CN216400123U - Be used for stone material face trompil device - Google Patents

Be used for stone material face trompil device Download PDF

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Publication number
CN216400123U
CN216400123U CN202122862698.6U CN202122862698U CN216400123U CN 216400123 U CN216400123 U CN 216400123U CN 202122862698 U CN202122862698 U CN 202122862698U CN 216400123 U CN216400123 U CN 216400123U
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sliding
fixed
longitudinal
supporting
stone
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CN202122862698.6U
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Chinese (zh)
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李红林
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Chengdu Duochang Building Materials Co ltd
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Chengdu Duochang Building Materials Co ltd
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Abstract

The utility model discloses a stone slab surface perforating device which comprises a supporting underframe, a roll shaft bracket fixed on the supporting underframe, a plurality of groups of roll shafts which are arranged along the feeding direction of a stone slab surface and are arranged on the roll shaft bracket, a supporting beam fixed on the supporting underframe along the feeding direction of the stone slab surface, a feeding sliding supporting mechanism arranged on the supporting beam, a transverse sliding supporting mechanism arranged on the feeding sliding supporting mechanism, a longitudinal sliding supporting mechanism arranged on the transverse sliding supporting mechanism, and a drilling machine arranged on the longitudinal sliding supporting mechanism. Through the scheme, the artificial stone has the advantages of simple structure, reliable action and the like, and has high practical value and popularization value in the technical field of artificial stones.

