JPS5841013A - Manufacture of vacuum heat-seal pack - Google Patents

Manufacture of vacuum heat-seal pack

Info

Publication number
JPS5841013A
JPS5841013A JP13586581A JP13586581A JPS5841013A JP S5841013 A JPS5841013 A JP S5841013A JP 13586581 A JP13586581 A JP 13586581A JP 13586581 A JP13586581 A JP 13586581A JP S5841013 A JPS5841013 A JP S5841013A
Authority
JP
Japan
Prior art keywords
surface plate
vacuum heat
vacuum
manufacture
paper tube
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
JP13586581A
Other languages
Japanese (ja)
Inventor
扇 知之
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Panasonic Electric Works Co Ltd
Original Assignee
Matsushita Electric Works Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Matsushita Electric Works Ltd filed Critical Matsushita Electric Works Ltd
Priority to JP13586581A priority Critical patent/JPS5841013A/en
Publication of JPS5841013A publication Critical patent/JPS5841013A/en
Pending legal-status Critical Current

Links

Landscapes

  • Vacuum Packaging (AREA)

Abstract

(57)【要約】本公報は電子出願前の出願データであるた
め要約のデータは記録されません。
(57) [Summary] This bulletin contains application data before electronic filing, so abstract data is not recorded.

Description

【発明の詳細な説明】 本発明は真空熱連着パックの製法に関するものであ秒、
その目的とするところは断熱性能に−れている真空連着
パックを極めて簡便に得ることの出来る製法を汎く搗供
し、も2て斯界の発展に寄与せんとするものである。
[Detailed Description of the Invention] The present invention relates to a method for manufacturing a vacuum thermal pack.
The purpose is to develop a manufacturing method that can extremely easily produce vacuum bonded packs with good heat insulation performance, and also to contribute to the development of this field.

以下、本発明の真空連着パックの製法を第1図乃至第S
図の実施例に基いて詳細に説明する。
The manufacturing method of the vacuum continuous pack of the present invention will be explained below from Fig. 1 to S.
This will be explained in detail based on the illustrated embodiment.

本発明は平坦な下走盤(1)上に、アl&IRニウムを
片面に蒸着したボ9グロビv:/V−)12)を、アル
ミニウム蒸着面を上方にして載置し、該メqプロピVン
V −) (2)上に多数個0紙管+8) (8)・・
・を垂直にして並列に載置し、次いで並列に載置されて
いる多数個の紙管+8)(8)−゛・・上にアルミニウ
ムを片面に蒸着したポリプロピレンシー) (2) ヲ
、アIvtニウム蒸着面を下方にして被覆するとともに
、断面立状の上定盤(4)を降下せしめ、紙管(8)の
周辺の2重になっているポリプロピレンV −) 1り
(2)を圧11fる。この際に、定盤を含む全体を真空
装置内に位置せしめ、真空にして内部の空気を略抜き去
る。
In the present invention, a bobbin plate (v:/V-) 12) on which aluminum and IRnium is vapor-deposited on one side is placed on a flat base board (1) with the aluminum vapor-deposited surface facing upward, and V-V-) (2) Many 0 paper tubes on top +8) (8)...
・ are placed vertically in parallel, and then a large number of paper tubes placed in parallel + 8) While coating the Ivtnium vapor deposition surface downward, the upper surface plate (4) with a vertical cross section is lowered, and the polypropylene V-) layer (2) which is doubled around the paper tube (8) is coated. The pressure is 11f. At this time, the entire structure including the surface plate is placed in a vacuum device and evacuated to substantially remove the air inside.

そして下定盤(1)と上定盤(4)とに熱を附加し、紙
管(8)の周辺の2重となっているポリプロピレンV−
Hg)(!りを熱溶融してV−〜するとともに、紙管(
旬と接しているポリプロピレンy −ト(2)もIJl
in、紙管(8)と熱廖着する。
Then, heat is applied to the lower surface plate (1) and the upper surface plate (4), and the polypropylene V-
Hg)(!) is thermally melted to create
The polypropylene y-t (2) that is in contact with the material is also IJl.
In, thermally bond to the paper tube (8).

尚、定盤等はあらかじめ真空装置内に装備しておけばよ
り好ましい。
Incidentally, it is more preferable that the surface plate etc. be installed in the vacuum apparatus in advance.

又、紙管の高さ寸法は12%乃至1重%であることが断
熱性能を高める為にも好ましい。
Further, it is preferable that the height of the paper tube is 12% to 1% by weight in order to improve the heat insulation performance.

