CN214328107U - Embroidery machine embroidery frame connecting structure and embroidery machine embroidery frame structure - Google Patents

Embroidery machine embroidery frame connecting structure and embroidery machine embroidery frame structure Download PDF

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Publication number
CN214328107U
CN214328107U CN202120193273.8U CN202120193273U CN214328107U CN 214328107 U CN214328107 U CN 214328107U CN 202120193273 U CN202120193273 U CN 202120193273U CN 214328107 U CN214328107 U CN 214328107U
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rail
embroidery
guide rail
embroidery frame
frame
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CN202120193273.8U
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陈天龙
方狄永
吴帆
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Zhejiang Pumeike Intelligent Embroidery Equipment Co ltd
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Zhejiang Pumeike Intelligent Embroidery Equipment Co ltd
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Abstract

An embroidery machine embroidery frame connecting structure and an embroidery machine embroidery frame structure belong to the technical field of embroidery machines. The embroidery machine tabouret connecting structure is arranged between the tabouret and the guide rail of the embroidery machine and comprises a connecting guide rail and a connecting pulley; the connecting pulley comprises a connecting pulley seat and a plurality of bearings; the bearings are arranged in two rows on the connecting saddle in parallel; the connecting guide rail is embedded between the two rows of bearings, so that the connecting guide rail is in sliding connection with the connecting pulley; the periphery of the connecting guide rail is provided with an arc groove/arc flange, and the periphery of the bearing is provided with an arc flange/arc groove matched with the arc groove/arc flange. The embroidery machine embroidery frame structure comprises a bedplate, an embroidery frame, a Y guide rail and an X guide rail, wherein the X guide rail is in sliding connection with a left rail and/or a right rail of the embroidery frame through a first embroidery machine embroidery frame connecting structure; the Y guide rail is connected with the front rail/the rear rail of the embroidery frame in a sliding way through an embroidery frame connecting structure of the second embroidery machine. The utility model discloses tabouret and guide rail sliding connection precision are high, frictional force is balanced, improve the stability of the high-speed motion of tabouret.

Description

Embroidery machine embroidery frame connecting structure and embroidery machine embroidery frame structure
Technical Field
The utility model belongs to the technical field of the embroidery machine, especially, relate to an embroidery machine embroidery frame connection structure, embroidery machine embroidery frame structure.
Background
When the computerized embroidery machine works, the needle rod drives the needle thread to move up and down, and the rotating shuttle is matched with the needle rod to rotate, so that the embroidery action is completed; the embroidery frame reciprocates in the X-axis and Y-axis directions of the working plane, and the embroidery pattern is obtained by moving the embroidery frame along the X-axis and Y-axis directions. The tabouret of the existing embroidery machine is supported by the bedplate, the felt is arranged at the bottom of the tabouret, sliding friction exists between the tabouret and the bedplate surface, the friction resistance is large and uneven, the tabouret and the bedplate surface are easy to wear to different degrees, and the service life of the tabouret and the bedplate of the embroidery machine is shortened. Moreover, the embroidery frame is easy to shake up and down during high-speed movement.
The utility model discloses a patent CN201921739061.4 discloses an embroidery machine's suspension frame subassembly to specifically disclose suspension frame subassembly including being located the drive in the embroidery machine frame to and be located the belt clamp plate on the drive be equipped with the coaster on the belt clamp plate be equipped with the circular arc bearing on the coaster, the guide rail zero clearance fit on circular arc bearing and the tabouret. Guide rail grooves are formed in two sides of the guide cavity of the tabouret and used for fixing the guide rails in a buckling mode. This patent need not to contact through felt and platen, the friction of tabouret with the platen that has significantly reduced, nevertheless because the aluminum alloy tabouret precision is low, and the guide rail groove precision that forms at the tabouret bottom is not high and both sides guide rail groove also has the inconsistency, and this will lead to the cooperation precision between guide rail and the guide rail groove to be low, and the cooperation precision of guide rail and circular arc bearing is low, and the sliding friction between guide rail and the circular arc bearing is inhomogeneous.
