Fireproof insulated cable

By using ceramic structure fire-resistant components and insulated fire-resistant jackets in refractory insulated cables, the problems of cable heat accumulation and outer burning in high temperature environments are solved, and longer running time and higher fire-resistant and thermal insulation performance are achieved.

CN120032947AActive Publication Date: 2025-05-23HEBEI XINGZHOU CABLE CO LTD
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN202510351861.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-24
Publication Date
2025-05-23
Estimated Expiration
2045-03-24

AI Technical Summary

Technical Problem

When refractory insulated cables operate in high temperatures, heat accumulation around the cable cannot be reduced, resulting in a shorter cable running time and the skin may burn.

Method used

The pipe body and an insulated refractory jacket adopt a ceramic structure. The ceramic structure includes a protective ceramic ring, a spliced ​​ceramic ring, and an intermediate connected ceramic body. The contact surface of the ceramic ring is spherical, and the ceramic body is combined with the rubber connecting ring to form a fireproof member; the insulated refractory jacket includes a fireproof cotton braided protective sleeve and a refractory filler, and the outer layer wraps the cooling water bag and the cooling pipe.

Benefits of technology

Effectively isolate external heat, prevent flame from damaging the interior of the cable, extend the cable running time, improve fire resistance and heat insulation performance, and enhance bending resistance.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120032947A_ABST
    Figure CN120032947A_ABST
Patent Text Reader

Abstract

The invention discloses a fire-resistant insulated cable which comprises a cable conductor, the outer side of the cable conductor is wrapped with a conductor protection filling layer, the outer side of the conductor protection filling layer is provided with an armored shielding layer, the outer side of the armored shielding layer is provided with a protection insulating layer, and the outer side of the protection insulating layer is sleeved with an insulating fire-resistant jacket. The protective insulating layer comprises an insulating sheath, a plurality of protective ceramic rings which are linearly distributed along the axis of the insulating sheath are arranged in the insulating sheath, and butt joint grooves are formed in the two ends of each protective ceramic ring. According to the fireproof cable, the insulating fireproof jacket is additionally arranged outside the cable conductor, the main material of the insulating fireproof jacket is the fireproof cotton woven protective jacket woven by the fireproof cotton, and the fireproof cotton woven protective jacket is filled with the fireproof filler composed of the sandy soil, the graphite, the silicon carbide, the fireproof aggregate and the like, so that external heat can be isolated; and flame directly burns and does not ignite the insulating fire-resistant jacket, so that the fire-resistant and heat-insulating properties of the cable are improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The invention relates to the technical field of cables, in particular to a fire-resistant insulated cable. Background Art

[0002] Cable is an electric energy or signal transmission device, usually a rope-like cable formed by twisting several or several groups of wires (at least two in each group). Each group of wires is insulated from each other and often twisted around a center. The entire outside is covered with a highly insulating covering. The cable has the characteristics of internal power supply and external insulation. Cables include power cables, control cables, compensation cables, shielded cables, high-temperature cables, computer cables, signal cables, coaxial cables, fire-resistant cables, marine cables, mining cables, aluminum alloy cables, etc. Among them, fire-resistant cables are also called fire-resistant insulated cables, which can work continuously for a certain period of time in high temperature environments.

[0003] However, when the fire-resistant insulated cable is running in a high temperature environment, the heat accumulated around the cable cannot be reduced and enters the cable along the cable skin, which shortens the cable operation time and the cable skin will burn due to external flames; therefore, it does not meet the existing needs. We have proposed a fire-resistant insulated cable. Summary of the invention

[0004] The object of the present invention is to provide a fire-resistant insulated cable to solve the problems proposed in the above background technology that when the fire-resistant insulated cable is running in a high temperature environment, the heat around the cable accumulates around the cable and cannot be reduced and enters the interior of the cable along the cable sheath, thereby shortening the cable operation time and the cable sheath will burn due to external flames.