Description

Be used for stone material face trompil device
Technical Field
The utility model relates to the technical field of artificial stones, in particular to a stone slab surface perforating device.
Background
The tapping device is used for drilling the hinge connection mounting holes between the stone board surface (i.e. the stone board surface on the inner side of the cabinet body) and the cabinet door, and when an artificial stone cabinet body such as a kitchen cabinet is installed, a plurality of hinge connection mounting holes need to be formed in the stone board surface and the cabinet door, wherein the cabinet door is made of alloy or wood materials, and holes are easily drilled, but the hardness of the stone board surface is high, and the space is limited after installation. Moreover, be provided with four hinge connection mounting holes on the stone material face of being connected with the cabinet door at least, if the cabinet body quantity when more, the efficiency of its on-the-spot trompil installation obviously reduces.
Therefore, it is urgently needed to provide a device for drilling on the stone slab surface, which has a simple structure and reliable action.
SUMMERY OF THE UTILITY MODEL
In view of the above problems, an object of the present invention is to provide a device for drilling holes on a stone slab, which adopts the following technical solutions:
a hole opening device for a stone slab comprises a supporting underframe, a roller shaft bracket fixed on the supporting underframe, a plurality of groups of roller shafts which are arranged along the feeding direction of the stone slab and are arranged on the roller shaft bracket, a supporting beam fixed on the supporting underframe along the feeding direction of the stone slab, a feeding sliding supporting mechanism arranged on the supporting beam, a transverse sliding supporting mechanism arranged on the feeding sliding supporting mechanism, a longitudinal sliding supporting mechanism arranged on the transverse sliding supporting mechanism, and a drilling machine arranged on the longitudinal sliding supporting mechanism;
the feeding sliding support mechanism comprises a first top sliding rail and a first rack which are fixed on the top of the support beam along the feeding direction of the stone plate surface, a lateral sliding rail which is fixed on the outer side of the support beam along the feeding direction of the stone plate surface, a plurality of lateral sliding blocks which are sleeved on the lateral sliding rail in a sliding manner, a plurality of first top sliding blocks which are sleeved on the first top sliding rail in a sliding manner, a first sliding support platform which is fixed on the lateral sliding blocks and the first top sliding blocks and is in an L shape, a first driving motor which is fixed on the first sliding support platform, and a first driving gear which is connected with the first driving motor and is meshed with the first rack;
the transverse sliding supporting mechanism comprises a second top sliding rail which is fixed on the top of the first sliding supporting table in parallel, a plurality of second top sliding blocks which are arranged on the second top sliding rail in a sliding mode, a second rack which is fixed on one side of the first sliding supporting table in the transverse direction, a second sliding supporting table which is fixed on the second top sliding block and is in an L shape, a second driving motor which is arranged on the second sliding supporting table, and a second driving gear which is arranged on the second driving motor and is meshed with the second rack.
Furthermore, a protective shielding plate is arranged on the inner wall of the first sliding support platform; the protective shielding plate is arranged between the supporting beam and the roll shaft bracket.
Preferably, the longitudinal sliding support mechanism includes a vertical plate fixed on the second sliding support table, two longitudinal slide rails arranged on the vertical plate along the longitudinal direction, a plurality of longitudinal slide blocks sleeved on the longitudinal slide rails in a sliding manner, screw rod seats fixed on the upper portion and the lower portion of the vertical plate in a one-to-one correspondence manner, a screw rod sleeved on the screw rod seat, a longitudinal driving motor fixed on the top of the vertical plate and connected with the screw rod, a longitudinal slide plate fixed on the longitudinal slide blocks and used for installing the drilling machine, and a screw rod nut seat sleeved on the screw rod and fixedly connected with the longitudinal slide plate.
Compared with the prior art, the utility model has the following beneficial effects:
(1) the utility model skillfully arranges the roll shaft bracket and the roll shaft to provide support for feeding the stone plate surface;
(2) according to the utility model, the feeding sliding support mechanism, the transverse sliding support mechanism and the longitudinal sliding support mechanism are arranged, so that a three-axis moving support is provided for the drilling machine; in addition, the utility model adopts a gear and rack mode for driving, the action is stable and reliable, and the driving power is sufficient;
(3) according to the utility model, the protection shielding plate is arranged to realize drilling protection;
in conclusion, the artificial stone has the advantages of simple structure, reliable action and the like, and has high practical value and popularization value in the technical field of artificial stones.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings needed to be used in the embodiments will be briefly described below, it should be understood that the following drawings only illustrate some embodiments of the present invention, and therefore should not be considered as limiting the scope of protection, and it is obvious for those skilled in the art that other related drawings can be obtained according to these drawings without inventive efforts.
Fig. 1 is a schematic structural diagram (one) of the present invention.
Fig. 2 is a schematic structural diagram (ii) of the present invention.
Fig. 3 is a schematic structural diagram (iii) of the present invention.
In the drawings, the names of the parts corresponding to the reference numerals are as follows:
