Vacuum isolation corpse corrosion prevention device and corpse corrosion prevention method

文档序号:1329405 发布日期:2020-07-17 浏览:33次 中文

阅读说明:本技术 一种真空隔离尸体防腐装置及尸体防腐方法 (Vacuum isolation corpse corrosion prevention device and corpse corrosion prevention method ) 是由 左安国 于 2020-04-26 设计创作,主要内容包括:本发明公开了一种真空隔离尸体防腐装置,包括真空隔离箱,真空隔离箱包括外箱体和内箱体,内箱体位于外箱体内,外箱体和内箱体之间具有真空隔离层,所述内箱体内具有用于放置尸体的防潮板。本发明的真空隔离尸体防腐装置具有良好的尸体防腐效果,首先对尸体进行消毒,然后通过真空层将尸体与外界进行有效隔离,当尸体流出分泌物时,通过防潮板将分泌物吸收,能够有效的提升尸体防腐效果。(The invention discloses a vacuum isolated corpse corrosion prevention device which comprises a vacuum isolated box, wherein the vacuum isolated box comprises an outer box body and an inner box body, the inner box body is positioned in the outer box body, a vacuum isolated layer is arranged between the outer box body and the inner box body, and a damp-proof plate for placing a corpse is arranged in the inner box body. The vacuum isolation corpse corrosion prevention device has a good corpse corrosion prevention effect, a corpse is disinfected firstly, then the corpse is effectively isolated from the outside through the vacuum layer, and when secretion flows out of the corpse, the secretion is absorbed through the moisture-proof plate, so that the corpse corrosion prevention effect can be effectively improved.)

1. the utility model provides a corpse anticorrosive device is kept apart in vacuum, its characterized in that includes the vacuum isolation case, and the vacuum isolation case includes outer box and interior box, and interior box is located the outer box, has vacuum isolation layer (7) between outer box and the interior box, have in the interior box and be used for placing dampproofing board (4) of corpse.

2. The vacuum insulation corpse corrosion prevention device is characterized in that the vacuum insulation box comprises a bottom plate (2) and a transparent cover (1), the bottom plate (2) comprises an inner bottom plate (5) and an outer bottom plate (6), a first support reinforcing rib is arranged between the inner bottom plate (5) and the outer bottom plate (6), the upper part of the first support reinforcing rib is connected with the inner bottom plate (5), and the lower part of the first support reinforcing rib is connected with the outer bottom plate (6); the transparent cover (1) comprises a transparent inner cover (9) and a transparent outer cover (8), a second supporting reinforcing rib is arranged between the transparent inner cover (9) and the transparent outer cover (8), the upper part of the second supporting reinforcing rib is connected with the transparent outer cover (8), and the lower part of the second supporting reinforcing rib is connected with the transparent inner cover (9); the outer box body consists of a transparent outer cover (8) and an outer bottom plate (6), and the inner box body consists of a transparent inner cover (9) and an inner bottom plate (5).

3. A vacuum insulated carcass preservative device according to claim 1, characterized in that the joint between the inner bottom plate (5) and the transparent inner cover (9) is provided with a gasket (10) and the joint between the outer bottom plate (6) and the transparent outer cover (8) is provided with a gasket (10).

4. The vacuum insulation cadaver preserving device as claimed in claim 1, characterized in that the vacuum insulation box is provided with a vacuum-pumping port (3), and a gas one-way valve is arranged at the vacuum-pumping port (3).

5. A vacuum insulated body preservation unit according to claim 1, characterized in that the moisture barrier (4) is made by the following method: adding 40-60 parts by weight of calamine and 40-60 parts by weight of calcium carbonate into a stirring barrel, adding 30-40 parts by weight of water into the stirring barrel, and stirring for 3-5 minutes; shaping; and (5) drying.

6. A vacuum insulated body preservation device according to claim 5, characterized in that the moisture barrier (4) is made by the following method: adding 57 parts by weight of calamine and 43 parts by weight of calcium carbonate into a stirring barrel, adding 37 parts by weight of water into the stirring barrel, and stirring for 5 minutes; shaping; and (5) drying.

