CN110154297B - Equipment for hot-melt adhering of plastic layer on surface of stone slab - Google Patents

Equipment for hot-melt adhering of plastic layer on surface of stone slab Download PDF

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Publication number
CN110154297B
CN110154297B CN201910516872.6A CN201910516872A CN110154297B CN 110154297 B CN110154297 B CN 110154297B CN 201910516872 A CN201910516872 A CN 201910516872A CN 110154297 B CN110154297 B CN 110154297B
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CN
China
Prior art keywords
power
monitoring
unloading
snatchs
thermoplastic forming
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CN201910516872.6A
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Chinese (zh)
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CN110154297A (en
Inventor
倪俊杰
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Hangzhou yiwusao Information Technology Co.,Ltd.
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Hangzhou Yiwusao Information Technology Co ltd
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Priority to CN201910516872.6A priority Critical patent/CN110154297B/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29CSHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
    • B29C41/00Shaping by coating a mould, core or other substrate, i.e. by depositing material and stripping-off the shaped article; Apparatus therefor
    • B29C41/02Shaping by coating a mould, core or other substrate, i.e. by depositing material and stripping-off the shaped article; Apparatus therefor for making articles of definite length, i.e. discrete articles
    • B29C41/20Shaping by coating a mould, core or other substrate, i.e. by depositing material and stripping-off the shaped article; Apparatus therefor for making articles of definite length, i.e. discrete articles incorporating preformed parts or layers, e.g. moulding inserts or for coating articles
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29CSHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
    • B29C41/00Shaping by coating a mould, core or other substrate, i.e. by depositing material and stripping-off the shaped article; Apparatus therefor
    • B29C41/34Component parts, details or accessories; Auxiliary operations
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29CSHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
    • B29C41/00Shaping by coating a mould, core or other substrate, i.e. by depositing material and stripping-off the shaped article; Apparatus therefor
    • B29C41/34Component parts, details or accessories; Auxiliary operations
    • B29C41/36Feeding the material on to the mould, core or other substrate
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29CSHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
    • B29C41/00Shaping by coating a mould, core or other substrate, i.e. by depositing material and stripping-off the shaped article; Apparatus therefor
    • B29C41/34Component parts, details or accessories; Auxiliary operations
    • B29C41/38Moulds, cores or other substrates
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29CSHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
    • B29C41/00Shaping by coating a mould, core or other substrate, i.e. by depositing material and stripping-off the shaped article; Apparatus therefor
    • B29C41/34Component parts, details or accessories; Auxiliary operations
    • B29C41/46Heating or cooling
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29CSHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
    • B29C41/00Shaping by coating a mould, core or other substrate, i.e. by depositing material and stripping-off the shaped article; Apparatus therefor
    • B29C41/34Component parts, details or accessories; Auxiliary operations
    • B29C41/52Measuring, controlling or regulating
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29KINDEXING SCHEME ASSOCIATED WITH SUBCLASSES B29B, B29C OR B29D, RELATING TO MOULDING MATERIALS OR TO MATERIALS FOR MOULDS, REINFORCEMENTS, FILLERS OR PREFORMED PARTS, e.g. INSERTS
    • B29K2709/00Use of inorganic materials not provided for in groups B29K2703/00 - B29K2707/00, for preformed parts, e.g. for inserts
    • B29K2709/14Stones

Abstract

The invention discloses equipment for hot-melt adhering a plastic layer on the surface of a stone slab, wherein a material loading and unloading part is arranged at the upper part of a conveying part, a material grabbing part is arranged at the lower part of the material loading and unloading part, a material loading part is arranged at the side part of the material loading and unloading part, a sliding part is arranged at the inner sides of the material loading part and the material loading and unloading part, a thermoplastic molding part is arranged on the sliding part, an air pressure power input module and a hydraulic power input module are respectively used for inputting air power and hydraulic power into the equipment, the air pressure power input module and the hydraulic power input module are respectively connected with a hydraulic part and an air pressure part in the equipment through pipelines, and a switch control box is electrically. The invention can enable the equipment to pave a layer of plastic coating on the surface of the stone stool through hot melting, reduces the heat conduction capability of the surface of the stone stool, improves the sitting comfort level, is suitable for processing stone slabs with different sizes, has strong adaptability, and is reliable in connection with the plastic slab and not easy to damage.

