CN211467811U - Imitative stone material lines transfer means - Google Patents

Imitative stone material lines transfer means Download PDF

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Publication number
CN211467811U
CN211467811U CN201922029505.1U CN201922029505U CN211467811U CN 211467811 U CN211467811 U CN 211467811U CN 201922029505 U CN201922029505 U CN 201922029505U CN 211467811 U CN211467811 U CN 211467811U
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China
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stone
shaped
transfer printing
guide
rack
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CN201922029505.1U
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Chinese (zh)
Inventor
魏国荣
陶朝刚
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Chongqing Green World New Building Materials Co ltd
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Chongqing Green World New Building Materials Co ltd
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Abstract

The utility model discloses a transfer printing device for imitating stone material lines, which comprises at least one transfer printing unit, wherein the transfer printing unit comprises a rack, and a placing platform is arranged in the middle of the rack; the middle parts of the two fixing pieces are hollow, and the two fixing pieces are oppositely arranged at the two ends of the rack; the connecting piece is fixedly connected with the two fixing pieces; the servo motor is arranged on the connecting piece; the pressing wheel is connected with the servo motor, and a heating resistance wire is arranged in the pressing wheel; and the circumferential surface of the pressing wheel is provided with a concave-convex surface with the same shape as the stone lines. The utility model discloses can be to the rendition of carrying on of the moulding of imitative stone material, to the better rendition effect of each molding homoenergetic realization of moulding.