7. A method for preserving cadavers, which is characterized by comprising the following steps: after death for 20 hours, performing antiseptic treatment on the corpse at the temperature of below 20 ℃; wiping the surface of the corpse by formalin with the concentration of 15% -25%, and then pouring alcohol into the opening of the corpse; a corpse is placed on a moisture-proof plate (4) of a vacuum insulation corpse corrosion prevention device according to any one of claims 1 to 6, a transparent cover (1) is covered on a bottom plate (2), and a vacuum insulation box is vacuumized through a pump body.

8. A method of preserving cadavers according to claim 7, characterized in that the weight ratio of cadavers to moisture-proof board (4) is 100: 150 to 100: 250 of (a); when the weight of the corpse is below 50 kg, the weight ratio of the calamine to the calcium carbonate in the moisture-proof board (4) is 1: 1; when the weight of the corpse is 50 kg to 75 kg, the weight ratio of the calamine to the calcium carbonate in the moisture-proof board (4) is 5: 4; when the weight of the corpse is more than 75 kg, the weight ratio of the calamine to the calcium carbonate in the moisture-proof board (4) is 5: 3.

Technical Field

The invention relates to a vacuum isolated corpse corrosion prevention device, and belongs to the technical field of corpse corrosion prevention.

Background

The ice coffin is also known as a crystal coffin or a cold coffin, and the ice coffin and the pacifier are also representative products of funeral and interment equipment and are generally applied to freezing and preserving corpses. The development of the ice coffin is greatly improved and improved. The coffin cover is initially forged from acrylic plates (commonly known as plexiglas). However, with the rapid development of science and technology and the increasing demand of users, the coffin cover is mostly formed by polycarbonate (pc resistance board) through hydraulic forming. The hydraulic process has good impact resistance and good high and low temperature resistance. However, the current common coffin or crystal coffin has unsatisfactory anticorrosion effect.

Disclosure of Invention

The invention aims to provide a vacuum isolated corpse preservative device which has a good corpse preservative effect and also provides a corpse preservative method.

In order to solve the technical problems, the invention adopts the following technical scheme:

the utility model provides a corpse anticorrosive device is kept apart in vacuum, includes the vacuum isolation case, and the vacuum isolation case includes outer box and interior box, and interior box is located the outer box, has the vacuum isolation layer between outer box and the interior box, interior box has the dampproofing board that is used for placing the corpse. The vacuum isolation box is used for isolating the corpse from the outside, and the corpse and the outside are isolated by vacuum, so that impurities such as bacteria in the outside air are prevented from contacting the corpse, and the decomposition of the corpse is accelerated. The moisture-proof plate is used for absorbing water, and the corpse can secrete water after being placed for a long time, so that the decay speed of the corpse is accelerated, and the moisture-proof plate can absorb the water secreted by the corpse.

As a mode of isolating the corpse from the outside through vacuum, in the vacuum isolation corpse corrosion prevention device, the vacuum isolation box comprises a bottom plate and a transparent cover, the bottom plate comprises an inner bottom plate and an outer bottom plate, a first support reinforcing rib is arranged between the inner bottom plate and the outer bottom plate, the upper part of the first support reinforcing rib is connected with the inner bottom plate, and the lower part of the first support reinforcing rib is connected with the outer bottom plate; the transparent cover comprises a transparent inner cover and a transparent outer cover, a second supporting reinforcing rib is arranged between the transparent inner cover and the transparent outer cover, the upper part of the second supporting reinforcing rib is connected with the transparent outer cover, and the lower part of the second supporting reinforcing rib is connected with the transparent inner cover; the outer box body consists of a transparent outer cover and an outer bottom plate, and the inner box body consists of a transparent inner cover and an inner bottom plate. Wherein the first supporting reinforcing rib and the second supporting reinforcing rib play a supporting role, and the vacuum isolation box is placed to extrude and deform under the action of external atmospheric pressure.

In order to improve the sealing degree of the vacuum isolation box, in the vacuum isolation corpse corrosion prevention device, a sealing gasket is arranged at the joint between the inner bottom plate and the transparent inner cover, and a sealing gasket is arranged at the joint between the outer bottom plate and the transparent outer cover.