本発明は1紀の如く構成されてお勢、本発明によれば真
空工程と熱圧締工程は一体化されるのでニー11O短縮
化を図ることが出来る上に、従来のように多数個の紙管
をIIrQプロピレンV−ト袋の中へ袋づめする必要も
なく、単Kdlプロピレンシート上に多数個の紙管を並
列載置するのみで済むという極めて工程のスピード化を
図ることが出来為効果を有している。更にポリプロピシ
ンV−>の片面、紙管に面する片面にアルミニウム蒸着
をするとともに、真空にしであるのでその断熱性前は纏
めて顕蕾なものとなる効果を有している。本発明の製法
によって得られる真空熱連着パックは、壁材や天井材の
8材として用いるのに適している。
The present invention has a structure similar to that of the first generation.According to the present invention, the vacuum process and the heat pressing process are integrated, so it is possible to shorten the knee 11O, and it is possible to shorten the knee 11O. There is no need to pack paper tubes into IIrQ propylene V-bags, and it is only necessary to place a large number of paper tubes in parallel on a single Kdl propylene sheet, which greatly speeds up the process. It has an effect. Furthermore, since aluminum is vapor-deposited on one side of the polypropycin V-> and the other side facing the paper tube, and it is placed in a vacuum, its heat insulation properties are significantly improved. The vacuum heat-linked pack obtained by the manufacturing method of the present invention is suitable for use as wall material or ceiling material.

【図面の簡単な説明】 第1図乃至第3図は本発明の真空熱連着バックの製法に
係るもので、それぞれの図面は製造工程を示す臀部断面
図である。 l・・・下定盤、意・・・ボ呼プロピレンv−ト、8・
・・紙管、4−・上定盤。 11m 第2図 第3図
BRIEF DESCRIPTION OF THE DRAWINGS FIGS. 1 to 3 relate to the method of manufacturing the vacuum thermal bag of the present invention, and each drawing is a sectional view of the buttocks showing the manufacturing process. l...lower surface plate, meaning...boko propylene v-t, 8.
・・Paper tube, 4-・Upper surface plate. 11m Figure 2 Figure 3

Claims (1)

【特許請求の範囲】[Claims] 1)下定盤上にアルミニウムを蒸着したボリデo ヒv
ンV−)を載置し、た後、該ポリプロピレンレート上に
紙管を並列に載置し、次いで紙管上にアルミニウムを蒸
着したd117デロビレン$/−)+1−被覆するとと
4に断面且状の上定盤でもつて熱圧し、同時4C全体を
真空装置でもって真空にすることを特徴とす石真空熱醇
着パフクの製法。
1) Bolide heater with aluminum vapor deposited on the lower surface plate
After that, a paper tube was placed in parallel on the polypropylene plate, and then the paper tube was coated with aluminum-deposited d117 delobylene $/-)+1-, and the cross section and A method for producing stone vacuum heat-adhesive puffs, which is characterized by applying heat and pressure on a shaped upper surface plate and simultaneously evacuating the entire 4C using a vacuum device.
JP13586581A 1981-08-28 1981-08-28 Manufacture of vacuum heat-seal pack Pending JPS5841013A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP13586581A JPS5841013A (en) 1981-08-28 1981-08-28 Manufacture of vacuum heat-seal pack

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP13586581A JPS5841013A (en) 1981-08-28 1981-08-28 Manufacture of vacuum heat-seal pack

Publications (1)

Publication Number Publication Date
JPS5841013A true JPS5841013A (en) 1983-03-10

Family

ID=15161567

Family Applications (1)

Application Number Title Priority Date Filing Date
JP13586581A Pending JPS5841013A (en) 1981-08-28 1981-08-28 Manufacture of vacuum heat-seal pack

Country Status (1)

Country Link
JP (1) JPS5841013A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US7283569B2 (en) 1999-12-20 2007-10-16 Kabushiki Kaisha Kenwood Site delivery method, method for receiving digital satellite broadcast, and receiver for digital satellite broadcast

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US7283569B2 (en) 1999-12-20 2007-10-16 Kabushiki Kaisha Kenwood Site delivery method, method for receiving digital satellite broadcast, and receiver for digital satellite broadcast

Similar Documents

Publication Publication Date Title
IE781956L (en) Package
JP2005061611A (en) Manufacturing method of vacuum insulation core material
JPH06508314A (en) Method and apparatus for manufacturing laminates
CN223639620U (en) Back contact battery string, series welding equipment thereof and photovoltaic module
JPS57188105A (en) Electret constituent
CN208699134U (en) Single-item coiled strip packaging facilities
CN215321150U (en) Non-woven fabric with heat insulation function
JPH0465556B2 (en)
CN115767807A (en) Heating plate, electric heating plate and manufacturing method of electric heating plate
CN206401271U (en) A kind of LED straight tubes chip-detecting apparatus
CN211926332U (en) Lithium battery vacuum drying equipment
JPS6057135A (en) Manufacturing process of heating panel
CN208407524U (en) Uniform heat conduction is in a kind of rotary heating with the structure of protecting group tablet quality
CN213942439U (en) Cover plate sealing and heat insulating device of bag-type dust collector
JPS5512735A (en) Semiconductor device
CN207950710U (en) A kind of rectifying air distributor
CN211142124U (en) Thin niobium sheet vacuum heat treatment is with holding device
JPS5843508A (en) Mass-production type film fabricating device
JPS527056A (en) Method of producing laminated product for heat exchanger
JPS59117138U (en) semiconductor manufacturing equipment
JPS6144829U (en) Vapor phase epitaxial growth equipment using thermal decomposition of Group 3-5 compound semiconductors
CN121408567A (en) A magnetic pipe insulation film
JPH11268922A5 (en) Glass sheet forming method and glass sheet forming device
JPH01283139A (en) Heat sealing cover material
CN117505852A (en) A kind of preparation tool and preparation method of diamond aluminum thin plate