Description

Equipment for hot-melt adhering of plastic layer on surface of stone slab
Technical Field
The invention relates to the technical field of stone processing equipment, in particular to the technical field of equipment for hot-melt adhering of a plastic layer on the surface of a stone slab.
Background
With the development of the technology, people can process stones into required shapes, the stone stools are long in service life and not easy to damage, and therefore the stone stools are widely applied to communities and parks, but at present, no protective layer is laid on the sitting surfaces of the stone stools, people feel cool after sitting on the stone stools, and especially in winter, the stone stools cannot be used at all.
Disclosure of Invention
The invention aims to solve the problems in the prior art, and provides equipment for hot melting and adhering a plastic layer on the surface of a stone slab, which can be used for paving a plastic coating on the surface of a stone stool through hot melting, so that the heat conduction capability of the surface of the stone stool is reduced, the sitting comfort level is improved, the equipment is suitable for processing stone slabs with different sizes, the adaptability is strong, and meanwhile, the stone slab and a plastic slab are reliably connected and are not easy to damage.
In order to achieve the purpose, the invention provides equipment for hot melting and adhering a plastic layer on the surface of a stone slab, which comprises a conveying part, a material loading and unloading part, a material grabbing part, a switch control box, a thermoplastic forming part, a sliding part, a loading part, a position monitoring and limiting mechanism, an air pressure power input module and a hydraulic power input module, wherein the position monitoring and limiting mechanism for detecting the position of a material is arranged on the side part of the conveying part, the material loading and unloading part is arranged on the upper part of the conveying part, the material grabbing part is arranged on the lower part of the material loading and unloading part, the loading part is arranged on the side part of the material loading and unloading part, the sliding part is arranged on the inner sides of the loading part and the material loading and unloading part, the thermoplastic forming part is arranged on the sliding part, the air pressure power input module and the hydraulic power input module are respectively used for, The hydraulic power input module is respectively connected with a hydraulic component and an air pressure component in the equipment through pipelines, and the switch control box is electrically connected with an electric component in the equipment through a lead.
Preferably, the conveying part comprises a conveying support, a conveying roller, a conveying belt, a supporting plate and a conveying power motor, the conveying support is provided with the conveying roller on the inner side, the conveying support is provided with the conveying power motor on the outer side, a rotating shaft of the conveying power motor is connected with the conveying roller, the conveying belt is arranged on the conveying roller, and the supporting plate used for supporting materials is arranged on the conveying support on the lower portion of the conveying belt.
Preferably, the material loading and unloading part comprises a material loading and unloading support, a material loading and unloading power motor, a material loading and unloading power screw and a material loading and unloading beam, the material loading and unloading power motor is arranged at the upper part of the material loading and unloading support, the material loading and unloading power screw is connected to a rotating shaft of the material loading and unloading power motor, the material loading and unloading beam is arranged at the inner side of the material loading and unloading support, and the material loading and unloading power screw penetrates through a material loading and unloading power screw sleeve arranged on the material loading and unloading beam.
As preferred, the material snatchs the portion and snatchs the limiting plate, the material snatchs and move the limiting plate, the material snatchs the rocking arm and the material snatchs the pneumatic cylinder including the material snatchs the seat, the material snatchs seat one end and has set firmly the material and snatch the limiting plate, and the articulated material that is provided with of other end snatchs moves the limiting plate, the material snatchs and move limiting plate upper portion and be provided with the material and snatch the rocking arm, the material snatchs the rocking arm material and snatch and articulate.
Preferably, the switch control box comprises a processor, a display, an input keyboard and a memory, wherein the processor is electrically connected with the display, the input keyboard and the memory through leads respectively.
Preferably, the thermoplastic forming part comprises a thermoplastic forming seat, thermoplastic forming supporting plates, thermoplastic forming molds, a thermoplastic forming discharging power motor, a wall thickness control screw rod and a chain, the thermoplastic forming supporting plates are arranged on two sides of the upper part of the thermoplastic forming seat respectively, the thermoplastic forming molds are arranged on the upper parts of the thermoplastic forming supporting plates, heating wires for melting materials by people are arranged on the lower parts and the side parts of the thermoplastic forming molds respectively, the thermoplastic forming discharging power motor is arranged on the lower part of the thermoplastic forming seat, four wall thickness control screw rods which penetrate through the thermoplastic forming seat and the thermoplastic forming molds respectively are arranged on the periphery of the thermoplastic forming discharging power motor, chain wheels are arranged on rotating shafts of the wall thickness control screw rod and the thermoplastic forming discharging power motor, and the chain wheels are provided with the.