In the vacuum insulation corpse anticorrosion device, the vacuum insulation box is provided with the vacuum-pumping port, and the vacuum-pumping port is provided with the gas one-way valve.

In the vacuum insulation corpse preservation device, the preparation method of the moisture-proof plate comprises the following steps: adding 40-60 parts by weight of calamine and 40-60 parts by weight of calcium carbonate into a stirring barrel, adding 30-40 parts by weight of water into the stirring barrel, and stirring for 3-5 minutes; shaping; and (5) drying. The calcium carbonate board has good water absorption performance, but can generate heat when meeting water, so that calamine with the same water absorption performance is added on the basis of calcium carbonate, so that the performance of the calcium carbonate board is milder and the calcium carbonate board is easy to use.

As an implementation mode, in the vacuum insulation corpse preservation device, the moisture-proof plate is prepared by the following steps: adding 57 parts by weight of calamine and 43 parts by weight of calcium carbonate into a stirring barrel, adding 37 parts by weight of water into the stirring barrel, and stirring for 5 minutes; shaping; and (5) drying.

A method of preserving cadavers comprising the following steps: after death for 20 hours, performing antiseptic treatment on the corpse at the temperature of below 20 ℃; the surface of the corpse is wiped by formalin with the concentration of 15% -25%, and then alcohol is poured into the opening of the corpse, so that the inner part of the corpse is disinfected. The corpse can be firstly decomposed after being placed for a long time, liquid secretion is secreted, the decomposition of the corpse is accelerated, the method can delay the secretion of the liquid secretion of the corpse, and meanwhile, the secretion amount of the liquid secretion is reduced. Then, the corpse is placed on the moisture-proof plate of the vacuum isolation corpse corrosion prevention device, the transparent cover covers the bottom plate, and the vacuum isolation box is vacuumized through the pump body.

In the corpse preservation method, the weight ratio of the corpse to the moisture-proof plate is 100: 150 to 100: 250 of (a); when the weight of the corpse is below 50 kg, the weight ratio of the calamine to the calcium carbonate in the moisture-proof board is 1: 1; when the weight of the corpse is 50 kg to 75 kg, the weight ratio of the calamine to the calcium carbonate in the moisture-proof board is 5: 4; when the weight of the corpse is more than 75 kg, the weight ratio of the calamine to the calcium carbonate in the moisture-proof board is 5: 3. the liquid secretion amount of the corpses with different weights is different, and the liquid secretion amount of the corpses with heavier weight is more, so the invention adopts the moisture-proof boards with different weights aiming at the corpses with different weights.

Compared with the prior art, the vacuum isolation corpse corrosion prevention device has a good corpse corrosion prevention effect, firstly, the corpse is disinfected, then, the corpse is effectively isolated from the outside through the vacuum layer, and when secretion flows out of the corpse, the secretion is absorbed through the moisture-proof plate, so that the corpse corrosion prevention effect can be effectively improved.

Drawings

FIG. 1 is a schematic structural diagram of an embodiment of the present invention;

FIG. 2 is an exploded view of the present invention;

FIG. 3 is a schematic view of the structure of FIG. 2 from another perspective;

fig. 4 is a schematic view of the structure of the gasket.

Reference numerals: 1-transparent outer cover, 2-bottom plate, 3-vacuum-pumping port, 4-damp-proof plate, 5-inner bottom plate, 6-outer bottom plate, 7-vacuum isolation layer, 8-transparent outer cover, 9-transparent inner cover and 10-sealing pad.

The invention is further described with reference to the following figures and detailed description.

Detailed Description

Example 1 of the invention: the utility model provides a corpse anticorrosive device is kept apart in vacuum, includes the vacuum isolation case, and the vacuum isolation case includes outer box and interior box, and interior box is located the outer box, has vacuum isolation layer 7 between outer box and the interior box, interior box has the dampproofing board 4 that is used for placing the corpse. The preparation method of the moisture-proof board 4 comprises the following steps: adding 57 parts by weight of calamine and 43 parts by weight of calcium carbonate into a stirring barrel, adding 37 parts by weight of water into the stirring barrel, and stirring for 5 minutes; shaping; and (5) drying.

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