1. a support chassis; 2. a roll shaft bracket; 3. a roll shaft; 4. a support beam; 5. a feed sliding support mechanism; 6. a lateral sliding support mechanism; 7. a longitudinal sliding support mechanism; 8. a drilling machine; 9. a protective shutter; 51. a lateral slide rail; 52. a lateral slider; 53. a first top slide rail; 54. a first top slider; 55. a first rack; 56. a first drive motor; 57. a first drive gear; 58. a first sliding support table; 61. a second top slide rail; 62. a second top slider; 63. a second sliding support table; 64. a second drive motor; 65. a second rack; 66. a second drive gear; 71. a vertical plate; 72. a longitudinal slide rail; 73. a longitudinal slide block; 74. a screw base; 75. a longitudinal driving motor; 76. a screw rod; 77. a screw nut seat; 78. a longitudinal slide.
Detailed Description
To further clarify the objects, technical solutions and advantages of the present application, the present invention will be further described with reference to the accompanying drawings and examples, and embodiments of the present invention include, but are not limited to, the following examples. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present application.
Examples
As shown in fig. 1 to 3, the present embodiment provides a hole drilling device for a stone slab, which includes a supporting chassis 1, a roller bracket 2 fixed on the supporting chassis 1, a plurality of sets of rollers 3 arranged along a feeding direction of the stone slab and disposed on the roller bracket 2, a supporting beam 4 fixed on the supporting chassis 1 along the feeding direction of the stone slab, a feeding sliding support mechanism 5 disposed on the supporting beam 4, a transverse sliding support mechanism 6 disposed on the feeding sliding support mechanism 5, a longitudinal sliding support mechanism 7 disposed on the transverse sliding support mechanism 6, and a drilling machine 8 disposed on the longitudinal sliding support mechanism 7. Wherein, a protective shielding plate 9 is arranged at the bottom of the feeding sliding support mechanism 5; the protective shutter 9 is disposed between the support beam 4 and the roll shaft bracket 2. First, the terms "first", "second", and the like in the present embodiment are used only for distinguishing the same kind of components, and are not to be construed as specifically limiting the scope of protection. In the present embodiment, the terms of orientation such as "bottom", "top", "peripheral edge", "center", and the like are explained based on the drawings.
In the present embodiment, in order to realize the three-axis direction movement, the feeding slide support mechanism 5, the lateral slide support mechanism 6, and the longitudinal slide support mechanism 7 are skillfully provided. Specifically, the feeding sliding support mechanism 5 of the present embodiment includes a first top slide rail 53 and a first rack 55 fixed on the top of the support beam 4 along the feeding direction of the stone slab, a lateral slide rail 51 fixed on the outer side of the support beam 4 along the feeding direction of the stone slab, a plurality of lateral slide blocks 52 slidably sleeved on the lateral slide rail 51, a plurality of first top slide blocks 54 slidably sleeved on the first top slide rail 53, a first sliding support platform 58 fixed on the lateral slide blocks 52 and the first top slide blocks 54 and having an L-shape, a first driving motor 56 fixed on the first sliding support platform 58, and a first driving gear 57 connected to the first driving motor 56 and engaged with the first rack 55. In this embodiment, the first sliding support platform 58 in an L shape is connected to the top and outer sliding rail blocks of the support beam 4, which can effectively ensure the support strength. Further, the first driving motor 56 of the present embodiment drives the first driving gear 57 to rotate, and drives the first sliding support 58 to move along the first rack 55.
Similarly, the lateral sliding support mechanism 6 of the present embodiment includes a second top slide rail 61 fixed on the top of the first sliding support platform 58 in parallel, a plurality of second top sliders 62 slidably sleeved on the second top slide rail 61, a second rack 65 fixed on one side of the first sliding support platform 58 along the lateral direction, a second sliding support platform 63 fixed on the second top slider 62 and in an L shape, a second driving motor 64 disposed on the second sliding support platform 63, and a second driving gear 66 disposed on the second driving motor 64 and engaged with the second rack 65. In this embodiment, the second driving motor 64 drives the second driving gear 66 to rotate, and drives the second sliding support platform 63 to move along the second top sliding rail 61.
In this embodiment, in order to realize that the drilling machine 8 is driven to move along the longitudinal direction, the longitudinal sliding support mechanism 7 of this embodiment includes an upright plate 71 fixed on the second sliding support platform 63, two longitudinal slide rails 72 disposed on the upright plate 71 along the longitudinal direction, a plurality of longitudinal slide blocks 73 slidably sleeved on the longitudinal slide rails 72, screw rod seats 74 fixed on the upper portion and the lower portion of the upright plate 71 in a one-to-one correspondence manner, a screw rod 76 sleeved on the screw rod seat 74, a longitudinal driving motor 75 fixed on the top of the upright plate 71 and connected to the screw rod 76, a longitudinal slide plate 78 fixed on the longitudinal slide blocks 73 and used for mounting the drilling machine 8, and a screw rod nut seat 77 sleeved on the screw rod 76 and fixedly connected to the longitudinal slide plate 78. During the drilling process, the longitudinal driving motor 75 drives the screw-nut seat 77 and the longitudinal slide plate 78 to move along the longitudinal slide rail 72, and drives the drilling machine 8 to move along the longitudinal direction, so that the drilling machine 8 can be driven to perform the drilling operation. This embodiment is through setting up the trompil device, alright realize the stone material face prefabricated mounting hole before dispatching from the factory, also can be convenient for on-the-spot equipment installation.
The above-mentioned embodiments are only preferred embodiments of the present invention, and do not limit the scope of the present invention, but all the modifications made by the principles of the present invention and the non-inventive efforts based on the above-mentioned embodiments shall fall within the scope of the present invention.