As preferred, the portion of sliding is including the guide rail that slides, the power motor that slides, the power lead screw that slides, the seat that slides, the sleeve and the wheel that slides, the guide rail both ends that slides are provided with the limiting plate that slides respectively, it is provided with the power lead screw that slides to slide between the limiting plate, the power lead screw that slides is connected with the rotation axis of the power motor that slides, be provided with the seat that slides on the guide rail that slides, it is provided with the sleeve that slides on the power lead screw that slides to overlap on the seat that slides, the seat lower part that slides is provided with the wheel.
Preferably, the feeding part comprises a feeding frame, a feeding box, a feeding power motor and a discharging barrel, the feeding box is arranged on the upper portion of the feeding frame, the feeding power motor is arranged on the upper portion of the feeding box, the discharging barrel is arranged on the lower portion of the feeding box, and a discharging screw rod with the end portion connected with a rotating shaft of the feeding power motor is arranged in the discharging barrel.
As preferred, position monitoring stop gear is including monitoring hinge lug, monitoring power ear, monitoring rocking arm, monitoring cylinder and monitor control switch, the monitoring hinge lug is located monitoring power ear one side, the articulated monitoring rocking arm that is provided with on the monitoring hinge lug, be provided with on the monitoring rocking arm and be used for monitoring whether the material reachs the monitor control switch of assigned position, the articulated monitoring cylinder that is connected with between monitoring rocking arm and the monitoring power ear.
Preferably, the stone stool comprises a stone slab and a hot-melt plastic cover sleeve, the hot-melt plastic cover sleeve covers the seat surface of the stone slab, a limiting anti-falling groove is formed in the periphery of the stone slab, a limiting anti-falling protrusion is arranged on the inner side of the hot-melt plastic cover sleeve, and the limiting anti-falling protrusion is arranged in the limiting anti-falling groove.
The invention has the beneficial effects that: according to the invention, the plastic layer is coated on the surface of the stone stool through hot melting, so that the plastic layer and the stone slab can be completely matched and combined, the reliable connection between the stone slab and the plastic layer is ensured, the equipment is used for paving the plastic layer on the surface of the stone stool through hot melting, the heat conduction capability of the surface of the stone stool is reduced, the sitting comfort level is improved, the equipment is suitable for processing the stone slabs with different sizes by replacing moulds with different sizes, the moulds can process the stone slabs with different shapes and sizes, the adaptability is strong, meanwhile, the connection between the stone slab and the plastic plate is reliable, the stone.
Drawings
The above and other features, properties and advantages of the present invention will become more apparent from the following description of the embodiments taken in conjunction with the accompanying drawings in which like reference characters refer to like features throughout and in which:
FIG. 1 is a top perspective view of an apparatus for hot-melt adhering a plastic layer on a surface of a stone slab according to the present invention;
FIG. 2 is a schematic bottom perspective view of an apparatus for hot-melt adhering a plastic layer on a surface of a stone slab according to the present invention;
FIG. 3 is an exploded schematic view of the transfer section;
FIG. 4 is a perspective view of the transfer section;
FIG. 5 is a perspective view of a position monitoring stop mechanism;
FIG. 6 is a perspective view of the loading section;
FIG. 7 is a perspective view of the material handling portion;
FIG. 8 is a perspective view of the material grasping portion;
FIG. 9 is a perspective view of the glide;
FIG. 10 is a schematic perspective view of a thermoplastic molding section;
FIG. 11 is an exploded schematic view of the thermoplastic molding section;
FIG. 12 is a block diagram showing the construction of a switch control box;
FIG. 13 is a perspective view of a stone bench;
fig. 14 is an exploded schematic view of the stone bench.
