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Yiming W Wang

from Middleton, WI
Age ~64

Yiming Wang Phones & Addresses

  • 6601 Dumont Rd, Madison, WI 53711 (608) 274-4204
  • Middleton, WI
  • Fitchburg, WI
  • Piscataway, NJ
  • 6627 Clovernook Rd, Middleton, WI 53562 (608) 444-1183

Work

Position: Professional/Technical

Education

Degree: Graduate or professional degree

Emails

Specialities

Buyer's Agent • Listing Agent

Resumes

Resumes

Yiming Wang Photo 1

Yiming Wang

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Location:
New York, NY
Industry:
Broadcast Media
Work:
Cctv+ (Video News Agency) Jul 2014 - Oct 2014
Reporter

Dearb&B Feb 2014 - Jul 2014
Brand Manager of Mainland China
Education:
Fudan University 2015 - 2017
Masters, Master of Arts, Communication, Journalism
Renmin University of China 2011 - 2015
Bachelors, Philosophy, Journalism
Yiming Wang Photo 2

Accounting Assistant

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Location:
Madison, WI
Work:
Quality One Home Improvement
Accounting Assistant
Yiming Wang Photo 3

Digital Marketing Intern

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Work:
Hooli Homes
Digital Marketing Intern
Yiming Wang Photo 4

Senior Professor Scientist

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Location:
Madison, WI
Industry:
Packaging And Containers
Work:
Sonoco
Senior Professor Scientist
Education:
Wisconsin School of Business 1998 - 2001
Master of Business Administration, Masters
James A. Graaskamp Center For Real Estate 1998 - 2001
Master of Business Administration, Masters
Yiming Wang Photo 5

Yiming Wang

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Yiming Wang Photo 6

Yiming Wang

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Business Records

Name / Title
Company / Classification
Phones & Addresses
Yiming Wang
NEWO ENTERPRISES, LLC
Yiming Wang
Principal
SATURN FASHION LLC
Ret Women's Clothing
6627 Clovernook Rd, Middleton, WI 53562

Publications

Us Patents

Test Device And Method For Roll Weight Capacity Testing

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US Patent:
20060060008, Mar 23, 2006
Filed:
Sep 23, 2004
Appl. No.:
10/947861
Inventors:
Xiaokai Niu - Hartsville SC, US
David Rhodes - Hartsville SC, US
Jason Stephens - Hartsville SC, US
Yiming Wang - Middleton WI, US
International Classification:
B65H 63/04
G01L 5/10
US Classification:
073865900, 073862543, 242912000
Abstract:
A test device includes a stationary web roll support assembly comprising a base and a pair of core supports spaced apart and affixed to the base with the core supports projecting upwardly from the base, the core supports structured and arranged to engage opposite ends of a core of a web roll so as to support the web roll. The test device also includes a movable weight load simulating assembly comprising a flexible belt having opposite ends, and a belt holder structured and arranged to secure the opposite ends of the belt to the belt holder with the belt forming a generally U-shaped loop about an outer surface of the web roll intermediate the opposite ends of the core. Movement of the belt holder away from the stationary web roll support assembly causes the belt to exert a load on the web roll, simulating weight load on the core and core supports.

Winding Cores For Material Rolls Having High Roll Strain Energy, And Method For Making Same

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US Patent:
20090194625, Aug 6, 2009
Filed:
Feb 4, 2008
Appl. No.:
12/025441
Inventors:
David E. Rhodes - Hartsville SC, US
John F. Auten - Hartsville SC, US
Yiming Wang - Middleton WI, US
Wim Van de Camp - Hartsville SC, US
Terry Gerhardt - Hartsville SC, US
Lawrence E. Renck - Hartsville SC, US
International Classification:
B65H 18/28
US Classification:
2421604
Abstract:
Winding cores for elastically stretched or shrinkable materials are designed to significantly reduce the amount of roll strain energy developed during winding. This is accomplished by building into the core an energy-absorbing zone that can be collapsed by a substantial amount and in a relatively controlled fashion over a substantial period of time under the influence of a continued radially inward pressure exerted by the roll of wound material. The energy-absorbing zone is formed by one or more collapsible layers having repeated atomic regions projecting out of a plane of the sheet and each defining a plurality of normal vectors in different sub-regions of the atomic region, wherein the normal vectors, when projected onto the two-dimensional plane of the sheet, are in a plurality of different directions in the plane.

Enhanced Crush Strength Construction Multi-Grade Paperboard Tubes

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US Patent:
53935829, Feb 28, 1995
Filed:
Jun 4, 1993
Appl. No.:
8/071485
Inventors:
Yiming Wang - Madison WI
Monica McCarthy - Madison WI
Terry D. Gerhardt - Madison WI
Charles G. Johnson - Hartsville SC
Assignee:
Sonoco Products Company - Hartsville SC
International Classification:
F16L 916
US Classification:
428 342
Abstract:
The invention provides multi-grade spirally wound paperboard tubes of enhanced flat crush strength construction. The multi-grade spirally wound paperboard tubes of the invention include a plurality of structural paperboard plies having at least two predetermined densities including a lower density and a higher density wherein the higher density is at least about 3% greater than the lower density. The cylindrical bodywall is defined in radial cross section by at least one centrally located paperboard layer disposed between at least one radially inwardly located structural paperboard layer and at least one radially outwardly located structural paperboard layer. The centrally located paperboard layer is formed from the higher density paperboard and the inwardly and outwardly located structural paperboard layers are formed from lower density paperboard.

Composite Paperboard Containers Of Optimized Axial Strength Construction

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US Patent:
63097176, Oct 30, 2001
Filed:
Oct 27, 1998
Appl. No.:
9/179323
Inventors:
Yanping Qiu - Middleton WI
Patrick Trevanion - Yorkshire, GB
Yiming Wang - Middleton WI
Terry D. Gerhardt - Madison WI
Glenda Cahill - Florence SC
Richard Skiff - Florence SC
Assignee:
Sonoco Development, Inc. - Hartsville SC
International Classification:
F16L 916
B32B 906
US Classification:
428 342
Abstract:
Composite paperboard container constructions, providing optimized axial crush strength, and related properties, are formed of one, two, or three structural paperboard plies that are arranged to form a layered body wall having a cross-section of the construction in the ordered structure, high compression strength paperboard layer. backslash. low compression strength paperboard layer. backslash. high compression strength paperboard layer. Preferably, the container body is formed of one or two structural plies and at least one structural ply is a multiple layer paperboard having both high compression strength and low compression strength paperboard layers.
Yiming W Wang from Middleton, WI, age ~64 Get Report