CN204875285U - Ironer prop sleeve pole width regulation mechanism - Google Patents
Ironer prop sleeve pole width regulation mechanism Download PDFInfo
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- CN204875285U CN204875285U CN201520562388.4U CN201520562388U CN204875285U CN 204875285 U CN204875285 U CN 204875285U CN 201520562388 U CN201520562388 U CN 201520562388U CN 204875285 U CN204875285 U CN 204875285U
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- pole socket
- feed screw
- screw nut
- screw mandrel
- support sleeve
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Abstract
The utility model provides an ironer prop sleeve pole width regulation mechanism, is including being used for an installation left side to prop the left pole socket of sleeve pole, being used for the installation right side to prop the right pole socket of sleeve pole, still includes preceding lead screw, still including the back lead screw, and back lead screw is parallel with preceding lead screw, and drawing close each other and keeping away from each other of left pole socket, right pole socket can be realized when the lead screw moves after and to preceding lead screw. The utility model discloses the structure that the width widen of sleeve between the pole was propped in the realization is comparatively simple, and is in when strutting the state when propping the sleeve pole, and the sleeve pole is propped on a left side, sleeve pole leanin is propped on the right side, and the wide shape in narrow back before forming promptly, the shape of the sleeve of more laminating prop that to tuck inside the sleeve the effect better.
Description
Technical field
The utility model relates to a kind of support sleeve bar width adjustment mechanism of ironer.
Background technology
Support sleeve bar width adjustment mechanism is important mechanism parts of ironer, and it comprises left pole socket, right pole socket, left pole socket is installed left support sleeve bar, right pole socket is installed right support sleeve bar.Left support sleeve bar and right support sleeve bar stretch in sleeve, rear left support sleeve bar and right support sleeve bar move respectively to both sides, thus the width between two support sleeve bars broaden, thus are strutted by sleeve, are convenient to press.
The shortcoming that the support sleeve bar width adjustment mechanism of existing ironer also exists is: the mechanism realizing above-mentioned action is complicated, and struts less effective to sleeve.
Summary of the invention
In order to overcome the above-mentioned deficiency of the support sleeve bar width adjustment mechanism of existing ironer, the utility model provides the support sleeve bar width adjustment mechanism of the ironer that a kind of structure is comparatively simple, better effects if is tucked inside the sleeve in support.
The technical scheme in the invention for solving the technical problem is: a kind of support sleeve bar width adjustment mechanism of ironer, comprises the left pole socket for installing left support sleeve bar, for installing the right pole socket of right support sleeve bar;
Also comprise front screw mandrel, when support sleeve bar be in narrow state time described in before screw mandrel and described left pole socket, right pole socket vertical; Described front screw mandrel with for driving its front motor rotated to be connected, described front screw mandrel is provided with front left feed screw nut and front right feed screw nut, the screw thread that the screw thread at front left feed screw nut place and front right feed screw nut locate is reverse each other, before described front left feed screw nut and, left shaft holder is affixed, described front right feed screw nut and a front right bearing block affixed, described front left shaft holder is provided with front left bearing, and described front right bearing block is provided with front right bearing;
Described left pole socket is positioned at the top of described front left shaft holder, and described left pole socket is provided with front left rotary shaft, in the described front left bearing described in front left rotary shaft insertion;
Described right pole socket is positioned at the top of described front right bearing block, and described right pole socket is provided with front right spindle, in the front right bearing described in described front right spindle inserts;
Also comprise rear screw mandrel, described rear screw mandrel is parallel with described front screw mandrel; Described rear screw mandrel with for driving its rear motor rotated to be connected, described rear screw mandrel is provided with rear left feed screw nut and rear right feed screw nut, the screw thread that the screw thread at rear left feed screw nut place and rear right feed screw nut locate is reverse each other, after described rear left feed screw nut and, left shaft holder is affixed, described rear right feed screw nut and a rear right bearing block affixed, described rear left shaft holder is provided with rear left bearing, and described rear right bearing block is provided with rear right bearing;
Described left pole socket is positioned at the top of described rear left shaft holder, and described left pole socket is provided with rear left rotary shaft, in the described rear left bearing described in rear left rotary shaft insertion;
Described right pole socket is positioned at the top of described rear right bearing block, and described right pole socket is provided with rear right spindle, in the rear right bearing described in described rear right spindle inserts.