In the figure: 1-conveying part, 11-conveying bracket, 12-conveying roller, 13-conveying belt, 14-supporting plate, 15-conveying power motor, 2-material loading and unloading part, 21-material loading and unloading bracket, 22-material loading and unloading power motor, 23-material loading and unloading power screw, 24-material loading and unloading beam, 3-material grabbing part, 31-material grabbing seat, 32-material grabbing limiting plate, 33-material grabbing limiting plate, 34-material grabbing rocker arm, 35-material grabbing hydraulic cylinder, 4-switch control box, 41-processor, 42-display, 43-input keyboard, 44-memory, 5-thermoplastic forming part, 51-thermoplastic forming seat, 52-thermoplastic forming supporting plate, 53-thermoplastic forming die, etc, 54-thermoplastic forming discharging power motor, 55-wall thickness control screw rod, 56-chain, 6-sliding part, 61-sliding guide rail, 62-sliding power motor, 63-sliding power screw rod, 64-sliding seat, 65-sliding sleeve, 66-sliding wheel, 7-feeding part, 71-feeding frame, 72-feeding box, 73-feeding power motor, 74-discharging barrel, 8-position monitoring limiting mechanism, 81-monitoring hinge lug, 82-monitoring power lug, 83-monitoring rocker arm, 84-monitoring cylinder, 85-monitoring control switch, 9-stone stool, 91-stone plate, 911-limiting anti-release groove, 92-hot melt plastic cover and 921-limiting anti-release protrusion.
Detailed Description
Referring to fig. 1-14, the equipment for hot melt adhering of plastic layer on the surface of stone slab of the present invention comprises a conveying part 1, a material loading and unloading part 2, a material grabbing part 3, a switch control box 4, a thermoplastic forming part 5, a sliding part 6, a loading part 7, a position monitoring and limiting mechanism 8, an air pressure power input module and a hydraulic power input module, wherein the side part of the conveying part 1 is provided with the position monitoring and limiting mechanism 8 for detecting the position of the material, the upper part of the conveying part 1 is provided with the material loading and unloading part 2, the lower part of the material loading and unloading part 2 is provided with the material grabbing part 3, the side part of the material loading and unloading part 2 is provided with the loading part 7, the inner sides of the loading part 7 and the material loading and unloading part 2 are provided with the sliding part 6, the sliding part 6 is provided with the thermoplastic forming part 5, the air pressure power input module and the hydraulic power, the pneumatic power input module and the hydraulic power input module are respectively connected with a hydraulic part and a pneumatic part in the equipment through pipelines, and the switch control box 4 is electrically connected with an electric part in the equipment through a lead. Conveying portion 1 is including conveying support 11, transfer roller 12, conveyer belt 13, backup pad 14 and conveying motor power 15, 11 inboards of conveying support are provided with transfer roller 12, the 11 outsides of conveying support are provided with conveying motor power 15, conveying motor power 15's rotation axis is connected with transfer roller 12, be provided with conveyer belt 13 on the transfer roller 12, be provided with backup pad 14 that is used for holding up the material on the conveying support 11 of 13 lower parts of conveyer belt. The material loading and unloading part 2 comprises a material loading and unloading support 21, a material loading and unloading power motor 22, a material loading and unloading power screw 23 and a material loading and unloading cross beam 24, the material loading and unloading power motor 22 is arranged on the upper portion of the material loading and unloading support 21, the material loading and unloading power screw 23 is connected to a rotating shaft of the material loading and unloading power motor 22, the material loading and unloading cross beam 24 is arranged on the inner side of the material loading and unloading support 21, and the material loading and unloading power screw 23 penetrates through a material loading and unloading power screw sleeve arranged on the material loading and unloading cross. The material snatchs portion 3 includes that the material