Welcome to the Industrial Automation website!

NameDescriptionContent
HONG  KANG
E-mail  
Password  
  
Forgot password?
  Register
当前位置:

Safety hazards and prevention of rubber products enterprises

来源: | 作者:佚名 | 发布时间 :2024-01-29 | 549 次浏览: | Share:

Mechanical injury

Rubber products in the production process of mechanical equipment operation will produce extrusion, impact, involvement and other risk factors, when the safety protection facilities are insufficient and the operator's illegal operation and other safety hazards will lead to accidents. Such as the winding part of the main production equipment of the tire products company, when the operator covet to facilitate the violation of the safety operation procedures in the operation of the equipment to sort out the canvas roll, there is a safety hazard that leads to the operator's hand being involved in the hand fracture or even the human being being involved in the accident causing casualties.

In order to effectively eliminate these safety hazards and prevent accidents, the safety operation procedures of all equipment can be hung on the wall as A whole, so that the operator can see and comply with them at any time, and the danger points of all production equipment can be classified into hazard factors, according to their danger degree and the degree of injury when an accident occurs, it is divided into A, B, C three levels, and the production of warning signs. The warning board indicates the danger point of the equipment, the level of injury, and the prevention regulations, and the warning board is fixed on the danger point of the equipment, so that the operator can see the danger point and the prevention regulations of the operating equipment every operation, and remind the operator to operate according to the chapter.

Safety hazards and prevention of rubber products enterprises

In addition, safety protection facilities can be strengthened and improved according to the characteristics of individual equipment, especially the emergency stop device is the last line of defense for the operator's life safety, which must be complete, sensitive and effective. Taking the winding-up part of the above sail cutting machine as an example, in order to prevent accidents, the safety protection facilities of the winding-up part can be reformed. First of all, the safety guardrail is shifted to the distance that the operator can not touch the canvas roll outside the guardrail to prevent the operator from organizing the canvas roll when the equipment is running. The second is to transform the guardrail to increase the double guardrail door with the stopping device, when the canvas roll deviated from the fault or adjust, replace the canvas roll in the operation of the equipment, the operator must open the guardrail door to enter the winding part, when the guardrail door with the stopping device is opened, the equipment stops running, to make the equipment re-run, after the operator leaves the curling part, And must close the fence door, restart, the equipment can operate, so as to effectively prevent accidents.

smoke

Under high temperature conditions, the vulcanization process will produce process waste gas, that is, vulcanization gas, which can lead to occupational hazards and harm the operator.

The hidden danger of occupational hazards such as sulfur flue gas can be treated by installing a large hood gas collection and treatment device, which is aimed at strengthening the ventilation of the workshop. Due to the large production area of the vulcanization process, the point of producing process vulcanization flue gas is scattered. In order to control the process vulcanization flue gas, a large enclosure is set above the vulcanization unit, and air extraction is set up. After the process vulcanization flue gas is collected by the large enclosure, it is forcibly extracted by the extraction fan, and then led to the roof of the factory through the exhaust pipe to discharge, so as to prevent occupational hazards.

Dust is also produced during the production of rubber products, which can cause various damages to the human body. Among them, the dust of the crushing post is ancient Malone, paraffin, recycled rubber, sulfur, etc.; The dust of the dosing position includes carbon black, calcium carbonate, accelerator, antioxidant, etc. The dust of the opening and mixing position almost includes the above various components. If the workshop materials are stacked in disorder, it is difficult to clean the dust, and the dust on the equipment and on the ground is not cleaned in time, which is easy to cause secondary dust; Aging equipment, poor sealing performance; Ventilation and dust removal equipment is not matched or improperly installed; Illegal operation, remove the sealed dust baffle plate without authorization; This can cause excessive dust concentrations.