Further, the below of described front screw mandrel is also provided with a line slideway, and described front left feed screw nut and front right feed screw nut are slidedly arranged on described line slideway.
Operationally, before front motor action drives, screw mandrel rotates the utility model, and after rear motor action drives, screw mandrel rotates.The velocity of rotation of front screw mandrel is less than the velocity of rotation of rear screw mandrel.Front screw mandrel rotates and then drives that front left feed screw nut is moved to the left, front right feed screw nut moves right, and the rotation of rear screw mandrel then drives rear left feed screw nut to be moved to the left, and rear right feed screw nut move right.Front left feed screw nut and rear left feed screw nut are moved to the left, and front left shaft holder and rear left shaft holder can be driven to be moved to the left; Front right feed screw nut and rear right feed screw nut move right, and front right bearing block and rear right bearing block can be driven to move right.
When front left shaft holder and rear left shaft holder are moved to the left, drive left pole socket to be moved to the left simultaneously.Velocity of rotation due to front screw mandrel is less than the velocity of rotation of rear screw mandrel, and the front portion that therefore very fast and left pole socket is moved at the rear portion of left pole socket is moved comparatively slow, therefore under the effect of front left bearing and rear left bearing, left pole socket rotates, and inside inclination occurs left pole socket.In like manner, right pole socket moves right, and inside inclination occurs right pole socket.
Left pole socket is moved to the left, right pole socket moves right, and the width that support can be made to tuck inside the sleeve between bar broadens, thus is propped up by sleeve, and left support sleeve bar, right support sleeve bar slope inwardly simultaneously, namely form beloid shape, the shape of sleeve of more fitting.
Front motor and rear motor reversion, now the velocity of rotation of front screw mandrel is also less than the velocity of rotation of rear screw mandrel, left pole socket, right pole socket can be resetted.
The beneficial effects of the utility model are: the structure that the width between realization support sleeve bar broadens is comparatively simple, and when supportting sleeve bar and being in softened state, left support sleeve bar, right support sleeve bar slope inwardly, and namely form beloid shape, the shape support sleeve better effects if of sleeve of more fitting.
Accompanying drawing explanation
Fig. 1 be when support sleeve bar be in narrow state time structure schematic diagram of the present utility model.
Fig. 2 is support sleeve bar structure schematic diagram of the present utility model when being in softened state.
Detailed description of the invention
Below in conjunction with the drawings and specific embodiments, the utility model is described in further detail.
With reference to Fig. 1, Fig. 2, a kind of support sleeve bar width adjustment mechanism of ironer, comprises the left pole socket 1 for installing left support sleeve bar, for installing the right pole socket 2 of right support sleeve bar.
Also comprise front screw mandrel 3, as shown in Figure 1, when support sleeve bar be in narrow state time described in before screw mandrel 3 and described left pole socket 1, right pole socket 2 vertical; Described front screw mandrel 3 is connected with the front motor 4 for driving it to rotate, described front screw mandrel 3 is provided with front left feed screw nut 5 and front right feed screw nut 6, the screw thread at front left feed screw nut 5 place and the screw thread at front right feed screw nut 6 place are reverse each other, and when namely, screw mandrel 3 rotates, the moving direction of front left feed screw nut 5 and front right feed screw nut 6 is contrary.Before described front left feed screw nut 5 and, left shaft holder is affixed, described front right feed screw nut 6 and a front right bearing block affixed, described front left shaft holder is provided with front left bearing 7, and described front right bearing block is provided with front right bearing 8.