Utility model CN201721052806.0 discloses a floated self-adaptation tabouret for embroidery machine to specifically disclose the tabouret, including the platen, platen top be provided with the tabouret body, the suspension of tabouret body have the clearance between platen top and platen, platen below be provided with frame suspension actuating mechanism, this frame suspension actuating mechanism's upper surface salient in platen upper surface and with the contact of tabouret body bottom. The embroidery frame comprises an embroidery frame body and is characterized in that a guide groove is formed in one side, close to a bedplate, of the embroidery frame body, the frame suspension driving mechanism comprises a vehicle body, supporting wheel sets are arranged at two ends of the vehicle body, the supporting wheel sets protrude out of the upper surface of the bedplate, and the supporting wheel sets abut against the bottom surface of the guide groove so as to jack up the embroidery frame body and separate the embroidery frame body from the upper surface of the bedplate. This patent need not to contact through felt and platen, has significantly reduced the friction of tabouret and platen, nevertheless because the aluminium alloy tabouret precision is low, and the guide way precision that forms at the tabouret bottom is not high.
SUMMERY OF THE UTILITY MODEL
The utility model provides an embroidery machine embroidery frame connection structure, embroidery machine embroidery frame structure to the problem that prior art exists.
The utility model discloses a can realize through following technical scheme:
an embroidery machine embroidery frame connecting structure is arranged between an embroidery frame and an embroidery machine guide rail, and comprises a connecting guide rail and a connecting pulley; the connecting pulley comprises a connecting pulley seat and a plurality of bearings arranged on the connecting pulley seat; the bearings are arranged in two rows in parallel; the connecting guide rail is embedded between the two rows of bearings, so that the connecting guide rail is in sliding connection with the connecting pulley; the periphery of the connecting guide rail, which is matched with the bearing, is provided with an arc groove, and the periphery of the bearing is provided with an arc flange matched with the arc groove; or, the periphery of the connecting guide rail matched with the bearing is provided with an arc flange, and the periphery of the bearing is provided with an arc groove matched with the arc flange.
The utility model discloses an embroidery machine embroidery frame connection structure installs the embroidery frame unsettled in the platen top, need not to install the felt bottom the embroidery frame, also need not at embroidery frame bottom draw-in groove and with the solid guide rail of draw-in groove card. This connection structure designs one and connects the guide rail and connect the coaster cooperation, should connect the guide rail and select for use the standard component, has avoided processing to the precision influence of part to connect the guide rail and connect the frictional force between the coaster balanced, can not produce different degree wearing and tearing because of the unbalance of frictional force when tabouret is connected with the guide rail, improve the life of tabouret and guide rail. In addition, the two rows of bearings limit the vibration displacement of the two sides of the guide rail, and the circular arc grooves are matched with the circular arc flanges to limit the vertical vibration displacement of the guide rail, so that the movement stability of the embroidery frame during high-speed operation is greatly improved.
Preferably, when the embroidery machine embroidery frame connecting structure is located between the embroidery frame and the X guide rail, the connecting pulley is fixed on the right rail and/or the left rail of the embroidery frame through the connecting pulley seat, and the connecting guide rail is fixed on the X guide rail.
Preferably, the connecting rail is fixed to a bottom edge of the X rail.
Preferably, when the embroidery machine embroidery frame connecting structure is located between the embroidery frame and the Y-shaped guide rail, the connecting pulley is fixed on the driving pulley of the Y-shaped driving system through the connecting pulley seat, and the connecting guide rail is fixed on the front rail or the rear rail of the embroidery frame.
Preferably, the connecting guide rail is fixed to the bottom of the front rail or the rear rail of the embroidery frame.
Preferably, the connecting guide rail is provided with a plurality of threaded holes along the length direction thereof.