To reduce the production of dust, the main preventive measures are to reduce the dust concentration, ventilation dust removal and other methods, such as the use of dust collection, filter through the dust collector, and then centralized discharge treatment, the workshop installation of exhaust fans for ventilation, the production process transformation.

hyperthermia

Pure natural rubber or synthetic rubber (known as raw rubber or raw rubber), made of products with poor wear resistance, not long service life, use is limited, must be added to the rubber additives, and then through processing molding and vulcanization process, in order to get good performance, a certain shape and specifications of rubber products. However, in order to shape the rubber into a finished product, it needs to be vulcanized by high-temperature steam heating or electric heating. The vulcanization reaction of rubber depends on temperature, and with the increase of temperature, the vulcanization reaction speed is accelerated, and the production efficiency is high. Therefore, in the rubber molding process, heat will be generated, so that the temperature of the workshop will rise. The high temperature working environment will lead to the reduction of human physiological function, resulting in heat stroke of the operator, which becomes the incentive of industrial accidents.

  • FOXBORO P0912CB I/O Terminal Module
  • FOXBORO P0911VJ high-precision control module
  • FOXBORO P0911QC-C 8-channel isolated output module
  • FOXBORO P0911QB-C High Performance Industrial Module
  • FOXBORO P0903ZP Embedded System Debugging Module
  • FOXBORO P0903ZN control module
  • FOXBORO P0903ZL High Frequency Industrial Module
  • FOXBORO P0903ZE I/A series fieldbus isolation module
  • FOXBORO P0903NW Industrial Control Module
  • FOXBORO P0903NQ control module
  • FOXBORO P0903AA Industrial Control Module
  • FOXBORO FBM205 cable
  • FOXOBORO P0960HA I/A series gateway processor
  • FOXBORO P0926TP high-performance control module
  • FOXBORO P0926KL control module
  • FOXBORO P0926KK PLC system functional module
  • FOXBORO P0924AW wireless pressure transmitter
  • FOXBORO P0916NK differential pressure transmission cable
  • FOXBORO P0916JQ PLC module
  • FOXBORO P0916JP I/A series control module
  • FOXBORO P0916GG Digital Input Module
  • FOXBORO P0916DV I/A series digital input module
  • FOXBORO P0916DC Terminal Cable
  • FOXBORO P0916DB I/A series PLC module
  • FOXBORO P0914ZM recognition module
  • FOXBORO P0902YU control module
  • FOXBORO P0901XT Process Control Unit
  • FOXBORO P0800DV fieldbus extension cable
  • FOXBORO P0800DG Standard Communication Protocol Module
  • FOXBORO P0800DB Universal I/O Module
  • FOXBORO P0800DA Industrial Control Module
  • FOXBORO P0800CE control module
  • FOXBORO P0700TT Embedded System
  • FOXBORO P0500WX Control System Module
  • FOXBORO P0500RY Terminal Cable Assembly
  • FOXBORO P0500RU control module
  • FOXBORO P0500RG Terminal Cable
  • FOXBORO P0400ZG Node Bus NBI Interface Module
  • FOXBORO P0400GH fieldbus power module
  • FOXBORO FBM207B Voltage Monitoring/Contact Induction Input Module
  • FOXBORO FBM205 Input/Output Interface Module
  • FOXBORO FBM18 Industrial Controller Module
  • FOXBORO FBM12 Input/Output Module
  • FOXBORO FBM10 Modular Control System
  • FOXBORO FBM07 Analog/Digital Interface Module
  • FOXBORO FBM05 redundant analog input module
  • FOXBORO FBM02 thermocouple/MV input module
  • FOXBORO FBI10E fieldbus isolator
  • FOXBORO DNBT P0971WV Dual Node Bus Module
  • FOXBORO CP30 Control Processor
  • FOXBORO CM902WX Communication Processor
  • FOXBORO AD202MW Analog Output Module
