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Grave filling material

A technology of filling materials and tombs, which is applied in the field of tomb filling materials, can solve the problems that coffins or urns are easy to be damp, the tombs are easy to breed insects and ants, and metals are easy to be oxidized. The effect of age

Active Publication Date: 2016-02-03
向珍荣
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The existing products or patents mainly solve the technical problems that the coffin or urn is easy to be damp, which is not conducive to the preservation of ashes, and the tomb is easy to breed insects and ants
[0004] However, in the actual funeral process, there are metal components in the urn itself, and some metal funeral objects or jewelry will be placed in the coffin, so these metals are easily oxidized and rusted. The grave filling materials of the above-mentioned prior art and related patents does not solve this technical problem very well

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0026] 1) Grind Nardinus, clove, balsamic, green wood, sandalwood, realgar, frankincense, kaempferum, cinnabar, calcium carbonate, silicate, silicon dioxide, and ferric oxide, and then pass through a 80-mesh sieve ,stand-by;

[0027] 2) Weigh the components processed in step 1) respectively: weigh Nardinus 20kg, Clove 6kg, Dalbergia 8kg, Greenwood 8kg, Sandalwood 6kg, Realgar 6kg, Frankincense 5kg, Kaempferum 5kg, Cinnabar 6kg, Calcium carbonate 20kg , Silicate 6kg, silicon dioxide 1.5kg, ferric oxide 2.5kg, and then mix the components evenly.

[0028] 3) Add water to the mixture obtained in step 2), and then press it into spherical or cube particles with a diameter of 0.5 cm.

[0029] After the tomb filling material of Example 1 is prepared, put the urn into the tomb or coffin, then fill the urn and the metal funerary utensils with the particles obtained in step 3), pay attention to the amount when filling, and completely cover the urn and The surface of the metal funerary ...

Embodiment 2

[0031] 1) Grind Nardinus, clove, balsamic, green wood, sandalwood, realgar, frankincense, kaempferum, cinnabar, calcium carbonate, silicate, silicon dioxide, and ferric oxide, and then pass through a 80-mesh sieve ,stand-by;

[0032] 2) Weigh the components processed in step 1) respectively: Weigh 15kg of nard pine, 3kg of cloves, 6kg of balsamic, 6kg of cedarwood, 3kg of sandalwood, 9kg of realgar, 6kg of frankincense, 6kg of kaempferum, 9kg of cinnabar, and 25kg of calcium carbonate , silicate 9kg, silicon dioxide 1kg, ferric oxide 2kg, and then mix the components evenly.

[0033] 3) Add water to the mixture obtained in step 2), and then press it into spherical or cube particles with a diameter of 0.8 cm.

[0034] After the tomb filling material of Example 2 is prepared, put the urn into the tomb or coffin, then fill the particles obtained in step 3) around the urn and metal funerary utensils, pay attention to the amount when filling, and completely cover the urn and The s...

Embodiment 3

[0036] 1) Grind Nardinus, clove, balsamic, green wood, sandalwood, realgar, frankincense, kaempferum, cinnabar, calcium carbonate, silicate, silicon dioxide, and ferric oxide, and then pass through a 80-mesh sieve ,stand-by;

[0037] 2) Weigh the components processed in step 1) respectively: weigh Nardinus 25kg, Clove 9kg, Dalbergia 9kg, Greenwood 9kg, Sandalwood 9kg, Realgar 3kg, Frankincense 3kg, Kaempferum 3kg, Cinnabar 3kg, Calcium carbonate 15kg , Silicate 7kg, silicon dioxide 2kg, ferric oxide 3kg, and then mix the components evenly.

[0038] 3) Add water to the mixture obtained in step 2), and then press it into cube particles with a diameter of 1 cm.

[0039] After the tomb filling material of Example 3 is prepared, the urn is put into the tomb or coffin, and then the particles obtained in step 3) are filled around the urn and metal funerary utensils. Pay attention to the amount when filling, and completely cover the urn and The surface of the metal funerary utensils...

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Abstract

The invention discloses a grave filling material which is prepared from 15-25% of rhizoma nardostachyos, 3-9% of cloves, 6-9% of dalbergia wood, 6-9% of dutchmanspipe roots, 3-9% of sandalwood, 3-9% of realgar, 3-6% of olibanum, 3-6% of rhizoma kaempferiae, 3-9% of cinnabar, 15-25% of calcium carbonate, 2-9% of silicate, 1-2% of silicon dioxide and 2-3% of iron trioxide. The material can effectively solve the technical problem that metal products in cinerary caskets or coffins are prone to oxidization and rust.

Description

technical field [0001] The invention relates to the technical field of filling materials, in particular to a tomb filling material. Background technique [0002] At present, funerals in most areas are cremated and buried in cemeteries and cemeteries. The tombs are not dug deep, and the tops of the tombs are not covered with soil. They are just covered with marble, granite slabs, and cement slabs. Heavy, the coffin or urn placed in the cave is prone to decay after being damp, which is not conducive to the preservation of the ashes. In addition, the gaps in the tomb are hiding places for poisonous insects such as ants and centipedes. The musty smell and Harmful gases also pollute and adversely affect the environment and air. [0003] In view of the above problems, the existing tomb filling materials mainly use lime, which has anti-corrosion, insect-proof, and moisture-proof effects. There is a product "Fuyin soil" on the market, and its main components are Chinese medicinal m...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C09K3/00
Inventor 向珍荣
Owner 向珍荣
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