An embroidery machine embroidery frame structure comprises a bedplate, an embroidery frame, a Y guide rail, an X driving system and a Y driving system, wherein the X guide rail is in sliding connection with a left rail and/or a right rail of the embroidery frame through a first embroidery machine embroidery frame connecting structure;
the first embroidery machine embroidery frame connecting structure comprises a first connecting guide rail and a first connecting pulley, wherein the first connecting guide rail and the first connecting pulley are fixed on the X guide rail; the first connecting pulley comprises a first connecting pulley seat fixed on a left rail and/or a right rail of the embroidery frame and a plurality of first bearings arranged on the first connecting pulley seat; the first bearings are symmetrically arranged into two rows; the first connecting guide rail is embedded between the two rows of first bearings, so that the first connecting guide rail is in sliding connection with the first connecting pulley; the periphery of the first connecting guide rail, which is matched with the first bearing, is provided with an arc groove, and the periphery of the first bearing is provided with an arc flange matched with the arc groove; or the periphery of the first connecting guide rail, which is matched with the first bearing, is provided with an arc flange, and the periphery of the first bearing is provided with an arc groove matched with the arc flange;
the second embroidery machine tabouret connecting structure comprises a second connecting guide rail and a second connecting pulley which are fixed on a front rail or a rear rail of the tabouret; the second connecting pulley comprises a second connecting pulley seat fixed on a driving pulley of the Y driving system and a plurality of second bearings arranged on the second connecting pulley seat; the plurality of second bearings are symmetrically arranged into two rows; the second connecting guide rail is embedded between the two rows of second bearings, so that the second connecting guide rail is in sliding connection with the second connecting pulley; the periphery of the second connecting guide rail, which is matched with the second bearing, is provided with an arc groove, and the periphery of the second bearing is provided with an arc flange matched with the arc groove; or the periphery of the second connecting guide rail, which is matched with the second bearing, is provided with an arc flange, and the periphery of the second bearing is provided with an arc groove matched with the arc flange.
The embroidery frame is provided with four gears, each gear is respectively connected with different guide rails, when the embroidery frame connecting structure of the embroidery machine with the same structure is adopted for sliding connection, such as the sliding connection of the embroidery frame and an X guide rail and the sliding connection of the embroidery frame and a Y guide rail, the embroidery frame is realized by adopting a bearing with an arc groove and a connecting guide rail with an arc flange, and such as the sliding connection of the embroidery frame and the X guide rail and the sliding connection of the embroidery frame and the Y guide rail, the embroidery frame is realized by adopting the bearing with the arc flange and the connecting guide rail with the arc groove, so that the stress of connecting points between the embroidery frame and the guide rail can be ensured to be balanced and uniform, and the embroidery frame can do stable reciprocating motion in the X-axis and Y-axis directions of a working plane under the high-speed motion. Or, the sliding connection of the embroidery frame and the X guide rail is realized by adopting a bearing with an arc groove and a connecting guide rail with an arc flange, and the sliding connection of the embroidery frame and the Y guide rail is realized by adopting a bearing with an arc flange and a connecting guide rail with an arc groove. Or, the sliding connection of the embroidery frame and the X guide rail is realized by adopting a bearing with an arc flange and a connecting guide rail with an arc groove, and the sliding connection of the embroidery frame and the Y guide rail is realized by adopting a bearing with an arc groove and a connecting guide rail with an arc flange.
Preferably, the first connecting guide rail is provided with a plurality of threaded holes along the length direction; the first connecting guide rail is fixed at the bottom of the side of the X guide rail through a fastener thread.
Preferably, one row of first bearings on the first connecting saddle is located at the bottom of the left rail or the right rail of the embroidery frame, and the other row of first bearings on the first connecting saddle is located at the bottom of the X guide rail.
Preferably, the second connecting guide rail is provided with a plurality of threaded holes along the length direction; and the second connecting guide rail is fixed at the bottom of the front rail or the rear rail of the embroidery frame through a fastener thread.