Claims (3)

1. A hole opening device for stone slabs is characterized by comprising a supporting underframe (1), a roller shaft bracket (2) fixed on the supporting underframe (1), a plurality of groups of roller shafts (3) arranged along the feeding direction of the stone slabs and arranged on the roller shaft bracket (2), a supporting beam (4) fixed on the supporting underframe (1) along the feeding direction of the stone slabs, a feeding sliding supporting mechanism (5) arranged on the supporting beam (4), a transverse sliding supporting mechanism (6) arranged on the feeding sliding supporting mechanism (5), a longitudinal sliding supporting mechanism (7) arranged on the transverse sliding supporting mechanism (6), and a drilling machine (8) arranged on the longitudinal sliding supporting mechanism (7);
the feeding sliding support mechanism (5) comprises a first top sliding rail (53) and a first rack (55) which are fixed on the top of the support beam (4) along the feeding direction of the stone plate surface, a lateral sliding rail (51) which is fixed on the outer side of the support beam (4) along the feeding direction of the stone plate surface, a plurality of lateral sliding blocks (52) which are sleeved on the lateral sliding rail (51) in a sliding manner, a plurality of first top sliding blocks (54) which are sleeved on the first top sliding rail (53) in a sliding manner, a first sliding support table (58) which is fixed on the lateral sliding blocks (52) and the first top sliding blocks (54) and is in an L shape, a first driving motor (56) which is fixed on the first sliding support table (58), and a first driving gear (57) which is connected with the first driving motor (56) and is meshed with the first rack (55);
the transverse sliding supporting mechanism (6) comprises a second top sliding rail (61) fixed on the top of the first sliding supporting table (58) in parallel, a plurality of second top sliding blocks (62) arranged on the second top sliding rail (61) in a sleeved mode in a sliding mode, a second rack (65) fixed on one side of the first sliding supporting table (58) along the transverse direction, a second sliding supporting table (63) fixed on the second top sliding blocks (62) and in an L shape, a second driving motor (64) arranged on the second sliding supporting table (63), and a second driving gear (66) arranged on the second driving motor (64) and meshed with the second rack (65) and connected with the second sliding supporting table.
2. A device for making holes in slabs of stone slab as claimed in claim 1, characterized in that said first sliding support (58) is provided, on its inner wall, with a protective shutter (9); the protective shielding plate (9) is arranged between the support beam (4) and the roll shaft bracket (2).
3. A device for making holes on slabs of stone material as claimed in claim 1 or 2, the longitudinal sliding support mechanism (7) comprises a vertical plate (71) fixed on the second sliding support platform (63), two longitudinal slide rails (72) arranged on the vertical plate (71) along the longitudinal direction, a plurality of longitudinal slide blocks (73) sleeved on the longitudinal slide rails (72) in a sliding way, screw rod seats (74) fixed on the upper part and the lower part of the vertical plate (71) in a one-to-one correspondence way, a screw rod (76) sleeved on the screw rod seat (74), a longitudinal driving motor (75) fixed on the top of the vertical plate (71) and connected with the screw rod (76), and a longitudinal sliding plate (78) fixed on the longitudinal slide blocks (73) and used for installing the drilling machine (8), and a screw rod nut seat (77) which is sleeved on the screw rod (76) and is fixedly connected with the longitudinal sliding plate (78).
CN202122862698.6U 2021-11-22 2021-11-22 Be used for stone material face trompil device Active CN216400123U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122862698.6U CN216400123U (en) 2021-11-22 2021-11-22 Be used for stone material face trompil device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122862698.6U CN216400123U (en) 2021-11-22 2021-11-22 Be used for stone material face trompil device

Publications (1)

Publication Number Publication Date
CN216400123U true CN216400123U (en) 2022-04-29

Family

ID=81302214

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122862698.6U Active CN216400123U (en) 2021-11-22 2021-11-22 Be used for stone material face trompil device

Country Status (1)

Country Link
CN (1) CN216400123U (en)

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