[0005] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a fire-resistant insulated cable, comprising a cable conductor, the outer side of the cable conductor is wrapped with a conductor protection filling layer, the outer side of the conductor protection filling layer is provided with an armored shielding layer, the outer side of the armored shielding layer is provided with a protective insulating layer, the outer side of the protective insulating layer is covered with an insulating fire-resistant jacket, the protective insulating layer comprises an insulating sheath, the interior of the insulating sheath is provided with a plurality of protective ceramic rings linearly distributed along the axis of the insulating sheath, both ends of the protective ceramic rings are provided with docking grooves, an intermediate connecting ceramic body is provided between every two adjacent protective ceramic rings, splicing ceramic rings are fixed on the inner and outer sides of the intermediate connecting ceramic body, and a rubber connecting ring is clamped between two adjacent splicing ceramic rings located on the outer side of the intermediate connecting ceramic body; The outer surface of the rubber connecting ring is sprayed with a layer of ceramic particle coating, the intermediate connecting ceramic body includes a ring body, and two inclined contact rings are fixed on both sides of the ring body. The material of the contact ring is spring steel. The two contact rings on the same side of the intermediate connecting ceramic body are V-shaped. The contact ring is clamped on the inner side of the docking groove, and the cross-section of the part where the contact ring contacts the inner wall of the docking groove is circular.

[0006] Preferably, the insulating fire-resistant outer jacket includes a fire-resistant cotton woven protective sleeve, the inner surface of which is coated with adhesive, the fire-resistant cotton woven protective sleeve is bonded and fixed to the insulating outer skin by the adhesive, a reinforced inner tube is fixed inside the fire-resistant cotton woven protective sleeve, a plurality of distribution holes are penetrated on the outer surface of the reinforced inner tube, and a refractory filler is filled between the reinforced inner tube and the fire-resistant cotton woven protective sleeve.

[0007] Preferably, the refractory filler includes sand, graphite, silicon carbide and refractory aggregate, the ratio of the sand, graphite, silicon carbide and refractory aggregate is 8:1:0.5:0.5, the sand is fine sand and does not contain impurities, and the sand is dried.

[0008] Preferably, a cooling protective sheath is provided on the outside of the insulating fire-resistant outer jacket, and the cooling protective sheath includes a cooling water bag, the cooling water bag is filled with water and wrapped on the outside of the fireproof cotton woven protective sheath, and the outside of the cooling water bag is wrapped with a protective wrapping cloth, and the material of the protective wrapping cloth is fireproof cloth.

[0009] Preferably, a locking strip is fixed to one side edge of the protective wrapping cloth, one side of the locking strip is bent downward in a C shape, and an anti-slipping strip is fixed to the other side edge of the protective wrapping cloth, one side of the anti-slipping strip is bent upward in an arc shape, and the two side edges of the protective wrapping cloth are fixed by the locking strip and the anti-slipping strip.

[0010] Preferably, a plurality of linearly arranged inwardly extending connecting sleeves are fixed inside both sides of the cooling water bag, a cooling pipe is provided in the middle of both sides of the cooling water bag, the cooling pipe is fitted with a fireproof cotton woven protective sleeve and a plurality of metal heat conductive parts are linearly arranged inside the cooling pipe, and both ends of the metal heat conductive parts pass through the cooling pipe and extend to the inside of the inwardly extending connecting sleeve.

[0011] Preferably, two symmetrically distributed C-shaped fins are provided in the middle of the metal heat conductor, and sealing grooves are provided on the outer sides of both side ends of the metal heat conductor. A sealing ring is clamped on the inner side of the sealing groove, and the sealing ring is located between the cooling pipe and the metal heat conductor.

[0012] Preferably, a coolant input pipe is fixedly plugged into one end of the cooling pipe, a coolant recovery pipe is fixedly plugged into the other end of the cooling pipe, and the other end of the coolant recovery pipe is fixedly connected to a coolant storage water tank.