Preferably, at least two first embroidery machine embroidery frame connecting structures are arranged between the X guide rail and the left rail or the right rail of the embroidery frame; at least two second embroidery machine tabouret connecting structures are arranged on the Y guide rail and the front rail of the tabouret; at least two second embroidery machine tabouret connecting structures are arranged on the Y guide rail and the rear rail of the tabouret.
The utility model discloses following beneficial effect has:
the embroidery machine embroidery frame connecting structure is characterized in that an embroidery frame is mounted above a bedplate in a hanging mode through the embroidery machine embroidery frame connecting structure, a connecting guide rail is embedded between two rows of bearings, sliding connection between the embroidery frame and the guide rail is achieved under the matching of an arc groove and an arc flange, the stress of sliding friction force is balanced, the sliding connecting structure is high in precision, and the embroidery frame can move stably during high-speed operation of the embroidery machine.
Drawings
FIG. 1 is a schematic perspective view of an embroidery frame connecting structure of the embroidery machine of the present invention;
FIG. 2 is a schematic perspective view of an embroidery frame structure of the embroidery machine of the present invention;
FIG. 3 is a left side view of the embroidery frame structure of the embroidery machine of the present invention;
FIG. 4 is a front view of the embroidery frame structure of the embroidery machine of the present invention;
FIG. 5 is a schematic perspective view of the connection structure of the embroidery frame of the embroidery machine between the X-rail and the embroidery frame in the embroidery frame structure of the present invention;
FIG. 6 is a schematic perspective view of the connection between the embroidery frame structure and the embroidery frame of the embroidery machine of the present invention;
FIG. 7 is a schematic perspective view of the connection between the Y-rail and the embroidery frame in the embroidery frame structure of the embroidery machine of the present invention;
fig. 8 is a bottom view of the embroidery frame structure of the embroidery machine of the present invention.
Detailed Description
The following are specific embodiments of the present invention and the accompanying drawings are used to further describe the technical solution of the present invention, but the present invention is not limited to these embodiments.
Referring to fig. 1, the embroidery frame connecting structure of the embroidery machine is installed between an embroidery frame and a guide rail of the embroidery machine, and comprises a connecting guide rail 1 and a connecting pulley 2. The connection pulley 2 comprises a connection pulley seat 21 and a plurality of bearings 22 arranged on the connection pulley seat 21. The plurality of bearings 22 are arranged in two parallel rows, the bearings on each row are arranged at equal intervals, and each row has 2 or 4 bearings with different numbers, which can be arranged according to the requirement. The two rows of bearings can be symmetrically arranged or staggered. The connecting rail 1 is inserted between two rows of bearings 22, so that the connecting rail 1 is connected to the connecting carriage slide 2. The connecting guide rail 1 is provided with a circular arc groove 11 at the periphery matched with the bearing 22, and a circular arc flange 221 matched with the circular arc groove 11 is arranged at the periphery of the bearing 22. The connecting guide rail can be made of standard parts. Or, the periphery of the connecting guide rail matched with the bearing is provided with an arc flange, and the periphery of the bearing is provided with an arc groove matched with the arc flange. Compared with the two embodiments, the former embodiment is better, the process is simpler and the grinding efficiency is high when the arc groove grinding is carried out due to the longer connecting guide rail, and the arc flange is easier to form by processing the bearing.
The connecting guide rail is provided with a plurality of threaded holes along the length direction. In this way, the connecting rail can be screwed to the embroidery machine rail or the embroidery frame by means of a fastening element, such as a screw.
The connecting saddle is provided with a plurality of threaded holes. In this way, the coupling carriage seat can be screwed to the driving carriage of the embroidery frame or the embroidery machine rail by means of a fastening element, such as a screw. For example, the coupling carriage seat is connected to the front drive carriage/rear drive carriage, for example, the coupling carriage seat is connected to a drive carriage, and for example, the coupling carriage seat is connected to a connecting plate connecting between the front drive carriage and the rear drive carriage.
