connect the final order to the approved geometry and the inspection plan used to accept the manufactured parts.
Measurement equipment shown by Raykung
Raykung lists measurement and scanning instruments made by other companies, including a Hexagon articulated arm, handheld scanners and industrial computed tomography. These instruments describe the tools supporting its engineering services.
For an enquiry, the object and the required measurement outcome take priority. An instrument name does not define the performance of every measurement task.
Describe the feature to inspect, its accessibility and the acceptance requirement before discussing the appropriate measurement method for that particular object.
Acceptance of the engineering result
Agree how the model, report or manufactured part will be accepted. Digital delivery needs the required format, geometric coverage and connection to the source data. A physical part also needs dimensional, material, surface and completeness requirements.
Separate document review, first-sample inspection and functional checks in the assembly. If acceptance takes place at your facility, supply its criteria in the original brief. The agreed sequence identifies the data and samples needed at each engineering stage.
Organising an enquiry through Equipguo
Send the project description, available drawings, digital files and photographs. Identify the required result: measurement data, a model, documentation, a fixture or manufactured samples. Include the relevant equipment or process details.
For physical delivery, add quantity, destination and required documents. For engineering data, specify file formats and how the inputs will be provided. The proposed scope should distinguish development work from physical supply, giving your team a clear basis for technical and purchasing review.
Price, schedule, work availability, documentation and warranty terms are defined for the individual project. We do not claim official Raykung representation, one measurement accuracy for every object or verified supply of measuring instruments under the Raykung brand.
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