Described left pole socket 1 is positioned at the top of described front left shaft holder, and described left pole socket 1 is provided with front left rotary shaft 9, and described front left rotary shaft 9 is inserted in described front left bearing 7.
Described right pole socket 2 is positioned at the top of described front right bearing block, and described right pole socket 2 is provided with front right spindle 10, and described front right spindle 10 inserts in described front right bearing 8.
Also comprise rear screw mandrel 11, described rear screw mandrel 11 is parallel with described front screw mandrel 3; Described rear screw mandrel 11 is connected with the rear motor 12 for driving it to rotate, described rear screw mandrel 11 is provided with rear left feed screw nut 13 and rear right feed screw nut 14, the screw thread at rear left feed screw nut 13 place and the screw thread at rear right feed screw nut 14 place are reverse each other, and when namely, screw mandrel 11 rotates, the moving direction of rear left feed screw nut 13 and rear right feed screw nut 14 is contrary.After described rear left feed screw nut 13 and, left shaft holder is affixed, described rear right feed screw nut 14 and a rear right bearing block affixed, described rear left shaft holder is provided with rear left bearing, and described rear right bearing block is provided with rear right bearing.
Described left pole socket 1 is positioned at the top of described rear left shaft holder, and described left pole socket 1 is provided with rear left rotary shaft, in the described rear left bearing described in rear left rotary shaft insertion.
Described right pole socket 2 is positioned at the top of described rear right bearing block, and described right pole socket is provided with rear right spindle, in the rear right bearing described in described rear right spindle inserts.
Operationally, before front motor 4 action drives, screw mandrel 3 rotates, and after rear motor 12 action drives, screw mandrel 11 rotates.The velocity of rotation of front screw mandrel 3 is less than the velocity of rotation of rear screw mandrel 11.Front screw mandrel 3 rotates, and drive front left feed screw nut 5 is moved to the left, front right feed screw nut 6 moves right, and the rotation of rear screw mandrel 11 then drives rear left feed screw nut 13 to be moved to the left, and rear right feed screw nut 14 moves right.Front left feed screw nut 5 and rear left feed screw nut 13 are moved to the left, and front left shaft holder and rear left shaft holder can be driven to be moved to the left; Front right feed screw nut 6 and rear right feed screw nut 14 move right, and front right bearing block and rear right bearing block can be driven to move right.
When front left shaft holder and rear left shaft holder are moved to the left, drive left pole socket 1 to be moved to the left simultaneously.Velocity of rotation due to front screw mandrel 3 is less than the velocity of rotation of rear screw mandrel 11, therefore the front portion that very fast and left pole socket 1 is moved at the rear portion of left pole socket 1 is moved slower, therefore under the effect of front left bearing 7 and rear left bearing, left pole socket 1 rotates, and inside inclination occurs left pole socket 1.In like manner, right pole socket 3 moves right, and inside inclination occurs right pole socket 3.
Left pole socket 1 is moved to the left, right pole socket 2 moves right, and the width that support can be made to tuck inside the sleeve between bar broadens, thus is propped up by sleeve, and left support sleeve bar, right support sleeve bar slope inwardly simultaneously, namely form beloid shape, the shape of sleeve of more fitting.In this process, rear motor 12 can move forward certain distance, and therefore can establish a slide rail plate 15 at the back side of rear motor 12, slide rail plate 15 is established retinue slide rail, rear motor 12 is slidedly arranged on this retinue slide rail, makes rear motor 12 forward slip smooth and easy.
Front motor 4 and rear motor 12 reverse, and now the velocity of rotation of front screw mandrel 3 is also less than the velocity of rotation of rear screw mandrel 11, left pole socket 1, right pole socket 2 can be resetted.
Before described in the present embodiment, the below of screw mandrel 3 is also provided with a line slideway 16, and described front left feed screw nut 5 and front right feed screw nut 6 are slidedly arranged on described line slideway, more smooth and easy when front left feed screw nut 5 and front right feed screw nut 6 are slided.