  • FOXBORO 14A-FR Configuration and Process Integration Module
  • FOXOBORO 130K-N4-LLPF Controller
  • FUJI FVR004G5B-2 Variable Frequency Drive
  • FUJI FVR008E7S-2 High Efficiency Industrial Inverter
  • FUJI FVR008E7S-2UX AC driver module
  • FUJI RPXD2150-1T Voltage Regulator
  • FUJI NP1PU-048E Programmable Logic Control Module
  • FUJI NP1S-22 power module
  • FUJI NP1AYH4I-MR PLC module/rack
  • FUJI NP1BS-06/08 Programmable Controller
  • FUJI NP1X3206-A Digital Input Module
  • FUJI NP1Y16R-08 Digital Output Module
  • FUJI NP1Y32T09P1 high-speed output module
  • FUJI NP1BS-08 Base Plate​
  • FUJI A50L-2001-0232 power module
  • FUJI A50L-001-0266 # N Programmable Logic Control Module
  • GE GALIL DMC9940 Advanced Motion Controller
  • GE DMC-9940 Industrial Motion Control Card
  • GE IS200AEADH4A 109W3660P001 Input Terminal Board
  • GE IC660HHM501 Portable Genius I/O Diagnostic Display
  • GE VMIVME 4140-000 Analog Output Board
  • GE VMIVME 2540-300 Intelligent Counter
  • GE F650NFLF2G5HIP6E repeater
  • GE QPJ-SBR-201 Circuit Breaker Module
  • GE IC200CHS022E Compact I/O Carrier Module
  • GE IC695PSD140A Input Power Module
  • GE IC695CHS016-CA Backboard
  • GE IC800SS1228R02-CE Motor Controller
  • GE IS215WEMAH1A Input/Output Communication Terminal Board
  • GE CK12BE300 24-28V AC/DC Contactor
  • GE CK11CE300 contactor
  • GE DS3800NB1F1B1A Control Module
  • GE VMIVME2540 Intelligent Counter
  • GE 369B1859G0022 High Performance Turbine Control Module
  • GE VME7865RC V7865-23003 350-930007865-230003 M AC contactor
  • GE SR489-P5-H1-A20 Protection Relay
  • GE IS200AEPGG1AAA Drive Control Module
  • GE IS215UCCCM04A Compact PCI Controller Board
  • GE VME7768-320000 Single Board Computer
  • GE SR489-P5-LO-A1 Generator Protection Relay
  • GE IS215WETAH1BB IS200WETAH1AGC Input/Output Interface Module
  • GE D20 EME210BASE-T Ethernet Module
  • GE IS200EXHSG3REC high-speed synchronous input module
  • GE IS200ECTBG1ADE exciter contact terminal board
  • GE VPROH2B IS215VPROH2BC turbine protection board
  • GE F650BFBF2G0HIE feeder protection relay
  • GE SLN042 IC086SLN042-A port unmanaged switch
  • GE SR489-P1-HI-A20-E Generator Management Relay
  • GE IS400JPDHG1ABB IS410JPDHG1A track module
  • GE IS410STAIS2A IS400STAIS2AED Industrial Control Module
  • GE IS410STCIS2A IS400STCIS2AFF Industrial Control Module
  • GE DS200DCFBG2BNC DS200DCFBG1BNC DC Feedback Board
  • GE VME5565 VMIVME-5565-11000 332-015565-110000 P Reflective Memory
  • GE VMIVME-7807 VMIVMME-01787-414001 350-00010078007-414001 D module
  • GE IS220PDOAH1A 336A4940CSP2 Discrete Output Module
  • GE VMIVME-4150 Analog Output Module
  • GE WESDAC D20 PS Industrial Power Module
  • GE 369B1860G0031 servo drive module
  • GE 369B1859G0021 Input/Output Module
  • GE 208D9845P0008 Motor Management Relay
  • GE IS420UCSCH1A-F.V0.1-A Independent Turbine Controller
  • GE D20EME10BASE-T 820-0474 Ethernet Interface Module
  • GE DS200DCFBG2BNC MRP445970 DC Feedback Board
  • GE IC800SSI228RD2-EE servo motor controller
  • GE IS200JPDMG1ACC S1AT005 Digital Input/Output (I/O) Module
  • GE IS200TSVCH1AED servo input/output terminal board
  • GE IS200TTURH1CCC S1DF00Z Terminal Turbine Plate
  • GE IS200TSVCH1ADC S1CX01H servo input-output board
  • GE IS200TRPGH1BDD S1C5029 Trip Solenoid Valve Control Board
  • GE IS220YAICS1A L Analog Input/Output Module
  • GE UCSC H1 IS420UCSCH1A-F-VO.1-A Controller Module
  • GE UCSC H1 IS420UCSCH1A-B Communication Processing Module
  • GE IC697VDD100 Digital Input Module
  • GE V7768-320000 3509301007768-320000A0 Controller Module
  • GE IS410TRLYS1B Relay Output Module
  • GE IS415UCVGH1A V7666-111000 VME Control Card