[0013] Preferably, a micro-circulating cooling pump is provided between the end of the coolant inlet pipe away from the cooling pipe and the coolant storage water tank, and the input end and output end of the micro-circulating cooling pump are fixed with connecting hoses, and the micro-circulating cooling pump is connected to the coolant inlet pipe and the coolant storage water tank through connecting hoses.

[0014] Preferably, the contact surface between the protective ceramic ring and the spliced ​​ceramic ring is a spherical surface.

[0015] Compared with the prior art, the present invention has the following beneficial effects: 1. The present invention utilizes a protective ceramic ring, a spliced ​​ceramic ring, and an intermediate connecting ceramic body to form a ceramic structure tube body, which is used to isolate external heat. After the insulating outer skin is damaged by flame burning, the protective ceramic ring, the spliced ​​ceramic ring, and the intermediate connecting ceramic body isolate the external flame, thereby preventing the external flame from damaging the inside of the cable and ensuring the normal operation of the cable; 2. In the present invention, the contact surface between the protective ceramic ring and the splicing ceramic ring is a spherical surface. When the cable is bent, the protective ceramic ring can fit the outer surface of the splicing ceramic ring and rotate freely. During the rotation process, the protective ceramic ring and the splicing ceramic ring always keep in contact, thereby improving the bending resistance of the cable and ensuring that the fireproof component composed of the protective ceramic ring, the splicing ceramic ring and the intermediate connecting ceramic body will not be damaged due to the bending of the cable; 3. The present invention adds an insulating fire-resistant jacket on the outside of the cable. The main material of the insulating fire-resistant jacket is a fire-resistant cotton woven protective jacket, and the inside of the fire-resistant cotton woven protective jacket is filled with refractory fillers composed of sand, graphite, silicon carbide, refractory aggregates, etc., which can isolate external heat, and the direct combustion of flames will not ignite the insulating fire-resistant jacket, thereby improving the fire resistance and heat insulation performance of the cable; 4. In the present invention, when the ambient temperature of the cable increases, the heat enters the cooling water bag along the protective wrapping cloth, the water in the cooling water bag absorbs the external heat and transfers it to the metal heat conductive part, and then the coolant flowing in the cooling pipe absorbs the heat in the metal heat conductive part, so as to reduce the heat in the external environment of the cable and prevent the heat from entering the interior of the cable. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is a schematic diagram of the overall structure of the present invention; Figure 2 It is a schematic structural diagram of the protective insulating layer of the present invention; Figure 3 for Figure 2A magnified view of the structure at center A; Figure 4 This is a schematic diagram of the assembly of the cooling protection sheath and the cable of the present invention; Figure 5 It is a schematic diagram of the structure of the cooling protection sheath of the present invention; Figure 6 for Figure 5 A magnified view of the structure at B in the middle; Figure 7 This is a schematic diagram of the structure of the cooling water bag of the present invention; Figure 8 for Figure 7 A magnified view of the structure at C in the middle; Fig. 9 It is a schematic structural diagram of the metal heat conducting member of the present invention; Fig.10 It is a schematic diagram of the structure of the insulating fire-resistant jacket of the present invention; Fig.11 It is a schematic diagram of the structure of the reinforced inner tube of the present invention.

[0017] In the figure: 1. Cable conductor; 2. Insulating fire-resistant jacket; 201. Fire-resistant cotton woven protective sleeve; 202. Reinforced inner tube; 203. Refractory filler; 204. Distribution hole; 3. Cooling protection jacket; 301. Protective wrapping cloth; 302. Cooling water bag; 303. Cooling pipe; 304. Cooling liquid inlet pipe; 305. Locking card strip; 306. Cooling liquid recovery pipe; 307. Anti-slip card strip; 308. Metal heat conductor; 309. Inner extension connecting sleeve; 310. Sealing card slot; 311. Sealing ring; 4. Conductor protection filling layer; 5. Protective insulation layer; 501. Insulating outer skin; 502. Protective ceramic ring; 503. Splicing ceramic ring; 504. Middle connecting ceramic body; 505. Docking groove; 506. Rubber connecting ring; 6. Armored shielding layer. DETAILED DESCRIPTION

[0018] The technical solutions in the embodiments of the present invention will be described clearly and completely below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.