snatchs seat 31, the material snatchs and decides limiting plate 32, material snatchs and move limiting plate 33, the material snatchs rocking arm 34 and the material snatchs pneumatic cylinder 35, the material snatchs seat 31 one end and has set firmly the material and snatch and decide limiting plate 32, and the other end is articulated to be provided with the material and snatchs and move limiting plate 33, the material snatchs and move limiting plate 33 upper portion and be provided with the material and snatch rocking arm 34, the material snatchs rocking arm 34 material and snatchs and articulate between the. The switch control box 4 comprises a processor 41, a display 42, an input keyboard 43 and a memory 44, wherein the processor 41 is electrically connected with the display 42, the input keyboard 43 and the memory 44 respectively through wires. The thermoplastic forming part 5 comprises a thermoplastic forming base 51, thermoplastic forming supporting plates 52, thermoplastic forming dies 53, thermoplastic forming discharging power motors 54, wall thickness control lead screws 55 and chains 56, the thermoplastic forming supporting plates 52 are respectively arranged on two sides of the upper part of the thermoplastic forming base 51, the thermoplastic forming dies 53 are arranged on the upper part of the thermoplastic forming supporting plates 52, heating wires for melting materials by people are respectively arranged on the lower part and the side part of the thermoplastic forming dies 53, the thermoplastic forming discharging power motors 54 are arranged on the lower part of the thermoplastic forming base 51, four wall thickness control lead screws 55 respectively penetrating through the thermoplastic forming base 51 and the thermoplastic forming dies 53 are arranged around the thermoplastic forming discharging power motors 54, chain wheels are arranged on rotating shafts of the wall thickness control lead screws 55 and the thermoplastic forming discharging power motors 54, and the chains 56 are arranged on the chain wheels. The portion 6 that slides is including the guide rail 61 that slides, the power motor 62 that slides, the power lead screw 63 that slides, the seat 64 that slides, the sleeve 65 that slides and the wheel 66 that slides, the guide rail 61 both ends that slide are provided with the limiting plate that slides respectively, it is provided with the power lead screw 63 that slides to slide between the limiting plate, the power lead screw 63 that slides is connected with the axis of rotation of the power motor 62 that slides, be provided with the seat 64 that slides on the guide rail 61, be provided with the sleeve 65 that slides on the power lead screw 63 of cover on the seat 64 that slides, the seat 64 lower part that slides is provided with the wheel 66 that slides of pressure. The feeding part 7 comprises a feeding frame 71, a feeding box 72, a feeding power motor 73 and a discharging barrel 74, wherein the feeding box 72 is arranged at the upper part of the feeding frame 71, the feeding power motor 73 is arranged at the upper part of the feeding box 72, the discharging barrel 74 is arranged at the lower part of the feeding box 72, and a discharging screw rod with the end part connected with a rotating shaft of the feeding power motor 73 is arranged in the discharging barrel 74. Position monitoring stop gear 8 is including monitoring hinge lug 81, monitoring power ear 82, monitoring rocking arm 83, monitoring cylinder 84 and monitor control switch 85, monitoring hinge lug 81 is located monitoring power ear 82 one side, it is provided with monitoring rocking arm 83 to articulate on monitoring hinge lug 81, be provided with on the monitoring rocking arm 83 and be used for monitoring whether the material reaches the monitor control switch 85 of assigned position, it is connected with monitoring cylinder 84 to articulate between monitoring rocking arm 83 and the monitoring power ear 82. Slabstone 91 bench 9 includes slabstone 91 and hot melt plastic cover 92, hot melt plastic cover 92 lid is on slabstone 91's seat, be provided with spacing anticreep groove 911 around slabstone 91, hot melt plastic cover 92 inboard is provided with spacing anticreep arch 921, spacing anticreep arch 921 sets up in spacing anticreep groove 911.
