11.7.10

居民如何撲救各類火災 - 現代居民家庭實用消防知識

現代居民家庭實用消防知識﹙三﹚:居民如何撲救各類火災

http://news.daynews.com.cn/fzxw/953126.html

居民家中發生火災後,往往因為不懂滅火方法或缺少自救能力而造成人員傷亡和嚴重經濟損失。因此,每個公民都應該瞭解一些家庭滅火常識,以便在火災初起階段,有效的將火撲滅。下面就讓我們一起學習這些常識:

  1. 無論居民自家或鄰居家起火,都應立即報警,並根據起火情況積極進行撲救。
  2. 如密閉的房間起火,不應急於打開門窗,防止空氣流通使火勢瞬間變大,應先做好滅火準備,再破門迅速對著火點進行撲救。
  3. 家用電器線路、電器設備著火,要立即切斷電源,然後用乾粉、二氧化碳滅火器撲滅,或用濕棉被、帆布等將火窒息。電器火災切不可用水撲救,防止因水導電而造成觸電傷亡事故。
  4. 如家中存放的汽油引發火災,一般來說不能用水撲救。因為,水和汽油比重不一樣,用水撲救往往會使火苗飛濺、蔓延,造成火勢擴大。對付這類火災,要用乾粉滅火器或沙土、濕麻袋滅火。
  5. 做飯時,油鍋溫度過高或倒油太多引發火災,可將切好的蔬菜投入油鍋冷卻滅火;或用鍋蓋快速蓋住油鍋,窒息滅火;還可以將食鹽投入鍋中,其成分氯化鈉在高溫火源下的化學反應能抑制燃燒的進行。
  6. 當煤氣、天然氣、液化石油氣著火,應第一時間切斷氣源,如家裡配用小袋乾粉滅火劑,可將其投入火中滅火,也可使用乾粉滅火器或用濕棉被、濕麻袋等將火源覆蓋滅火。
  7. 人身上著火千萬不可帶火亂跑,要設法把身上著火的衣帽脫掉,如一時來不及,可就地臥倒打滾,把身上的火苗壓滅。旁邊的人可以用水或迅速用棉質衣物蓋在著火的部位,且勿用化纖的衣服,否則會傷及皮膚。也不可用滅火器直接向著火的人身上噴射,以免其中的藥劑引起燒傷者的傷口感染。
  8. 電腦是現代生活中不可缺少的物品,而電腦一旦起火要立即切斷電源,並用濕毛毯、濕棉被等物將電腦蓋住,這樣既可以滅火,還可以防止電腦起火後的毒煙蔓延。同時,一旦發生爆炸,還可擋住螢光屏玻璃碎片傷人。

Sherex Fire-Proof Material Co : Joint Billion Fire Door 防火門

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8.7.10

Fire Rated Steel Door System Project

Fire-Rated Steel Door System Project - Water Pumping Station

Fire-Rated Steel Door System Project - Water Pumping Station

Fire-Rated Steel Door System

FRP : 2 hr. Integrity (#SUS 316 Stainless Steel)
Location: Water Pumping Station, Tai Po

Fire-Rated Steel Door System Project - Water Pumping Station 02

Fire-Rated Steel Door System Project - Water Pumping Station 02

Fire-Rated Steel Door System

FRP : 2 hr. Integrity (#SUS 316 Stainless Steel)
Location: Water Pumping Station, Tai Po

Fire-Rated Steel Door System Project - Tsuen Wan

Fire-Rated Steel Door System Project - Tsuen Wan

Fire-Rated Steel Door System

FRP : 1 hr. Integrity (#SUS 304 Stainless Steel)
Location: 100 Texaco Road, Tsuen Wan

Fire-Rated Steel Door System Project - Yan Shing Court

Fire-Rated Steel Door System Project - Yan Shing Court

Fire-Rated Steel Door System

FRP : 1 hr. Integrity (#SUS 316 Stainless Steel)
Location: Yan Shing Court, Fanling


Joint Billion Fire Door, 防火門, 防火玻璃門 產品認證 (PCCS-FD) - awarded the internationally recognized ISO:9001:2000 certification

5.7.10

各類燃氣使用注意事項 - 現代居民家庭實用消防知識

現代居民家庭實用消防知識(二):各類燃氣使用注意事項

http://news.daynews.com.cn/fzxw/946380.html

使用煤氣灶怎樣防火

  • 使用煤氣灶(非自動打火)時,應先點火後開氣。如果先開氣後點火,在燃氣點燃之前,爐膛內外局部已存在煤氣與空氣的混合物,如果這時點火,很容易引起爐灶周圍發生爆炸,所以使用煤氣灶時,必須遵守先點火後開氣的操作規程。
  • 發現家中有漏氣現象,檢查漏氣部位時可用肥皂水塗抹在管壁和接口處,看是否有氣泡出現,切勿用明火檢查。
  • 當回到家發現有煤氣異味,應先打開門窗通風,沖淡煤氣在空氣中的含量,切勿開燈或動用明火。
  • 嚴禁個人擅自更改、拆卸或遷移煤氣管線中的閥門、計量表等設備。
  • 閥門與爐灶連接的軟管不要太長,因為軟管長時間使用會老化,易開裂和漏氣,要定期檢查及時更換。
  • 燒水煮飯時,容器裡的水不要太滿,防止沸水湯溢出鍋外,澆滅火苗,造成煤氣外漏。

