• Thermal Vacuum Chamber Testing Vacuum Oven Vacuum Chamber
  • Thermal Vacuum Chamber Testing Vacuum Oven Vacuum Chamber
  • Thermal Vacuum Chamber Testing Vacuum Oven Vacuum Chamber
  • Thermal Vacuum Chamber Testing Vacuum Oven Vacuum Chamber
  • Thermal Vacuum Chamber Testing Vacuum Oven Vacuum Chamber
  • Thermal Vacuum Chamber Testing Vacuum Oven Vacuum Chamber

Thermal Vacuum Chamber Testing Vacuum Oven Vacuum Chamber

After-sales Service: Yes
Warranty: 2 Years
Max Diameter of Workpiece: 2000mm
Mass Scope of Workpiece: <900kg
Type: Universal Testing Machine
Maxcapacity: PA
Customization:
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Overview

Basic Info.

Model NO.
TVC-2000
Accuracy Grade
0.5
Load Way
Electronic Load
Loading Method
Dynamic Load
Display
Digital
Control
Computer Control
Weight
0-100Kg
Power Source
AC380V
Oil Cylinder Position
Under
No-Load Ultimate Vacuum /PA
1*10-8PA
Working Vacuum
1×10-5PA
Temperature Range
-190ºC~200ºC
Uniformity of Heat Sink Temper
≤±5ºC
Transport Package
Strong Wooden Case
Specification
30L
Trademark
Grandetop
Origin
China
HS Code
9026809000
Production Capacity
50per/Month

Product Description

Detailed Photos

 

Thermal Vacuum Chamber Testing Vacuum Oven Vacuum Chamber
Thermal Vacuum Chamber Testing Vacuum Oven Vacuum Chamber
Thermal Vacuum Chamber Testing Vacuum Oven Vacuum Chamber


 

 
Product Description

 

Thermal Vacuum Chamber

The Outer Space Simulation Test Chamber and Thermal Vacuum Test System of Grande Electronics Technology Limited are applied to simulate the outer space,space, environmental testing for satellite products . The temperature range could reach -180ºC ~+200 ºC,and Max. pressure to 1×10-6Pa. Even it could be installed an artificial sun to simulate the light environment in space. Our company adopts the internationally advanced heat sink temperature Cutting-edge Heat sink temperature technology control,transfer the temperature,and make the uniformity more excellent, can meet the U.S standard space test standards.
Thermal Vacuum Chamber Testing Vacuum Oven Vacuum Chamber
 

Product Parameters

 

Main Technology Parameters

(1) Vacuum Limit: better than 1×10-8Pa
(2) Working vacuum:better than 1×10-5Pa
(3) Temperature range: -190ºC~200ºC
(4) Temperature Accuracy:±0.5ºC
(5) Temperature of the heat sink: ≤100K
(6) Uniformity of heat sink temperature: ≤±5ºC
(7) Black paint for inner wall of heat sink, Absorption of sunlight by heat sink≥0.95 Hemispheric emittance≥0.90, The outer surface is equipped with radiation shield.
(8) Infrared heating heat flux density 100W/m2~1800W/m2
(9) With vacuum degree and temperature measurement function

 

The vastness of space is both familiar and strange to human. Familiar, because manned space activities have been carried out for decades, man has been into space hundreds of times. Strange, because the space environment is so complex, that every manned space activities, is still full of numerous changes and great risks. Facing the complicated and changeable environment of manned spaceflight, the astronauts can successfully complete the mission of manned spaceflight only when they make full preparation of test and training on the earth. Ground test and training cannot be separated from simulation technology simulation equipment.As to understand the simulation technology and simulation equipment, first of all should understand the manned space environment.

 

2,Solar irradiation environment and simulation

The sun radiates enormous energy into space all the time. The wavelengths of sunlight cover a wide area from10-14 M(γgamma rays) to 14 meters (gamma rays) to 104 meters (radio waves), Different wavelengths of sunlight radiates different amounts of energy. Visible light radiates the most energy. With visible and infrared radiation accounting for more than 90 percent of the sun's total radiation energy.

 

In the orbit flight, the spacecraft and the Eva spacesuit mainly receive three parts of radiation energy: Energy from the sun's visible and infrared radiation ,the earth reflects energy from the sun and heat from the earth's atmosphere. The energy absorbed by spacecraft and Eva spacesuit affects its temperature and distribution. The energy absorbed depends on the surface material characteristics of its structure and shape and flight trajectory. At wavelengths less than 300 nanometers, the radiation energy is a tiny fraction of the sun's total, However, the optical properties of the material surface will be greatly changed. The ultraviolet radiation effects are mainly reflected by photochemical effects and photoquantum effects.

 

The solar radiation simulation test can simulate the solar spectrum thermal effect and solar spectrum photochemical effect produced by solar radiation environment on spacecraft and Eva spacesuit. If only the thermal effect is simulated, it is called outer space heat flow simulation. There are two ways to simulate heat flow outside space, one is the in-jet simulation method, also known as solar simulation method; The other is absorption heat flow simulation, also known as infrared simulation. The solar simulation method should be used for the specimen with complex shape and surface material; If the shape is regular and the surface material is single, infrared simulation method can be used. If the photochemical effect of ultraviolet irradiation environment needs to be simulated, the ultraviolet irradiation simulator can be used.