[0019] The micro-circulation cooling pump (model LFP4024) mentioned in the present invention can be purchased from the market or obtained through private customization.

[0020] like Figures 1 to 3As shown, a fire-resistant insulated cable comprises a cable conductor 1, the outer side of the cable conductor 1 is wrapped with a conductor protection filling layer 4, the outer side of the conductor protection filling layer 4 is provided with an armor shielding layer 6, the outer side of the armor shielding layer 6 is provided with a protective insulating layer 5, the protective insulating layer 5 comprises an insulating sheath 501, the inner part of the insulating sheath 501 is provided with a plurality of protective ceramic rings 502 linearly distributed along the axis of the insulating sheath 501, both ends of the protective ceramic rings 502 are provided with docking grooves 505, an intermediate connecting ceramic body 504 is provided between every two adjacent protective ceramic rings 502, and the inner part of the intermediate connecting ceramic body 504 is provided with a plurality of protective ceramic rings 502 linearly distributed along the axis of the insulating sheath 501, and the protective ceramic rings 502 are ... docking groove 505, and an intermediate connecting ceramic body 504 is provided between every two adjacent protective ceramic rings 502. Spliced ​​ceramic rings 503 are fixed on the side and outside, and a rubber connecting ring 506 is clamped between two adjacent spliced ​​ceramic rings 503 located on the outside of the middle connecting ceramic body 504. The protective ceramic ring 502, the spliced ​​ceramic ring 503 and the middle connecting ceramic body 504 are spliced ​​together to form a ceramic structure tube body for isolating external heat. After the insulating outer skin 501 is damaged by flame burning, the protective ceramic ring 502, the spliced ​​ceramic ring 503 and the middle connecting ceramic body 504 isolate the external flame to prevent the external flame from damaging the inside of the cable, thereby ensuring the normal operation of the cable.

[0021] A layer of ceramic particle coating is sprayed on the outer surface of the rubber connecting ring 506. The middle connecting ceramic body 504 includes a ring body. Two inclined contact rings are fixed on both sides of the ring body. The material of the contact ring is spring steel. The two contact rings on the same side of the middle connecting ceramic body 504 are V-shaped. The contact ring is clamped on the inner side of the docking groove 505, and the cross-section of the part where the contact ring contacts the inner wall of the docking groove 505 is circular. The rubber connecting ring 506 after spraying the ceramic particle coating has good fireproof performance and can always maintain the seal between adjacent spliced ​​ceramic rings 503. When the cable is stretched, the adjacent protective ceramic rings 502 are connected through the middle connecting ceramic body 504, which improves the cable's tensile strength while ensuring that the protective ceramic rings 502, the spliced ​​ceramic rings 503, and the middle connecting ceramic body 504 will not be misaligned, and the fireproof performance of the cable will not be damaged.

[0022] The contact surface between the protective ceramic ring 502 and the spliced ​​ceramic ring 503 is a spherical surface to ensure that the protective ceramic ring 502 and the spliced ​​ceramic ring 503 can rotate freely when the cable is bent, thereby improving the bending resistance of the cable, and the fire-proof component composed of the protective ceramic ring 502, the spliced ​​ceramic ring 503 and the intermediate connecting ceramic body 504 will not be damaged due to the bending of the cable.