使用天然氣灶怎樣防火

  • 連接導管的兩端,必須用金屬線纏繞緊,並固定牢靠;經常檢查是否漏氣,不用氣時將金屬管道末端的銅閥門關閉,防止發生火災。
  • 管線、閥門等設備發生故障時,要請供氣單位及時維修,任何人不能私自拆卸、安裝。
  • 使用天然氣時,要先點火後開啟閥門。用氣時人不要外出和走遠,以便發生事故時能及時處理。

使用液化石油氣瓶怎樣防火

  • 液化石油氣瓶接氣時,液化氣瓶的灌裝量不得超過氣瓶容積的85%。
  • 液化氣瓶與火源、熱源的距離不得小於1.5米。
  • 氣瓶不易用火烤、開水燙、暴曬。
  • 氣瓶必須豎立使用,不准倒置,否則液化石油氣的液體流入調壓器極易發生火災爆炸事故。
  • 液化氣瓶裡殘液要交供應站統一處理,不可隨意倒入廁所、下水道、小河裡,以防發生火災。
  • 教育小孩不要玩耍氣瓶角閥,隨意扭動零部件。
  • 若發現家中液化氣洩漏,聞到液化氣臭味時,應先及時打開門窗通風,減少液化氣在空氣中的含量,不要急於開燈或使用明火照明。羅長久

Sherex Fire-Proof Material Co : Joint Billion Fire Door 防火門

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26.6.10

家庭防火知識 - 家中明火使用注意事項

現代居民家庭實用消防知識(一):家中明火使用注意事項

http://news.daynews.com.cn/fzxw/942695.html
  1. 家中吸煙注意防火,燃著的煙頭表面溫度有200-300度,中心溫度有700-800度,一般可燃材料的燃點都低於煙頭的溫度,如木頭290度、紙張130度、布匹200度,因此,一定要把抽剩的煙頭處理好,不要隨手亂扔,特別是不要睡在床上或沙發上吸煙。
  2. 家中遇到停電或搞生日祝壽活動時,都會燃點蠟燭,由於蠟燭燃著時的火焰溫度高達1400度,我們要把它固定在不可燃的物品上,如瓷盤、鐵盤中等,不能隨意的放在電視機殼、紙箱、木桌等可燃物上,並且要隨時有人看管,人離開時要及時熄滅。
  3. 夏天,家中經常要點蚊香驅蚊,而蚊香點燃時的溫度可達700 度左右,因此,蚊香不能放在靠近蚊帳、床單、衣服等可燃物附近,防止因風吹而相互接觸引起燃燒。點燃的蚊香要放在支架上(購買蚊香時有配套供應),支架要放在不可燃的地面或物品上,人離開時要將其熄滅。
  4. 家中烹煮食物時更要注意防火,火上燉煮含油食品湯不易太滿,要隨時關注,發現湯水沸騰要將火調小或將鍋蓋揭開,又或者加入冷湯,防止湯和浮油溢出鍋外;油炸食品時,油不能放的太多,油鍋放置要穩妥,火不易大太,防止油溫過熱。在不用灶火時,要及時將火熄滅;長時間離家外出,一定要將爐灶總閥門關閉,切斷氣源,以防意外。
  5. 家中大人平時要教育小孩切莫隨意玩火,孩子對外界事物充滿好奇,且不懂玩火的危害性,因此在玩火時極易引發火災。為此,家長要管好室內火種,如火柴、打火機等,將其放在小孩拿不到的地方;使用煤氣、天燃氣、液化氣的居民家庭,特別要教育孩子不要隨意玩灶具的零部件和氣瓶的開關;家長外出和上班時,最好不要把孩子獨自鎖在家中,防止大人不在小孩玩火引發火災。

Sherex Fire-Proof Material Co : Joint Billion Fire Door 防火門

防火門 | Fire Door

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27.5.10

FireProof Defintion

Columbia Encyclopedia:fireproofing


Fireproofing
method of making normally combustible materials as nearly noncombustible as possible. Fireproofing generally applies to textiles and construction materials that are treated with a solution or coating of some substance that will tend to retard their ignition.

Fireproofing of Textiles
Textiles for use indoors are soaked in fire-retardant solutions made up mostly of boric acid and borax. Textiles for outdoors are soaked with chlorinated paraffin, chlorinated synthetic resins, or chlorinated rubber. The standard for effectiveness of these treatments is the weight of chemicals remaining after the materials dry. Large areas of textiles are brushed or sprayed, but they gain little resistance against severe fire exposure; the treatment is mainly a guard against lit cigarettes and short exposure to flame.