The embroidery frame comprises a front gear, a rear gear, a left gear and a right gear, and the four gears form a rectangle. The structure of the embroidery frame may be configured to be easily detachable, for example, one of the front rail and the rear rail is configured to be detachable, or both of the front rail and the rear rail are configured to be detachable. The embroidery frame reciprocates in the X-axis and Y-axis directions of the working plane, and the embroidery frame needs to move along the X-axis and Y-axis directions under the X, Y driving system by means of the X guide rail and the Y guide rail. The front rail and the Y guide rail, the rear rail and the Y guide rail, and the left rail or the right rail and the X guide rail of the embroidery frame can be connected in a sliding way through the embroidery frame connecting structure of the embroidery machine. The X-axis guide rail is a guide rail arranged in the Y-axis direction of the embroidery frame, can move in the X-axis direction on an X-axis track of the X-axis driving system, and is a track arranged in the X-axis direction of the embroidery frame. The Y guide rail is arranged in the Y-axis direction of the embroidery frame and can drive the embroidery frame to move along the Y-axis direction under the driving of the Y driving system.
When the embroidery machine tabouret connecting structure is positioned between the tabouret and the X guide rail, the connecting pulley is fixed on a right rail and/or a left rail of the tabouret through the connecting pulley seat, and the connecting guide rail is fixed on the X guide rail. When the embroidery machine tabouret connecting structure is positioned between the tabouret and the Y guide rail, the connecting pulley is fixed on a driving pulley of the Y driving system through a connecting pulley seat, and the connecting guide rail is fixed on a front rail or a rear rail of the tabouret. The utility model discloses be not limited to above-mentioned connected mode, can change or increase the erection joint point that the guide rail is installed between tabouret and embroidery machine guide rail with being connected saddle as required. If the embroidery machine embroidery frame structure disclosed in the prior application CN202010952836.7 of the applicant comprises a bedplate, an embroidery frame, an X guide rail, a Y front guide rail and a Y rear guide rail, when the embroidery machine embroidery frame connecting structure is located between the embroidery frame and the X guide rail, the connecting pulley is fixed on the right rail and/or the left rail of the embroidery frame through the connecting pulley seat, and the connecting guide rail is fixed on the X guide rail; when the embroidery machine tabouret connecting structure is positioned between the tabouret and the Y-shaped front guide rail, the connecting pulley is fixed on a driving pulley of a Y-shaped driving system through a connecting pulley seat, and the connecting guide rail is fixed on a front rail of the tabouret; when the embroidery machine embroidery frame connecting structure is positioned between the embroidery frame and the Y rear guide rail, the connecting pulley is fixed on a driving pulley of the Y driving system through a connecting pulley seat, and the connecting guide rail is fixed on an embroidery frame rear rail. It should be noted that the Y front rail, the Y rear rail applied in advance and the Y rail mentioned in the present invention are not the same concept, and the Y front rail and the Y rear rail are rails disposed in the X-axis direction of the embroidery frame, and the Y front rail is disposed at the front end of the embroidery frame, and the Y rear rail is disposed at the rear end of the embroidery frame.
Fig. 2-4 and 8 show an embroidery frame structure of an embroidery machine, which includes a table (not shown), an embroidery frame 10, a Y rail 30, an X rail 20, an X driving system and a Y driving system, wherein the X rail 20 is slidably connected with a left rail 101 and/or a right rail 102 of the embroidery frame through a first embroidery frame connecting structure, and the Y rail is slidably connected with a front rail 103 of the embroidery frame through a second embroidery frame connecting structure, so that the embroidery frame is suspended above the table.