[0023] like Figure 1 , Figure 4 , Fig.10 and Fig.11As shown, the outer side of the protective insulating layer 5 is covered with an insulating fire-resistant outer jacket 2, and the insulating fire-resistant outer jacket 2 includes a fire-resistant cotton woven protective sleeve 201, the inner surface of the fire-resistant cotton woven protective sleeve 201 is coated with adhesive, and the fire-resistant cotton woven protective sleeve 201 is bonded and fixed to the insulating outer skin 501 by the adhesive, and a reinforced inner tube 202 is fixed inside the fire-resistant cotton woven protective sleeve 201, and a plurality of distribution holes 204 are penetrated on the outer surface of the reinforced inner tube 202, and a fire-resistant filler 203 is filled between the reinforced inner tube 202 and the fire-resistant cotton woven protective sleeve 201, and the fire-resistant cotton woven protective sleeve 201 is used to isolate the flame from the cable to prevent the flame from directly igniting the cable, and the fire-resistant filler 203 is used to isolate the external heat to prevent the external heat from being transferred to the inside of the cable. The refractory filler 203 includes sand, graphite, silicon carbide and refractory aggregate. The ratio of sand, graphite, silicon carbide and refractory aggregate is 8:1:0.5:0.5. The sand is fine sand and does not contain impurities. The sand has been dried and has good fire-resistant and heat-insulating effects. Graphite and silicon carbide mixed with sand can evenly guide and distribute heat in the sand, and the refractory aggregate increases the fire-resistant and heat-resistant properties of the sand, thereby preventing flames from igniting cables.

[0024] like Figures 4 to 9 As shown, a cooling protective sheath 3 is provided on the outer side of the insulating fire-resistant jacket 2, and the cooling protective sheath 3 includes a cooling water bag 302. The cooling water bag 302 is filled with water and wrapped on the outer side of the fireproof cotton woven protective sheath 201. The outer side of the cooling water bag 302 is wrapped with a protective wrapping cloth piece 301. The material of the protective wrapping cloth piece 301 is fireproof cloth. The fireproof cloth can be selected from acrylic cotton fiber cloth or glass fiber fireproof cloth; a locking clip 305 is fixed on one side of the protective wrapping cloth piece 301, and one side of the locking clip 305 is bent downward in a C shape, and the other side of the protective wrapping cloth piece 301 is fixed to the side edge of the protective wrapping cloth piece 301. An anti-slipping clamping strip 307 is fixed, and one side of the anti-slipping clamping strip 307 is bent upward in an arc shape. The two side edges of the protective wrapping cloth piece 301 are clamped and fixed by the locking clamping strip 305 and the anti-slipping clamping strip 307. The two side edges of the protective wrapping cloth piece 301 are fixed by using the locking clamping strip 305 and the anti-slipping clamping strip 307, so that the protective wrapping cloth piece 301 tightens the cooling water bag 302 and makes the cooling water bag 302 fit tightly to the outer surface of the fireproof cotton woven protective cover 201, and the cooling water bag 302 absorbs external heat, thereby preventing external heat from entering the cable.

[0025] A plurality of linearly arranged inner extending connecting sleeves 309 are fixed inside both sides of the cooling water bag 302, a cooling pipe 303 is provided in the middle of both sides of the cooling water bag 302, the cooling pipe 303 is fitted with the fireproof cotton woven protective sleeve 201 and a plurality of metal heat conductive parts 308 are linearly arranged inside the cooling pipe 303, both ends of the metal heat conductive parts 308 pass through the cooling pipe 303 and extend to the inner extending connecting sleeve 309, the end of the metal heat conductive part 308 extending to the inner extending connecting sleeve 309 is used to guide the heat absorbed by the water inside the cooling water bag 302, so that the heat absorbed by the cooling water bag 302 is concentrated inside the metal heat conductive part 308.

[0026] Two symmetrically distributed C-shaped fins are provided in the middle position of the metal heat conductor 308, and sealing grooves 310 are provided on the outer sides of the two side ends of the metal heat conductor 308. A sealing ring 311 is clamped on the inner side of the sealing groove 310. The sealing ring 311 is located between the cooling tube 303 and the metal heat conductor 308. The sealing ring 311 is used to seal the connection between the metal heat conductor 308 and the cooling tube 303 to prevent the coolant flowing inside the cooling tube 303 from leaking out from the gap at the connection between the metal heat conductor 308 and the cooling tube 303.

