Warm surface and product
The drum body, duct, sample spoon and discharged core can cause severe burns.
For Coffee roasting machine, the applicable CE scope is determined from intended use, energy sources, safety architecture and target market. The risk assessment, technical file, testing and conformity route must be verified against the actual model.

In the boiling cycle, the green core is tamboured, processed at high temperatures, transferred from the discharge lid to the cooling board and quickly cooled with the fan. The drum drive, mixing arms, discharge mechanism and cooling current can be accessed during the operator's sampling, product discharge and cleaning movements. The size of the lid and openings, the temperature of the product and the possibility of compression are examined.
The cavity and fine coffee particles accumulate in a cyclone, channel or filter. High temperature, spark, rolling failure or incorrect weather settings can trigger a fire; dust explosion can also occur under certain conditions. The explosive data of the material is not automatically given as an ATEX result without the installation of the soaked system and facility division.
In gas heating, flame monitoring, ignition timing, low-to-high gas pressure, air flow, and purge functions after failure to fire can be critical. The scope of GAR in industrial process equipment is also studied according to product use; the safety of ignition other than that remains in the machine risk assessment.
The following data shows why even models with the same product name can change the path of conformity.
The protective, control and verification approach shall be based on the actual product cycle.
The drum body, duct, sample spoon and discharged core can cause severe burns.
The access to the rotating elements in the feed-discharge opening or cooling board creates a constraint.
The gas buildup before the fire occurs can create a risk of explosion, fire timing, fire monitoring and ventilation are confirmed.
Dry ash accumulated in the cyclone and exhaust can be lit by high temperature or flare, requiring cleanliness, sensing and safe closure.
Thin coffee powder can create explosive mixtures in closed filter volume, leading to the choice of equipment due to the material data and the resulting distribution.
Failure of the fan can lead to the accumulation of smoke, carbon monoxide or excessive heat.
A single product name doesn't give the same answer for all models.
| The subject | The situation | Product-based evaluation |
|---|---|---|
| The machine's layout | YES, YES | In Turkey, the 2006/42/AT applies to coffee brewers; the next national compliance is confirmed on the date of the brewer's first market offer or first service. Integrated control with the drum is assessed. |
| GAR | IT 'S A MESS . | The purpose and exceptions of the industrial process of the subcontractor are examined together; in the case of GAR, the approved establishment process in the appropriate module is carried out separately. |
| ATEX | IT 'S A MESS . | If the equipment is intended for use in an explosive atmosphere due to coffee dust or unburnt gas, the equipment category is determined. |
| EMC | IT 'S A MESS . | EMC scope is assessed in terms of the intended environment; driver and communication patterns affect test requirements. |
| LVD | NO , NOT AT ALL . | The LVD is not applied to machinery as a separate directive; electrical safety objectives are met within the scope of machinery legislation. |
| PED | NO , NOT AT ALL . | The standard low pressure gas train does not automatically generate PED coverage; if there is pressure equipment data in the project, it is analyzed separately. |
ISO management system certification does not replace product-specific risk analysis, test evidence and compliance file.
The capacity, temperature range, fuel type and permitted coffee varieties are recorded.
Briller, gas train, barge, cyclone and facility ventilation interfaces are defined on the drawing.
Cascade accumulation, fire failure, drum stop, fan loss and cleaning scenarios are examined.
The firing order, sensors, temperature limits, posture, electrical and splash behaviour are confirmed.
The bucket, cleaning and maintenance information is synchronized with the machine; if GAR is applied, approved institutional documents are recorded separately.
The fuel type, briller scope, model capacity, exhaust system, ATEX data, and available combustion tests determine the extent of the work.
Compare the top coverage or other similar risk architecture.
The definitive result is given by examining the industrial process purpose, design and scope of the device.
No. The Briller document is the input component; the gas train, control, exhaust, drum and machine interfaces are evaluated jointly by the final manufacturer.
The dust properties, quantity, closed volume and the holding sources are evaluated.The result for cyclone or filter may be different from the open cooling table.
Now, it may be necessary to keep control over the safe removal of heat, and the safety sequence is determined by combining fire and energy risk.
The frequency is determined by the manufacturer based on capacity, core, channel design and temperature data.
The tray itself may be out of service, but the necessary traction, printing, material, maximum anti-pressure and safe connection conditions must be specified in the machine manual.
Share the model of the machine or device, the location of use and the basic technical data. The Kayra Patent explains the path to be followed for scope analysis, technical preparation, test plan and, where necessary, approved organization coordination.