The X driving system comprises an X driving mechanism and an X-axis track; the X driving mechanism comprises an X pulley, an X driving part (such as a belt or a chain) and an X driving motor. The X pulley is fixedly connected with the X guide rail, and the X driving motor drives the X driving medium to drive the X pulley to move along the X-axis track 40. The Y drive system includes a Y drive mechanism. The Y driving mechanism comprises a Y pulley, a Y transmission piece and a Y driving motor. The front end of the Y pulley is fixedly connected with the Y guide rail, and the rear end of the Y pulley is fixedly connected with the Y guide rail. The Y driving motor drives the transmission piece to drive the Y pulley to move along the Y-axis direction. In one embodiment, as shown in fig. 2 and 3, the Y block includes a Y front block, a Y rear block, and a connection plate connecting the Y front block and the Y rear block, the Y rear block being slidably connected to the Y rail. In another embodiment, the Y block is a separate block. The X-axis track and the Y-axis track are arranged on the bedplate. When the embroidery machine frame connecting structure is adopted for the embroidery machine frame structure disclosed in the prior application CN202010952836.7, the X-axis track, the Y-axis track setting position and the Y-driving mechanism can refer to the content disclosed in the prior application.
Referring to fig. 5 and 6, the first embroidery machine frame coupling structure includes a first coupling rail 1A fixed to an X rail 20, and a first coupling block 2A. The first connection pulley 2A includes a first connection pulley seat 21A fixed on the left rail 101 and/or the right rail 102 of the embroidery frame, and a plurality of first bearings 22A provided on the first connection pulley seat 21A. The first bearings 22A are arranged in two parallel rows, and the two rows may be arranged symmetrically or staggered. The figure shows 8 bearings, 4 bearings per row, the invention is not limited to the above number. The first connecting rail 1A is embedded between the two rows of first bearings 22A, so that the first connecting rail 1A is slidably connected with the first connecting block 2A. The first connecting rail 1A has a circular arc groove 11A on the outer periphery thereof which engages with the first bearing 22A, and the first bearing 22A has a circular arc flange 221A on the outer periphery thereof which engages with the circular arc groove 11A. Or, the periphery of the first connecting guide rail, which is matched with the first bearing, is provided with an arc flange, and the periphery of the first bearing is provided with an arc groove matched with the arc flange.
The first connecting guide rail 1A is provided with a plurality of threaded holes along the length direction, and the plurality of bolt holes are arranged at equal intervals. The first connecting rail 1A is screwed to the bottom side of the X rail 20 by a fastener such as a screw.
As shown in fig. 6, one row of first bearings 22A of the first coupling saddle 21A is located at the bottom of the left rail 101 or the right rail 102 of the embroidery frame, and the other row of first bearings 22A of the first coupling saddle 21A is located at the bottom of the X rail 20.
Referring to fig. 7, the second embroidery machine embroidery frame coupling structure includes a second coupling rail 1B and a second coupling block 2B fixed to a front rail 103 or a rear rail 104 of the embroidery frame. The second connection pulley 2B comprises a second connection pulley seat 21B fixed on the driving pulley of the Y driving system, and a plurality of second bearings 22B arranged on the second connection pulley seat 21B. The second bearings 22B are arranged in two parallel rows, and the two rows may be arranged symmetrically or staggered. The figure shows 4 bearings, 2 bearings per row, the invention is not limited to the above number. The second connecting rail 1B is fitted between the two rows of second bearings 22B, so that the second connecting rail 1B is slidably connected to the second connecting block 2B. The second connecting guide rail 1B is provided with a circular arc groove 11B on the outer periphery thereof which is engaged with the second bearing 22B, and the second bearing 22B is provided with a circular arc flange 221B on the outer periphery thereof which is engaged with the circular arc groove 11B. Or the periphery of the second connecting guide rail, which is matched with the second bearing, is provided with an arc flange, and the periphery of the second bearing is provided with an arc groove matched with the arc flange.
The second connecting guide rail 1B is provided with a plurality of threaded holes along the length direction, and the threaded holes are arranged at equal intervals. The second connecting rail 1B is fixed to the bottom of the front rail 103 or the rear rail 104 of the tabouret by a fastener, such as a screw.