The working process of the invention is as follows:
the invention relates to a device for hot-melt adhering plastic layer on the surface of a stone slab, in the working process, a sliding power screw rod 63 is driven to rotate by a sliding power motor 62, a sliding seat 64 is driven to move by the sliding power screw rod 63, a thermoplastic forming part 5 is positioned under a discharge cylinder 74, a discharge screw rod is driven to rotate by a feeding power motor 73, plastic particles in a feeding box 72 are quantitatively led into a thermoplastic forming mould 53 by the discharge screw rod, the plastic particles are melted by electric heating wires on the thermoplastic forming mould 53, the processed stone slab 91 is placed on a conveyor belt 13, the stone slab 91 is supported by a support plate 14 at the lower part of the conveyor belt 13, the stone slab 91 is conveyed forwards by the conveyor belt 13, when the stone slab 91 reaches the position of a position monitoring and limiting mechanism 8, the stone slab 91 touches a monitoring and controlling switch 85, after the device determines the position of the stone slab 91, a material loading and unloading power motor 22 drives a material, the material handling cross beam 24 is driven to move up and down by the material handling power screw 23, the material grabbing part 3 is driven to move by the material handling cross beam 24, the material grabbing hydraulic cylinder 35 drives the material grabbing movable limiting plate 33 and the material grabbing rocker arm 34 to rotate around a hinged point, the stone plate 91 is clamped tightly by the cooperation of the material grabbing movable limiting plate 33 and the material grabbing limiting plate 32, the stone plate 91 is lifted up by the material handling part 2, the sliding power screw 63 is driven to rotate by the sliding power motor 62, the sliding base 64 is driven to move by the sliding power screw 63, the thermoplastic molding part 5 is positioned under the stone plate 91, the stone plate 91 is placed in the thermoplastic molding mold 53 by the cooperation of the material handling part 2 and the material grabbing part 3, the wall thickness control screw 55 is driven to rotate by the thermoplastic molding unloading power motor 54, and the wall thickness control screw 55 protrudes out of the bottom of the thermoplastic molding mold 53, the thickness of section bar slabstone 91 surface plastics, can set for the different thickness in slabstone 91 surface as required, only need adjust the wall thickness control lead screw 55 in thermoplastic forming die 53 can, put into back along with the plastic cooling when slabstone 91, unload power motor 54 through thermoplastic forming and drive wall thickness control lead screw 55 and rotate, screw out wall thickness control lead screw 55 from thermoplastic forming die 53, finally put on conveyer belt 13 on conveying part 1 with the slabstone 91 of laying the plastic slab once more through material loading and unloading portion 2 and material grabbing portion 3 cooperation, drive monitoring rocking arm 83 through monitoring cylinder 84 and rotate, make monitoring control switch 85 withdraw from the route that slabstone 91 passed through, make slabstone 91 pass through, continue next manufacturing procedure.
According to the equipment for hot melting and adhering the plastic layer on the surface of the stone slab, the plastic layer is coated on the surface of the stone bench in a hot melting mode, so that the plastic layer can be completely matched and combined with the stone slab 91, the stone slab 91 is ensured to be reliably connected with the plastic layer, the equipment lays a plastic coating on the surface of the stone bench in a hot melting mode, the heat conduction capacity of the surface of the stone bench is reduced, the sitting comfort level is improved, the equipment is suitable for processing stone slabs 91 with different sizes by replacing moulds with different sizes, the stone slabs 91 with different shapes and sizes can be processed by one mould, the adaptability is high, meanwhile, the stone slab 91 is reliably connected with the plastic.
The above embodiments are illustrative of the present invention, and are not intended to limit the present invention, and any simple modifications of the present invention are within the scope of the present invention.

Claims (4)

1. The utility model provides a slabstone surface hot melt attaches plastic layer equipment which characterized in that: comprises a conveying part (1), a material loading and unloading part (2), a material grabbing part (3), a switch control box (4), a thermoplastic forming part (5), a sliding part (6), a loading part (7), a position monitoring limiting mechanism (8), an air pressure power input module and a hydraulic power input module, wherein the lateral part of the conveying part (1) is provided with the position monitoring limiting mechanism (8) for detecting the position of a material, the upper part of the conveying part (1) is provided with the material loading and unloading part (2), the lower part of the material loading and unloading part (2) is provided with the material grabbing part (3), the lateral part of the material loading and unloading part (2) is provided with the loading part (7), the sliding parts (6) are arranged on the inner sides of the loading part (7) and the material loading and unloading part (2), the thermoplastic forming part (5) is arranged on the sliding parts (6), and the air pressure power input module and the hydraulic power input module are respectively used for inputting, atmospheric pressure power input module, hydraulic power input module pass through