[0027] One end of the cooling tube 303 is fixedly connected with a coolant input tube 304, and the other end of the cooling tube 303 is fixedly connected with a coolant recovery tube 306. The other end of the coolant recovery tube 306 is fixedly connected with a coolant storage water tank. A micro-circulation cooling pump is provided between the end of the coolant input tube 304 away from the cooling tube 303 and the coolant storage water tank. The input and output ends of the micro-circulation cooling pump are fixed with connecting hoses. The micro-circulation cooling pump is connected to the coolant input tube 304 and the coolant storage water tank through connecting hoses. The coolant is stored in the coolant storage water tank, and the micro-circulation cooling pump extracts the coolant in the coolant storage water tank through the connecting hose and sends it into the coolant input tube 304 and the cooling tube 303. When the coolant flows in the cooling tube 303, the heat inside the metal heat conductor 308 is dissipated. The coolant finally returns to the coolant storage water tank through the coolant recovery tube 306, so as to realize the circulation of the coolant and absorb the heat of the metal heat conductor 308.

[0028] Working principle: insert the reinforcing inner tube 202 from one end of the fireproof cotton braided protective sleeve 201 into the interior of the fireproof cotton braided protective sleeve 201, then close one of the ends of the fireproof cotton braided protective sleeve 201, and adjust the position of the reinforcing inner tube 202 so that the axis of the reinforcing inner tube 202 and the axis of the fireproof cotton braided protective sleeve 201 remain coincident, and fill the refractory filler 203 mixed with sand, graphite, silicon carbide and refractory aggregate in proportion into the interior of the fireproof cotton braided protective sleeve 201 from the closed end of the fireproof cotton braided protective sleeve 201. During the filling process, knock the outer surface of the fireproof cotton braided protective sleeve 201 so that the refractory filler 203 passes through the distribution holes 204 and is evenly distributed between the fireproof cotton braided protective sleeve 201 and the reinforcing inner tube 202. After the refractory filler 203 is filled, close the unclosed end of the fireproof cotton braided protective sleeve 201. Next, apply glue to the inner surface of the fireproof cotton woven protective sleeve 201, and then put the fireproof cotton woven protective sleeve 201 on the outside of the insulating outer skin 501. After the fireproof cotton woven protective sleeve 201 is installed, wrap the cooling water bag 302 on the outside of the fireproof cotton woven protective sleeve 201, and place the cooling pipe 303 between the two side edges of the cooling water bag 302, ensuring that the end of the metal heat conductor 308 located outside the cooling pipe 303 is inserted into the inner extension connecting sleeve 309. After the cooling water bag 302 and the cooling pipe 303 are installed, the protective wrapping cloth piece 301 is placed under the cooling water bag 302, and the locking clip strip 305 and the anti-detachment clip strip 307 are pulled, so that the protective wrapping cloth piece 301 wraps the cooling water bag 302 and presses the cooling water bag 302 against the outside of the fireproof cotton woven protective sleeve 201, and the locking clip strip 305 and the anti-detachment clip strip 307 are clipped and fixed; When a fire occurs outside and causes the temperature of the environment around the cable to rise, the heat in the environment around the cable will pass through the protective wrapping cloth 301 and the cooling water bag 302 and enter the water inside the cooling water bag 302. After the water absorbs the heat, the temperature rises. Since one end of the metal heat conductor 308 extends to the inner connecting sleeve 309, the heat absorbed by the water is transferred to the metal heat conductor 308. At the same time, the micro-circulation cooling pump is powered on and starts to extract the coolant in the coolant storage tank through the connecting hose. The coolant enters the coolant input pipe 304 and enters the cooling pipe 303. When the coolant flows in the cooling pipe 303 and passes through the metal heat conductor 308, the coolant absorbs and takes away the heat inside the metal heat conductor 308, delaying the time for the water temperature inside the cooling water bag 302 to rise, delaying the influence of the heat in the external environment on the cable, and extending the operation time of the cable. When the cooling protective sheath 3 fails or is damaged, the fire-resistant filler 203 filled inside the fireproof cotton woven protective sheath 201 isolates the cable from the external environment, preventing the heat in the external environment from passing through the fire-resistant filler 203 and entering the cable. When the flame burns and causes the protective wrapping cloth 301 and the cooling water bag 302 to be damaged, the water inside the cooling water bag 302 leaks to reduce the flame. At the same time, the fire-resistant filler 203 has a non-combustible property, and the external flame is blocked by the insulating fire-resistant jacket 2, so that the cable will not be directly burned due to the influence of the external flame. At the same time, the inside of the insulating outer skin 501 is provided with a ceramic fireproof component formed by a protective ceramic ring 502, a spliced ​​ceramic ring 503, and an intermediate connecting ceramic body 504. The protective ceramic ring 502, the spliced ​​ceramic ring 503, and the intermediate connecting ceramic body 504 can isolate the heat generated by the external flame to ensure that the cable conductor inside the cable will not be affected by the external flame. After the cooling protection sheath 3 and the insulating outer skin 501 are damaged, the ceramic fireproof component formed by the protective ceramic ring 502, the spliced ​​ceramic ring 503, and the intermediate connecting ceramic body 504 seals and protects the cable conductor 1, the conductor protection filling layer 4, and the armored shielding layer 6 inside the cable to prevent the flame from directly affecting the inside of the cable to ensure the normal operation of the cable.