At least two first embroidery machine embroidery frame connecting structures can be arranged between the X guide rail and the left rail or the right rail of the embroidery frame, at least two second embroidery machine embroidery frame connecting structures are arranged between the Y guide rail and the front rail of the embroidery frame, and at least two second embroidery machine embroidery frame connecting structures are arranged between the Y guide rail and the rear rail of the embroidery frame. The utility model discloses in the example, set up two first embroidery machine tabouret connection structures between the right shelves of X guide rail and tabouret, be equipped with two second embroidery machine tabouret connection structures between the preceding shelves of Y guide rail and tabouret, be equipped with two second embroidery machine tabouret connection structures between the back shelves of Y guide rail and tabouret. When two first embroidery machine embroidery frame connecting structures are provided between the embroidery frame and the X-guide, each first embroidery machine embroidery frame connecting structure may use one first connecting guide, or may share one sufficiently long first connecting guide (refer to fig. 8). When two second embroidery machine embroidery frame connecting structures are arranged between the front rail/the rear rail of the embroidery frame and the Y guide rail, each second embroidery machine embroidery frame connecting structure adopts one second connecting guide rail (refer to fig. 8), and the second connecting guide rails with a structure long enough can be shared. FIG. 8 illustrates the connection structure of the embroidery frames of 4 second embroidery machines, wherein the four connection structures of the embroidery frames of the second embroidery machines are symmetrically arranged. In addition, still can set up more first, second embroidery machine tabouret connection structure, it is all in the protection of the utility model not limited to any change of symmetrical arrangement.
It will be understood by those skilled in the art that the embodiments of the present invention as described above and shown in the drawings are given by way of example only and are not limiting of the present invention. The purpose of the utility model is completely and effectively realized. The functional and structural principles of the present invention have been shown and described in the embodiments without departing from the principles, embodiments of the present invention may have any deformation or modification.

Claims (11)

1. An embroidery machine embroidery frame connecting structure is arranged between an embroidery frame and an embroidery machine guide rail and is characterized in that the embroidery machine embroidery frame connecting structure comprises a connecting guide rail and a connecting pulley; the connecting pulley comprises a connecting pulley seat and a plurality of bearings arranged on the connecting pulley seat; the bearings are arranged in two rows in parallel; the connecting guide rail is embedded between the two rows of bearings, so that the connecting guide rail is in sliding connection with the connecting pulley; the periphery of the connecting guide rail, which is matched with the bearing, is provided with an arc groove, and the periphery of the bearing is provided with an arc flange matched with the arc groove; or, the periphery of the connecting guide rail matched with the bearing is provided with an arc flange, and the periphery of the bearing is provided with an arc groove matched with the arc flange.
2. The embroidery machine embroidery frame connecting structure as claimed in claim 1, wherein when the embroidery machine embroidery frame connecting structure is an embroidery machine embroidery frame connecting structure located between an embroidery frame and an X-rail, the connecting carriage is fixed on a right rail and/or a left rail of the embroidery frame by a connecting carriage seat, and the connecting rail is fixed on the X-rail.
3. The embroidery machine frame attachment structure of claim 2, wherein the attachment rail is fixed to the bottom of the side of the X-rail.
4. The embroidery machine embroidery frame connecting structure as claimed in claim 1, wherein when the embroidery machine embroidery frame connecting structure is an embroidery machine embroidery frame connecting structure located between an embroidery frame and a Y rail, the connecting carriage is fixed to a driving carriage of a Y driving system through a connecting carriage seat, and the connecting rail is fixed to a front rail or a rear rail of the embroidery frame.
5. The embroidery machine frame coupling structure of claim 4, wherein the coupling rail is fixed to the bottom of the front rail or the rear rail of the embroidery frame.
6. The embroidery machine frame attachment structure of claim 2, wherein the attachment rail has a plurality of threaded holes along a length direction thereof.