the tube coupling with hydraulic pressure part and the atmospheric pressure part in the equipment respectively, on-off control case (4) pass through wire and the power consumption part electric connection in the equipment, transfer portion (1) is including conveying support (11), transfer roller (12), conveyer belt (13), backup pad (14) and conveying motor power (15), conveying support (11) inboard is provided with transfer roller (12), conveying support (11) outside is provided with conveying motor power (15), the rotation axis and the transfer roller (12) of conveying motor power (15) are connected, be provided with conveyer belt (13) on transfer roller (12), be provided with backup pad (14) that are used for holding up the material on conveyer belt (13) lower part conveying support (11), material handling portion (2) are including material handling support (21), The material handling power motor (22), the material handling power screw (23) and the material handling crossbeam (24), the material handling support (21) upper portion is provided with the material handling power motor (22), be connected with the material handling power screw (23) on the rotation axis of material handling power motor (22), the material handling support (21) inboard is provided with the material handling crossbeam (24), the material handling power screw (23) passes the material handling power swivel nut that sets up on the material handling crossbeam (24), the material snatchs portion (3) and includes that the material snatchs seat (31), the material snatchs spacing board (32), the material snatchs the spacing board (33), the material snatchs rocking arm (34) and the material snatchs pneumatic cylinder (35), the material snatchs seat (31) one end and has set firmly the material snatchs spacing board (32), the other end articulates and is provided with the material snatchs the spacing board (33), the material snatchs and moves limiting plate (33) upper portion and be provided with the material and snatch rocking arm (34), the material snatchs rocking arm (34) material and snatchs the pneumatic cylinder (35) of articulated being provided with between seat (31) upper surface, switch control box (4) include treater (41), display (42), input keyboard (43) and memory (44), treater (41) respectively with display (42), input keyboard (43) and memory (44) electric connection through the wire, thermoplastic forming portion (5) including thermoplastic forming seat (51), thermoplastic forming backup pad (52), thermoplastic forming mould (53), thermoplastic forming discharge power motor (54), wall thickness control lead screw (55) and chain (56), thermoplastic forming seat (51) upper portion both sides are provided with thermoplastic forming backup pad (52) respectively, thermoplastic forming backup pad (52) upper portion is provided with thermoplastic forming mould (53), the hot shaping mould (53) lower part and lateral part are provided with the heating wire that the personnel melted the material heat respectively, it is provided with hot shaping unloading motor power (54) to mould (51) lower part to mould to unload motor power (54) are provided with sprocket on the rotation axis of motor to mould to, the power lead screw that slides (63) is connected with the rotation axis of the power motor that slides (62), be provided with on the guide rail that slides (61) and slide seat (64), be provided with on the seat that slides (64) and overlap slip sleeve (65) on the power lead screw that slides (63), seat that slides (64) lower part is provided with and presses sliding wheel (66) on the guide rail that slides (61).
2. An apparatus for hot-melt adhering a plastic layer to a surface of a stone slab as claimed in claim 1, wherein: the feeding part (7) comprises a feeding frame (71), a feeding box (72), a feeding power motor (73) and a discharging barrel (74), wherein the feeding box (72) is arranged on the upper part of the feeding frame (71), the feeding power motor (73) is arranged on the upper part of the feeding box (72), the discharging barrel (74) is arranged on the lower part of the feeding box (72), and a discharging screw rod connected with a rotating shaft of the feeding power motor (73) at the end part is arranged in the discharging barrel (74).
3. An apparatus for hot-melt adhering a plastic layer to a surface of a stone slab as claimed in claim 1, wherein: position monitoring stop gear (8) are including monitoring hinge lug (81), monitoring power ear (82), monitoring rocking arm (83), monitoring cylinder (84) and monitor control switch (85), monitoring hinge lug (81) are located monitoring power ear (82) one side, it is provided with monitoring rocking arm (83) to articulate on monitoring hinge lug (81), be provided with on monitoring rocking arm (83) and be used for monitoring whether the material reaches monitor control switch (85) of assigned position, it is connected with monitoring cylinder (84) to articulate between monitoring rocking arm (83) and monitoring power ear (82).
4. An apparatus for hot-melt adhering a plastic layer to a surface of a stone slab as claimed in claim 1, wherein: stone bench (9) are including slabstone (91) and hot melt plastic cover (92), hot melt plastic cover (92) lid is on the seat of slabstone (91), be provided with spacing anticreep groove (911) around slabstone (91), hot melt plastic cover (92) inboard is provided with spacing anticreep arch (921), spacing anticreep arch (921) set up in spacing anticreep groove (911).
CN201910516872.6A 2019-06-14 2019-06-14 Equipment for hot-melt adhering of plastic layer on surface of stone slab Active CN110154297B (en)

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