吹入的毯绝缘方法

项目:曼哈顿重塑和鳕鱼实惠,第10集,第3



鲍勃是回到马什皮,马萨诸塞州,在那里他与开发商乔山谷,上诉马什皮分区董事会主席满足保障性住房项目,马什皮助理城市规划师,以及马什皮经济适用住房委员会的代表回顾如何行动40B得益于社会各界和通过创造性分区缓解开发商。在一个主站点,鲍勃得知从完美栅栏,将在每个家庭面前坐着的详细和顶尖皑皑,免维护乙烯基栅栏。房子的外墙正在用雪松奶昔包三面LP SmartSide设计在正面外立面搭壁板。(MDO)面对这种壁板是由中等密度定向刨花板的有纹理的涂料为基础的覆盖层,给出了一个质地粗糙的预涂底漆,雪松外观外观与护墙板。SmartSide壁板抵抗真菌生长和白蚁并携带了30年的转让担保。里面他们在墙壁和天花板腔布料搭持有该吹入毯隔热。拉动整个腔体织物紧固定在适当位置,并防止沉降绝缘。一旦未处理的玻璃纤维绝缘材料被以两磅密度熔断,外壁将具有15的R值。
第1部分:致力于发展经济适用房和安装维护自由乙烯栅栏
第2部分:安装Smartside实木墙板
第3部分:吹入的毯绝缘方法
鲍勃是由威绝缘的麦克霍布森作为船员准备马什皮房屋绝缘安装的一个接合。霍布森解释说,这是一种使用缝合和跨越任何空腔需要被绝缘紧绘制特殊织物专利的绝缘系统。船员们的作品与气动订书机让所有的墙壁到位织物和大教堂天花板的托梁。织物不打算为任何类型的保湿屏障,是刚刚在那里举行的地方保温和防止其沉淀。霍布森显示BOB将被吹入腔白玻璃纤维。它是白色的,因为它是一个处女的产品,完全免费的治疗,粘合剂或化学品。Certainteed和Johns Manville公司都产生玻璃纤维绝缘适合于吹在毯安装。一旦所有的空腔已经被包围,绝缘承包商切割在织物的狭缝并插入通过该玻璃纤维吹入软管。该空腔被填充至2磅每立方英尺的密度,其通过在织物的轻微隆起是肉眼可见。在此密度,15的R值在两个由四个空腔如墙壁得以实现。 In attics and ceiling cavities that are two-by-six, an R-value of 38 can be achieved. This insulation is inert and will not support moisture, mold, animals, or insects. It also serves as a sound insulator and can be blown in around drain lines, in interior partitions, and around tubs and showers. Blo-In-Blanket insulation is suitable for new construction or retrofit applications where it is blown in through the sheathing from the outside or through interior drywall to fill wall cavities. Blow-In-Blanket insulation costs about 50 to 60 percent more to install than traditional batt insulation, but offers such energy efficiency that it pays for itself within two to four years.