Rain, washing, or dry cleaning tends to leach the chemicals from the fabric; therefore latex is often added to waterproof the material. At one time asbestos could be mixed with natural fibers to increase their fire resistance, but now only glass or ceramic fibers are permitted. The fire resistance of a textile is generally expressed in hours of endurance to a standard temperature furnace.

Fireproofing of Construction Materials
In construction, heavy wood timbers have a relatively high fire resistance, because fire tends to burn very slowly inward from the surface, leaving enough sound timber in the center to prevent collapse. Wood framing can also be impregnated with ammonium phosphate solution or covered with special mastics. Stucco or other incombustible facing also gives a wood frame some protection from fire.

To be classed as fire resistive, buildings must be made of reinforced concrete or protected steel that will stand considerable fire with minor damage; even a building made of unprotected steel may be damaged. While steel retains its strength up to a very high temperature, it fails rapidly at temperatures over 1,000°F (540°C). Structural steel may be protected in a number of ways. It can be faced with brick, concrete, or tile; however, construction with these materials usually adds too much weight to a building. A protective layer of concrete over all surfaces of a beam or over the steel bars in reinforced concrete has to be at least 2.5 in. (6.4 cm) thick to be effective; hollow clay tile used to cover beams and girders has to be at least 4 in. (10 cm) thick. Thus most buildings use lightweight fireproofing such as gypsum, perlite, and vermiculite mixed in plaster, concrete, and mineral fiber; one inch (2.5 cm) of such materials will absorb an equivalent amount of heat as 2.5 in. (6.4 cm) of concrete.

Some recent buildings circulate water inside each column, protecting the structure against meltdown. Asbestos is no longer used, because inhalation of the fibers causes abestosis, a fatal lung disease; fireproof board made from a mixture of asbestos and cement is used only rarely. Concrete is still used, but mostly as a thin slab on floors. In urban areas, buildings must also provide protection against fire in neighboring buildings through fireproof exterior walls-preferably windowless, since windows are fire openings. Standards for fireproofing are set by organizations such as the American Insurance Association and the International Conference of Building Officials


Sherex fire Proof Material Co.:

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26.5.10

Fire protection

Fire protection is the study and practice of mitigating the unwanted effects of fires. It involves the study of the behaviour, compartmentalisation, suppression and investigation of fire and its related emergencies, as well as the research and development, production, testing and application of mitigating systems. In structures, be they land-based, offshore or even ships, the owners and operators are responsible to maintain their facilities in accordance with a design-basis that is rooted in laws, including the local building code and fire code, which are enforced by the Authority Having Jurisdiction. Buildings must be constructed in accordance with the version of the building code that is in effect when an application for a building permit is made. Building inspectors check on compliance of a building under construction with the building code. Once construction is complete, a building must be maintained in accordance with the current fire code, which is enforced by the fire prevention officers of a local fire department. In the event of fire emergencies, Firefighters, fire investigators, and other fire prevention personnel called to mitigate, investigate and learn from the damage of a fire. Lessons learned from fires are applied to the authoring of both building codes and fire codes.


In the United States, this term is used by engineers and code officials when referring only to active and passive fire protection systems, and does usually not encompass fire detection systems such as fire alarms or smoke detection.



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6.5.10

UNI-DOOR FIRE-RATED TIMBER DOOR SYSTEM

UNI-DOOR FIRE-RATED TIMBER DOOR SYSTEM 防火玻璃

Fire Resistance up to 2 hours Integrity & Insulation
Compliance to BS476: Part 22 :1987

UNI-DOOR FIRE-RATED TIMBER DOOR SYSTEM - 01 UNI-DOOR FIRE-RATED TIMBER DOOR SYSTEM - 02 UNI-DOOR FIRE-RATED TIMBER DOOR SYSTEM - 03

Fire Door Features

  • The core materials is composed of high density solid hardwood that is strong enough to accommodate the FRP performance as well as durability.
  • Alternative proprietary rockwool core with more than 85% reduction in the usage of timber could be achieved the same FRP performance as well as environmental protective function.
  • Intumescent seals are installed either around door leaf or door frame to seal up the door gaps in case of fire.
  • Clear glazing of various shapes could be designed and installed on the fire-rated doors to provide vision and design function.
  • Excellent flexibility in the selection of decorative facings for various project needs, such as timber veneers or color plastic laminated facing.
UNI-DOOR FIRE-RATED TIMBER DOOR SYSTEM - 04 UNI-DOOR FIRE-RATED TIMBER DOOR SYSTEM - 05 UNI-DOOR FIRE-RATED TIMBER DOOR SYSTEM - 06

Sherex Fire-Proof Material Co : Joint Billion Fire Door 防火門

防火門 | Fire Door

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