 

3,Space cold black environment and simulation

 

The equivalent temperature of the space is about 3K and the thermal absorption rate is 1, It can be thought of as an ideal black body without thermal radiation or reflection . When there is no solar irradiation, space is a completely cold and dark space . In this cold and dark environment, all the heat energy emitted by the object is completely absorbed .Therefore, it is also called heat sink environment. The cold black environment has great influence on the thermal performance of spacecraft and Eva spacesuit, To develop spacecraft and Eva spacesuit, it is necessary to conduct thermal vacuum and thermal balance tests in the simulated cold and black environment. Verify whether its thermal design and thermal performance meet the requirements

 

In order to simulate the space cold and dark environment, Components usually made of aluminum, copper or stainless steel. The inner surface is coated with special black paint with high absorbency and liquid nitrogen is injected into the structure. This device is called heat sink. At present, all the spaceflight countries use this kind of heat sink with liquid nitrogen as the cold source to simulate the space cold and black environment. Because the thermal analysis theory calculation and the test data analysis indicated, heat sink with 77K liquid nitrogen temperature and absorption rate above 0.9 was used to simulate the space cold and black environment, and the simulation error was only about 1%. It can fully meet the requirements of simulation test of cold and black environment. In addition, the pursuit of lower temperatures is unnecessary and will greatly increase the technical difficulties and investment in analog equipment.

 

Technical Parameters:

Description:Vacuum System

Application

The main components of space vehicles and other products, Performance test and reliability test are carried out under the combined action of thermal vacuum environment (hot and cold temperatures )in the thermal vacuum environment simulation equipment.

The vacuum environment test equipment is composed of the vacuum chamber,heat sin,Infrared heating cage,Electrical control and environmental parameter testing system.

Main technical parameters

Vacuum container

The empty container is a horizontal cylinder with an open gate at one end. Effective container size:φ800×1200mm.length of straight flange 1200mm

Vacuum pumping system

vacuum pumping system divided into molecular pump set coarse pumping pump for oil pump and valve pipeline and other accessories

Room temperature and space load limit pressure : ≤6.7×10-5Pa(Need to be roasted)

Low temperature no load limit pressure(≤100K): ≤2.0×10-5Pa.(Need to be roasted)

Working vacuum : (The product is aviation plug-in) ≤5.0×10-5Pa; (Need to be roasted)

Pump-down time: 30min~1h

Cold light; Surface temperature of heat sink:5.0×10-5Pa,Start with pre-pumping≤20min;

Cold light; Surface temperature of heat sink: 5.0×10-5Pa,Start with pre-pumping≤30min;

 

Heat sink

effective size φ450×900mm length of straight flange

Surface temperature of heat sink : ≤200K

Homogeneity: ±5ºC

Surface temperature≤+130ºC,Teperature control precision,±3ºC

Sample temperature range:limiting temperature-70ºC~+130ºC.

Control accuracy:Error ≤±1ºC.

Heating rate:≥2ºC/min,

Cooling rate:≥2ºC/min;

Low-temperature system:mechanical refrigeration

Uninterrupted working time of equipment:more than 20 days

Separate grounding of equipment,Grounding resistance is not greater than

A power supply flange is left on the side of the test box,Pin number ≥55 core,Meet the requirement of 1000V withstand voltage 5mA leakage current

System configuration and program description.

 

Vacuum container

The vacuum container is a horizontal cylinder with an open door at one end,One end is a butterfly head. The vacuum container and head are made of 0Cr18Ni9(304) stainless steel. The base is made of carbon steel. The welding adopts inner ring argon arc welding. Simulation of high and low temperature vacuum environment in the main tank 0 key process control of tank production.

Door flange integral heat treatment, eliminate stress

Weld color inspection, re - helium mass spectrometry leak detection, The overall leakage rate is≤1×10-6Pa.L/S;

The inner wall of the tank is polished, roughness is 0.8~1.6.barffing

leak rate≤1×10-6Pa L/S,leak test plant; helium mass spectrometer leak detector

Vacuum chamber material requirements

a.material: Use 0Cr18Ni9 stainless steel plate ring system, Use 0Cr18Ni9 stainless steel disc head

b. Reference Document;

The lower half of the container is about 45 places inside, Weld main heat sink installation guide rail.

The inner lower half of the main heat sink is about 45 positions, Installed with infrared heating cage installation guide.

Container door head and bottom head under head, Welded mounting door and bottom heat sink mounting lifting block. The container is equipped with a light.

Heat-sink system

a. The red copper pipe shall be tested for 20kg compressive strength for 10 minutes and annealed before welding.

b. All stainless steel tubes are tested and screened 100%. The leakage of each branch tube after welding with fin was detected by 100% helium mass spectrometry. leak rate≤5×10-7Pa.L/S, Final assembly shall be carried out after the leakage rate is met(welding).