亚博老虎机网页版鲍勃·维拉:我们在我们的小房子里背和施工的快节奏和噪音是唯一的好。我们正在参与现在的问题是绝缘的房子。迈克·霍布森在这里介绍一下吹入毯系统。迈克·霍布森:嗨鲍勃,你怎么样?鲍勃:你好吗?很高兴有你在这里。麦克:非常感谢你。鲍勃:传统上,当你做一个快速,小巧,经济实惠的房子就是这样,他们在运行,他们把玻璃纤维棉絮常规的绝缘系统。这是一个有点不同。它是如何工作的? Mike: It is a little bit different. This is the Blow‑in‑Blanket System. It's a patented insulation system. As you can see, the men are putting up a fabric over the face of any area that needs to get insulation. The walls, you have a cathedral ceiling here, you have some fabric up there. Once they're done stretching that fabric tight we come back in and blow in some fiberglass insulation. Bob: So, the prep work right now involves getting all this fabric material stapled in place? Mike: Correct. Bob: They've got pneumatic staple guns, so that's why they go so quickly. Mike: They've got pneumatic staple guns, move very quickly. The secret is to get, as you can see, he's got it pulled very tight. You want the fabric as tight as you can get it. Bob: Oh, really? Mike: Yeah. Bob: Look at all those staples. Sure. Mike: When it's blown in behind it, you're looking for a certain density, and that's what gives you the R‑value of the insulation. Bob: Is the fabric itself some sort of moisture barrier or anything like that? Mike: The fabric is not a moisture barrier. In applications where you are looking for a specific vapor barrier, after the fact you can come back and put in a polyethylene over top of that. Bob: OK, but in this situation it's strictly there to hold the material in place? Mike: Strictly there to hold the material in place, correct. Bob: Now the fabric's in place, so we're ready to start blowing it in. Mike: We're ready to start blowing some in. Bob: What is it that we're blowing in? This looks different. We're use to pink or yellow batts of insulation and this is different looking. Mike: Blown insulation, when it is white like this, is what they call a virgin product. There's no additional binders that are added to it which hold conventional batt insulation together. This is a material that's manufactured by CertainTeed. CertainTeed and Johns Manville both manufacture products that are acceptable for use in the Blow‑in‑Blanket System. Bob: It looks denser than what I'm used to when I think about fiberglass. Mike: It is. It's blown in. That's the secret to getting the R‑value out of it. In a 2x4 cavity, which is what you have in these homes, you're going to end up with an R15. Bob: As opposed to an R11. Mike: As opposed to an R11 or an R13 that you can get out of batt insulation. That's strictly a function of the density of the material. Bob: With batt insulation we're always told not to compress it because if you compress it you get rid of the air pockets. Mike: Absolutely, but with blown material when you achieve a higher density, which this will be blown in up to a two‑pound density, you can still get an increased R‑value out of it. That's where you get the increase in the R‑value out of the material. Bob: OK. What about in the attic? What do you do up there? Mike: In the attic, in this application, we've put some fabric up already. It's going to be what we would consider an open blow. We're trying to achieve an R‑value of 38 which would be 15 inches. However, you have a cathedral ceiling situation here, as well. You can also achieve an R38 in those. Again, you're compressing and getting denser material, so in a 2X12 you're still going to have an R38 with a blown‑in system. Bob: Does this have any kind of sound‑deadening qualities? Mike: Absolutely, yeah. It has a lot of sound‑deadening qualities to it. Oftentimes, we'll net the interior partitions around bathrooms around tubs, to quiet those down, underneath drain lines, so we do an awful lot. Bob: The truck is out on the street, and that's where all the material is and... Mike: The truck is out on the street. Yep. Bob: It's being pressurized and blown in through there, and the system is real simple. You just go up to the cavity and you slit all of the fabric, right? Mike: Absolutely. Bob: Boy! That goes quick. How does he know when he's got enough in there, Mike? Mike: The secret to this, if you come to the side here, Bob, you can see the netting bulges out. Bob: Yeah. Mike: About probably an inch, or so, and that's how you know. That actually is part of the patent of the system that you have enough in there that you're getting the densities that you want. What we do when we're done, we'll come back and broom that, try and broom that as flush as we possibly can, to make it easier for the drywaller to put his drywall on there. Bob: Do you have to worry about rodents nesting in there or about humidity collecting in there and having it all slump down? Mike: No, not at all. As I said before, it's a virgin fiberglass product. It will not support any moisture at all, any mold growth, or any type of insects or animals. Bob: Is it treated with any kind of... Mike: No, it's not. Bob: Just the pure fiberglass. Mike: The pure fiberglass. Bob: So, in terms of people and allergies, you don't have to worry about that. Oh, that is very quick. Yeah, that's great. Mike: Yeah. Bob: Can this also be retrofitted? If you're doing it in a house that's already built? Mike: It can be. Bob: How do you do it? From the outside? Mike: You can do it either from the outside or from the inside. What we recommend is, if someone is residing an existing house from the outside, you can drill through the sheeting, as he's poking the holes in the fabric. You would drill a hole in it and blow the material in that way. For people remodeling from the inside, you can drill through existing plaster and do it from the inside, if they're going to paint or repaper, or so forth. Bob: The great thing is we're getting the highest R‑Factor that you can get. Mike: In a 2x4 cavity you're not going to get any higher an R‑value out of it. That's the beauty of it. It's something that's a little bit more costly on the front end than conventional batt insulation. A house such as you have here, you're probably looking anywhere between 50‑60 percent more for the insulation on the front end. However, the payback on that with the savings of your utility bills and so forth is probably going to be somewhere in the neighborhood of two years. Bob: Really! That fast a payback? Mike: Absolutely. Bob: In New England that makes a big difference in an affordable house. Mike: It certainly does. Bob: Thanks Mike. Mike: Not a problem, Bob. Thank you.
该项目与家庭两种截然不同的概念涉及。鲍勃开始在纽约上西城,其中一个19世纪90年代的赤褐色砂石建筑通过高品质的工艺和敏感的设计活力。纽约的过去与目前的,因为整个地板被回收并翻新创建于中央公园的门口,一个宽敞的城市公寓。

与此同时,鲍勃作品与科德角开发商申请马萨诸塞州土地使用法规40B建立保障性住房,并在马什皮,马家的附近。这些能源之星认证的房屋显示质量建设的做法和合理的要价如何携手提供宜居,实惠的家园和社区那些谁的工作在我们的社区。

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