[0029] It will be apparent to those skilled in the art that the invention is not limited to the details of the exemplary embodiments described above and that the invention can be implemented in other specific forms without departing from the spirit or essential features of the invention. Therefore, the embodiments should be considered exemplary and non-limiting in all respects, and the scope of the invention is defined by the appended claims rather than the foregoing description, and it is intended that all variations falling within the meaning and scope of the equivalent elements of the claims be included in the invention. Any reference numeral in a claim should not be considered as limiting the claim to which it relates.

Claims

1. A fire-resistant insulated cable, comprising a cable conductor (1), the outer side of the cable conductor (1) being wrapped with a conductor protection filling layer (4), the outer side of the conductor protection filling layer (4) being provided with an armored shielding layer (6), characterized in that: A protective insulating layer (5) is provided on the outside of the armored shielding layer (6), and an insulating fire-resistant outer jacket (2) is provided on the outside of the protective insulating layer (5), and the protective insulating layer (5) includes an insulating outer skin (501), and a plurality of protective ceramic rings (502) are provided inside the insulating outer skin (501) and are linearly distributed along the axis of the insulating outer skin (501), and docking grooves (505) are provided at both ends of the protective ceramic rings (502), and an intermediate connecting ceramic body (504) is provided between every two adjacent protective ceramic rings (502), and splicing ceramic rings (503) are fixed on the inner and outer sides of the intermediate connecting ceramic body (504), and a rubber connecting ring (506) is clamped between two adjacent splicing ceramic rings (503) and located on the outer side of the intermediate connecting ceramic body (504); The outer surface of the rubber connecting ring (506) is sprayed with a layer of ceramic particle coating, and the intermediate connecting ceramic body (504) comprises a ring body, and two inclined contact rings are fixed on both sides of the ring body. The material of the contact ring is spring steel, and the two contact rings located on the same side of the intermediate connecting ceramic body (504) are V-shaped. The contact ring is clamped on the inner side of the docking groove (505), and the cross-section of the part where the contact ring contacts the inner wall of the docking groove (505) is circular.