The main heat sink

Main heat sink is the main component of the equipment to provide low temperature environment. It can provide low temperature of ≤200K. The main heat sink is tube coil structure. In order to meet the temperature uniformity, the inner tube is divided into two channels for inlet and outlet liquid.

Main heat sink consists of 2mm thick copper plate as the main material. effective size φ450×900mm length of straight flange.

The main heat sink externally welded withφ14×1.5mm red copper pipe. The connection mode is silver welding.

The main heat sink is fixed to the external stainless steel frame. The frame is also wrapped with a 0.5mm thick stainless steel mirror plate for heat insulation shielding. It can prevent condensation or condensation from happening in the outer wall of the container at low temperature for a long time 

The main heat sink is insulated with between the frame. To reduce the loss of cooling capacity of main heat sink. The inner side of heat sink is installed with the installation guide rail of infrared heating cage. A fixed foot is installed on the outside side. Fixed after entering vacuum container.

The equipment we provided is brand new,unworked, The technology is advanced and mature and reliable. The best materials and first - class process are used to meet the test requirements. And comply with the quality specifications and performance requirements stipulated in the national basic bidding technical documents in all aspects. And provide factory certificate and other quality certification documents. We provide the indicators testing procedures and inspection methods for the ex-factory inspection items one month before the equipment leaves the factory, For buyer's reference, The buyer may make additions and modifications as required. Acceptance documents shall be formed after confirmation by both parties as the basis for acceptance. And provide a technical document necessary for equipment installation(copy), commissioning, use and maintenance. After the completion of equipment processing and manufacturing. We organize joint commissioning of equipment. The buyer sends relevant personnel to our production base for factory acceptance and free technical training. We have developed a training plan for the software and hardware training of the whole project. And provide complete training materials and training certificates. Carry out equipment quantity check and appearance check according to the equipment list stipulated in the contract. And check the quantity, model and origin of each product category. At the same time, check the product qualification certificate and other related quality certificate. According to the technical requirements stipulated in the contract and the national standards and acceptance basis. The function and main technical indexes of each subsystem are checked and accepted, Send to buyer's site after qualified.

  SP Series thermal vacuum environment test system
Container way horizontal Vertical
The container is validΦ/m 0.4 1.2 1.4 2.0 2.4 3~17
Effective length of container /m 0.5 1.5 1.9 3.0 4 6~32
No-load ultimate vacuum /Pa 1×10-5Pa 5×10-5Pa
temperature range /ºC -180ºC~200ºC
refrigerating method liquid refrigerant,refrigerating machine,Nitrogen gas temperature,Bath oil temperature
heat-flow density 100W/m2~1800W/m2
Infrared heating mode Infrared heating array,Infrared heating cage
irradiance 100W/m2~2200W/m2
Irradiation way solar simulator,Ultraviolet irradiation simulator,Lighting environment simulation system
power conditions 380V±7%/60/50Hz+N+G

Important features of the structure
(1) Box structure: one-piece structure, vacuum system,The refrigeration system is placed in the same frame. Cylindrical shell can well meet the requirements of vacuum pressure,It is made of stainless steel AISI304L with a seamless welding process. The outer surface is sandblasted with high quality. Meet aesthetic and long-term use needs.
(2) Door: External sandblasting internal heat sink to meet the needs of uniformity, Equipped with wheel lock and fluororubber o-washer.
(3) Door open way: Mechanical hinges ensure sealing, Specially designed for easy opening.
(4) Heat sink structure: Special riveting and welding techniques weld two stainless steel sheets(AISI 304 L) together, There is room inside for temperature regulation of fluid circulation. This technique produces good temperature uniformity, Because the thermoregulation fluid covers the entire surface of heat sink.
(5) Vacuum system: International first-class brand, Includes a bipolar vane pump with a vacuum of 10-2torr, A helium cryogenic pump with exhaust filters for the pump set. Can very good recovery of oil pollution, prevent pollution of the environment. The suction of the pump set is connected to the helium cryogenic pump, Connect to the test box through the gate valve. A pressure gauge system displays each pressure by analog or digital display, To check the correct operation of each valve(Open and close).

Packaging & Shipping

Thermal Vacuum Chamber Testing Vacuum Oven Vacuum Chamber

Export wooden standard package. (non-log, non-solid wood, no fumigation, meet export standards)
Shipping:
We have the excellent cooperative forwarder to support transportation service including FOB, CIF, DDP and so on, to satisfy customer's special demands.
Customer Visiting

Thermal Vacuum Chamber Testing Vacuum Oven Vacuum Chamber

Our Advantages

Thermal Vacuum Chamber Testing Vacuum Oven Vacuum Chamber

 
Certifications

Thermal Vacuum Chamber Testing Vacuum Oven Vacuum Chamber

FAQ

Thermal Vacuum Chamber Testing Vacuum Oven Vacuum Chamber

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