Description

Imitative stone material lines transfer means
Technical Field
The utility model relates to a building material field, concretely relates to imitative stone material lines rendition device.
Background
The variety of building materials is increasing along with the development of technology and the demand of market, especially imitative stone class product, such as imitative stone ceramic tile, imitative stone panel, imitative stone wallboard etc..
The stone-like material is composed of a base material and a printing attached to the base material, so that the printing needs to be printed on the base material in the production process, and the surface of the base material is provided with the patterns and colors unique to the stone.
There are a great number of conventional transfer devices, such as a thermal transfer device patent of CN209492273U, and a thermal transfer machine for a printing machine of CN107521218A, etc., which are flat transfer. Neither of the above two solutions can transfer the stone with a model.
SUMMERY OF THE UTILITY MODEL
In view of the above-mentioned defect of the prior art, the utility model aims at providing an imitative stone material lines transfer means, can be to the rendition of the moulding of imitative stone material, to the better rendition effect of each molding homoenergetic realization of moulding.
The purpose of the utility model is realized through such technical scheme:
a transfer printing device for imitating stone lines comprises at least one transfer printing unit, wherein the transfer printing unit comprises a transfer printing unit,
the middle part of the rack is provided with a placing platform;
the middle parts of the two fixing pieces are hollow, and the two fixing pieces are oppositely arranged at the two ends of the rack;
the connecting piece is fixedly connected with the two fixing pieces;
the servo motor is arranged on the connecting piece;
the pressing wheel is connected with the servo motor, and a heating resistance wire is arranged in the pressing wheel; and the circumferential surface of the pressing wheel is provided with a concave-convex surface with the same shape as the stone lines.
Furthermore, the fixing piece is annular, and a plurality of through holes are uniformly arranged on the annular surface of the fixing piece along the circle center in an array manner;
the connecting piece is fixedly connected with the fixing piece through the through hole.
Further, the connecting member includes a first connecting portion,
the two wing edges of the first U-shaped piece are connected with the two fixing pieces in a hanging mode;
the outer side of the middle part of the second U-shaped part is connected with the first U-shaped part; the servo motor is arranged on the outer side of one wing edge of the second U-shaped piece; the pinch roller is rotatably arranged in the second U-shaped piece and is rotatably connected with the servo motor.
Further, the method also comprises the following steps of,
the guide rod is arranged on the second U-shaped piece, and a guide hole matched with the guide rod is formed in the first U-shaped piece;
and the screw rod is rotatably arranged on the first U-shaped piece and is in threaded connection with the second U-shaped piece.
Further, the guide rod further comprises a guide sleeve arranged on the first U-shaped piece, the guide sleeve is communicated with the guide hole, and the guide rod is located in the guide sleeve.
Furthermore, a friction layer is arranged in the guide sleeve.
Furthermore, the pressing wheel device also comprises a groove-shaped stone-roll-shaped heat-insulating outer sleeve, wherein the heat-insulating outer sleeve is arranged in the second U-shaped piece and coats the upper part of the pressing wheel.
Furthermore, the side of the rack is provided with a guide wheel which is fixedly connected with the rack through a guide connecting rod.
Furthermore, the placing platform is also provided with rollers.
Furthermore, the pressing wheel comprises an inner disc and a ring sleeve with a concave-convex shape on the outer cylindrical surface.
Due to the adoption of the technical scheme, the utility model discloses following advantage has:
through the shape phase-match of the concave-convex surface on the pinch roller and the moulding surface of moulding, better rendition effect can all be realized to each moulding homoenergetic of moulding.
Additional advantages, objects, and features of the invention will be set forth in part in the description which follows and in part will become apparent to those having ordinary skill in the art upon examination of the following or may be learned from practice of the invention.
Drawings
The drawings of the utility model are as follows:
FIG. 1 is a schematic structural diagram of an exemplary stone-like line transfer device.
Fig. 2 is an enlarged schematic view of a portion a in fig. 1.
FIG. 3 is a schematic view of the section B-B in FIG. 1.
In the figure: 1. a rack; 2. a fixing member; 31. a first U-shaped piece; 311. a guide hole; 32. a second U-shaped piece; 4. a servo motor; 52. an inner disc; 53. sleeving a ring; 6. a guide bar; 7. a screw rod; 8. a guide sleeve; 81. a friction layer; 9. a heat preservation outer sleeve; 100. a guide wheel; 101. a roller; 102. the circuit rotates the connector.
Detailed Description
The present invention will be further explained with reference to the drawings and examples.
Example (b):
as shown in fig. 1 to 3, a transfer device for a stone-like line includes a transfer unit including,
the middle part of the rack 1 is provided with a placing platform;
the middle parts of the two fixing pieces 2 are hollow, and the two fixing pieces 2 are oppositely arranged at the two ends of the rack 1;
the connecting piece is fixedly connected with the two fixing pieces 2;
the servo motor 4 is arranged on the connecting piece;
the pressing wheel is connected with the servo motor 4, and a heating resistance wire is arranged in the pressing wheel; and the circumferential surface of the pressing wheel is provided with a concave-convex surface with the same shape as the stone lines.
Through the shape phase-match of the concave-convex surface on the pinch roller and the moulding surface of moulding, better rendition effect can all be realized to each moulding homoenergetic of moulding.
If the molding of the moulding is complicated and the width is wide, a plurality of transfer units can be used for transferring in regions.
In this embodiment, the fixing member 2 is annular, and a plurality of through holes are uniformly arranged on the annular surface of the fixing member 2 along the circle center in an array manner;
the connecting piece is fixedly connected with the fixing piece 2 through the through hole.
The fixing part 2 is provided with a plurality of through holes, so that the position of the connecting part on the fixing part 2 can be adjusted, and the through holes are arranged in a circumferential array, so that the connecting part can be arranged at different angles around the fixing part 2, and the pressing wheel can be positioned at different extrusion angles.
In this embodiment, the connecting member includes,
the first U-shaped piece 31 is provided with two wing edges which are connected with the two fixing pieces 2 in a hanging way;
a second U-shaped member 32, the outside of the middle part of which is connected to the first U-shaped member 31; the servo motor 4 is arranged on the outer side of one wing edge of the second U-shaped part 32; the pinch roller is rotatably arranged in the second U-shaped part 32 and is rotatably connected with the servo motor 4.
The design structure is simple, the pinch roller is convenient to install, and meanwhile, the influence on the processed decorative lines is small during working.
In this embodiment, the method further comprises the steps of,
the guide rod 6 is arranged on the second U-shaped part 32, and a guide hole 311 matched with the guide rod 6 is arranged on the first U-shaped part 31;
the screw rod 7 is rotatably arranged on the first U-shaped part 31 and is in threaded connection with the second U-shaped part 32.
The height of the press wheel can be controlled by lifting the second U-shaped part 32 relative to the first U-shaped part 31 through the guide rod 6 and the screw rod 7.
In this embodiment, the guide device further comprises a guide sleeve 8 disposed on the first U-shaped member 31, the guide sleeve 8 is communicated with the guide hole 311, and the guide rod 6 is located in the guide sleeve 8.
For stability of the guidance, a guide sleeve 8 is provided.
In this embodiment, a friction layer 81 is further disposed in the guide sleeve 8.
Since the positioning is effected exclusively by means of the thread, it may occur that the second U-shaped part 32 slides down under the influence of gravity during operation, in which case the limitation of the second U-shaped part 32 is reinforced by the friction layer 81.
In the embodiment, the pressing wheel further comprises a heat-insulating jacket 9 in the shape of a grooved stone roller, wherein the heat-insulating jacket 9 is arranged in the second U-shaped part 32 and coats the upper part of the pressing wheel.
Because the pinch roller needs to keep certain temperature in the in-process of production to need continuously heat the pinch roller, in order to reduce the thermal loss of pinch roller, set up a heat preservation cover.
In this embodiment, the side of the rack 1 is provided with a guide wheel 100, which is fixedly connected to the rack 1 through a guide connecting rod.
Since the molding is in the form of a strip, a deviation may occur during the manufacturing process, and thus a guide wheel 100 is provided to limit the position thereof.
In this embodiment, the placing platform is further provided with a roller 101.
The rollers 101 are provided for the entry and exit of the molding.
In this embodiment, the puck includes an inner disk 52 and a ring 53 with a relief on the outer cylindrical surface.
Because the moulding of moulding is changeable, therefore need various specific models, set up ring cover 53 and inner disc 52 and can reduce the use of inner disc 52, only need change ring cover 53 after the model changes can. Meanwhile, the damage to the decorative lines is reduced, so that the outer layer needs to be made of non-metal materials.
The embodiment is used like this, according to the molding of moulding, sets up a rendition unit, sets for the rendition membrane, adjusts the height of second U-shaped piece 32 for the pinch roller can compress tightly moulding and rendition membrane.
The device is started, the heating resistance wire is electrified through the circuit rotary connector 102 (the circuit rotary connector 102 of M215-2K of Modal sold by International trade Wuxi Co., Ltd. in USA is selected), and the servo motor 4 is electrified to start to rotate. The transfer film is covered on the decorative molding, then enters the lower part of the pressing wheel from the roller 101, the transfer film is completely attached to the groove and the protrusion of the decorative molding under the action of the pressing wheel, and the transfer film is simultaneously transferred to the surface of the decorative molding at the high temperature of the pressing wheel. The decoration lines slowly realize the transfer printing of the whole decoration lines under the rotation of the pressing wheel.
Finally, the above embodiments are only used for illustrating the technical solutions of the present invention and not for limiting, and although the present invention has been described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that modifications or equivalent substitutions may be made to the technical solutions of the present invention without departing from the spirit and scope of the technical solutions, and all of them should be covered by the scope of the claims of the present invention.