2. A fire-resistant insulated cable according to claim 1, characterized in that: The insulating fireproof outer jacket (2) comprises a fireproof cotton woven protective sleeve (201), the inner surface of which is coated with adhesive, the fireproof cotton woven protective sleeve (201) is bonded and fixed to the insulating outer skin (501) by the adhesive, a reinforcing inner tube (202) is fixed inside the fireproof cotton woven protective sleeve (201), a plurality of distribution holes (204) are penetrated through the outer surface of the reinforcing inner tube (202), and a fireproof filler (203) is filled between the reinforcing inner tube (202) and the fireproof cotton woven protective sleeve (201).

3. A fire-resistant insulated cable according to claim 2, characterized in that: The refractory filler (203) comprises sand, graphite, silicon carbide and refractory aggregate, wherein the ratio of the sand, graphite, silicon carbide and refractory aggregate is 8:1:0.5:0.5, the sand is fine sand and does not contain impurities, and the sand has been dried.

4. A fire-resistant insulated cable according to claim 1, characterized in that: A cooling protective sheath (3) is provided on the outside of the insulating fireproof outer jacket (2), and the cooling protective sheath (3) comprises a cooling water bag (302). The cooling water bag (302) is filled with water and wrapped on the outside of the fireproof cotton woven protective sheath (201). The cooling water bag (302) is wrapped on the outside of the cooling water bag (302) with a protective wrapping cloth piece (301), and the material of the protective wrapping cloth piece (301) is fireproof cloth.

5. A fire-resistant insulated cable according to claim 4, characterized in that: A locking clip (305) is fixed to one side edge of the protective wrapping cloth piece (301), one side of the locking clip (305) is bent downward in a C-shape, and an anti-slipping clip strip (307) is fixed to the other side edge of the protective wrapping cloth piece (301), one side of the anti-slipping clip strip (307) is bent upward in an arc shape, and the two side edges of the protective wrapping cloth piece (301) are fixed by the locking clip strip (305) and the anti-slipping clip strip (307).

6. A fire-resistant insulated cable according to claim 4, characterized in that: A plurality of linearly arranged inner connecting sleeves (309) are fixed inside both sides of the cooling water bag (302), a cooling pipe (303) is provided in the middle of both sides of the cooling water bag (302), the cooling pipe (303) fits the fireproof cotton woven protective sleeve (201), and a plurality of metal heat conductive parts (308) are linearly arranged inside the cooling pipe (303), and both ends of the metal heat conductive parts (308) pass through the cooling pipe (303) and extend to the inside of the inner connecting sleeve (309).

7. A fire-resistant insulated cable according to claim 6, characterized in that: Two symmetrically distributed C-shaped fins are provided in the middle of the metal heat conductive member (308), and sealing grooves (310) are provided on the outside of both side ends of the metal heat conductive member (308), and a sealing ring (311) is clamped inside the sealing groove (310), and the sealing ring (311) is located between the cooling pipe (303) and the metal heat conductive member (308).

8. A fire-resistant insulated cable according to claim 7, characterized in that: One end of the cooling pipe (303) is fixedly plugged with a coolant input pipe (304), the other end of the cooling pipe (303) is fixedly plugged with a coolant recovery pipe (306), and the other end of the coolant recovery pipe (306) is fixedly connected to a coolant storage water tank.

9. A fire-resistant insulated cable according to claim 8, characterized in that: A micro-circulating cooling pump is provided between the end of the coolant input pipe (304) away from the cooling pipe (303) and the coolant storage water tank, and the input end and output end of the micro-circulating cooling pump are both fixed with connecting hoses, and the micro-circulating cooling pump is connected to the coolant input pipe (304) and the coolant storage water tank via the connecting hoses.

10. A fire-resistant insulated cable according to claim 1, characterized in that: The contact surface between the protective ceramic ring (502) and the spliced ​​ceramic ring (503) is a spherical surface.

Citation Information

Patent Citations

  • Cable with inside fire barrier

    CN205451882U

  • Fire resistant electrical cable

    GB659521A