7. An embroidery machine embroidery frame structure comprises a bedplate, an embroidery frame, a Y guide rail, an X driving system and a Y driving system, and is characterized in that the X guide rail is in sliding connection with a left rail and/or a right rail of the embroidery frame through a first embroidery machine embroidery frame connecting structure, and the Y guide rail is in sliding connection with a front rail or a rear rail of the embroidery frame through a second embroidery machine embroidery frame connecting structure, so that the embroidery frame is suspended and installed above the bedplate;
the first embroidery machine embroidery frame connecting structure comprises a first connecting guide rail and a first connecting pulley, wherein the first connecting guide rail and the first connecting pulley are fixed on the X guide rail; the first connecting pulley comprises a first connecting pulley seat fixed on a left rail and/or a right rail of the embroidery frame and a plurality of first bearings arranged on the first connecting pulley seat; the first bearings are arranged in two rows in parallel; the first connecting guide rail is embedded between the two rows of first bearings, so that the first connecting guide rail is in sliding connection with the first connecting pulley; the periphery of the first connecting guide rail, which is matched with the first bearing, is provided with an arc groove, and the periphery of the first bearing is provided with an arc flange matched with the arc groove; or the periphery of the first connecting guide rail, which is matched with the first bearing, is provided with an arc flange, and the periphery of the first bearing is provided with an arc groove matched with the arc flange;
the second embroidery machine tabouret connecting structure comprises a second connecting guide rail and a second connecting pulley which are fixed on a front rail or a rear rail of the tabouret; the second connecting pulley comprises a second connecting pulley seat fixed on a driving pulley of the Y driving system and a plurality of second bearings arranged on the second connecting pulley seat; the plurality of second bearings are arranged in two rows in parallel; the second connecting guide rail is embedded between the two rows of second bearings, so that the second connecting guide rail is in sliding connection with the second connecting pulley; the periphery of the second connecting guide rail, which is matched with the second bearing, is provided with an arc groove, and the periphery of the second bearing is provided with an arc flange matched with the arc groove; or, the periphery of the second connecting guide rail, which is matched with the second bearing, is provided with an arc flange, and the periphery of the second bearing is provided with an arc groove matched with the arc flange.
8. The embroidery machine frame structure of claim 7, wherein the first connecting rail is fixed to the side bottom of the X rail by a fastener.
9. The embroidery frame structure of claim 8, wherein one row of first bearings on the first coupling carriage seat is located at the bottom of the left rail or the right rail of the embroidery frame, and the other row of first bearings on the first coupling carriage seat is located at the bottom of the X-rail.
10. The embroidery machine frame structure of claim 7, wherein the second connecting rail is fixed to the bottom of the front rail or the rear rail of the embroidery frame by a fastener.
11. The embroidery machine embroidery frame structure of claim 7, wherein at least two first embroidery machine embroidery frame connecting structures are arranged between the X guide rail and the left rail or the right rail of the embroidery frame; at least two second embroidery machine tabouret connecting structures are arranged on the Y guide rail and the front rail of the tabouret; at least two second embroidery machine tabouret connecting structures are arranged on the Y guide rail and the rear rail of the tabouret.
CN202120193273.8U 2021-01-25 2021-01-25 Embroidery machine embroidery frame connecting structure and embroidery machine embroidery frame structure Active CN214328107U (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114059245A (en) * 2021-11-18 2022-02-18 浙江越隆缝制设备有限公司 Adjustable frame system of embroidery machine
CN115262116A (en) * 2022-07-18 2022-11-01 诸暨市泓方机械制造有限公司 Embroidery machine assembly

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114059245A (en) * 2021-11-18 2022-02-18 浙江越隆缝制设备有限公司 Adjustable frame system of embroidery machine
CN115262116A (en) * 2022-07-18 2022-11-01 诸暨市泓方机械制造有限公司 Embroidery machine assembly

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