Claims (2)
1. a support sleeve bar width adjustment mechanism for ironer, comprising the left pole socket for installing left support sleeve bar, for installing the right pole socket of right support sleeve bar, it is characterized in that:
Also comprise front screw mandrel, when support sleeve bar be in narrow state time described in before screw mandrel and described left pole socket, right pole socket vertical; Described front screw mandrel with for driving its front motor rotated to be connected, described front screw mandrel is provided with front left feed screw nut and front right feed screw nut, the screw thread that the screw thread at front left feed screw nut place and front right feed screw nut locate is reverse each other, before described front left feed screw nut and, left shaft holder is affixed, described front right feed screw nut and a front right bearing block affixed, described front left shaft holder is provided with front left bearing, and described front right bearing block is provided with front right bearing;
Described left pole socket is positioned at the top of described front left shaft holder, and described left pole socket is provided with front left rotary shaft, in the described front left bearing described in front left rotary shaft insertion;
Described right pole socket is positioned at the top of described front right bearing block, and described right pole socket is provided with front right spindle, in the front right bearing described in described front right spindle inserts;
Also comprise rear screw mandrel, described rear screw mandrel is parallel with described front screw mandrel; Described rear screw mandrel with for driving its rear motor rotated to be connected, described rear screw mandrel is provided with rear left feed screw nut and rear right feed screw nut, the screw thread that the screw thread at rear left feed screw nut place and rear right feed screw nut locate is reverse each other, after described rear left feed screw nut and, left shaft holder is affixed, described rear right feed screw nut and a rear right bearing block affixed, described rear left shaft holder is provided with rear left bearing, and described rear right bearing block is provided with rear right bearing;
Described left pole socket is positioned at the top of described rear left shaft holder, and described left pole socket is provided with rear left rotary shaft, in the described rear left bearing described in rear left rotary shaft insertion;
Described right pole socket is positioned at the top of described rear right bearing block, and described right pole socket is provided with rear right spindle, in the rear right bearing described in described rear right spindle inserts.
2. the support sleeve bar width adjustment mechanism of ironer as claimed in claim 1, it is characterized in that: the below of described front screw mandrel is also provided with a line slideway, described front left feed screw nut and front right feed screw nut are slidedly arranged on described line slideway.
Priority Applications (1)
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CN201520562388.4U CN204875285U (en) | 2015-07-30 | 2015-07-30 | Ironer prop sleeve pole width regulation mechanism |
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CN201520562388.4U CN204875285U (en) | 2015-07-30 | 2015-07-30 | Ironer prop sleeve pole width regulation mechanism |
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CN204875285U true CN204875285U (en) | 2015-12-16 |
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Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105063982A (en) * | 2015-07-30 | 2015-11-18 | 宁波智腾针织科技有限公司 | Sleeve support rod width adjustment mechanism of ironer |
CN105506944A (en) * | 2016-01-14 | 2016-04-20 | 广西大学 | Ironing mechanism |
CN105755788A (en) * | 2016-05-12 | 2016-07-13 | 宁波裕人智能控制技术有限公司 | Sleeve shaping device for automatic ironer |
CN106676864A (en) * | 2017-03-17 | 2017-05-17 | 刘成 | Novel cuff |
-
2015
- 2015-07-30 CN CN201520562388.4U patent/CN204875285U/en active Active
Cited By (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105063982A (en) * | 2015-07-30 | 2015-11-18 | 宁波智腾针织科技有限公司 | Sleeve support rod width adjustment mechanism of ironer |
CN105506944A (en) * | 2016-01-14 | 2016-04-20 | 广西大学 | Ironing mechanism |
CN105755788A (en) * | 2016-05-12 | 2016-07-13 | 宁波裕人智能控制技术有限公司 | Sleeve shaping device for automatic ironer |
CN106676864A (en) * | 2017-03-17 | 2017-05-17 | 刘成 | Novel cuff |
CN106676864B (en) * | 2017-03-17 | 2019-06-25 | 酷野新材料(东莞)有限公司 | A kind of sleeve arm |
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