Claims (10)

1. The transfer printing device for the stone-like lines is characterized by comprising at least one transfer printing unit, wherein the transfer printing unit comprises,
the middle part of the rack is provided with a placing platform;
the middle parts of the two fixing pieces are hollow, and the two fixing pieces are oppositely arranged at the two ends of the rack;
the connecting piece is fixedly connected with the two fixing pieces;
the servo motor is arranged on the connecting piece;
the pressing wheel is connected with the servo motor, and a heating resistance wire is arranged in the pressing wheel; and the circumferential surface of the pressing wheel is provided with a concave-convex surface with the same shape as the stone lines.
2. The stone-like line transfer printing device according to claim 1, wherein the fixing member is ring-shaped, and a plurality of through holes are uniformly arrayed along the center of a circle on the circular ring surface of the fixing member;
the connecting piece is fixedly connected with the fixing piece through the through hole.
3. The stone-like line transfer device of claim 1, wherein the connector comprises,
the two wing edges of the first U-shaped piece are connected with the two fixing pieces in a hanging mode;
the outer side of the middle part of the second U-shaped part is connected with the first U-shaped part; the servo motor is arranged on the outer side of one wing edge of the second U-shaped piece; the pinch roller is rotatably arranged in the second U-shaped piece and is rotatably connected with the servo motor.
4. The stone-like line transfer device of claim 3, further comprising,
the guide rod is arranged on the second U-shaped piece, and a guide hole matched with the guide rod is formed in the first U-shaped piece;
and the screw rod is rotatably arranged on the first U-shaped piece and is in threaded connection with the second U-shaped piece.
5. The stone-like line transfer printing apparatus of claim 4, further comprising a guide sleeve disposed on the first U-shaped member, the guide sleeve communicating with the guide hole, the guide bar being located within the guide sleeve.
6. The stone-like line transfer device of claim 5, wherein a friction layer is further provided within the guide sleeve.
7. The stone-like line transfer device of claim 1, further comprising a heat-insulating jacket in the shape of a grooved stone roller, the heat-insulating jacket being disposed inside the second U-shaped member to jacket the upper portion of the pressing roller.
8. The stone-like line transfer printing device according to claim 1, wherein the side of the rack is provided with a guide wheel which is fixedly connected with the rack through a guide connecting rod.
9. The stone-like line transfer printing device of claim 1, wherein the placement platform is further provided with rollers.
10. The stone-like line transfer printing apparatus of any one of claims 1-9, wherein the pressing roller includes an inner plate and an outer cylindrical surface with a concave-convex shaped collar.
CN201922029505.1U 2019-11-21 2019-11-21 Imitative stone material lines transfer means Active CN211467811U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922029505.1U CN211467811U (en) 2019-11-21 2019-11-21 Imitative stone material lines transfer means

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922029505.1U CN211467811U (en) 2019-11-21 2019-11-21 Imitative stone material lines transfer means

Publications (1)

Publication Number Publication Date
CN211467811U true CN211467811U (en) 2020-09-11

Family

ID=72375060

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201922029505.1U Active CN211467811U (en) 2019-11-21 2019-11-21 Imitative stone material lines transfer means

Country Status (1)

Country Link
CN (1) CN211467811U (en)

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